Nvidia RTX 3070 Profitability
2925.61%
Profitability
Period | /Day | /Month |
---|---|---|
Income | $0.01 | $0.30 |
Cost $0.1/kWh |
$0.20 | $6.00 |
Profitability | -$0.19 | -$5.70 |
Algorithms
Algorithm | Efficiency | Profit |
---|---|---|
KAWPOW
28.915703Mh - 152.0W |
0.19 j/h |
$0.03
/day
|
Octopus
47.257521Mh - 129.0W |
0.37 j/h |
$0.02
/day
|
Autolykos2
173.125703Mh - 130.0W |
1.33 j/h |
-$0.01
/day
|
BeamHashIII
30Hh - 119.0W |
0.25 j/h |
-$0.04
/day
|
Zhash
80Hh - 119.0W |
0.67 j/h |
-$0.06
/day
|
CuckooCycle
7Hh - 108.0W |
0.06 j/h |
-$0.07
/day
|
X16Rv2
176.201Kh - 45.0W |
3.92 j/h |
-$0.11
/day
|
NeoScrypt
1.49027Mh - 112.0W |
0.01 j/h |
-$0.14
/day
|
NexaPoW
2.094124Mh - 63.0W |
30.08 j/Mh |
-$0.14
/day
|
Etchash
61.785703Mh - 117.0W |
0.53 j/h |
-$0.19
/day
|
Keccak
1.174127461Gh - 122.0W |
0.01 j/h |
-$0.22
/day
|
Ethash
61.785703Mh - 117.0W |
1.89 j/Mh |
-$0.23
/day
|
X16R
18.16164Mh - 102.0W |
0.18 j/h |
-$0.24
/day
|
Cuckatoo32
0Hh - 109.0W |
Inf j/Hh |
-$0.26
/day
|
RandomX
923Hh - 126.0W |
j/Mh |
-$0.28
/day
|
Lyra2REv2
71.03535Mh - 119.0W |
1.68 j/Mh |
-$0.29
/day
|
KHeavyHash
522.553988Mh - 124.0W |
j/Gh |
-$0.30
/day
|
Blake (2s)
6.541506382Gh - 124.0W |
0.05 j/h |
-$0.30
/day
|
Lyra2z
5.7952Mh - 125.0W |
0.05 j/h |
-$0.30
/day
|
Eaglesong
1.263Mh - 203.0W |
j/Gh |
-$0.49
/day
|
Blake3
1.4269677Gh - 235.0W |
164.68 j/Gh |
-$0.56
/day
|
Description
Model Nvidia RTX 3070 from Nvidia mining algorithm NexaPoW with a maximum hashrate of 2.094124M for a power consumption of 108w.
Specification
Base Clock | 1500 MHz |
Boost Clock | 1730 MHz |
CUDA cores | 5888 |
GPU Power | 220 W |
Max Memory Size | 8 GB |
Max temp. | 93°C |
Memory Clock | 9500 MHz |
Memory Interface | 256 Bits |
Memory Type | GDDR6 |
Release | October 2020 |
Mining pools
Pool | Start Mining |
---|---|
Nicehash | nicehash.com |
Mining Rig Rental | miningrigrental.com |
zpool | zpool.ca |
XmrPool | xmrpool.net |
Zergpool | zergpool.com |
XmrPool Hub | xmrpoolhub.com |
Mining Pool Hub | miningpoolhub.com |
Carbon Footprint
Estimating the carbon footprint from the cryptocurrency mining operations of the Nvidia RTX 3070 in a year, based on energy consumption and various energy sources
Energy Source | Carbon Intensity (gCO2e/kWh) | Yearly Power Consumption (kWh) | Yearly Carbon Footprint (kgCO2e/year) |
---|---|---|---|
Wind | 10 | ||
Nuclear | 11 | ||
Hydroelectric | 22 | ||
Geothermal | 35 | ||
Solar | 41 | ||
Biofuels | 214 | ||
Gas | 457 | ||
Coal | 765 |
Warning: The numbers provided above are merely an estimate of the carbon footprint resulting from cryptocurrency mining. They are presented for informational purposes and should be seen as references only, not as an absolute exact figure. The actual carbon emissions can vary based on many different factors such as the approach, calculation methods, and specific parameters of each mining technology type. We recommend users to consider these figures as a small part of a larger environmental picture and the impact of cryptocurrency mining on it.