@gg-electronics
33MiniE: Let's learn electronic // Technology and scince news // Electronics life :D
steemit.com/@gg-electronicsVOTING POWER100.00%
DOWNVOTE POWER100.00%
RESOURCE CREDITS100.00%
REPUTATION PROGRESS63.08%
Net Worth
0.233USD
STEEM
0.000STEEM
SBD
0.332SBD
Effective Power
5.007SP
├── Own SP
1.265SP
└── Incoming DelegationsDeleg
+3.742SP
Detailed Balance
| STEEM | ||
| balance | 0.000STEEM | STEEM |
| market_balance | 0.000STEEM | STEEM |
| savings_balance | 0.000STEEM | STEEM |
| reward_steem_balance | 0.000STEEM | STEEM |
| STEEM POWER | ||
| Own SP | 1.265SP | SP |
| Delegated Out | 0.000SP | SP |
| Delegation In | 3.742SP | SP |
| Effective Power | 5.007SP | SP |
| Reward SP (pending) | 0.000SP | SP |
| SBD | ||
| sbd_balance | 0.332SBD | SBD |
| sbd_conversions | 0.000SBD | SBD |
| sbd_market_balance | 0.000SBD | SBD |
| savings_sbd_balance | 0.000SBD | SBD |
| reward_sbd_balance | 0.000SBD | SBD |
{
"balance": "0.000 STEEM",
"savings_balance": "0.000 STEEM",
"reward_steem_balance": "0.000 STEEM",
"vesting_shares": "2058.077687 VESTS",
"delegated_vesting_shares": "0.000000 VESTS",
"received_vesting_shares": "6085.582119 VESTS",
"sbd_balance": "0.332 SBD",
"savings_sbd_balance": "0.000 SBD",
"reward_sbd_balance": "0.000 SBD",
"conversions": []
}Account Info
| name | gg-electronics |
| id | 358953 |
| rank | 894,033 |
| reputation | 7044724054 |
| created | 2017-09-08T13:42:48 |
| recovery_account | steem |
| proxy | None |
| post_count | 85 |
| comment_count | 0 |
| lifetime_vote_count | 0 |
| witnesses_voted_for | 2 |
| last_post | 2017-09-28T20:27:54 |
| last_root_post | 2017-09-28T20:27:54 |
| last_vote_time | 2017-10-03T03:11:03 |
| proxied_vsf_votes | 0, 0, 0, 0 |
| can_vote | 1 |
| voting_power | 0 |
| delayed_votes | 0 |
| balance | 0.000 STEEM |
| savings_balance | 0.000 STEEM |
| sbd_balance | 0.332 SBD |
| savings_sbd_balance | 0.000 SBD |
| vesting_shares | 2058.077687 VESTS |
| delegated_vesting_shares | 0.000000 VESTS |
| received_vesting_shares | 6085.582119 VESTS |
| reward_vesting_balance | 0.000000 VESTS |
| vesting_balance | 0.000 STEEM |
| vesting_withdraw_rate | 0.000000 VESTS |
| next_vesting_withdrawal | 1969-12-31T23:59:59 |
| withdrawn | 0 |
| to_withdraw | 0 |
| withdraw_routes | 0 |
| savings_withdraw_requests | 0 |
| last_account_recovery | 1970-01-01T00:00:00 |
| reset_account | null |
| last_owner_update | 1970-01-01T00:00:00 |
| last_account_update | 2017-09-20T22:02:57 |
| mined | No |
| sbd_seconds | 329,424,027 |
| sbd_last_interest_payment | 2017-09-18T03:28:24 |
| savings_sbd_last_interest_payment | 1970-01-01T00:00:00 |
{
"active": {
"account_auths": [],
"key_auths": [
[
"STM7U4ZG6A3bi1ZjhrwJYCHmvbs3gz1ziuByMgR1sgmczaPdr3VGt",
1
]
],
"weight_threshold": 1
},
"balance": "0.000 STEEM",
"can_vote": true,
"comment_count": 0,
"created": "2017-09-08T13:42:48",
"curation_rewards": 14,
"delegated_vesting_shares": "0.000000 VESTS",
"downvote_manabar": {
"current_mana": 2035914951,
"last_update_time": 1779064740
},
"guest_bloggers": [],
"id": 358953,
"json_metadata": "{\"profile\":{\"location\":\"Venezuela\",\"profile_image\":\"https://steemitimages.com/0x0/https://steemitimages.com/DQmckDazdjVBLyFaT6zzBH4Mhuwb4STYGpMyCa1Ze5EcRHb/yo.jpeg\",\"name\":\"Gabriel Garcia\",\"about\":\"MiniE: Let's learn electronic // Technology and scince news // Electronics life :D\"}}",
"last_account_recovery": "1970-01-01T00:00:00",
"last_account_update": "2017-09-20T22:02:57",
"last_owner_update": "1970-01-01T00:00:00",
"last_post": "2017-09-28T20:27:54",
"last_root_post": "2017-09-28T20:27:54",
"last_vote_time": "2017-10-03T03:11:03",
"lifetime_vote_count": 0,
"market_history": [],
"memo_key": "STM5pRgwGoT6FzwabtTp5Nx41GiUACwVgsiWm12qNEeFHPPvoqYzc",
"mined": false,
"name": "gg-electronics",
"next_vesting_withdrawal": "1969-12-31T23:59:59",
"other_history": [],
"owner": {
"account_auths": [],
"key_auths": [
[
"STM7xi6bfkty2jBDuuojY3n78s9C4BQk38dn4vVYyuf2QztmmBWT3",
1
]
],
"weight_threshold": 1
},
"pending_claimed_accounts": 0,
"post_bandwidth": 0,
"post_count": 85,
"post_history": [],
"posting": {
"account_auths": [],
"key_auths": [
[
"STM8FcEBVmQozuSgyo2bEremw93NYkKAUfnYULpCJ75kxbxpqe1Rc",
1
]
],
"weight_threshold": 1
},
"posting_json_metadata": "{\"profile\":{\"location\":\"Venezuela\",\"profile_image\":\"https://steemitimages.com/0x0/https://steemitimages.com/DQmckDazdjVBLyFaT6zzBH4Mhuwb4STYGpMyCa1Ze5EcRHb/yo.jpeg\",\"name\":\"Gabriel Garcia\",\"about\":\"MiniE: Let's learn electronic // Technology and scince news // Electronics life :D\"}}",
"posting_rewards": 779,
"proxied_vsf_votes": [
0,
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0
],
"proxy": "",
"received_vesting_shares": "6085.582119 VESTS",
"recovery_account": "steem",
"reputation": "7044724054",
"reset_account": "null",
"reward_sbd_balance": "0.000 SBD",
"reward_steem_balance": "0.000 STEEM",
"reward_vesting_balance": "0.000000 VESTS",
"reward_vesting_steem": "0.000 STEEM",
"savings_balance": "0.000 STEEM",
"savings_sbd_balance": "0.000 SBD",
"savings_sbd_last_interest_payment": "1970-01-01T00:00:00",
"savings_sbd_seconds": "0",
"savings_sbd_seconds_last_update": "1970-01-01T00:00:00",
"savings_withdraw_requests": 0,
"sbd_balance": "0.332 SBD",
"sbd_last_interest_payment": "2017-09-18T03:28:24",
"sbd_seconds": "329424027",
"sbd_seconds_last_update": "2017-10-11T22:33:42",
"tags_usage": [],
"to_withdraw": 0,
"transfer_history": [],
"vesting_balance": "0.000 STEEM",
"vesting_shares": "2058.077687 VESTS",
"vesting_withdraw_rate": "0.000000 VESTS",
"vote_history": [],
"voting_manabar": {
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"last_update_time": 1779064740
},
"voting_power": 0,
"withdraw_routes": 0,
"withdrawn": 0,
"witness_votes": [
"cervantes",
"steemitboard"
],
"witnesses_voted_for": 2,
"rank": 894033
}Withdraw Routes
| Incoming | Outgoing |
|---|---|
Empty | Empty |
{
"incoming": [],
"outgoing": []
}From Date
To Date
steemdelegated 3.742 SP to @gg-electronics2026/05/18 00:39:00
steemdelegated 3.742 SP to @gg-electronics
2026/05/18 00:39:00
| delegatee | gg-electronics |
| delegator | steem |
| vesting shares | 6085.582119 VESTS |
| Transaction Info | Block #106143923/Trx 63546078bcea6b1bba16139f5577d80f0ebce38a |
View Raw JSON Data
{
"block": 106143923,
"op": [
"delegate_vesting_shares",
{
"delegatee": "gg-electronics",
"delegator": "steem",
"vesting_shares": "6085.582119 VESTS"
}
],
"op_in_trx": 0,
"timestamp": "2026-05-18T00:39:00",
"trx_id": "63546078bcea6b1bba16139f5577d80f0ebce38a",
"trx_in_block": 1,
"virtual_op": 0
}steemdelegated 2.074 SP to @gg-electronics2026/05/12 05:27:00
steemdelegated 2.074 SP to @gg-electronics
2026/05/12 05:27:00
| delegatee | gg-electronics |
| delegator | steem |
| vesting shares | 3373.371714 VESTS |
| Transaction Info | Block #105977639/Trx 12fd9ac2b30ee0888d15c5c23253d0feff40a8d4 |
View Raw JSON Data
{
"block": 105977639,
"op": [
"delegate_vesting_shares",
{
"delegatee": "gg-electronics",
"delegator": "steem",
"vesting_shares": "3373.371714 VESTS"
}
],
"op_in_trx": 0,
"timestamp": "2026-05-12T05:27:00",
"trx_id": "12fd9ac2b30ee0888d15c5c23253d0feff40a8d4",
"trx_in_block": 3,
"virtual_op": 0
}steemdelegated 3.750 SP to @gg-electronics2026/04/25 23:59:18
steemdelegated 3.750 SP to @gg-electronics
2026/04/25 23:59:18
| delegatee | gg-electronics |
| delegator | steem |
| vesting shares | 6098.097875 VESTS |
| Transaction Info | Block #105511564/Trx b8360626c9b0e82320a8aa95828ab3fd18b48958 |
View Raw JSON Data
{
"block": 105511564,
"op": [
"delegate_vesting_shares",
{
"delegatee": "gg-electronics",
"delegator": "steem",
"vesting_shares": "6098.097875 VESTS"
}
],
"op_in_trx": 0,
"timestamp": "2026-04-25T23:59:18",
"trx_id": "b8360626c9b0e82320a8aa95828ab3fd18b48958",
"trx_in_block": 0,
"virtual_op": 0
}steemdelegated 2.100 SP to @gg-electronics2026/01/23 08:51:51
steemdelegated 2.100 SP to @gg-electronics
2026/01/23 08:51:51
| delegatee | gg-electronics |
| delegator | steem |
| vesting shares | 3414.918533 VESTS |
| Transaction Info | Block #102853083/Trx df66893f7993a3e0d0f2c300560832a618e5a9bf |
View Raw JSON Data
{
"block": 102853083,
"op": [
"delegate_vesting_shares",
{
"delegatee": "gg-electronics",
"delegator": "steem",
"vesting_shares": "3414.918533 VESTS"
}
],
"op_in_trx": 0,
"timestamp": "2026-01-23T08:51:51",
"trx_id": "df66893f7993a3e0d0f2c300560832a618e5a9bf",
"trx_in_block": 0,
"virtual_op": 0
}steemdelegated 2.201 SP to @gg-electronics2024/12/17 04:10:21
steemdelegated 2.201 SP to @gg-electronics
2024/12/17 04:10:21
| delegatee | gg-electronics |
| delegator | steem |
| vesting shares | 3579.137730 VESTS |
| Transaction Info | Block #91299477/Trx 0fc225d35dbead6de9f9a913d178b064f6a60343 |
View Raw JSON Data
{
"block": 91299477,
"op": [
"delegate_vesting_shares",
{
"delegatee": "gg-electronics",
"delegator": "steem",
"vesting_shares": "3579.137730 VESTS"
}
],
"op_in_trx": 0,
"timestamp": "2024-12-17T04:10:21",
"trx_id": "0fc225d35dbead6de9f9a913d178b064f6a60343",
"trx_in_block": 1,
"virtual_op": 0
}steemdelegated 2.305 SP to @gg-electronics2023/11/13 19:53:27
steemdelegated 2.305 SP to @gg-electronics
2023/11/13 19:53:27
| delegatee | gg-electronics |
| delegator | steem |
| vesting shares | 3748.271262 VESTS |
| Transaction Info | Block #79853682/Trx 6862454688dacbea0cb1ad996610fc8ca7210166 |
View Raw JSON Data
{
"block": 79853682,
"op": [
"delegate_vesting_shares",
{
"delegatee": "gg-electronics",
"delegator": "steem",
"vesting_shares": "3748.271262 VESTS"
}
],
"op_in_trx": 0,
"timestamp": "2023-11-13T19:53:27",
"trx_id": "6862454688dacbea0cb1ad996610fc8ca7210166",
"trx_in_block": 10,
"virtual_op": 0
}steemdelegated 4.111 SP to @gg-electronics2023/09/21 22:17:36
steemdelegated 4.111 SP to @gg-electronics
2023/09/21 22:17:36
| delegatee | gg-electronics |
| delegator | steem |
| vesting shares | 6685.550048 VESTS |
| Transaction Info | Block #78348382/Trx a00f0f01e823ef264cec71fd4e7d4dbfa683606c |
View Raw JSON Data
{
"block": 78348382,
"op": [
"delegate_vesting_shares",
{
"delegatee": "gg-electronics",
"delegator": "steem",
"vesting_shares": "6685.550048 VESTS"
}
],
"op_in_trx": 0,
"timestamp": "2023-09-21T22:17:36",
"trx_id": "a00f0f01e823ef264cec71fd4e7d4dbfa683606c",
"trx_in_block": 2,
"virtual_op": 0
}steemdelegated 4.247 SP to @gg-electronics2022/11/03 12:01:42
steemdelegated 4.247 SP to @gg-electronics
2022/11/03 12:01:42
| delegatee | gg-electronics |
| delegator | steem |
| vesting shares | 6907.231486 VESTS |
| Transaction Info | Block #69113650/Trx f9519238f679be02dac61c2e3565e19501072690 |
View Raw JSON Data
{
"block": 69113650,
"op": [
"delegate_vesting_shares",
{
"delegatee": "gg-electronics",
"delegator": "steem",
"vesting_shares": "6907.231486 VESTS"
}
],
"op_in_trx": 0,
"timestamp": "2022-11-03T12:01:42",
"trx_id": "f9519238f679be02dac61c2e3565e19501072690",
"trx_in_block": 0,
"virtual_op": 0
}steemdelegated 4.383 SP to @gg-electronics2022/01/17 11:16:15
steemdelegated 4.383 SP to @gg-electronics
2022/01/17 11:16:15
| delegatee | gg-electronics |
| delegator | steem |
| vesting shares | 7127.764717 VESTS |
| Transaction Info | Block #60809789/Trx b13c80190fa761069965dc8cbe969482786c9403 |
View Raw JSON Data
{
"block": 60809789,
"op": [
"delegate_vesting_shares",
{
"delegatee": "gg-electronics",
"delegator": "steem",
"vesting_shares": "7127.764717 VESTS"
}
],
"op_in_trx": 0,
"timestamp": "2022-01-17T11:16:15",
"trx_id": "b13c80190fa761069965dc8cbe969482786c9403",
"trx_in_block": 44,
"virtual_op": 0
}steemdelegated 4.496 SP to @gg-electronics2021/06/14 01:10:36
steemdelegated 4.496 SP to @gg-electronics
2021/06/14 01:10:36
| delegatee | gg-electronics |
| delegator | steem |
| vesting shares | 7311.533375 VESTS |
| Transaction Info | Block #54608157/Trx 2b36236e20f2f4a06785bd1bb6e192aaab4568e9 |
View Raw JSON Data
{
"block": 54608157,
"op": [
"delegate_vesting_shares",
{
"delegatee": "gg-electronics",
"delegator": "steem",
"vesting_shares": "7311.533375 VESTS"
}
],
"op_in_trx": 0,
"timestamp": "2021-06-14T01:10:36",
"trx_id": "2b36236e20f2f4a06785bd1bb6e192aaab4568e9",
"trx_in_block": 11,
"virtual_op": 0
}steemdelegated 4.611 SP to @gg-electronics2020/12/11 11:28:48
steemdelegated 4.611 SP to @gg-electronics
2020/12/11 11:28:48
| delegatee | gg-electronics |
| delegator | steem |
| vesting shares | 7498.955349 VESTS |
| Transaction Info | Block #49355600/Trx 4e42281c81e94219cab275271f2a65f8a45b5e2e |
View Raw JSON Data
{
"block": 49355600,
"op": [
"delegate_vesting_shares",
{
"delegatee": "gg-electronics",
"delegator": "steem",
"vesting_shares": "7498.955349 VESTS"
}
],
"op_in_trx": 0,
"timestamp": "2020-12-11T11:28:48",
"trx_id": "4e42281c81e94219cab275271f2a65f8a45b5e2e",
"trx_in_block": 7,
"virtual_op": 0
}steemdelegated 1.176 SP to @gg-electronics2020/12/06 05:05:57
steemdelegated 1.176 SP to @gg-electronics
2020/12/06 05:05:57
| delegatee | gg-electronics |
| delegator | steem |
| vesting shares | 1912.543513 VESTS |
| Transaction Info | Block #49207159/Trx 48b30a1471cd03897c3cdf381f701a01ec53c5dc |
View Raw JSON Data
{
"block": 49207159,
"op": [
"delegate_vesting_shares",
{
"delegatee": "gg-electronics",
"delegator": "steem",
"vesting_shares": "1912.543513 VESTS"
}
],
"op_in_trx": 0,
"timestamp": "2020-12-06T05:05:57",
"trx_id": "48b30a1471cd03897c3cdf381f701a01ec53c5dc",
"trx_in_block": 6,
"virtual_op": 0
}steemdelegated 4.615 SP to @gg-electronics2020/12/05 15:06:57
steemdelegated 4.615 SP to @gg-electronics
2020/12/05 15:06:57
| delegatee | gg-electronics |
| delegator | steem |
| vesting shares | 7505.163203 VESTS |
| Transaction Info | Block #49190694/Trx 4c4dd4500b51ea0ee2cb33433ca251704e88ffa7 |
View Raw JSON Data
{
"block": 49190694,
"op": [
"delegate_vesting_shares",
{
"delegatee": "gg-electronics",
"delegator": "steem",
"vesting_shares": "7505.163203 VESTS"
}
],
"op_in_trx": 0,
"timestamp": "2020-12-05T15:06:57",
"trx_id": "4c4dd4500b51ea0ee2cb33433ca251704e88ffa7",
"trx_in_block": 0,
"virtual_op": 0
}steemdelegated 1.181 SP to @gg-electronics2020/11/02 16:23:06
steemdelegated 1.181 SP to @gg-electronics
2020/11/02 16:23:06
| delegatee | gg-electronics |
| delegator | steem |
| vesting shares | 1920.017158 VESTS |
| Transaction Info | Block #48258681/Trx a4adadba71371b221a68dd8441bffde0134d1f68 |
View Raw JSON Data
{
"block": 48258681,
"op": [
"delegate_vesting_shares",
{
"delegatee": "gg-electronics",
"delegator": "steem",
"vesting_shares": "1920.017158 VESTS"
}
],
"op_in_trx": 0,
"timestamp": "2020-11-02T16:23:06",
"trx_id": "a4adadba71371b221a68dd8441bffde0134d1f68",
"trx_in_block": 3,
"virtual_op": 0
}steemdelegated 4.739 SP to @gg-electronics2020/05/09 06:03:42
steemdelegated 4.739 SP to @gg-electronics
2020/05/09 06:03:42
| delegatee | gg-electronics |
| delegator | steem |
| vesting shares | 7707.968562 VESTS |
| Transaction Info | Block #43217414/Trx fbdb54138680b9a1b23aeec20bacfae6f0e2607f |
View Raw JSON Data
{
"block": 43217414,
"op": [
"delegate_vesting_shares",
{
"delegatee": "gg-electronics",
"delegator": "steem",
"vesting_shares": "7707.968562 VESTS"
}
],
"op_in_trx": 0,
"timestamp": "2020-05-09T06:03:42",
"trx_id": "fbdb54138680b9a1b23aeec20bacfae6f0e2607f",
"trx_in_block": 2,
"virtual_op": 0
}steemdelegated 1.201 SP to @gg-electronics2020/05/08 09:43:12
steemdelegated 1.201 SP to @gg-electronics
2020/05/08 09:43:12
| delegatee | gg-electronics |
| delegator | steem |
| vesting shares | 1953.311140 VESTS |
| Transaction Info | Block #43193575/Trx e6a570856ed7614d9268a579bfe755c0fe926030 |
View Raw JSON Data
{
"block": 43193575,
"op": [
"delegate_vesting_shares",
{
"delegatee": "gg-electronics",
"delegator": "steem",
"vesting_shares": "1953.311140 VESTS"
}
],
"op_in_trx": 0,
"timestamp": "2020-05-08T09:43:12",
"trx_id": "e6a570856ed7614d9268a579bfe755c0fe926030",
"trx_in_block": 12,
"virtual_op": 0
}steemdelegated 4.747 SP to @gg-electronics2020/04/15 21:49:27
steemdelegated 4.747 SP to @gg-electronics
2020/04/15 21:49:27
| delegatee | gg-electronics |
| delegator | steem |
| vesting shares | 7720.945981 VESTS |
| Transaction Info | Block #42562804/Trx d6f82d4fac3bd77caac0a175c18cf1d1818f4247 |
View Raw JSON Data
{
"block": 42562804,
"op": [
"delegate_vesting_shares",
{
"delegatee": "gg-electronics",
"delegator": "steem",
"vesting_shares": "7720.945981 VESTS"
}
],
"op_in_trx": 0,
"timestamp": "2020-04-15T21:49:27",
"trx_id": "d6f82d4fac3bd77caac0a175c18cf1d1818f4247",
"trx_in_block": 4,
"virtual_op": 0
}2019/09/08 14:36:18
2019/09/08 14:36:18
| author | steemitboard |
| body | Congratulations @gg-electronics! You received a personal award! <table><tr><td>https://steemitimages.com/70x70/http://steemitboard.com/@gg-electronics/birthday2.png</td><td>Happy Birthday! - You are on the Steem blockchain for 2 years!</td></tr></table> <sub>_You can view [your badges on your Steem Board](https://steemitboard.com/@gg-electronics) and compare to others on the [Steem Ranking](https://steemitboard.com/ranking/index.php?name=gg-electronics)_</sub> > You can upvote this notification to help all Steem users. Learn how [here](https://steemit.com/steemitboard/@steemitboard/http-i-cubeupload-com-7ciqeo-png)! |
| json metadata | {"image":["https://steemitboard.com/img/notify.png"]} |
| parent author | gg-electronics |
| parent permlink | minie-2-2-passive-elements-capacitors-let-s-learn-basic-electronics |
| permlink | steemitboard-notify-gg-electronics-20190908t143618000z |
| title | |
| Transaction Info | Block #36244536/Trx e0aa4a1a8c893f159b53721385ad4ee9c1a133df |
View Raw JSON Data
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{
"author": "steemitboard",
"body": "Congratulations @gg-electronics! You received a personal award!\n\n<table><tr><td>https://steemitimages.com/70x70/http://steemitboard.com/@gg-electronics/birthday2.png</td><td>Happy Birthday! - You are on the Steem blockchain for 2 years!</td></tr></table>\n\n<sub>_You can view [your badges on your Steem Board](https://steemitboard.com/@gg-electronics) and compare to others on the [Steem Ranking](https://steemitboard.com/ranking/index.php?name=gg-electronics)_</sub>\n\n\n> You can upvote this notification to help all Steem users. Learn how [here](https://steemit.com/steemitboard/@steemitboard/http-i-cubeupload-com-7ciqeo-png)!",
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"timestamp": "2019-09-08T14:36:18",
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}steemdelegated 4.868 SP to @gg-electronics2019/05/12 15:04:27
steemdelegated 4.868 SP to @gg-electronics
2019/05/12 15:04:27
| delegatee | gg-electronics |
| delegator | steem |
| vesting shares | 7916.568786 VESTS |
| Transaction Info | Block #32845692/Trx a69040260f82b7e180a8359a087d375e43d23a01 |
View Raw JSON Data
{
"block": 32845692,
"op": [
"delegate_vesting_shares",
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"timestamp": "2019-05-12T15:04:27",
"trx_id": "a69040260f82b7e180a8359a087d375e43d23a01",
"trx_in_block": 61,
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}2018/09/08 15:28:54
2018/09/08 15:28:54
| author | steemitboard |
| body | Congratulations @gg-electronics! You have received a personal award! [](http://steemitboard.com/@gg-electronics) 1 Year on Steemit <sub>_Click on the badge to view your Board of Honor._</sub> **Do not miss the last post from @steemitboard:** <table><tr><td><a href="https://steemit.com/steemitboard/@steemitboard/steemitboard-witness-update-2018-09-07"><img src="https://steemitimages.com/64x128/http://i.cubeupload.com/7CiQEO.png"></a></td><td><a href="https://steemit.com/steemitboard/@steemitboard/steemitboard-witness-update-2018-09-07">SteemitBoard - Witness Update</a></td></tr><tr><td><a href="https://steemit.com/steemfest/@steemitboard/steemfest-steemitboard-support-the-travel-reimbursement-fund"><img src="https://steemitimages.com/64x128/https://cdn.steemitimages.com/DQmawPYDAwfrQM8YU6ejD1f87g64cvsmEFn8RQKHJMs4zxg/image.png"></a></td><td><a href="https://steemit.com/steemfest/@steemitboard/steemfest-steemitboard-support-the-travel-reimbursement-fund">SteemFest³ - SteemitBoard support the Travel Reimbursement Fund.</a></td></tr></table> > You can upvote this notification to help all Steemit users. Learn why [here](https://steemit.com/steemitboard/@steemitboard/http-i-cubeupload-com-7ciqeo-png)! |
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| parent author | gg-electronics |
| parent permlink | minie-2-2-passive-elements-capacitors-let-s-learn-basic-electronics |
| permlink | steemitboard-notify-gg-electronics-20180908t152856000z |
| title | |
| Transaction Info | Block #25783546/Trx 69b2b69a4460314c23b1deac8d349cd8d43a3be0 |
View Raw JSON Data
{
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"body": "Congratulations @gg-electronics! You have received a personal award!\n\n[](http://steemitboard.com/@gg-electronics) 1 Year on Steemit\n<sub>_Click on the badge to view your Board of Honor._</sub>\n\n\n**Do not miss the last post from @steemitboard:**\n<table><tr><td><a href=\"https://steemit.com/steemitboard/@steemitboard/steemitboard-witness-update-2018-09-07\"><img src=\"https://steemitimages.com/64x128/http://i.cubeupload.com/7CiQEO.png\"></a></td><td><a href=\"https://steemit.com/steemitboard/@steemitboard/steemitboard-witness-update-2018-09-07\">SteemitBoard - Witness Update</a></td></tr><tr><td><a href=\"https://steemit.com/steemfest/@steemitboard/steemfest-steemitboard-support-the-travel-reimbursement-fund\"><img src=\"https://steemitimages.com/64x128/https://cdn.steemitimages.com/DQmawPYDAwfrQM8YU6ejD1f87g64cvsmEFn8RQKHJMs4zxg/image.png\"></a></td><td><a href=\"https://steemit.com/steemfest/@steemitboard/steemfest-steemitboard-support-the-travel-reimbursement-fund\">SteemFest³ - SteemitBoard support the Travel Reimbursement Fund.</a></td></tr></table>\n\n> You can upvote this notification to help all Steemit users. Learn why [here](https://steemit.com/steemitboard/@steemitboard/http-i-cubeupload-com-7ciqeo-png)!",
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}steemdelegated 4.990 SP to @gg-electronics2018/05/16 20:18:39
steemdelegated 4.990 SP to @gg-electronics
2018/05/16 20:18:39
| delegatee | gg-electronics |
| delegator | steem |
| vesting shares | 8116.121221 VESTS |
| Transaction Info | Block #22489874/Trx 6f5cbf77914391062f3b1fb313e66cbdf68b4411 |
View Raw JSON Data
{
"block": 22489874,
"op": [
"delegate_vesting_shares",
{
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"timestamp": "2018-05-16T20:18:39",
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}steemdelegated 17.584 SP to @gg-electronics2018/02/22 12:21:03
steemdelegated 17.584 SP to @gg-electronics
2018/02/22 12:21:03
| delegatee | gg-electronics |
| delegator | steem |
| vesting shares | 28598.046222 VESTS |
| Transaction Info | Block #20092449/Trx c4359bce8ce10ed607e163f3447de9f6146b4e7f |
View Raw JSON Data
{
"block": 20092449,
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"delegate_vesting_shares",
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"vesting_shares": "28598.046222 VESTS"
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"timestamp": "2018-02-22T12:21:03",
"trx_id": "c4359bce8ce10ed607e163f3447de9f6146b4e7f",
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}steemdelegated 17.710 SP to @gg-electronics2017/10/13 16:03:51
steemdelegated 17.710 SP to @gg-electronics
2017/10/13 16:03:51
| delegatee | gg-electronics |
| delegator | steem |
| vesting shares | 28802.922313 VESTS |
| Transaction Info | Block #16298261/Trx ea6f309945004d05ec91c543b78db3fd27f90567 |
View Raw JSON Data
{
"block": 16298261,
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"trx_id": "ea6f309945004d05ec91c543b78db3fd27f90567",
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}gg-electronicsclaimed reward balance: 0.013 SBD, 0.057 SP2017/10/11 22:33:42
gg-electronicsclaimed reward balance: 0.013 SBD, 0.057 SP
2017/10/11 22:33:42
| account | gg-electronics |
| reward sbd | 0.013 SBD |
| reward steem | 0.000 STEEM |
| reward vests | 92.623503 VESTS |
| Transaction Info | Block #16248493/Trx 5621a5469edff73456a004fa1aae84eca6bf69fa |
View Raw JSON Data
{
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"timestamp": "2017-10-11T22:33:42",
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}gg-electronicsreceived 0.033 SP author reward for @gg-electronics / minie-2-2-passive-elements-capacitors-let-s-learn-basic-electronics2017/10/05 20:27:54
gg-electronicsreceived 0.033 SP author reward for @gg-electronics / minie-2-2-passive-elements-capacitors-let-s-learn-basic-electronics
2017/10/05 20:27:54
| author | gg-electronics |
| permlink | minie-2-2-passive-elements-capacitors-let-s-learn-basic-electronics |
| sbd payout | 0.000 SBD |
| steem payout | 0.000 STEEM |
| vesting payout | 53.515419 VESTS |
| Transaction Info | Block #16073267/Virtual Operation #4 |
View Raw JSON Data
{
"block": 16073267,
"op": [
"author_reward",
{
"author": "gg-electronics",
"permlink": "minie-2-2-passive-elements-capacitors-let-s-learn-basic-electronics",
"sbd_payout": "0.000 SBD",
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"vesting_payout": "53.515419 VESTS"
}
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"op_in_trx": 0,
"timestamp": "2017-10-05T20:27:54",
"trx_id": "0000000000000000000000000000000000000000",
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"virtual_op": 4
}gg-electronicsreceived 0.006 SP curation reward for @damira / re-gg-electronics-re-damira-49fmrb-color-challenge-thursday-green-20170928t130446111z2017/10/05 13:04:45
gg-electronicsreceived 0.006 SP curation reward for @damira / re-gg-electronics-re-damira-49fmrb-color-challenge-thursday-green-20170928t130446111z
2017/10/05 13:04:45
| comment author | damira |
| comment permlink | re-gg-electronics-re-damira-49fmrb-color-challenge-thursday-green-20170928t130446111z |
| curator | gg-electronics |
| reward | 10.291588 VESTS |
| Transaction Info | Block #16064406/Virtual Operation #25 |
View Raw JSON Data
{
"block": 16064406,
"op": [
"curation_reward",
{
"comment_author": "damira",
"comment_permlink": "re-gg-electronics-re-damira-49fmrb-color-challenge-thursday-green-20170928t130446111z",
"curator": "gg-electronics",
"reward": "10.291588 VESTS"
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"op_in_trx": 0,
"timestamp": "2017-10-05T13:04:45",
"trx_id": "0000000000000000000000000000000000000000",
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}gg-electronicsreceived 0.001 SP curation reward for @damira / re-gg-electronics-re-damira-a-critical-life-event-that-had-a-huge-impact-on-me-20170928t124953194z2017/10/05 12:49:54
gg-electronicsreceived 0.001 SP curation reward for @damira / re-gg-electronics-re-damira-a-critical-life-event-that-had-a-huge-impact-on-me-20170928t124953194z
2017/10/05 12:49:54
| comment author | damira |
| comment permlink | re-gg-electronics-re-damira-a-critical-life-event-that-had-a-huge-impact-on-me-20170928t124953194z |
| curator | gg-electronics |
| reward | 2.058318 VESTS |
| Transaction Info | Block #16064109/Virtual Operation #7 |
View Raw JSON Data
{
"block": 16064109,
"op": [
"curation_reward",
{
"comment_author": "damira",
"comment_permlink": "re-gg-electronics-re-damira-a-critical-life-event-that-had-a-huge-impact-on-me-20170928t124953194z",
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"reward": "2.058318 VESTS"
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"op_in_trx": 0,
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}gg-electronicsreceived 0.003 SP curation reward for @damira / 49fmrb-color-challenge-thursday-green2017/10/05 12:14:03
gg-electronicsreceived 0.003 SP curation reward for @damira / 49fmrb-color-challenge-thursday-green
2017/10/05 12:14:03
| comment author | damira |
| comment permlink | 49fmrb-color-challenge-thursday-green |
| curator | gg-electronics |
| reward | 4.116642 VESTS |
| Transaction Info | Block #16063393/Virtual Operation #11 |
View Raw JSON Data
{
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"op": [
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{
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"op_in_trx": 0,
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}gg-electronicsreceived 0.013 SBD, 0.014 SP author reward for @gg-electronics / minie2017/10/05 12:13:45
gg-electronicsreceived 0.013 SBD, 0.014 SP author reward for @gg-electronics / minie
2017/10/05 12:13:45
| author | gg-electronics |
| permlink | minie |
| sbd payout | 0.013 SBD |
| steem payout | 0.000 STEEM |
| vesting payout | 22.641536 VESTS |
| Transaction Info | Block #16063387/Virtual Operation #29 |
View Raw JSON Data
{
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{
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],
"op_in_trx": 0,
"timestamp": "2017-10-05T12:13:45",
"trx_id": "0000000000000000000000000000000000000000",
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}gg-electronicsupvoted (100.00%) @kafkanarchy84 / vegas-gun-control-and-what-s-really-at-stake2017/10/03 03:11:03
gg-electronicsupvoted (100.00%) @kafkanarchy84 / vegas-gun-control-and-what-s-really-at-stake
2017/10/03 03:11:03
| author | kafkanarchy84 |
| permlink | vegas-gun-control-and-what-s-really-at-stake |
| voter | gg-electronics |
| weight | 10000 (100.00%) |
| Transaction Info | Block #15994956/Trx be974e988132b40e120291875f2df958dcfa99cd |
View Raw JSON Data
{
"block": 15994956,
"op": [
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"trx_id": "be974e988132b40e120291875f2df958dcfa99cd",
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}gg-electronicsupvoted (100.00%) @lordoftruth / market-brief-03-10-20172017/10/03 03:10:39
gg-electronicsupvoted (100.00%) @lordoftruth / market-brief-03-10-2017
2017/10/03 03:10:39
| author | lordoftruth |
| permlink | market-brief-03-10-2017 |
| voter | gg-electronics |
| weight | 10000 (100.00%) |
| Transaction Info | Block #15994948/Trx e0ac7ce0eacbe112f1bc08582003f566bc62d865 |
View Raw JSON Data
{
"block": 15994948,
"op": [
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"permlink": "market-brief-03-10-2017",
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"op_in_trx": 0,
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"trx_id": "e0ac7ce0eacbe112f1bc08582003f566bc62d865",
"trx_in_block": 4,
"virtual_op": 0
}gg-electronicsupvoted (100.00%) @juliank / the-concentration-is-real-1506991400-06928632017/10/03 03:09:51
gg-electronicsupvoted (100.00%) @juliank / the-concentration-is-real-1506991400-0692863
2017/10/03 03:09:51
| author | juliank |
| permlink | the-concentration-is-real-1506991400-0692863 |
| voter | gg-electronics |
| weight | 10000 (100.00%) |
| Transaction Info | Block #15994932/Trx dc303c66d02811ae24faa32152d8f76c8187e51d |
View Raw JSON Data
{
"block": 15994932,
"op": [
"vote",
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"permlink": "the-concentration-is-real-1506991400-0692863",
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"op_in_trx": 0,
"timestamp": "2017-10-03T03:09:51",
"trx_id": "dc303c66d02811ae24faa32152d8f76c8187e51d",
"trx_in_block": 22,
"virtual_op": 0
}2017/10/03 03:08:39
2017/10/03 03:08:39
| author | rebeccaryan |
| permlink | hand-trimmed-versus-tumbled-what-method-is-better-for-maintaining-medicinal-potency |
| voter | gg-electronics |
| weight | 10000 (100.00%) |
| Transaction Info | Block #15994908/Trx ab419e01064480c23fefc58ad0ac9b545def39da |
View Raw JSON Data
{
"block": 15994908,
"op": [
"vote",
{
"author": "rebeccaryan",
"permlink": "hand-trimmed-versus-tumbled-what-method-is-better-for-maintaining-medicinal-potency",
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"op_in_trx": 0,
"timestamp": "2017-10-03T03:08:39",
"trx_id": "ab419e01064480c23fefc58ad0ac9b545def39da",
"trx_in_block": 4,
"virtual_op": 0
}gg-electronicsupvoted (100.00%) @kingscrown / bitshares-current-trading-state-and-price2017/10/03 03:07:57
gg-electronicsupvoted (100.00%) @kingscrown / bitshares-current-trading-state-and-price
2017/10/03 03:07:57
| author | kingscrown |
| permlink | bitshares-current-trading-state-and-price |
| voter | gg-electronics |
| weight | 10000 (100.00%) |
| Transaction Info | Block #15994894/Trx 9e3b6608e1f978130a093d3f1dd56a2c8a9960b6 |
View Raw JSON Data
{
"block": 15994894,
"op": [
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"permlink": "bitshares-current-trading-state-and-price",
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"op_in_trx": 0,
"timestamp": "2017-10-03T03:07:57",
"trx_id": "9e3b6608e1f978130a093d3f1dd56a2c8a9960b6",
"trx_in_block": 16,
"virtual_op": 0
}gg-electronicsupvoted (100.00%) @daveks / 4ghgeb-b-and-w-or-colour2017/10/03 03:07:33
gg-electronicsupvoted (100.00%) @daveks / 4ghgeb-b-and-w-or-colour
2017/10/03 03:07:33
| author | daveks |
| permlink | 4ghgeb-b-and-w-or-colour |
| voter | gg-electronics |
| weight | 10000 (100.00%) |
| Transaction Info | Block #15994886/Trx 359089acc7272143c844c8f9bd84ff8e8834b7c1 |
View Raw JSON Data
{
"block": 15994886,
"op": [
"vote",
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"permlink": "4ghgeb-b-and-w-or-colour",
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"weight": 10000
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"op_in_trx": 0,
"timestamp": "2017-10-03T03:07:33",
"trx_id": "359089acc7272143c844c8f9bd84ff8e8834b7c1",
"trx_in_block": 1,
"virtual_op": 0
}2017/10/03 03:07:09
2017/10/03 03:07:09
| author | gonzo |
| permlink | meme-contest-threesome-police-quest-30-sbd-in-prizes-unlimited-entries |
| voter | gg-electronics |
| weight | 10000 (100.00%) |
| Transaction Info | Block #15994878/Trx 70e0f69d1ce195a92350912c33c5087dc836515e |
View Raw JSON Data
{
"block": 15994878,
"op": [
"vote",
{
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"op_in_trx": 0,
"timestamp": "2017-10-03T03:07:09",
"trx_id": "70e0f69d1ce195a92350912c33c5087dc836515e",
"trx_in_block": 9,
"virtual_op": 0
}gg-electronicsupvoted (100.00%) @barrysamways / how-to-draw-bob-dylan-step-by-step-with-charcoal2017/10/03 03:06:42
gg-electronicsupvoted (100.00%) @barrysamways / how-to-draw-bob-dylan-step-by-step-with-charcoal
2017/10/03 03:06:42
| author | barrysamways |
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2017/10/03 03:06:27
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}gg-electronicsupvoted (100.00%) @oneness / the-cynic-in-me-wake-up-and-stand-up-before-itis-too-late2017/10/03 03:06:09
gg-electronicsupvoted (100.00%) @oneness / the-cynic-in-me-wake-up-and-stand-up-before-itis-too-late
2017/10/03 03:06:09
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}gg-electronicsupvoted (100.00%) @damira / delicious-oven-baked-pumpkin-with-chicken-recipe2017/10/03 03:05:18
gg-electronicsupvoted (100.00%) @damira / delicious-oven-baked-pumpkin-with-chicken-recipe
2017/10/03 03:05:18
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}gg-electronicsupvoted (100.00%) @damira / a-little-cutie-pie-of-mine2017/10/03 03:04:27
gg-electronicsupvoted (100.00%) @damira / a-little-cutie-pie-of-mine
2017/10/03 03:04:27
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}gg-electronicsupvoted (100.00%) @damira / 5-reasons-why-men-should-cook2017/10/03 03:03:00
gg-electronicsupvoted (100.00%) @damira / 5-reasons-why-men-should-cook
2017/10/03 03:03:00
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}gg-electronicsupvoted (100.00%) @damira / favorite-season-of-the-year-fall2017/10/03 03:02:24
gg-electronicsupvoted (100.00%) @damira / favorite-season-of-the-year-fall
2017/10/03 03:02:24
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}gg-electronicsclaimed reward balance: 0.144 SBD, 0.261 SP2017/10/03 02:57:48
gg-electronicsclaimed reward balance: 0.144 SBD, 0.261 SP
2017/10/03 02:57:48
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}gg-electronicsreceived 0.103 SP author reward for @gg-electronics / a-project-that-needs-seriousness-gg-electronics-has-logo2017/10/01 15:07:30
gg-electronicsreceived 0.103 SP author reward for @gg-electronics / a-project-that-needs-seriousness-gg-electronics-has-logo
2017/10/01 15:07:30
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}gg-electronicsreceived 0.033 SBD, 0.030 SP author reward for @gg-electronics / un-proyecto-que-necesita-seriedad-gg-electronics-tiene-logo2017/10/01 14:20:27
gg-electronicsreceived 0.033 SBD, 0.030 SP author reward for @gg-electronics / un-proyecto-que-necesita-seriedad-gg-electronics-tiene-logo
2017/10/01 14:20:27
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}gg-electronicsreceived 0.001 SP curation reward for @darthnava / top-10-cars-considered-ugly-by-critics-but-look-kinda-cool-to-me2017/09/30 13:43:09
gg-electronicsreceived 0.001 SP curation reward for @darthnava / top-10-cars-considered-ugly-by-critics-but-look-kinda-cool-to-me
2017/09/30 13:43:09
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gg-electronicsreceived 0.051 SBD, 0.051 SP author reward for @gg-electronics / los-invito-al-mundo-de-la-electronica-formemos-una-comunidad-invitenme-tambien
2017/09/30 13:41:45
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}gg-electronicsreceived 0.005 SP curation reward for @karlin / dulce-de-lechoza-venezuela2017/09/30 13:41:18
gg-electronicsreceived 0.005 SP curation reward for @karlin / dulce-de-lechoza-venezuela
2017/09/30 13:41:18
| comment author | karlin |
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}gg-electronicsreceived 0.008 SBD, 0.010 SP author reward for @gg-electronics / re-damira-how-i-found-the-love-of-my-life-in-mcdonald-s-20170922t205314332z2017/09/29 20:53:21
gg-electronicsreceived 0.008 SBD, 0.010 SP author reward for @gg-electronics / re-damira-how-i-found-the-love-of-my-life-in-mcdonald-s-20170922t205314332z
2017/09/29 20:53:21
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2017/09/29 00:13:27
| author | gg-electronics |
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2017/09/28 22:21:00
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2017/09/28 20:27:54
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}gg-electronicspublished a new post: minie-2-2-passive-elements-capacitors-let-s-learn-basic-electronics2017/09/28 20:27:54
gg-electronicspublished a new post: minie-2-2-passive-elements-capacitors-let-s-learn-basic-electronics
2017/09/28 20:27:54
| author | gg-electronics |
| body | ### <center> <div class="pull-left">  GG electronics: Let's Learn // MiniE 2.2 <div> </center> ## <center> Recap of the previous Minie </center> Greetings, in the previous minie: We talk about "electrical resistance" and that the EIA standardized encapsulated with specific "electrical resistance" values, as well as encoding them. If you haven't read it, I invite you to read it, I assure you that you will find it very useful: https://steemit.com/education/@gg-electronics/minie-2-1-passive-elements-resistance-let-s-learn-basic-electronics-eng <center> <h3>Capacitor</h3> </center> Before defining the capacitor, I think we need to ask the following question: <center> **How does a capacitor work?**: </center> It's time for my eloquent analogies. Imagine: <center></center> In a pool are a lot of couples, boys and girls, and the lifeguard gives the order that all leave the poll, but separating the boys from the girls. The boys leave slowly and remain at one end of the pool, while the girls perform the same action but remain at the other end. After a certain time, when the order was given, the pool is totally alone, the boys at one end and the girls at the other. In this case: * The lifeguard order is, the application of a voltage on the capacitor terminals. * Boys represent the positive charge (blue) and girls the negative charge (red), not because girls are always negative ... of course not ... * The pool, is a container with water, which represents the **dielectric** that is between the ends. However water is not a dielectric. * The ends of the pool represent the places where the electrical charge is stored or remains. Then we can define that: The capacitor, in general, is a passive electronic component that has the capacity to store electric charge. This is composed of two **parallel** plates and in the middle of these two, there is a dielectric. By applying a constant voltage to the capacitor terminals, it will store the energy, separating the positive and negative charges (protons and electrons) in the plates. If this voltage is applied directly, the load is instantaneous, but if applied in an "RC" circuit the load will take a certain time. <center></center> > Below I explain, in a simple way, what is an "RC" circuit. Now, what happens to that stored energy? It depends: 1. If after you charge the capacitor, you turn off the source and leave it where it is, it will auto discharge. After a considerable time, 1 hour for example, will be discharged. 2. If after charging, disconnecting the source and connecting a "load" (that is to say, something that consumes energy), an "RC" discharge circuit will occur. Which, just as occurs in the load, the discharge will be made in a certain time. 3. If we make a short circuit between the two terminals of the capacitor, a spark will be created (be careful with capacitors with great capacity), and instantly after the spark will be discharged. > **You could explain at once what an "RC" circuit is?... !!!** Well, well, I do not want to confuse you. An "RC" circuit is a circuit that has a **R**esistance and a **C**apacitor ... Obvious right? Then with an "RC" circuit you can charge and discharge the energy stored in a capacitor in a certain time, this can be used for simple timer applications (very simple and few precise), among others. #### <center> How is a capacitor? </center> The capacitors as well as the resistors, as explained in the MiniE 2.1, are standardized by the EIA. These have different types and can vary in sizes, dielectric used, colors, shapes, etc. The most common are ceramic (NP) and electrolytic (P), are also polyester, variable, among others. <center></center> Capacitors can be polarized or non-polarized, and their typical values range from picofarads to microfarads. There are other commercial values of domestic use, in MDF (microfarads) as is the starting capacitor of the compressor of an air conditioner or a refrigerator. Polarized (P) = have a "+" end and a "-" end, already defined. If you reverse it, wait for the explosion. Non-polarized (NP) = Like a resistor, it does not matter which way it connects. I suppose that is enough for today, in the next publication comes the first example, enough theory and attack a little with practice. I hope you have been interesting the subject, do not forget to check the previous MiniE. I apologize for taking so long to publish this MiniE, I was sick and other problems were presented to me. ### Follow me, like, Reesteem, ask, comment, what your heart and mind tell you. ;) Bye. |
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| parent permlink | education |
| permlink | minie-2-2-passive-elements-capacitors-let-s-learn-basic-electronics |
| title | MiniE 2.2 Passive elements: Capacitors // Let’s learn: Basic Electronics |
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"body": "### <center> <div class=\"pull-left\">  GG electronics: Let's Learn // MiniE 2.2 <div> </center>\n\n## <center> Recap of the previous Minie </center>\n\nGreetings, in the previous minie: We talk about \"electrical resistance\" and that the EIA standardized encapsulated with specific \"electrical resistance\" values, as well as encoding them.\n\nIf you haven't read it, I invite you to read it, I assure you that you will find it very useful:\n\nhttps://steemit.com/education/@gg-electronics/minie-2-1-passive-elements-resistance-let-s-learn-basic-electronics-eng\n\n<center> <h3>Capacitor</h3> </center>\n\nBefore defining the capacitor, I think we need to ask the following question:\n<center> **How does a capacitor work?**: </center>\nIt's time for my eloquent analogies. Imagine:\n\n<center></center>\n\nIn a pool are a lot of couples, boys and girls, and the lifeguard gives the order that all leave the poll, but separating the boys from the girls. The boys leave slowly and remain at one end of the pool, while the girls perform the same action but remain at the other end. After a certain time, when the order was given, the pool is totally alone, the boys at one end and the girls at the other. In this case:\n\n* The lifeguard order is, the application of a voltage on the capacitor terminals.\n* Boys represent the positive charge (blue) and girls the negative charge (red), not because girls are always negative ... of course not ...\n* The pool, is a container with water, which represents the **dielectric** that is between the ends. However water is not a dielectric.\n* The ends of the pool represent the places where the electrical charge is stored or remains.\n\nThen we can define that: The capacitor, in general, is a passive electronic component that has the capacity to store electric charge. This is composed of two **parallel** plates and in the middle of these two, there is a dielectric.\n\nBy applying a constant voltage to the capacitor terminals, it will store the energy, separating the positive and negative charges (protons and electrons) in the plates. If this voltage is applied directly, the load is instantaneous, but if applied in an \"RC\" circuit the load will take a certain time.\n\n<center></center>\n\n> Below I explain, in a simple way, what is an \"RC\" circuit.\n\nNow, what happens to that stored energy?\n\nIt depends:\n\n1. If after you charge the capacitor, you turn off the source and leave it where it is, it will auto discharge. After a considerable time, 1 hour for example, will be discharged.\n2. If after charging, disconnecting the source and connecting a \"load\" (that is to say, something that consumes energy), an \"RC\" discharge circuit will occur. Which, just as occurs in the load, the discharge will be made in a certain time.\n3. If we make a short circuit between the two terminals of the capacitor, a spark will be created (be careful with capacitors with great capacity), and instantly after the spark will be discharged.\n\n> **You could explain at once what an \"RC\" circuit is?... !!!**\nWell, well, I do not want to confuse you. An \"RC\" circuit is a circuit that has a **R**esistance and a **C**apacitor ... Obvious right?\n\nThen with an \"RC\" circuit you can charge and discharge the energy stored in a capacitor in a certain time, this can be used for simple timer applications (very simple and few precise), among others.\n\n#### <center> How is a capacitor? </center>\nThe capacitors as well as the resistors, as explained in the MiniE 2.1, are standardized by the EIA. These have different types and can vary in sizes, dielectric used, colors, shapes, etc.\n\nThe most common are ceramic (NP) and electrolytic (P), are also polyester, variable, among others.\n\n<center></center>\n\nCapacitors can be polarized or non-polarized, and their typical values range from picofarads to microfarads. There are other commercial values of domestic use, in MDF (microfarads) as is the starting capacitor of the compressor of an air conditioner or a refrigerator.\n\nPolarized (P) = have a \"+\" end and a \"-\" end, already defined. If you reverse it, wait for the explosion. \nNon-polarized (NP) = Like a resistor, it does not matter which way it connects. \n\nI suppose that is enough for today, in the next publication comes the first example, enough theory and attack a little with practice.\n\nI hope you have been interesting the subject, do not forget to check the previous MiniE. I apologize for taking so long to publish this MiniE, I was sick and other problems were presented to me.\n\n### Follow me, like, Reesteem, ask, comment, what your heart and mind tell you. ;) Bye.",
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2017/09/28 16:29:09
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}gg-electronicsreceived 0.052 SBD, 0.061 SP author reward for @gg-electronics / my-current-experience-like-a-trainee-pdvsa-eng2017/09/28 14:33:12
gg-electronicsreceived 0.052 SBD, 0.061 SP author reward for @gg-electronics / my-current-experience-like-a-trainee-pdvsa-eng
2017/09/28 14:33:12
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2017/09/28 14:15:09
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2017/09/28 13:34:30
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| body | It's okay, no worries haha |
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2017/09/28 13:32:48
| author | gg-electronics |
| body | @@ -68,12 +68,18 @@ he b -itch. :D +each**** (%3E.%3C) |
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2017/09/28 13:32:03
| author | gg-electronics |
| body | Oh!! sh... Srry :$ |
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2017/09/28 13:04:54
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2017/09/28 13:04:45
| author | damira |
| body | You probably want to go to the beach* lol |
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2017/09/28 13:01:54
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2017/09/28 13:00:09
| author | gg-electronics |
| body | Yes, it is so sad, but I do not worry, that does not take away the fun to my days ... although, I would like a lot: to be lying in anywhere at mid nigth with my friends, talking while we contemplate the sky and a few beers. ;) |
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}gg-electronicsupvoted (100.00%) @damira / 49fmrb-color-challenge-thursday-green2017/09/28 12:52:18
gg-electronicsupvoted (100.00%) @damira / 49fmrb-color-challenge-thursday-green
2017/09/28 12:52:18
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2017/09/28 12:52:12
| author | gg-electronics |
| body | Lol, I didn't knew that. Hahaha, thats remind me... I wanna go to the bitch. :D |
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2017/09/28 12:50:39
| author | damira |
| body | @@ -95,8 +95,68 @@ careful! +It's not nice that you can't walk down the street after 6pm. |
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2017/09/28 12:50:00
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2017/09/28 12:49:54
| author | damira |
| body | Thank you for your comment;)I'm glad you haven't been in similar situation, good job on being careful! |
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"body": "Thank you for your comment;)I'm glad you haven't been in similar situation, good job on being careful!",
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2017/09/28 12:38:18
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| body | Sadly, there is no place in the world where we can be 100% safe. In my country, things are worse and here we are accustomed to value life more than material goods. Thanks to God, I have not been assaulted or occurred an event of this type, and the reason is that ... (no, I am not a hermit), every step I give, every person I see, I analyze and take my precautions. And very important, golden rule, unless you have a car, after 6 pm, it's better to be home. |
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}gg-electronicsupvoted (100.00%) @damira / a-critical-life-event-that-had-a-huge-impact-on-me2017/09/28 12:24:42
gg-electronicsupvoted (100.00%) @damira / a-critical-life-event-that-had-a-huge-impact-on-me
2017/09/28 12:24:42
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}damiraupvoted (100.00%) @gg-electronics / minie2017/09/28 12:15:57
damiraupvoted (100.00%) @gg-electronics / minie
2017/09/28 12:15:57
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}gg-electronicspublished a new post: minie2017/09/28 12:15:24
gg-electronicspublished a new post: minie
2017/09/28 12:15:24
| author | gg-electronics |
| body | # <center> <div class="pull-left">  GG electronics: Let's Learn // MiniE 2.2 <div> </center> #### <center> Recapitulación del MiniE anterior </center> Saludos, en el MiniE anterior: Hablamos de la "resistencia electrica" y que la EIA estandarizó encapsulados con valores de "resistencia electricas" fijas, además de codificarlas. Si aún no lo has leído, te invito a leerlo, te aseguro que lo encontrarás muy útil: https://steemit.com/spanish/@gg-electronics/minie-2-1-elementos-pasivos-resistencia-aprendamos-electronica-basica-esp-eng-soon <center> <h3> Capacitores </h3> </center> Antes de definir el capacitor, creo que es necesario realizarnos la siguiente pregunta: <center>**¿Cómo funciona un capacitor?**:</center> Es hora de mis elocuentes analogías. Imaginemos: <center></center> En una piscina se encuentran una gran cantidad de parejas, chicos y chicas, y el salvavidas da la orden de que todos salgan de la misma, pero separando a los chicos de las chicas. Los chicos salen poco a poco y permanecen en uno de los extremos de la piscina, mientras que las chicas realizan la misma acción pero permanecen en el otro extremo. Luego de un tiempo determinado, en que la orden se dio, la piscina queda totalmente sola, los chicos en un extremo y las chicas en el otro. En este caso: * La orden del salvavidas es, la aplicación de un voltaje en los terminales del capacitor. * Los chicos representan la carga positiva (azul) y las chicas la carga negativa (roja), no es que las chicas siempre sean negativas… para nada… * La piscina, es un contenedor con agua, el cual representa a el **dieléctrico** que se encuentra entre los extremos. Sin embargo el agua no es un dieléctrico. * Los extremos de la piscina representan los lugares en donde se almacena o permanece la carga eléctrica. Entonces podemos definir que: El capacitor, en general, es un componente electrónico pasivo que tiene la capacidad de almacenar carga eléctrica. Esta está compuesta por dos placas **paralelas** y en el medio de estas dos, se encuentra un dieléctrico. Al aplicarle una tensión constante a los terminales del capacitor, este almacenará la energía, separando la carga positiva y la negativa (protones y electrones) en las placas. Si esta tensión se aplica directamente, la carga es instantánea, pero si se aplica en un circuito “RC” la carga tardará un tiempo determinado. <center></center> > Mas abajo les explico, de manera simple, lo que es un circuito “RC”. Ahora bien, ¿qué sucede con esa energía almacenada? Depende: 1. Si luego de que cargues el capacitor, apagas la fuente y lo dejas donde está, se irá auto descargando. Al cabo de un tiempo considerable, 1 hora por ejemplo, estará descargado. 2. Si luego de cargarlo, desconectas la fuente y le conectas una “carga” (es como decir, algo que consuma energía), se producirá un circuito de descarga “RC”. El cual al igual que ocurre en la carga, la descarga se realizará en un tiempo determinado. 3. Si realizamos un cortocircuito entre los dos terminales del capacitor, se creara una chispa (tener cuidado con capacitores con gran capacidad), e instantáneamente luego de la chispa estará descargado. > **Podrías explicar de una vez que es un circuito “RC”…!!!** Bien, bien, no quiero confundirlos. Un circuito “RC” es un circuito que cuenta con una **R**esistencia y un **C**apacitor… Obvio ¿no? Entonces con un circuito “RC” se puede cargar y descargar la energía almacenada en un capacitor en un tiempo determinado, esto lo podemos usar para aplicaciones de temporizadores sencillos (muy sencillos y pocos precisos), entre otros. #### <center>¿Cómo es un capacitor?</center> Los capacitores al igual que las resistencias, cómo explique en el MiniE 2.1, están estandarizados por la EIA. Estos tienen diferentes tipos y pueden variar en tamaños, dieléctrico utilizado, colores, formas, etc. Los más comunes son los cerámicos (NP) y los electrolíticos (P), también estan los de poliester, variables, entre otros. <center></center> Los capacitores pueden ser polarizados o no polarizados, y sus valores típicos oscilan entre los picofaradios hasta los microfaradios. Hay otros valores comerciales de uso domestico, en MDF (microfaradios) como lo es el capacitor de arranque del compresor de un aire acondicionado o una nevera. Polarizado= tienen un extremo “+” y un extremo “–“fijo. Si lo conectas al revés, espera la explosión. (P) No-polarizado= Al igual que una resistencia, no importa de que forma se conecte. (NP) Supongo que es suficiente por hoy, en la próxima publicación se viene el primer ejemplo, basta de teoría y ataquemos un poco con la práctica. Espero les haya sido interesante el tema, no olviden revisar los anteriores MiniE. Pido disculpas por tardar tanto en publicar este MiniE, no estuve bien de salud y otros problemas se me presentaron. ### Siganme, like, Reesteem, pregunten, comenten, lo que tu corazón y mente te indiquen. ;) Hasta luego. |
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Imaginemos:\n\n<center></center>\n\nEn una piscina se encuentran una gran cantidad de parejas, chicos y chicas, y el salvavidas da la orden de que todos salgan de la misma, pero separando a los chicos de las chicas. Los chicos salen poco a poco y permanecen en uno de los extremos de la piscina, mientras que las chicas realizan la misma acción pero permanecen en el otro extremo. Luego de un tiempo determinado, en que la orden se dio, la piscina queda totalmente sola, los chicos en un extremo y las chicas en el otro. En este caso:\n\n* La orden del salvavidas es, la aplicación de un voltaje en los terminales del capacitor.\n* Los chicos representan la carga positiva (azul) y las chicas la carga negativa (roja), no es que las chicas siempre sean negativas… para nada…\n* La piscina, es un contenedor con agua, el cual representa a el **dieléctrico** que se encuentra entre los extremos. 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Si esta tensión se aplica directamente, la carga es instantánea, pero si se aplica en un circuito “RC” la carga tardará un tiempo determinado.\n\n<center></center>\n\n> Mas abajo les explico, de manera simple, lo que es un circuito “RC”. \n\nAhora bien, ¿qué sucede con esa energía almacenada?\n\nDepende:\n\n1.\tSi luego de que cargues el capacitor, apagas la fuente y lo dejas donde está, se irá auto descargando. Al cabo de un tiempo considerable, 1 hora por ejemplo, estará descargado.\n2.\tSi luego de cargarlo, desconectas la fuente y le conectas una “carga” (es como decir, algo que consuma energía), se producirá un circuito de descarga “RC”. El cual al igual que ocurre en la carga, la descarga se realizará en un tiempo determinado.\n3.\tSi realizamos un cortocircuito entre los dos terminales del capacitor, se creara una chispa (tener cuidado con capacitores con gran capacidad), e instantáneamente luego de la chispa estará descargado. \n\n> **Podrías explicar de una vez que es un circuito “RC”…!!!**\nBien, bien, no quiero confundirlos. Un circuito “RC” es un circuito que cuenta con una **R**esistencia y un **C**apacitor… Obvio ¿no?\n\nEntonces con un circuito “RC” se puede cargar y descargar la energía almacenada en un capacitor en un tiempo determinado, esto lo podemos usar para aplicaciones de temporizadores sencillos (muy sencillos y pocos precisos), entre otros.\n\n#### <center>¿Cómo es un capacitor?</center>\nLos capacitores al igual que las resistencias, cómo explique en el MiniE 2.1, están estandarizados por la EIA. Estos tienen diferentes tipos y pueden variar en tamaños, dieléctrico utilizado, colores, formas, etc.\n\nLos más comunes son los cerámicos (NP) y los electrolíticos (P), también estan los de poliester, variables, entre otros.\n\n<center></center>\n\nLos capacitores pueden ser polarizados o no polarizados, y sus valores típicos oscilan entre los picofaradios hasta los microfaradios. Hay otros valores comerciales de uso domestico, en MDF (microfaradios) como lo es el capacitor de arranque del compresor de un aire acondicionado o una nevera.\n\nPolarizado= tienen un extremo “+” y un extremo “–“fijo. Si lo conectas al revés, espera la explosión. (P)\nNo-polarizado= Al igual que una resistencia, no importa de que forma se conecte. (NP)\n\nSupongo que es suficiente por hoy, en la próxima publicación se viene el primer ejemplo, basta de teoría y ataquemos un poco con la práctica. \n\nEspero les haya sido interesante el tema, no olviden revisar los anteriores MiniE. 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gg-electronicspublished a new post: minie
2017/09/28 12:13:45
| author | gg-electronics |
| body | # <center> <div class="pull-left">  GG electronics: Let's Learn // MiniE 2.2 <div> </center> #### <center> Recapitulación del MiniE anterior </center> Saludos, en el MiniE anterior: Hablamos de la "resistencia electrica" y que la EIA estandarizó encapsulados con valores de "resistencia electricas" fijas, además de codificarlas. Si aún no lo has leído, te invito a leerlo, te aseguro que lo encontrarás muy útil: https://steemit.com/spanish/@gg-electronics/minie-2-1-elementos-pasivos-resistencia-aprendamos-electronica-basica-esp-eng-soon <center> <h3> Capacitores </h3> </center> Antes de definir el capacitor, creo que es necesario realizarnos la siguiente pregunta: <center>**¿Cómo funciona un capacitor?**:</center> Es hora de mis elocuentes analogías. Imaginemos: <center></center> En una piscina se encuentran una gran cantidad de parejas, chicos y chicas, y el salvavidas da la orden de que todos salgan de la misma, pero separando a los chicos de las chicas. Los chicos salen poco a poco y permanecen en uno de los extremos de la piscina, mientras que las chicas realizan la misma acción pero permanecen en el otro extremo. Luego de un tiempo determinado, en que la orden se dio, la piscina queda totalmente sola, los chicos en un extremo y las chicas en el otro. En este caso: * La orden del salvavidas es, la aplicación de un voltaje en los terminales del capacitor. * Los chicos representan la carga positiva (azul) y las chicas la carga negativa (roja), no es que las chicas siempre sean negativas… para nada… * La piscina, es un contenedor con agua, el cual representa a el **dieléctrico** que se encuentra entre los extremos. Sin embargo el agua no es un dieléctrico. * Los extremos de la piscina representan los lugares en donde se almacena o permanece la carga eléctrica. Entonces podemos definir que: El capacitor, en general, es un componente electrónico pasivo que tiene la capacidad de almacenar carga eléctrica. Esta está compuesta por dos placas **paralelas** y en el medio de estas dos, se encuentra un dieléctrico. Al aplicarle una tensión constante a los terminales del capacitor, este almacenará la energía, separando la carga positiva y la negativa (protones y electrones) en las placas. Si esta tensión se aplica directamente, la carga es instantánea, pero si se aplica en un circuito “RC” la carga tardará un tiempo determinado. <center></center> > Mas abajo les explico, de manera simple, lo que es un circuito “RC”. Ahora bien, ¿qué sucede con esa energía almacenada? Depende: 1. Si luego de que cargues el capacitor, apagas la fuente y lo dejas donde está, se irá auto descargando. Al cabo de un tiempo considerable, 1 hora por ejemplo, estará descargado. 2. Si luego de cargarlo, desconectas la fuente y le conectas una “carga” (es como decir, algo que consuma energía), se producirá un circuito de descarga “RC”. El cual al igual que ocurre en la carga, la descarga se realizará en un tiempo determinado. 3. Si realizamos un cortocircuito entre los dos terminales del capacitor, se creara una chispa (tener cuidado con capacitores con gran capacidad), e instantáneamente luego de la chispa estará descargado. > **Podrías explicar de una vez que es un circuito “RC”…!!!** Bien, bien, no quiero confundirlos. Un circuito “RC” es un circuito que cuenta con una **R**esistencia y un **C**apacitor… Obvio ¿no? Entonces con un circuito “RC” se puede cargar y descargar la energía almacenada en un capacitor en un tiempo determinado, esto lo podemos usar para aplicaciones de temporizadores sencillos (muy sencillos y pocos precisos), entre otros. #### <center>¿Cómo es un capacitor?</center> Los capacitores al igual que las resistencias, cómo explique en el MiniE 2.1, están estandarizados por la EIA. Estos tienen diferentes tipos y pueden variar en tamaños, dieléctrico utilizado, colores, formas, etc. Los más comunes son los cerámicos (NP) y los electrolíticos (P), también estan los de poliester, variables, entre otros. <center></center> Los capacitores pueden ser polarizados o no polarizados, y sus valores típicos oscilan entre los picofaradios hasta los microfaradios. Hay otros valores comerciales de uso domestico, en MDF (microfaradios) como lo es el capacitor de arranque del compresor de un aire acondicionado o una nevera. Polarizado= tienen un extremo “+” y un extremo “–“fijo. Si lo conectas al revés, espera la explosión. (P) No-polarizado= Al igual que una resistencia, no importa de que forma se conecte. (NP) Supongo que es suficiente por hoy, en la próxima publicación se viene el primer ejemplo, basta de teoría y ataquemos un poco con la práctica. Espero les haya sido interesante el tema, no olviden revisar los anteriores MiniE. Pido disculpas por tardar tanto en publicar este MiniE, no estuve bien de salud y otros problemas se me presentaron. ### Siganme, like, Reesteem, pregunten, comenten, lo que tu corazón y mente te indiquen. ;) Hasta luego. |
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"body": "# <center> <div class=\"pull-left\">  GG electronics: Let's Learn // MiniE 2.2 <div> </center>\n\n#### <center> Recapitulación del MiniE anterior </center> \n\nSaludos, en el MiniE anterior: Hablamos de la \"resistencia electrica\" y que la EIA estandarizó encapsulados con valores de \"resistencia electricas\" fijas, además de codificarlas. \n\nSi aún no lo has leído, te invito a leerlo, te aseguro que lo encontrarás muy útil: \n\nhttps://steemit.com/spanish/@gg-electronics/minie-2-1-elementos-pasivos-resistencia-aprendamos-electronica-basica-esp-eng-soon\n\n<center> <h3> Capacitores </h3> </center>\n\nAntes de definir el capacitor, creo que es necesario realizarnos la siguiente pregunta: \n<center>**¿Cómo funciona un capacitor?**:</center>\nEs hora de mis elocuentes analogías. Imaginemos:\n\n<center></center>\n\nEn una piscina se encuentran una gran cantidad de parejas, chicos y chicas, y el salvavidas da la orden de que todos salgan de la misma, pero separando a los chicos de las chicas. Los chicos salen poco a poco y permanecen en uno de los extremos de la piscina, mientras que las chicas realizan la misma acción pero permanecen en el otro extremo. Luego de un tiempo determinado, en que la orden se dio, la piscina queda totalmente sola, los chicos en un extremo y las chicas en el otro. En este caso:\n\n* La orden del salvavidas es, la aplicación de un voltaje en los terminales del capacitor.\n* Los chicos representan la carga positiva (azul) y las chicas la carga negativa (roja), no es que las chicas siempre sean negativas… para nada…\n* La piscina, es un contenedor con agua, el cual representa a el **dieléctrico** que se encuentra entre los extremos. Sin embargo el agua no es un dieléctrico. \n* Los extremos de la piscina representan los lugares en donde se almacena o permanece la carga eléctrica. \n\nEntonces podemos definir que: El capacitor, en general, es un componente electrónico pasivo que tiene la capacidad de almacenar carga eléctrica. Esta está compuesta por dos placas **paralelas** y en el medio de estas dos, se encuentra un dieléctrico. \n\nAl aplicarle una tensión constante a los terminales del capacitor, este almacenará la energía, separando la carga positiva y la negativa (protones y electrones) en las placas. Si esta tensión se aplica directamente, la carga es instantánea, pero si se aplica en un circuito “RC” la carga tardará un tiempo determinado.\n\n<center></center>\n\n> Mas abajo les explico, de manera simple, lo que es un circuito “RC”. \n\nAhora bien, ¿qué sucede con esa energía almacenada?\n\nDepende:\n\n1.\tSi luego de que cargues el capacitor, apagas la fuente y lo dejas donde está, se irá auto descargando. Al cabo de un tiempo considerable, 1 hora por ejemplo, estará descargado.\n2.\tSi luego de cargarlo, desconectas la fuente y le conectas una “carga” (es como decir, algo que consuma energía), se producirá un circuito de descarga “RC”. El cual al igual que ocurre en la carga, la descarga se realizará en un tiempo determinado.\n3.\tSi realizamos un cortocircuito entre los dos terminales del capacitor, se creara una chispa (tener cuidado con capacitores con gran capacidad), e instantáneamente luego de la chispa estará descargado. \n\n> **Podrías explicar de una vez que es un circuito “RC”…!!!**\nBien, bien, no quiero confundirlos. Un circuito “RC” es un circuito que cuenta con una **R**esistencia y un **C**apacitor… Obvio ¿no?\n\nEntonces con un circuito “RC” se puede cargar y descargar la energía almacenada en un capacitor en un tiempo determinado, esto lo podemos usar para aplicaciones de temporizadores sencillos (muy sencillos y pocos precisos), entre otros.\n\n#### <center>¿Cómo es un capacitor?</center>\nLos capacitores al igual que las resistencias, cómo explique en el MiniE 2.1, están estandarizados por la EIA. Estos tienen diferentes tipos y pueden variar en tamaños, dieléctrico utilizado, colores, formas, etc.\n\nLos más comunes son los cerámicos (NP) y los electrolíticos (P), también estan los de poliester, variables, entre otros.\n\n<center></center>\n\nLos capacitores pueden ser polarizados o no polarizados, y sus valores típicos oscilan entre los picofaradios hasta los microfaradios. Hay otros valores comerciales de uso domestico, en MDF (microfaradios) como lo es el capacitor de arranque del compresor de un aire acondicionado o una nevera.\n\nPolarizado= tienen un extremo “+” y un extremo “–“fijo. Si lo conectas al revés, espera la explosión. (P)\nNo-polarizado= Al igual que una resistencia, no importa de que forma se conecte. (NP)\n\nSupongo que es suficiente por hoy, en la próxima publicación se viene el primer ejemplo, basta de teoría y ataquemos un poco con la práctica. \n\nEspero les haya sido interesante el tema, no olviden revisar los anteriores MiniE. Pido disculpas por tardar tanto en publicar este MiniE, no estuve bien de salud y otros problemas se me presentaron. \n\n### Siganme, like, Reesteem, pregunten, comenten, lo que tu corazón y mente te indiquen. ;) Hasta luego.",
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01.cervantes |
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[ "cervantes", "steemitboard" ]