Ecoer Logo
VOTING POWER100.00%
DOWNVOTE POWER100.00%
RESOURCE CREDITS100.00%
REPUTATION PROGRESS80.12%
Net Worth
2.052USD
STEEM
27.246STEEM
SBD
0.220SBD
Own SP
6.304SP

Detailed Balance

STEEM
balance
27.246STEEM
market_balance
0.000STEEM
savings_balance
0.000STEEM
reward_steem_balance
0.000STEEM
STEEM POWER
Own SP
6.304SP
Delegated Out
0.000SP
Delegation In
0.000SP
Effective Power
6.304SP
Reward SP (pending)
0.000SP
SBD
sbd_balance
0.220SBD
sbd_conversions
0.000SBD
sbd_market_balance
0.000SBD
savings_sbd_balance
0.000SBD
reward_sbd_balance
0.000SBD
{
  "balance": "27.246 STEEM",
  "savings_balance": "0.000 STEEM",
  "reward_steem_balance": "0.000 STEEM",
  "vesting_shares": "10252.801393 VESTS",
  "delegated_vesting_shares": "0.000000 VESTS",
  "received_vesting_shares": "0.000000 VESTS",
  "sbd_balance": "0.220 SBD",
  "savings_sbd_balance": "0.000 SBD",
  "reward_sbd_balance": "0.000 SBD",
  "conversions": []
}

Account Info

namejohanbogg
id106433
rank193,378
reputation264454670133
created2016-10-22T20:44:54
recovery_accountsteem
proxyNone
post_count3
comment_count0
lifetime_vote_count0
witnesses_voted_for0
last_post2016-10-24T09:16:42
last_root_post2016-10-24T09:16:42
last_vote_time2016-10-24T11:32:24
proxied_vsf_votes0, 0, 0, 0
can_vote1
voting_power9,950
delayed_votes0
balance27.246 STEEM
savings_balance0.000 STEEM
sbd_balance0.220 SBD
savings_sbd_balance0.000 SBD
vesting_shares10252.801393 VESTS
delegated_vesting_shares0.000000 VESTS
received_vesting_shares0.000000 VESTS
reward_vesting_balance0.000000 VESTS
vesting_balance0.000 STEEM
vesting_withdraw_rate0.000000 VESTS
next_vesting_withdrawal1969-12-31T23:59:59
withdrawn55437284349
to_withdraw55437284349
withdraw_routes0
savings_withdraw_requests0
last_account_recovery1970-01-01T00:00:00
reset_accountnull
last_owner_update1970-01-01T00:00:00
last_account_update1970-01-01T00:00:00
minedNo
sbd_seconds0
sbd_last_interest_payment2016-10-25T09:51:48
savings_sbd_last_interest_payment1970-01-01T00:00:00
{
  "active": {
    "account_auths": [],
    "key_auths": [
      [
        "STM6eX6FjxrzGDtGeRn4qcUR67Bn4mgAMuXs6HYSczoBHwg2kZcys",
        1
      ]
    ],
    "weight_threshold": 1
  },
  "balance": "27.246 STEEM",
  "can_vote": true,
  "comment_count": 0,
  "created": "2016-10-22T20:44:54",
  "curation_rewards": 0,
  "delegated_vesting_shares": "0.000000 VESTS",
  "downvote_manabar": {
    "current_mana": 0,
    "last_update_time": 1477169094
  },
  "guest_bloggers": [],
  "id": 106433,
  "json_metadata": "",
  "last_account_recovery": "1970-01-01T00:00:00",
  "last_account_update": "1970-01-01T00:00:00",
  "last_owner_update": "1970-01-01T00:00:00",
  "last_post": "2016-10-24T09:16:42",
  "last_root_post": "2016-10-24T09:16:42",
  "last_vote_time": "2016-10-24T11:32:24",
  "lifetime_vote_count": 0,
  "market_history": [],
  "memo_key": "STM79vmgwesizpEGj99oyAUsxon1uwxHYoGkV8yFUrKb3bgdxCQDr",
  "mined": false,
  "name": "johanbogg",
  "next_vesting_withdrawal": "1969-12-31T23:59:59",
  "other_history": [],
  "owner": {
    "account_auths": [],
    "key_auths": [
      [
        "STM544eHQvmQLEygccJjwxHPUAPoz8CZFxyXqKrCnBd3o1ty3n2zC",
        1
      ]
    ],
    "weight_threshold": 1
  },
  "pending_claimed_accounts": 0,
  "post_bandwidth": 10000,
  "post_count": 3,
  "post_history": [],
  "posting": {
    "account_auths": [],
    "key_auths": [
      [
        "STM6wDiAoR9opKmjca73rR7Q29yicEkVTzp9qN4HbjGHK8vvi9Utn",
        1
      ]
    ],
    "weight_threshold": 1
  },
  "posting_json_metadata": "",
  "posting_rewards": 17482,
  "proxied_vsf_votes": [
    0,
    0,
    0,
    0
  ],
  "proxy": "",
  "received_vesting_shares": "0.000000 VESTS",
  "recovery_account": "steem",
  "reputation": "264454670133",
  "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": "0.220 SBD",
  "sbd_last_interest_payment": "2016-10-25T09:51:48",
  "sbd_seconds": "0",
  "sbd_seconds_last_update": "2016-10-25T09:51:48",
  "tags_usage": [],
  "to_withdraw": "55437284349",
  "transfer_history": [],
  "vesting_balance": "0.000 STEEM",
  "vesting_shares": "10252.801393 VESTS",
  "vesting_withdraw_rate": "0.000000 VESTS",
  "vote_history": [],
  "voting_manabar": {
    "current_mana": 9950,
    "last_update_time": 1477308744
  },
  "voting_power": 9950,
  "withdraw_routes": 0,
  "withdrawn": "55437284349",
  "witness_votes": [],
  "witnesses_voted_for": 0,
  "rank": 193378
}

Withdraw Routes

IncomingOutgoing
Empty
Empty
{
  "incoming": [],
  "outgoing": []
}
From Date
To Date
2019/10/22 21:54:09
authorsteemitboard
bodyCongratulations @johanbogg! You received a personal award! <table><tr><td>https://steemitimages.com/70x70/http://steemitboard.com/@johanbogg/birthday3.png</td><td>Happy Birthday! - You are on the Steem blockchain for 3 years!</td></tr></table> <sub>_You can view [your badges on your Steem Board](https://steemitboard.com/@johanbogg) and compare to others on the [Steem Ranking](https://steemitboard.com/ranking/index.php?name=johanbogg)_</sub> **Do not miss the last post from @steemitboard:** <table><tr><td><a href="https://steemit.com/steemfest/@steemitboard/steemfest-commemorative-badge-refactored"><img src="https://steemitimages.com/64x128/https://files.steempeak.com/file/steempeak/arcange/YqQV5Tbj-image.png"></a></td><td><a href="https://steemit.com/steemfest/@steemitboard/steemfest-commemorative-badge-refactored">SteemFest⁴ commemorative badge refactored</a></td></tr></table> ###### [Vote for @Steemitboard as a witness](https://v2.steemconnect.com/sign/account-witness-vote?witness=steemitboard&approve=1) to get one more award and increased upvotes!
json metadata{"image":["https://steemitboard.com/img/notify.png"]}
parent authorjohanbogg
parent permlinkthe-road-to-ccna-part-1-osi-model-layer-1
permlinksteemitboard-notify-johanbogg-20191022t215408000z
title
Transaction InfoBlock #37517599/Trx 47ce2bed897a18f74f0ecc0793528ab309603a5c
View Raw JSON Data
{
  "block": 37517599,
  "op": [
    "comment",
    {
      "author": "steemitboard",
      "body": "Congratulations @johanbogg! You received a personal award!\n\n<table><tr><td>https://steemitimages.com/70x70/http://steemitboard.com/@johanbogg/birthday3.png</td><td>Happy Birthday! - You are on the Steem blockchain for 3 years!</td></tr></table>\n\n<sub>_You can view [your badges on your Steem Board](https://steemitboard.com/@johanbogg) and compare to others on the [Steem Ranking](https://steemitboard.com/ranking/index.php?name=johanbogg)_</sub>\n\n\n**Do not miss the last post from @steemitboard:**\n<table><tr><td><a href=\"https://steemit.com/steemfest/@steemitboard/steemfest-commemorative-badge-refactored\"><img src=\"https://steemitimages.com/64x128/https://files.steempeak.com/file/steempeak/arcange/YqQV5Tbj-image.png\"></a></td><td><a href=\"https://steemit.com/steemfest/@steemitboard/steemfest-commemorative-badge-refactored\">SteemFest⁴  commemorative badge refactored</a></td></tr></table>\n\n###### [Vote for @Steemitboard as a witness](https://v2.steemconnect.com/sign/account-witness-vote?witness=steemitboard&approve=1) to get one more award and increased upvotes!",
      "json_metadata": "{\"image\":[\"https://steemitboard.com/img/notify.png\"]}",
      "parent_author": "johanbogg",
      "parent_permlink": "the-road-to-ccna-part-1-osi-model-layer-1",
      "permlink": "steemitboard-notify-johanbogg-20191022t215408000z",
      "title": ""
    }
  ],
  "op_in_trx": 0,
  "timestamp": "2019-10-22T21:54:09",
  "trx_id": "47ce2bed897a18f74f0ecc0793528ab309603a5c",
  "trx_in_block": 7,
  "virtual_op": 0
}
2018/10/23 09:08:36
authorsteemitboard
bodyCongratulations @johanbogg! You have received a personal award! [![](https://steemitimages.com/70x70/http://steemitboard.com/@johanbogg/birthday2.png)](http://steemitboard.com/@johanbogg) 2 Years 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-ranking-update-resteem-and-resteemed-added"><img src="https://steemitimages.com/64x128/https://cdn.steemitimages.com/DQmfRVpHQhLDhnjDtqck8GPv9NPvNKPfMsDaAFDE1D9Er2Z/header_ranking.png"></a></td><td><a href="https://steemit.com/steemitboard/@steemitboard/steemitboard-ranking-update-resteem-and-resteemed-added">SteemitBoard Ranking update - Resteem and Resteemed added</a></td></tr></table> > Support [SteemitBoard's project](https://steemit.com/@steemitboard)! **[Vote for its witness](https://v2.steemconnect.com/sign/account-witness-vote?witness=steemitboard&approve=1)** and **get one more award**!
json metadata{"image":["https://steemitboard.com/img/notify.png"]}
parent authorjohanbogg
parent permlinkthe-road-to-ccna-part-1-osi-model-layer-1
permlinksteemitboard-notify-johanbogg-20181023t090837000z
title
Transaction InfoBlock #27055386/Trx 1ba5fa0a1a0e3214fb7fd19d48815630c36d6603
View Raw JSON Data
{
  "block": 27055386,
  "op": [
    "comment",
    {
      "author": "steemitboard",
      "body": "Congratulations @johanbogg! You have received a personal award!\n\n[![](https://steemitimages.com/70x70/http://steemitboard.com/@johanbogg/birthday2.png)](http://steemitboard.com/@johanbogg)  2 Years 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-ranking-update-resteem-and-resteemed-added\"><img src=\"https://steemitimages.com/64x128/https://cdn.steemitimages.com/DQmfRVpHQhLDhnjDtqck8GPv9NPvNKPfMsDaAFDE1D9Er2Z/header_ranking.png\"></a></td><td><a href=\"https://steemit.com/steemitboard/@steemitboard/steemitboard-ranking-update-resteem-and-resteemed-added\">SteemitBoard Ranking update - Resteem and Resteemed added</a></td></tr></table>\n\n> Support [SteemitBoard's project](https://steemit.com/@steemitboard)! **[Vote for its witness](https://v2.steemconnect.com/sign/account-witness-vote?witness=steemitboard&approve=1)** and **get one more award**!",
      "json_metadata": "{\"image\":[\"https://steemitboard.com/img/notify.png\"]}",
      "parent_author": "johanbogg",
      "parent_permlink": "the-road-to-ccna-part-1-osi-model-layer-1",
      "permlink": "steemitboard-notify-johanbogg-20181023t090837000z",
      "title": ""
    }
  ],
  "op_in_trx": 0,
  "timestamp": "2018-10-23T09:08:36",
  "trx_id": "1ba5fa0a1a0e3214fb7fd19d48815630c36d6603",
  "trx_in_block": 41,
  "virtual_op": 0
}
johanboggreceived 0.000 STEEM from power down installment (0.000 SP)
2018/03/30 10:39:18
deposited0.000 STEEM
from accountjohanbogg
to accountjohanbogg
withdrawn0.000005 VESTS
Transaction InfoBlock #21125574/Virtual Operation #13
View Raw JSON Data
{
  "block": 21125574,
  "op": [
    "fill_vesting_withdraw",
    {
      "deposited": "0.000 STEEM",
      "from_account": "johanbogg",
      "to_account": "johanbogg",
      "withdrawn": "0.000005 VESTS"
    }
  ],
  "op_in_trx": 0,
  "timestamp": "2018-03-30T10:39:18",
  "trx_id": "0000000000000000000000000000000000000000",
  "trx_in_block": 4294967295,
  "virtual_op": 13
}
johanboggreceived 2.089 STEEM from power down installment (2.622 SP)
2018/03/23 10:39:18
deposited2.089 STEEM
from accountjohanbogg
to accountjohanbogg
withdrawn4264.406488 VESTS
Transaction InfoBlock #20924043/Virtual Operation #6
View Raw JSON Data
{
  "block": 20924043,
  "op": [
    "fill_vesting_withdraw",
    {
      "deposited": "2.089 STEEM",
      "from_account": "johanbogg",
      "to_account": "johanbogg",
      "withdrawn": "4264.406488 VESTS"
    }
  ],
  "op_in_trx": 0,
  "timestamp": "2018-03-23T10:39:18",
  "trx_id": "0000000000000000000000000000000000000000",
  "trx_in_block": 4294967295,
  "virtual_op": 6
}
johanboggreceived 2.088 STEEM from power down installment (2.622 SP)
2018/03/16 10:39:18
deposited2.088 STEEM
from accountjohanbogg
to accountjohanbogg
withdrawn4264.406488 VESTS
Transaction InfoBlock #20723292/Virtual Operation #5
View Raw JSON Data
{
  "block": 20723292,
  "op": [
    "fill_vesting_withdraw",
    {
      "deposited": "2.088 STEEM",
      "from_account": "johanbogg",
      "to_account": "johanbogg",
      "withdrawn": "4264.406488 VESTS"
    }
  ],
  "op_in_trx": 0,
  "timestamp": "2018-03-16T10:39:18",
  "trx_id": "0000000000000000000000000000000000000000",
  "trx_in_block": 4294967295,
  "virtual_op": 5
}
johanboggreceived 2.088 STEEM from power down installment (2.622 SP)
2018/03/09 10:39:18
deposited2.088 STEEM
from accountjohanbogg
to accountjohanbogg
withdrawn4264.406488 VESTS
Transaction InfoBlock #20522002/Virtual Operation #9
View Raw JSON Data
{
  "block": 20522002,
  "op": [
    "fill_vesting_withdraw",
    {
      "deposited": "2.088 STEEM",
      "from_account": "johanbogg",
      "to_account": "johanbogg",
      "withdrawn": "4264.406488 VESTS"
    }
  ],
  "op_in_trx": 0,
  "timestamp": "2018-03-09T10:39:18",
  "trx_id": "0000000000000000000000000000000000000000",
  "trx_in_block": 4294967295,
  "virtual_op": 9
}
johanboggreceived 2.087 STEEM from power down installment (2.622 SP)
2018/03/02 10:39:18
deposited2.087 STEEM
from accountjohanbogg
to accountjohanbogg
withdrawn4264.406488 VESTS
Transaction InfoBlock #20320582/Virtual Operation #29
View Raw JSON Data
{
  "block": 20320582,
  "op": [
    "fill_vesting_withdraw",
    {
      "deposited": "2.087 STEEM",
      "from_account": "johanbogg",
      "to_account": "johanbogg",
      "withdrawn": "4264.406488 VESTS"
    }
  ],
  "op_in_trx": 0,
  "timestamp": "2018-03-02T10:39:18",
  "trx_id": "0000000000000000000000000000000000000000",
  "trx_in_block": 4294967295,
  "virtual_op": 29
}
johanboggreceived 2.086 STEEM from power down installment (2.622 SP)
2018/02/23 10:39:18
deposited2.086 STEEM
from accountjohanbogg
to accountjohanbogg
withdrawn4264.406488 VESTS
Transaction InfoBlock #20119209/Virtual Operation #26
View Raw JSON Data
{
  "block": 20119209,
  "op": [
    "fill_vesting_withdraw",
    {
      "deposited": "2.086 STEEM",
      "from_account": "johanbogg",
      "to_account": "johanbogg",
      "withdrawn": "4264.406488 VESTS"
    }
  ],
  "op_in_trx": 0,
  "timestamp": "2018-02-23T10:39:18",
  "trx_id": "0000000000000000000000000000000000000000",
  "trx_in_block": 4294967295,
  "virtual_op": 26
}
johanboggreceived 2.085 STEEM from power down installment (2.622 SP)
2018/02/16 10:39:18
deposited2.085 STEEM
from accountjohanbogg
to accountjohanbogg
withdrawn4264.406488 VESTS
Transaction InfoBlock #19917678/Virtual Operation #33
View Raw JSON Data
{
  "block": 19917678,
  "op": [
    "fill_vesting_withdraw",
    {
      "deposited": "2.085 STEEM",
      "from_account": "johanbogg",
      "to_account": "johanbogg",
      "withdrawn": "4264.406488 VESTS"
    }
  ],
  "op_in_trx": 0,
  "timestamp": "2018-02-16T10:39:18",
  "trx_id": "0000000000000000000000000000000000000000",
  "trx_in_block": 4294967295,
  "virtual_op": 33
}
johanboggreceived 2.085 STEEM from power down installment (2.622 SP)
2018/02/09 10:39:18
deposited2.085 STEEM
from accountjohanbogg
to accountjohanbogg
withdrawn4264.406488 VESTS
Transaction InfoBlock #19716249/Virtual Operation #25
View Raw JSON Data
{
  "block": 19716249,
  "op": [
    "fill_vesting_withdraw",
    {
      "deposited": "2.085 STEEM",
      "from_account": "johanbogg",
      "to_account": "johanbogg",
      "withdrawn": "4264.406488 VESTS"
    }
  ],
  "op_in_trx": 0,
  "timestamp": "2018-02-09T10:39:18",
  "trx_id": "0000000000000000000000000000000000000000",
  "trx_in_block": 4294967295,
  "virtual_op": 25
}
johanboggreceived 2.084 STEEM from power down installment (2.622 SP)
2018/02/02 10:39:18
deposited2.084 STEEM
from accountjohanbogg
to accountjohanbogg
withdrawn4264.406488 VESTS
Transaction InfoBlock #19515099/Virtual Operation #60
View Raw JSON Data
{
  "block": 19515099,
  "op": [
    "fill_vesting_withdraw",
    {
      "deposited": "2.084 STEEM",
      "from_account": "johanbogg",
      "to_account": "johanbogg",
      "withdrawn": "4264.406488 VESTS"
    }
  ],
  "op_in_trx": 0,
  "timestamp": "2018-02-02T10:39:18",
  "trx_id": "0000000000000000000000000000000000000000",
  "trx_in_block": 4294967295,
  "virtual_op": 60
}
johanboggreceived 2.083 STEEM from power down installment (2.622 SP)
2018/01/26 10:39:18
deposited2.083 STEEM
from accountjohanbogg
to accountjohanbogg
withdrawn4264.406488 VESTS
Transaction InfoBlock #19313694/Virtual Operation #15
View Raw JSON Data
{
  "block": 19313694,
  "op": [
    "fill_vesting_withdraw",
    {
      "deposited": "2.083 STEEM",
      "from_account": "johanbogg",
      "to_account": "johanbogg",
      "withdrawn": "4264.406488 VESTS"
    }
  ],
  "op_in_trx": 0,
  "timestamp": "2018-01-26T10:39:18",
  "trx_id": "0000000000000000000000000000000000000000",
  "trx_in_block": 4294967295,
  "virtual_op": 15
}
johanboggreceived 2.082 STEEM from power down installment (2.622 SP)
2018/01/19 10:39:18
deposited2.082 STEEM
from accountjohanbogg
to accountjohanbogg
withdrawn4264.406488 VESTS
Transaction InfoBlock #19112187/Virtual Operation #13
View Raw JSON Data
{
  "block": 19112187,
  "op": [
    "fill_vesting_withdraw",
    {
      "deposited": "2.082 STEEM",
      "from_account": "johanbogg",
      "to_account": "johanbogg",
      "withdrawn": "4264.406488 VESTS"
    }
  ],
  "op_in_trx": 0,
  "timestamp": "2018-01-19T10:39:18",
  "trx_id": "0000000000000000000000000000000000000000",
  "trx_in_block": 4294967295,
  "virtual_op": 13
}
johanboggreceived 2.082 STEEM from power down installment (2.622 SP)
2018/01/12 10:39:18
deposited2.082 STEEM
from accountjohanbogg
to accountjohanbogg
withdrawn4264.406488 VESTS
Transaction InfoBlock #18910740/Virtual Operation #23
View Raw JSON Data
{
  "block": 18910740,
  "op": [
    "fill_vesting_withdraw",
    {
      "deposited": "2.082 STEEM",
      "from_account": "johanbogg",
      "to_account": "johanbogg",
      "withdrawn": "4264.406488 VESTS"
    }
  ],
  "op_in_trx": 0,
  "timestamp": "2018-01-12T10:39:18",
  "trx_id": "0000000000000000000000000000000000000000",
  "trx_in_block": 4294967295,
  "virtual_op": 23
}
johanboggreceived 2.081 STEEM from power down installment (2.622 SP)
2018/01/05 10:39:18
deposited2.081 STEEM
from accountjohanbogg
to accountjohanbogg
withdrawn4264.406488 VESTS
Transaction InfoBlock #18709306/Virtual Operation #14
View Raw JSON Data
{
  "block": 18709306,
  "op": [
    "fill_vesting_withdraw",
    {
      "deposited": "2.081 STEEM",
      "from_account": "johanbogg",
      "to_account": "johanbogg",
      "withdrawn": "4264.406488 VESTS"
    }
  ],
  "op_in_trx": 0,
  "timestamp": "2018-01-05T10:39:18",
  "trx_id": "0000000000000000000000000000000000000000",
  "trx_in_block": 4294967295,
  "virtual_op": 14
}
johanboggreceived 2.080 STEEM from power down installment (2.622 SP)
2017/12/29 10:39:18
deposited2.080 STEEM
from accountjohanbogg
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johanboggstarted power down of 34.086 SP
2017/12/22 10:39:18
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2017/12/09 08:50:51
authorjohanbogg
permlinkthe-road-to-ccna-part-1-osi-model-layer-1
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2017/10/22 21:56:30
authorsteemitboard
bodyCongratulations @johanbogg! You have received a personal award! [![](https://steemitimages.com/70x70/http://steemitboard.com/@johanbogg/birthday1.png)](http://steemitboard.com/@johanbogg) Happy Birthday - 1 Year on Steemit Happy Birthday - 1 Year on Steemit Click on the badge to view your own Board of Honor on SteemitBoard. For more information about this award, click [here](https://steemit.com/steemitboard/@steemitboard/steemitboard-update-8-happy-birthday) > By upvoting this notification, you can help all Steemit users. Learn how [here](https://steemit.com/steemitboard/@steemitboard/http-i-cubeupload-com-7ciqeo-png)!
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2017/08/08 21:43:39
authorclawimdehri
bodyInteresting thoughts
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2016/10/26 18:54:15
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johanboggreceived 0.146 STEEM, 0.004 SBD, 0.259 SP author reward for @johanbogg / the-road-to-ccna-part-1-osi-model-layer-1
2016/10/25 09:51:48
authorjohanbogg
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Transaction InfoBlock #6138085/Virtual Operation #7
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2016/10/24 11:44:48
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2016/10/24 11:43:18
authorjohanbogg
bodyHi, My name is Johan (the user name gives it away), I live in Sweden and I'm (as of writing this) 33 years old. So, now when we have done the "standard" phrase let me write a bit more interesting stuff. This is me: ![johanbogg](https://s11.postimg.org/6g6fm1j9v/IMG_0025.jpg) I'm, in some weird way, a workaholic which in the same time is a major procrastinator. I literally always have my work smartphone by my side, and can answer work related e-mails in the middle of the night or during family dinners on a sunday. But at the same time I can spend an entire work day basically just browsing the internet. But I could also attribute that to having nothing to do because all has already been done during the weekend. My job? I work as an educator at a "Yrkeshögskola" in Sweden, more or less a vocational college teaching stuff like Cisco CCNA, CCNP, CCNA: Security and also computer security courses in penetration testing and ethical hacking. When I'm not working (which as you've understood is pretty much always, except when I'm actually at work) I spend time with my girlfriend and our 2 wonderful children (currently 3.5 and soon 2 years old). Before getting my first kid in 2013 I spent way too much time getting certified... ![Certifications](https://s14.postimg.org/qrb58vjy9/cergbild.jpg) This has gone down a bit now, luckily and at the same time sadly he (my son) interupted my CCIE studies and I've never really recovered from that and I've lost a bit interest in it as well. So now I'm aiming for CCNA: Service Provider which shouldn't really be that hard. My other interests, besides computers and networking, is basically anything with any sort of modern technology in it. Be it cars, motorcycles, computers, routers, smartphones, mechanics, 3d printers. I dive into pretty much anything I can get my hands on. The weirdest thing I've gotten interested in was a short lived fascination in the process for cloning orchids... Last deep dive into a subject I've done was motorcycles and in March I'm getting myself a 2017 MT-07 (or FZ-07 as it is named in the states!) and I'm almost done with my license so hopefully those two will come hand in hand. (The process to get a drivers license is a bit more complex in Sweden than in the US). ![MT07](https://www.yamaha-motor.ca/images/pages/products/units/MC/medium/2016_FZ-07_blue_gray_1.png) My hopes are to get some good content within the networking field up on this page. My years of experience in teaching computer networking should come to use if I try to create some good tutorials or explanations :D Well, this is it for me... Thank you!
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2016/10/24 11:42:33
authorjohanbogg
body@@ -198,16 +198,90 @@ stuff.%0A%0A +This is me:%0A!%5Bjohanbogg%5D(https://s11.postimg.org/6g6fm1j9v/IMG_0025.jpg)%0A%0A I'm, in
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2016/10/24 11:32:24
authoroptimistic
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2016/10/24 10:59:42
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johanboggpowered up 7.543 STEEM to @johanbogg
2016/10/24 10:54:27
amount7.543 STEEM
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johanboggcustom json: follow
2016/10/24 10:51:57
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2016/10/24 10:33:03
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2016/10/24 10:31:42
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2016/10/24 10:30:36
authorlove2lovelove
bodyI get it...woohooo! :)
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2016/10/24 10:15:45
authorjohanbogg
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2016/10/24 10:06:24
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body<html> <p><strong>The road to CCNA - Part 1 - OSI Model - Layer 1<br> <br> Section 0 - About this<br> <br> </strong>I'm not sure if this fits into Steemit, but I've decided to share some of the knowledge I have in computer networks.</p> <p>I've worked as an educator/teacher within computer networking and science for 8 years now and have always wanted to share my understanding about computer networks in an easy-to-grip fashion. I'm certified in Cisco &nbsp;(CCNA, CCNP, CCDP, CCNA: Security) as well as a authorized train-the-trainer instructor as well as an ordinary student instructor within the Cisco Networking Academy)<br> One of the first things I tell my students when starting a new class is "My way of teaching is conceptual, not necessarily factual. So don't be afraid to correct me if I'm wrong". And by conceptual I mean "I'll teach you to understand it, not to know all the facts". That is atleast according to me, one of the most important aspects of a great network engineer. To know the concepts, to understand them and to be able to put facts into context. <br> Facts without context or ability to put them to use is worthless, and you cant utilize your knowledge without a good understanding of the concepts.<br> <br> So, I will therefor try to put the same thinking into this little "Networking 101" I'm going to start here on Steemit. If you follow me, be prepared to get a few occasional strange analogies and some things that are outright wrong (but at the same time in the context could be seen as right).</p> <p>So Part 1 (this part) will be about the OSI model more specifically Layer 1,. In my way of explaining it. This is a standard lecture I give several times per year and I'll try to condense the thinking into a text that won't be "TLDR".<br> <br> My goal with the series will be that combined with some googling, browsing of wikipedia and a bit of laboration using available tools. You'll eventually reach the "CCNA" level. I'll give you the tools, the understanding and the base concepts, it's up to you to get the details and facts needed to complete the "profile".</p> <p><br> <strong>Section 1.0 : &nbsp;The OSI Model</strong><br> If you grab a book, any book, about networking you will be almost sure to find some reference to the OSI-model. Be it a passing mention in a sentence such as "This is a layer 3 switch" or a more in-depth explanation of it. There will always be some kind of trace of it. <br> <br> So what is it? What is the OSI model and why is it important?<br> Well...It's a model, but historically it was more than that. In the late 70s and early 80s when the Internet had just begun it first few steps towards becoming the global network we all know and love today there weren't really any standard way of communicating between the big mainframes and computers of the day. IBM had it's own protocols and so did all the other large coorporations.<br> <br> ISO, the International Standards Organisation, set forth to build a standard for communcation between systems from different manufacturers. The Open System Interconnection model, &nbsp;was the proposed solution. But when the OSI made it's big debut, the TCP/IP stack had more or less already become the de facto standard on the internet. And TCP/IP uses then same train of thought as the OSI-model, so they do work together. But the fact is, TCP/IP doesn't always completely fit inside the OSI models layered approach, which is why some of the layers can seem a bit awkward and hard to precisely explain what their role in the modern networks are. We'll just skip those layers while explaining the model.<br> <br> Anyway, the model is composed of 7 different Layers, which each has their own specific task in the communication between computers or systems. See the picture below for reference:</p> <p><img src="https://s10.postimg.org/f9r1i41vt/OSI_model.png" width="275" height="481"/></p> <p>Each layer has it's set of corresponding protocols and technologies. We'll break them down one by one, but in this first part. Let's concentrate on Layer 1:<br> <br> <strong>Section 1.1 - &nbsp;Physical Layer</strong><br> This layer defines the physical media over which the communication is set to take place. Be it via radiowaves, laser/light, copper-wire or any other media. This is defined here.<br> If our media is "copper cables" or "fiber optics" the Layer 1 standards also define such things as cable characteristics (impedance, gauge, jackets, shielding, connectors) and so on. I won't explain this here, as there is soo many different connectors and cable types out there so just google "Network Connectors" or "Fiber optical connectors" or similar to get a list of the different connectors available.<br> The main responsibility of the Physical layer is to get a bunch of bits (bit = 1 or 0) safely from one side of the media to the other. It is not aware of, nor responsible for, anything else. This is the main and only responsibility of the physical layer. &nbsp;<br> But to be able to achieve this, it needs to have some tools, rules and a set of parameters to work within. This is what I'll explain first:<br> <strong>Section 1.1.1 - Signal Levels</strong><br> Quite obviously if you want to have some sort of communication you need to have a signal. And if you have a signal you'll need to define a set of "levels" which are reasonable and won't hurt the receiver or get to weak on the way to the receiver.<br> Think about it this way, if you are in a room with another person standing next to you. How loud does he need to speak? Not that loud right? If he starts screaming at you, you'll have a hard time keeping up with what he's saying just because it is "too loud". Eventually, if he is superhuman or too close , he will break your eardrums. <br> So, a too strong signal isn't really effective. What about something too low? Well, using the analogy above you'll understand that that isn't what we are after either. We'll also need to take into account the other parties hearing (so called sensitivity) when deciding what the lowest possible signal level is.<br> <br> We'll have to set some "middle ground" which will keep both parties happy.<br> <br> <strong>Section 1.1.2 - Attenuation</strong><br> To be able to find the middle ground, we'll need to cover attenuation as well:<br> The further a signal travels, the weaker it will become. Take the same room as above, place both communicating parties in each corner and make the room 10x larger. Will the same "force" or signal level still be enough to reach the other side? No, it wont. If you keep making the room larger at some point you'll reach a size where the other party does need to scream to reach you, and at a even larger size not even screaming will get the signal across. &nbsp;If you want to look at it in some of the weird ways I look at the world, the signal gets weaker due to friction. Compare this to your own strength. If you push a box full of heavy stuff across a large floor, you'll get more and more tired and it'll go slower and slower as you progress. Not a perfect analogy I know, but good enough for you to grasp the concepts. <br> <br> Let's keep the box and floor analogy and we'll cover how frequencies affect attenuation:<br> <br> <strong>Section 1.1.3 - Frequencies vs the world<br> </strong><br> Different frequencies have different attenuation, this is basically regardless of media: Higher frequencies always have higher attenuation! <br> <br> If you've ever lived in an apartment you're likely to have had neighbors throwing a party. <br> What frequencies of their loud music do you hear at such a party? The bass, mid or high frequencies? Well, in most cases you here the bass and a little bit of the mid frequencies. The thicker the walls and the further the distance the more attenuated the higher frequencies becomes and the less of them you hear.<br> <br> But why is this? Well, back to the "Box on the floor analogy". <br> Higher frequencies have shorter wavelengths, the red line on the picture below is a high frequency with short wavelength: If the black box is the walls of a room and the red line is the path you are to push your box, you see that the total distance you push the box is further than just pushing it straight across.<br> Therefor more energy is lost on the way, and thus higher attenuation of the signal.<br> <img src="https://s22.postimg.org/cpo8onu3l/high.png" width="650" height="403"/><br> <br> Compare this with a lower frequency with a longer wavelength (blue):</p> <p><img src="https://s18.postimg.org/py6i77bwp/high.png" width="650" height="403"/></p> <p>So, seeing this it's obvious which path I'd prefer to push that big ol' heavy box of ours.<br> But wait? Radiowaves or light doesn't travel on floors? Right, but there's always molecules and such in the air which will make the path a bit more bothersome for the higher frequencies (Green). The higher frequencies travel a "farther distance" from point A to point B so is more in risk of hitting some of those unwanted green dots.<br> <br> <img src="https://s21.postimg.org/bhow1rrfb/high.png" width="650" height="403"/><br> <br> Light is pretty much the same, the sky is blue because the blue light (blue light has a higher frequency than red, contrary to the pictures above) meets an ugly molecule that is a bit larger than the lights wavelength so it basically just hits that molecule and gets reflected (easy, not so correct way of seeing it).<br> </p> <p><strong>Section 1.1.4 - The middle ground<br> </strong><br> So we now know that the frequencies, signal levels and attenuation all go hand in hand. What we need to do now is to find a middle ground. In the Layer 1 standards this is done by simply combining a few factors: "How far do we need to reach", "How much power output is reasonable" and "What frequencies are available". Basically it all comes down to cost and sacrifice.<br> <br> So, right now we have a signal that can reach from point A to B, but didn't I write that the main point of Layer 1 is to transfer Bits (1s and 0s) from point A to B? Yes, that is correct. But to do that we need to cover modulation.&nbsp;</p> <p><br> <strong>Section 1.2 - Modulation &nbsp;</strong></p> <p>Modulation is the act of coding or decoding something into or from a signal. This can be done in numerous ways, but we'll take an easy example, to achieve CCNA you won't need to be a whiz in modulation, you'll be fine just knowing what it is used for.<br> Let's play with the thought that we have this super easy L1 standard, which states that our acceptable transmission signal level is 0-5 volts and everything higher than 2.5v is seen as a 1 and everything lower than 2.5v is a 0. This standard also defines that the frequency or rate of change in a transmission is 100hz.<br> So, if our signal changes 100 times per second, 5v is the ceiling signal level and we want to transfer the byte (one byte is 8 bits) 11001001 this would look something like:<br> <br> <img src="https://s12.postimg.org/ek1lcwi25/modulation.png" width="650" height="403"/></p> <p>If you had to keep the 5v max signal level, and the 100hz frequency. How would you go about increasing the transfer rate from 100bits/second as it is right now, to say 200bits/second?<br> Remember, the top signal level and the frequency is set and cannot be changed.<br> <br> (SPOILER: Possible answer below, scroll down when you think you've got a solution or have given up):<br> <br> <img src="https://s13.postimg.org/jqsqdlvsn/modulation.png" width="650" height="403"/></p> <p>One of the possible answers, while keeping the 100hz and the 5v max signal level, is to increase the number of levels. from 2 (0-2.5v = 0, 2.5v-5v = 1) to 4. Now we can transfer the same string of 1s and 0s at half the time. Thus doubling our possible bitrate.<br> <br> This is an example of an extremely simple sort of modulation. And really is all you need to know to pass the CCNA in a "modulation" viewpoint.<br> If you want to do some research yourself, two simple modulation methods are AM and FM, which are used almost every day by most people when listening to an ordinary old radio. Google them and from there you can work your way to more complex modulations!<br> <br> Ok, this concludes the Layer 1 part, this is really all the concepts you need to know on that topic. Some base facts you do need to know are the types of connectors on the cables, the difference between different types &nbsp;of TP cable and some other parts. Wikipedia has an excellent article on that subject: https://en.wikipedia.org/wiki/Modular_connector#8P8C<br> <br> I'll follow up with Part 2 in a few days, where I'll cover Layer 2 and more specifically Ethernet.<br> I'm guessing the whole "CCNA Series" will take at least a couple of months, but then again, you'll get time to deep into the subject yourself between parts :)<br> <br> Please upvote and reply if you like what you've read and would like to see more of this series in the future.</p> </html>
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      "body": "<html>\n<p><strong>The road to CCNA - Part 1 - OSI Model - Layer 1<br>\n<br>\nSection 0 - About this<br>\n<br>\n</strong>I'm not sure if this fits into Steemit, but I've decided to share some of the knowledge I have in computer networks.</p>\n<p>I've worked as an educator/teacher within computer networking and science for 8 years now and have always wanted to share my understanding about computer networks in an easy-to-grip fashion. I'm certified in Cisco &nbsp;(CCNA, CCNP, CCDP, CCNA: Security) as well as a authorized train-the-trainer instructor as well as an ordinary student instructor within the Cisco Networking Academy)<br>\n One of the first things I tell my students when starting a new class is \"My way of teaching is conceptual, not necessarily factual. So don't be afraid to correct me if I'm wrong\". And by conceptual I mean \"I'll teach you to understand it, not to know all the facts\". That is atleast according to me, one of the most important aspects of a great network engineer. To know the concepts, to understand them and to be able to put facts into context. <br>\nFacts without context or ability to put them to use is worthless, and you cant utilize your knowledge without a good understanding of the concepts.<br>\n<br>\nSo, I will therefor try to put the same thinking into this little \"Networking 101\" I'm going to start here on Steemit. If you follow me, be prepared to get a few occasional strange analogies and some things that are outright wrong (but at the same time in the context could be seen as right).</p>\n<p>So Part 1 (this part) will be about the OSI model more specifically Layer 1,. In my way of explaining it. This is a standard lecture I give several times per year and I'll try to condense the thinking into a text that won't be \"TLDR\".<br>\n<br>\nMy goal with the series will be that combined with some googling, browsing of wikipedia and a bit of laboration using available tools. You'll eventually reach the \"CCNA\" level. I'll give you the tools, the understanding and the base concepts, it's up to you to get the details and facts needed to complete the \"profile\".</p>\n<p><br>\n<strong>Section 1.0 : &nbsp;The OSI Model</strong><br>\nIf you grab a book, any book, about networking you will be almost sure to find some reference to the OSI-model. Be it a passing mention in a sentence such as \"This is a layer 3 switch\" or a more in-depth explanation of it. There will always be some kind of trace of it. <br>\n<br>\nSo what is it? What is the OSI model and why is it important?<br>\nWell...It's a model, but historically it was more than that. In the late 70s and early 80s when the Internet had just begun it first few steps towards becoming the global network we all know and love today there weren't really any standard way of communicating between the big mainframes and computers of the day. IBM had it's own protocols and so did all the other large coorporations.<br>\n<br>\nISO, the International Standards Organisation, set forth to build a standard for communcation between systems from different manufacturers. The Open System Interconnection model, &nbsp;was the proposed solution. But when the OSI made it's big debut, the TCP/IP stack had more or less already become the de facto standard on the internet. And TCP/IP uses then same train of thought as the OSI-model, so they do work together. But the fact is, TCP/IP doesn't always completely fit inside the OSI models layered approach, which is why some of the layers can seem a bit awkward and hard to precisely explain what their role in the modern networks are. We'll just skip those layers while explaining the model.<br>\n<br>\nAnyway, the model is composed of 7 different Layers, which each has their own specific task in the communication between computers or systems. See the picture below for reference:</p>\n<p><img src=\"https://s10.postimg.org/f9r1i41vt/OSI_model.png\" width=\"275\" height=\"481\"/></p>\n<p>Each layer has it's set of corresponding protocols and technologies. We'll break them down one by one, but in this first part. Let's concentrate on Layer 1:<br>\n<br>\n<strong>Section 1.1 - &nbsp;Physical Layer</strong><br>\nThis layer defines the physical media over which the communication is set to take place. Be it via radiowaves, laser/light, copper-wire or any other media. This is defined here.<br>\n If our media is \"copper cables\" or \"fiber optics\" the Layer 1 standards also define such things as cable characteristics (impedance, gauge, jackets, shielding, connectors) and so on. I won't explain this here, as there is soo many different connectors and cable types out there so just google \"Network Connectors\" or \"Fiber optical connectors\" or similar to get a list of the different connectors available.<br>\nThe main responsibility of the Physical layer is to get a bunch of bits (bit = 1 or 0) safely from one side of the media to the other. It is not aware of, nor responsible for, anything else. This is the main and only responsibility of the physical layer. &nbsp;<br>\nBut to be able to achieve this, it needs to have some tools, rules and a set of parameters to work within. This is what I'll explain first:<br>\n<strong>Section 1.1.1 - Signal Levels</strong><br>\nQuite obviously if you want to have some sort of communication you need to have a signal. And if you have a signal you'll need to define a set of \"levels\" which are reasonable and won't hurt the receiver or get to weak on the way to the receiver.<br>\nThink about it this way, if you are in a room with another person standing next to you. How loud does he need to speak? Not that loud right? If he starts screaming at you, you'll have a hard time keeping up with what he's saying just because it is \"too loud\". Eventually, if he is superhuman or too close , he will break your eardrums. <br>\nSo, a too strong signal isn't really effective. What about something too low? Well, using the analogy above you'll understand that that isn't what we are after either. We'll also need to take into account the other parties hearing (so called sensitivity) when deciding what the lowest possible signal level is.<br>\n<br>\nWe'll have to set some \"middle ground\" which will keep both parties happy.<br>\n<br>\n<strong>Section 1.1.2 - Attenuation</strong><br>\nTo be able to find the middle ground, we'll need to cover attenuation as well:<br>\nThe further a signal travels, the weaker it will become. Take the same room as above, place both communicating parties in each corner and make the room 10x larger. Will the same \"force\" or signal level still be enough to reach the other side? No, it wont. If you keep making the room larger at some point you'll reach a size where the other party does need to scream to reach you, and at a even larger size not even screaming will get the signal across. &nbsp;If you want to look at it in some of the weird ways I look at the world, the signal gets weaker due to friction. Compare this to your own strength. If you push a box full of heavy stuff across a large floor, you'll get more and more tired and it'll go slower and slower as you progress. Not a perfect analogy I know, but good enough for you to grasp the concepts. <br>\n<br>\nLet's keep the box and floor analogy and we'll cover how frequencies affect attenuation:<br>\n<br>\n<strong>Section 1.1.3 - Frequencies vs the world<br>\n</strong><br>\nDifferent frequencies have different attenuation, this is basically regardless of media: Higher frequencies always have higher attenuation! <br>\n<br>\nIf you've ever lived in an apartment you're likely to have had neighbors throwing a party. <br>\nWhat frequencies of their loud music do you hear at such a party? The bass, mid or high frequencies? Well, in most cases you here the bass and a little bit of the mid frequencies. The thicker the walls and the further the distance the more attenuated the higher frequencies becomes and the less of them you hear.<br>\n<br>\nBut why is this? Well, back to the \"Box on the floor analogy\". <br>\nHigher frequencies have shorter wavelengths, the red line on the picture below is a high frequency with short wavelength: If the black box is the walls of a room and the red line is the path you are to push your box, you see that the total distance you push the box is further than just pushing it straight across.<br>\nTherefor more energy is lost on the way, and thus higher attenuation of the signal.<br>\n<img src=\"https://s22.postimg.org/cpo8onu3l/high.png\" width=\"650\" height=\"403\"/><br>\n<br>\nCompare this with a lower frequency with a longer wavelength (blue):</p>\n<p><img src=\"https://s18.postimg.org/py6i77bwp/high.png\" width=\"650\" height=\"403\"/></p>\n<p>So, seeing this it's obvious which path I'd prefer to push that big ol' heavy box of ours.<br>\nBut wait? Radiowaves or light doesn't travel on floors? Right, but there's always molecules and such in the air which will make the path a bit more bothersome for the higher frequencies (Green). The higher frequencies travel a \"farther distance\" from point A to point B so is more in risk of hitting some of those unwanted green dots.<br>\n<br>\n<img src=\"https://s21.postimg.org/bhow1rrfb/high.png\" width=\"650\" height=\"403\"/><br>\n<br>\nLight is pretty much the same, the sky is blue because the blue light (blue light has a higher frequency than red, contrary to the pictures above) meets an ugly molecule that is a bit larger than the lights wavelength so it basically just hits that molecule and gets reflected (easy, not so correct way of seeing it).<br>\n</p>\n<p><strong>Section 1.1.4 - The middle ground<br>\n</strong><br>\nSo we now know that the frequencies, signal levels and attenuation all go hand in hand. What we need to do now is to find a middle ground. In the Layer 1 standards this is done by simply combining a few factors: \"How far do we need to reach\", \"How much power output is reasonable\" and \"What frequencies are available\". Basically it all comes down to cost and sacrifice.<br>\n<br>\nSo, right now we have a signal that can reach from point A to B, but didn't I write that the main point of Layer 1 is to transfer Bits (1s and 0s) from point A to B? Yes, that is correct. But to do that we need to cover modulation.&nbsp;</p>\n<p><br>\n<strong>Section 1.2 - Modulation &nbsp;</strong></p>\n<p>Modulation is the act of coding or decoding something into or from a signal. This can be done in numerous ways, but we'll take an easy example, to achieve CCNA you won't need to be a whiz in modulation, you'll be fine just knowing what it is used for.<br>\nLet's play with the thought that we have this super easy L1 standard, which states that our acceptable transmission signal level is 0-5 volts and everything higher than 2.5v is seen as a 1 and everything lower than 2.5v is a 0. This standard also defines that the frequency or rate of change in a transmission is 100hz.<br>\nSo, if our signal changes 100 times per second, 5v is the ceiling signal level and we want to transfer the byte (one byte is 8 bits) 11001001 this would look something like:<br>\n<br>\n<img src=\"https://s12.postimg.org/ek1lcwi25/modulation.png\" width=\"650\" height=\"403\"/></p>\n<p>If you had to keep the 5v max signal level, and the 100hz frequency. How would you go about increasing the transfer rate from 100bits/second as it is right now, to say 200bits/second?<br>\nRemember, the top signal level and the frequency is set and cannot be changed.<br>\n<br>\n(SPOILER: Possible answer below, scroll down when you think you've got a solution or have given up):<br>\n<br>\n<img src=\"https://s13.postimg.org/jqsqdlvsn/modulation.png\" width=\"650\" height=\"403\"/></p>\n<p>One of the possible answers, while keeping the 100hz and the 5v max signal level, is to increase the number of levels. from 2 (0-2.5v = 0, 2.5v-5v = 1) to 4. Now we can transfer the same string of 1s and 0s at half the time. Thus doubling our possible bitrate.<br>\n<br>\nThis is an example of an extremely simple sort of modulation. And really is all you need to know to pass the CCNA in a \"modulation\" viewpoint.<br>\nIf you want to do some research yourself, two simple modulation methods are AM and FM, which are used almost every day by most people when listening to an ordinary old radio. Google them and from there you can work your way to more complex modulations!<br>\n<br>\nOk, this concludes the Layer 1 part, this is really all the concepts you need to know on that topic. Some base facts you do need to know are the types of connectors on the cables, the difference between different types &nbsp;of TP cable and some other parts. Wikipedia has an excellent article on that subject: https://en.wikipedia.org/wiki/Modular_connector#8P8C<br>\n<br>\nI'll follow up with Part 2 in a few days, where I'll cover Layer 2 and more specifically Ethernet.<br>\nI'm guessing the whole \"CCNA Series\" will take at least a couple of months, but then again, you'll get time to deep into the subject yourself between parts :)<br>\n<br>\nPlease upvote and reply if you like what you've read and would like to see more of this series in the future.</p>\n</html>",
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2016/10/24 08:10:27
authorlove2lovelove
bodywell hellooo! :)
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2016/10/24 08:06:30
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2016/10/24 07:44:18
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2016/10/24 07:44:06
authorjohanbogg
bodyOh, hi there!
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2016/10/24 07:42:57
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johanboggreceived 7.543 STEEM, 0.216 SBD, 13.150 SP author reward for @johanbogg / hello-this-is-my-introduction
2016/10/24 02:59:00
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2016/10/24 02:03:54
authoriloilo
bodyHello Johan :) And welcome :)
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