Mining Benchmarks For Rtx 4070 Ti Super Undervolt: Efficiency & Profitability

The NVIDIA GeForce RTX 4070 Ti has gained popularity among cryptocurrency miners due to its impressive performance and energy efficiency. One of the key techniques to maximize its potential is the super undervolt method, which reduces power consumption while maintaining high hash rates. This article explores mining benchmarks for the RTX 4070 Ti with super undervolt settings, focusing on efficiency and profitability.

Understanding Super Undervolt for RTX 4070 Ti

Super undervolting involves lowering the voltage supplied to the GPU, which decreases power draw and heat output. This process can lead to increased stability and longevity of the hardware, while also reducing electricity costs. For miners, the goal is to find the optimal balance where hash rates remain high, but power consumption drops significantly.

Benchmarking Methodology

Benchmark tests were conducted using the latest NVIDIA drivers and popular mining software such as NiceHash and PhoenixMiner. The RTX 4070 Ti was configured with super undervolt settings, typically around 850-900 mV, and core clock speeds were adjusted for stability. Power consumption, hash rate, and temperature were recorded over extended periods to ensure accuracy.

Mining Performance Results

Under super undervolt settings, the RTX 4070 Ti achieved notable improvements in efficiency without a significant drop in hash rate. The following summarizes the benchmark results:

  • Hash Rate: 37-39 MH/s on Ethereum (Ethash)
  • Power Consumption: 140-150 W
  • Temperature: 65-70°C
  • Efficiency: Approximately 0.26 MH/W

Comparison with Default Settings

Compared to default factory settings, super undervolting reduced power consumption by around 20-25%, with only a 5% decrease in hash rate. This translates into lower electricity costs and less thermal stress, which can extend the lifespan of the GPU.

Profitability Analysis

The improved efficiency directly impacts profitability, especially in regions with high electricity rates. For example, with an electricity cost of $0.10 per kWh, the reduced power draw results in savings of approximately $4-5 per day per GPU. Over time, these savings can offset the initial effort of fine-tuning undervolt settings.

Assuming a consistent hash rate of 38 MH/s and current Ethereum prices, the daily mining revenue remains stable at around $8-9. After deducting electricity costs, the net profit increases by roughly 20-25%, making super undervolt a compelling strategy for miners seeking higher margins.

Best Practices for Super Undervolt Tuning

To optimize your RTX 4070 Ti for mining with super undervolt, consider the following tips:

  • Start with conservative voltage reductions and gradually decrease until stability issues occur.
  • Monitor temperature and power consumption continuously during tuning.
  • Use reliable overclocking software like MSI Afterburner or EVGA Precision X1.
  • Keep drivers and mining software up to date for optimal performance.
  • Regularly check for hardware stability and thermal health.

Conclusion

Super undervolting the RTX 4070 Ti offers a promising way to enhance mining efficiency and profitability. By reducing power consumption and thermal output, miners can achieve higher margins while prolonging hardware lifespan. Proper tuning and ongoing monitoring are essential to maximize benefits and ensure stable operation.