LP Agent
Nvidia GeForce RTX 3060 LHR — Mercado de hashrate
Nvidia GeForce RTX 3060 LHR genera hasta $0.48 al día, mejor minando Octopus a 44.0 Mh/s. También disponible: venta de hashpower KAWPOW ($0.00/día). Consume 90 W de la red — a $0.10/kWh, rentable a los precios actuales.
Toca para cambiar · 7 secciones Mercado de hashrate 3/7
Esta GPU tiene ? GB de VRAM — la mayoría de los mercados de IA requieren al menos 12 GB.
Proyección diaria
Ganadores diarios entre todos los streams — promediados del historial registrado del rig a $0.1/kWh
| Período | /Día | /Mes |
|---|---|---|
| Ingresos | $0.70 | $20.85 |
|
Costo
$0.1/kWh
|
$0.22 | $6.60 |
| Ganancia | $0.48 | $14.25 |
Mezcla de consenso interno — derivada de fuentes externas, no una cotización directa de un solo mercado.
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Historial de pagos de minería
| Período | /Día | /Mes |
|---|---|---|
| Ingresos | $0.70 | $21.00 |
|
Costo
$0.1/kWh
|
$0.22 | $6.60 |
| Ganancia | $0.48 | $14.40 |
Mezcla de consenso interno — derivada de fuentes externas, no una cotización directa de un solo mercado.
| Algoritmo | Neto / día |
|---|---|
|
OCT
Octopus
★ Mejor
44.0 Mh/s · 90.0 W
|
$0.48 |
|
NEX
NexaPoW
47 Mh/s · 85.0 W
|
$0.06 |
|
ZHA
Zhash
44 Hh/s · 140.0 W
|
$0.04 |
|
CUC
Cuckatoo32
0.45 Hh/s · 140.0 W
|
$-0.06 |
|
KAW
KAWPOW
22 Mh/s · 140.0 W
|
$-0.12 |
|
BEA
BeamHashIII
22 Hh/s · 140.0 W
|
$-0.12 |
|
AUT
Autolykos2
115 Mh/s · 130.0 W
|
$-0.16 |
|
ETC
Etchash
48 Mh/s · 120.0 W
|
$-0.19 |
|
CUC
CuckooCycle
7 Hh/s · 140.0 W
|
$-0.20 |
|
EQU
Equihash
61 Hh/s · 115.0 W
|
$-0.22 |
|
SHA
Sha256
420 Mh/s · 70.0 W
|
$-0.22 |
|
ETH
Ethash
48 Mh/s · 120.0 W
|
$-0.22 |
|
FIS
FishHash
20.5 Mh/s · 140.0 W
|
$-0.22 |
|
XEL
XelisHashV2
20.0 Mh/s · 140.0 W
|
$-0.22 |
|
MER
Meraki
48 Mh/s · 120.0 W
|
$-0.22 |
|
EQU
Equihash210_9
250 Hh/s · 140.0 W
|
$-0.22 |
|
TON
Ton
1.8 Gh/s · 120.0 W
|
$-0.22 |
|
CUC
Cuckatoo31
1.2 Hh/s · 140.0 W
|
$-0.22 |
|
KHE
KHeavyHash
60.0 Hh/s · 130.0 W
|
$-0.22 |
|
BLA
Blake3
800 Mh/s · 90.0 W
|
$-0.22 |
| Coin | Algorithm | Ingresos | Costo | Ganancia |
|---|---|---|---|---|
CFX
⚠
Conflux
|
Octopus
44.0Mh · 90.0W
|
$0.70 | $0.22 | $0.48 |
NEXA
⚠
Nexa
|
NexaPoW
47Mh · 85.0W
|
$0.28 | $0.20 | $0.08 |
|
LTZ
⚠
Litecoinz
|
Zhash
44Hh · 140.0W
|
$0.26 | $0.34 | $-0.08 |
|
GRIN
⚠
Grin
|
Cuckatoo32
0.45Hh · 140.0W
|
$0.16 | $0.34 | $-0.18 |
|
RVN
Ravencoin
|
KAWPOW
22Mh · 140.0W
|
$0.10 | $0.34 | $-0.24 |
|
BEAM
⚠
Beam
|
BeamHashIII
22Hh · 140.0W
|
$0.10 | $0.34 | $-0.24 |
ERG
⚠
Ergo
|
Autolykos2
115Mh · 130.0W
|
$0.06 | $0.31 | $-0.25 |
|
ETC
Ethereum Classic
|
Etchash
48Mh · 120.0W
|
$0.03 | $0.29 | $-0.26 |
|
AE
⚠
Aeternity
|
CuckooCycle
7Hh · 140.0W
|
$0.02 | $0.34 | $-0.32 |
|
ZEC
Zcash
|
Equihash
61Hh · 115.0W
|
— | $0.28 | — |
|
BTC
Bitcoin
|
Sha256
420Mh · 70.0W
|
— | $0.17 | — |
|
VTC
Vertcoin
|
Verthash
850Kh · 130.0W
|
— | $0.31 | — |
|
—
|
Memehash
2.6Mh · 140.0W
|
— | $0.34 | — |
|
—
|
Ethash
48Mh · 120.0W
|
— | $0.29 | — |
IRON
⚠
Iron Fish
|
FishHash
20.5Mh · 140.0W
|
— | $0.34 | — |
|
—
|
XelisHashV2
20.0Mh · 140.0W
|
— | $0.34 | — |
|
—
|
zkSNARK
370.0Mh · 80.0W
|
— | $0.19 | — |
|
—
|
Meraki
48Mh · 120.0W
|
— | $0.29 | — |
|
—
|
Equihash210_9
250Hh · 140.0W
|
— | $0.34 | — |
|
—
|
Ton
1.8Gh · 120.0W
|
— | $0.29 | — |
|
—
|
Cuckatoo31
1.2Hh · 140.0W
|
— | $0.34 | — |
FIRO
Firo
|
FiroPoW
20.5Mh · 140.0W
|
— | $0.34 | — |
KAS
Kaspa
|
KHeavyHash
60.0Hh · 130.0W
|
— | $0.31 | — |
|
—
|
GhostRider
1.15Kh · 120.0W
|
— | $0.29 | — |
|
—
|
CryptoNightGPU
2.3Hh · 120.0W
|
— | $0.29 | — |
EPIC
⚠
Epic Cash
|
ProgPow
21.5Mh · 140.0W
|
— | $0.34 | — |
|
—
|
EvrProgPow
22Mh · 140.0W
|
— | $0.34 | — |
|
—
|
Skydoge
450.0Mh · 60.0W
|
— | $0.14 | — |
|
—
|
Blake3
800Mh · 90.0W
|
— | $0.22 | — |
|
—
|
MTP
2.6Mh · 140.0W
|
— | $0.34 | — |
| Pool | Algoritmos soportados | Comisión | |
|---|---|---|---|
|
|
CuckooCycle (AE) · BeamHashIII (BEAM) · Autolykos2 (ERG) | 1.0% | Visit → |
cyberpool.io
|
Autolykos2 (ERG) · KHeavyHash (KAS) | — | Visit → |
HeroMiners
|
BeamHashIII (BEAM) · Autolykos2 (ERG) · Etchash (ETC) | 0.9% | Visit → |
|
★
K1Pool
|
Sha256 (BTC) · Autolykos2 (ERG) · Etchash (ETC) | 1.0% | Visit → |
Rplant
|
FiroPoW (FIRO) · NexaPoW (NEXA) | 1.0% | Visit → |
Historial de pagos del hashmarket
| Período | /Día | /Mes |
|---|---|---|
| Ingresos | $0.22 | $6.71 |
|
Costo
$0.1/kWh
|
$0.22 | $6.60 |
| Ganancia | $0.00 | $0.11 |
Mezcla de consenso interno — derivada de fuentes externas, no una cotización directa de un solo mercado.
MRR
· KAWPOW
· $0.12/day
Visitar on MRR →
MRR
Visitar on MRR →
| Rigs × Qty | Share | Rev /rig/day | Cost /rig/day | Profit /rig/day | Total profit /day |
|---|---|---|---|---|---|
| — | — | — | — | — | — |
Periodo de recuperación para Nvidia GeForce RTX 3060 LHR
Modela la recuperación de la inversión, el coste eléctrico y la rentabilidad del primer año para este equipo.
Hardware recuperado cuando la línea cruza cero. Después, todo ganancia.
| Month | Earned (mo) | Cost burned (mo) | Cumulative earned | Cumulative cost | Net | % ROI |
|---|
Emisiones anuales por fuente
Basado en el consumo eléctrico anual y la intensidad de carbono de redes comunes.
| Fuente de energía | CO₂e / año |
|---|---|
| Wind | 8.55 kg |
| Nuclear | 9.33 kg |
| Hydroelectric | 18.66 kg |
| Geothermal | 29.55 kg |
| Solar | 34.99 kg |
| Biofuels | 178.85 kg |
| Gas | 381.02 kg |
| Coal | 637.63 kg |
Solo estimaciones — las emisiones reales varían.
¿Qué significa eso realmente?
At the world-average grid intensity of about 475 g CO₂e/kWh, Nvidia GeForce RTX 3060 LHR running 24/7 for a year releases about 369 kg of carbon dioxide equivalent. Here's what that looks like in everyday terms:
Dónde lo enchufas importa
Electricity is not one thing. A kilowatt-hour from a coal plant carries roughly 820 g of CO₂; the same kilowatt-hour from a hydro reservoir carries about 24 g. That's a 34× difference — large enough that Nvidia GeForce RTX 3060 LHR's annual footprint swings from roughly 638 kg on coal-heavy grids down to about 19 kg on hydro-dominated grids. The single biggest lever a miner has on their carbon footprint is choosing where to plug in.
Regions commonly used for low-carbon crypto mining include Quebec and British Columbia (hydro-dominated, typically <50 g CO₂/kWh), Iceland and Norway (geothermal + hydro, often <30 g), Paraguay (Itaipú hydro), and parts of the US Pacific Northwest. Coal-heavy grids — Kazakhstan, Inner Mongolia, Poland, parts of Australia — sit at the opposite end, often above 700 g CO₂/kWh.
Some operators also reduce their net impact by using otherwise-wasted energy: flare gas at oil wells (burning methane that would be vented anyway), curtailed renewables (wind or solar that the grid can't absorb), or behind-the-meter hydro during off-peak hours. These arrangements can drop effective emissions below the local grid average because the energy would have been wasted or flared without the mining load.
Cómo reducir la huella de este equipo
- Pick a greener ASIC. The efficiency column above matters as much as the grid: a 15 J/TH rig emits roughly half the CO₂ of a 30 J/TH rig for the same hashrate.
- Choose a low-carbon host. Data centres advertising hydro, geothermal, or nuclear power typically sit at <100 g CO₂/kWh.
- Look for stranded or curtailed energy. Flare-gas miners, wind-curtailment co-location, and off-peak hydro arrangements use energy that would otherwise be wasted.
- Use heat recovery. Capturing the heat for greenhouse agriculture, pool heating, or district warmth offsets fossil-fuel heating that would have been burned anyway.
- Time-shift your uptime. In grids with high daytime solar, running more during the day and less at night lowers your effective intensity even if you don't switch providers.
- Purchase verifiable offsets. Treat this as a last resort, not a substitute — and favour additional, permanent, third-party-verified projects (Gold Standard, Verra VCS).
Preguntas frecuentes
Yearly electricity use = rig power (W) × 24 × 365 ÷ 1000. We multiply that by each row's grid intensity in grams CO₂-equivalent per kWh and convert to kilograms. Intensities are representative averages — real emissions depend on your specific utility mix, time of day, and local transmission losses.
It depends almost entirely on where the electricity comes from. A single rig plugged into hydro in Quebec emits less over a year than an average family's two cars in a month. The same rig on a coal-dominated grid can exceed that in a few days. The hardware is the same — the grid is what changes the answer.
Network-wide estimates vary by methodology; the Cambridge Centre for Alternative Finance's Bitcoin Electricity Consumption Index is the most widely cited reference. As of recent reporting, the network's sustainable-energy share has grown as more hashrate migrates to hydro, wind, solar, and stranded-gas sites. This page just estimates a single rig — for the big picture, CCAF's dashboard is the best source.
Not directly. The rig draws the same wattage regardless of which pool it joins or how difficulty trends — so its electricity use, and therefore its emissions, stay constant. Those factors change revenue, not power consumption.
Toca para cambiar · 7 secciones Mercado de hashrate 3/7
Esta GPU tiene ? GB de VRAM — la mayoría de los mercados de IA requieren al menos 12 GB.
Proyección diaria
Ganadores diarios entre todos los streams — promediados del historial registrado del rig a $0.1/kWh
| Período | /Día | /Mes |
|---|---|---|
| Ingresos | $0.70 | $20.85 |
|
Costo
$0.1/kWh
|
$0.22 | $6.60 |
| Ganancia | $0.48 | $14.25 |
Mezcla de consenso interno — derivada de fuentes externas, no una cotización directa de un solo mercado.
Historial de pagos de minería
| Período | /Día | /Mes |
|---|---|---|
| Ingresos | $0.70 | $21.00 |
|
Costo
$0.1/kWh
|
$0.22 | $6.60 |
| Ganancia | $0.48 | $14.40 |
Mezcla de consenso interno — derivada de fuentes externas, no una cotización directa de un solo mercado.
| Algoritmo | Neto / día |
|---|---|
|
OCT
Octopus
★ Mejor
44.0 Mh/s · 90.0 W
|
$0.48 |
|
NEX
NexaPoW
47 Mh/s · 85.0 W
|
$0.06 |
|
ZHA
Zhash
44 Hh/s · 140.0 W
|
$0.04 |
|
CUC
Cuckatoo32
0.45 Hh/s · 140.0 W
|
$-0.06 |
|
KAW
KAWPOW
22 Mh/s · 140.0 W
|
$-0.12 |
|
BEA
BeamHashIII
22 Hh/s · 140.0 W
|
$-0.12 |
|
AUT
Autolykos2
115 Mh/s · 130.0 W
|
$-0.16 |
|
ETC
Etchash
48 Mh/s · 120.0 W
|
$-0.19 |
|
CUC
CuckooCycle
7 Hh/s · 140.0 W
|
$-0.20 |
|
EQU
Equihash
61 Hh/s · 115.0 W
|
$-0.22 |
|
SHA
Sha256
420 Mh/s · 70.0 W
|
$-0.22 |
|
ETH
Ethash
48 Mh/s · 120.0 W
|
$-0.22 |
|
FIS
FishHash
20.5 Mh/s · 140.0 W
|
$-0.22 |
|
XEL
XelisHashV2
20.0 Mh/s · 140.0 W
|
$-0.22 |
|
MER
Meraki
48 Mh/s · 120.0 W
|
$-0.22 |
|
EQU
Equihash210_9
250 Hh/s · 140.0 W
|
$-0.22 |
|
TON
Ton
1.8 Gh/s · 120.0 W
|
$-0.22 |
|
CUC
Cuckatoo31
1.2 Hh/s · 140.0 W
|
$-0.22 |
|
KHE
KHeavyHash
60.0 Hh/s · 130.0 W
|
$-0.22 |
|
BLA
Blake3
800 Mh/s · 90.0 W
|
$-0.22 |
| Coin | Algorithm | Ingresos | Costo | Ganancia |
|---|---|---|---|---|
CFX
⚠
Conflux
|
Octopus
44.0Mh · 90.0W
|
$0.70 | $0.22 | $0.48 |
NEXA
⚠
Nexa
|
NexaPoW
47Mh · 85.0W
|
$0.28 | $0.20 | $0.08 |
|
LTZ
⚠
Litecoinz
|
Zhash
44Hh · 140.0W
|
$0.26 | $0.34 | $-0.08 |
|
GRIN
⚠
Grin
|
Cuckatoo32
0.45Hh · 140.0W
|
$0.16 | $0.34 | $-0.18 |
|
RVN
Ravencoin
|
KAWPOW
22Mh · 140.0W
|
$0.10 | $0.34 | $-0.24 |
|
BEAM
⚠
Beam
|
BeamHashIII
22Hh · 140.0W
|
$0.10 | $0.34 | $-0.24 |
ERG
⚠
Ergo
|
Autolykos2
115Mh · 130.0W
|
$0.06 | $0.31 | $-0.25 |
|
ETC
Ethereum Classic
|
Etchash
48Mh · 120.0W
|
$0.03 | $0.29 | $-0.26 |
|
AE
⚠
Aeternity
|
CuckooCycle
7Hh · 140.0W
|
$0.02 | $0.34 | $-0.32 |
|
ZEC
Zcash
|
Equihash
61Hh · 115.0W
|
— | $0.28 | — |
|
BTC
Bitcoin
|
Sha256
420Mh · 70.0W
|
— | $0.17 | — |
|
VTC
Vertcoin
|
Verthash
850Kh · 130.0W
|
— | $0.31 | — |
|
—
|
Memehash
2.6Mh · 140.0W
|
— | $0.34 | — |
|
—
|
Ethash
48Mh · 120.0W
|
— | $0.29 | — |
IRON
⚠
Iron Fish
|
FishHash
20.5Mh · 140.0W
|
— | $0.34 | — |
|
—
|
XelisHashV2
20.0Mh · 140.0W
|
— | $0.34 | — |
|
—
|
zkSNARK
370.0Mh · 80.0W
|
— | $0.19 | — |
|
—
|
Meraki
48Mh · 120.0W
|
— | $0.29 | — |
|
—
|
Equihash210_9
250Hh · 140.0W
|
— | $0.34 | — |
|
—
|
Ton
1.8Gh · 120.0W
|
— | $0.29 | — |
|
—
|
Cuckatoo31
1.2Hh · 140.0W
|
— | $0.34 | — |
FIRO
Firo
|
FiroPoW
20.5Mh · 140.0W
|
— | $0.34 | — |
KAS
Kaspa
|
KHeavyHash
60.0Hh · 130.0W
|
— | $0.31 | — |
|
—
|
GhostRider
1.15Kh · 120.0W
|
— | $0.29 | — |
|
—
|
CryptoNightGPU
2.3Hh · 120.0W
|
— | $0.29 | — |
EPIC
⚠
Epic Cash
|
ProgPow
21.5Mh · 140.0W
|
— | $0.34 | — |
|
—
|
EvrProgPow
22Mh · 140.0W
|
— | $0.34 | — |
|
—
|
Skydoge
450.0Mh · 60.0W
|
— | $0.14 | — |
|
—
|
Blake3
800Mh · 90.0W
|
— | $0.22 | — |
|
—
|
MTP
2.6Mh · 140.0W
|
— | $0.34 | — |
| Pool | Algoritmos soportados | Comisión | |
|---|---|---|---|
|
|
CuckooCycle (AE) · BeamHashIII (BEAM) · Autolykos2 (ERG) | 1.0% | Visit → |
cyberpool.io
|
Autolykos2 (ERG) · KHeavyHash (KAS) | — | Visit → |
HeroMiners
|
BeamHashIII (BEAM) · Autolykos2 (ERG) · Etchash (ETC) | 0.9% | Visit → |
|
★
K1Pool
|
Sha256 (BTC) · Autolykos2 (ERG) · Etchash (ETC) | 1.0% | Visit → |
Rplant
|
FiroPoW (FIRO) · NexaPoW (NEXA) | 1.0% | Visit → |
Historial de pagos del hashmarket
| Período | /Día | /Mes |
|---|---|---|
| Ingresos | $0.22 | $6.71 |
|
Costo
$0.1/kWh
|
$0.22 | $6.60 |
| Ganancia | $0.00 | $0.11 |
Mezcla de consenso interno — derivada de fuentes externas, no una cotización directa de un solo mercado.
MRR
· KAWPOW
· $0.12/day
Visitar on MRR →
MRR
Visitar on MRR →
| Rigs × Qty | Share | Rev /rig/day | Cost /rig/day | Profit /rig/day | Total profit /day |
|---|---|---|---|---|---|
| — | — | — | — | — | — |
Periodo de recuperación para Nvidia GeForce RTX 3060 LHR
Modela la recuperación de la inversión, el coste eléctrico y la rentabilidad del primer año para este equipo.
Hardware recuperado cuando la línea cruza cero. Después, todo ganancia.
| Month | Earned (mo) | Cost burned (mo) | Cumulative earned | Cumulative cost | Net | % ROI |
|---|
Emisiones anuales por fuente
Basado en el consumo eléctrico anual y la intensidad de carbono de redes comunes.
| Fuente de energía | CO₂e / año |
|---|---|
| Wind | 8.55 kg |
| Nuclear | 9.33 kg |
| Hydroelectric | 18.66 kg |
| Geothermal | 29.55 kg |
| Solar | 34.99 kg |
| Biofuels | 178.85 kg |
| Gas | 381.02 kg |
| Coal | 637.63 kg |
Solo estimaciones — las emisiones reales varían.
¿Qué significa eso realmente?
At the world-average grid intensity of about 475 g CO₂e/kWh, Nvidia GeForce RTX 3060 LHR running 24/7 for a year releases about 369 kg of carbon dioxide equivalent. Here's what that looks like in everyday terms:
Dónde lo enchufas importa
Electricity is not one thing. A kilowatt-hour from a coal plant carries roughly 820 g of CO₂; the same kilowatt-hour from a hydro reservoir carries about 24 g. That's a 34× difference — large enough that Nvidia GeForce RTX 3060 LHR's annual footprint swings from roughly 638 kg on coal-heavy grids down to about 19 kg on hydro-dominated grids. The single biggest lever a miner has on their carbon footprint is choosing where to plug in.
Regions commonly used for low-carbon crypto mining include Quebec and British Columbia (hydro-dominated, typically <50 g CO₂/kWh), Iceland and Norway (geothermal + hydro, often <30 g), Paraguay (Itaipú hydro), and parts of the US Pacific Northwest. Coal-heavy grids — Kazakhstan, Inner Mongolia, Poland, parts of Australia — sit at the opposite end, often above 700 g CO₂/kWh.
Some operators also reduce their net impact by using otherwise-wasted energy: flare gas at oil wells (burning methane that would be vented anyway), curtailed renewables (wind or solar that the grid can't absorb), or behind-the-meter hydro during off-peak hours. These arrangements can drop effective emissions below the local grid average because the energy would have been wasted or flared without the mining load.
Cómo reducir la huella de este equipo
- Pick a greener ASIC. The efficiency column above matters as much as the grid: a 15 J/TH rig emits roughly half the CO₂ of a 30 J/TH rig for the same hashrate.
- Choose a low-carbon host. Data centres advertising hydro, geothermal, or nuclear power typically sit at <100 g CO₂/kWh.
- Look for stranded or curtailed energy. Flare-gas miners, wind-curtailment co-location, and off-peak hydro arrangements use energy that would otherwise be wasted.
- Use heat recovery. Capturing the heat for greenhouse agriculture, pool heating, or district warmth offsets fossil-fuel heating that would have been burned anyway.
- Time-shift your uptime. In grids with high daytime solar, running more during the day and less at night lowers your effective intensity even if you don't switch providers.
- Purchase verifiable offsets. Treat this as a last resort, not a substitute — and favour additional, permanent, third-party-verified projects (Gold Standard, Verra VCS).
Preguntas frecuentes
Yearly electricity use = rig power (W) × 24 × 365 ÷ 1000. We multiply that by each row's grid intensity in grams CO₂-equivalent per kWh and convert to kilograms. Intensities are representative averages — real emissions depend on your specific utility mix, time of day, and local transmission losses.
It depends almost entirely on where the electricity comes from. A single rig plugged into hydro in Quebec emits less over a year than an average family's two cars in a month. The same rig on a coal-dominated grid can exceed that in a few days. The hardware is the same — the grid is what changes the answer.
Network-wide estimates vary by methodology; the Cambridge Centre for Alternative Finance's Bitcoin Electricity Consumption Index is the most widely cited reference. As of recent reporting, the network's sustainable-energy share has grown as more hashrate migrates to hydro, wind, solar, and stranded-gas sites. This page just estimates a single rig — for the big picture, CCAF's dashboard is the best source.
Not directly. The rig draws the same wattage regardless of which pool it joins or how difficulty trends — so its electricity use, and therefore its emissions, stay constant. Those factors change revenue, not power consumption.