DesiweMiner K10 Pro 170TH/s 3825W

$4,500.00

✓ Crypto Algorithm: SHA256

✓ Normal Mode

  • Hashrate: 170 TH/s
  • Power Efficiency: 22.5 J/TH (±5%)
  • Power On Wall: 3825 W (±5%)

✓ SmartBoost

  • Hashrate: 200 TH/s
  • Power Efficiency: 24.5J/T ±5%
  • Power On Wall: 4900W ±5%

✓ Internet Connection: RJ45 Ethernet 100/1000M

✓ Display: 0.96″ OLED, 128×64

✓ Power Supply:

  • AC Input Voltage: 200~277V
  • AC Input Frequency: 47~63Hz
  • AC Input Current: IEC C19*2, 32A

✓ Hardware Configuration:

  • Miner Size (Without Package): 402×195.7×299.5 mm
  • Miner Size (With Package): 500x294x407 mm
  • Net Weight: 18.7 kg
  • Gross Weight: 20.2 kg

✓ Environment Requirements:

  • Operation Temperature: -10~45°C
  • Storage Temperature: -20~70°C
  • Operation Humidity: 10%~90% RH

6 months manufacturer warranty included.

 

This is a preorder for the December 2023 batch with delivery in January. All sales final. No returns or cancellations. For bulk inquiries, please consult a live chat agent or call out toll-free number.

High-Performance Mining with SmartBoost

Achieving top-tier performance in cryptocurrency mining is now more accessible with the SmartBoost feature of this mining rig. In SmartBoost mode, it boasts an impressive hashrate of 200 TH/s while maintaining an energy-efficient operation at 22.0 J/TH, which is only a slight increase in power consumption compared to normal mode. This means that miners can harness the extra processing power without a substantial spike in energy costs, making it an attractive choice for those looking to maximize their mining operations. With a power draw of 4400 Watts at 25°C, this miner delivers robust performance while maintaining energy efficiency.

Robust Hardware and Environment Compatibility

This cryptocurrency mining rig is designed for durability and adaptability. Its robust hardware configuration, with dimensions of 402×195.7×299.5 mm without packaging, ensures a compact yet powerful setup. The unit’s net weight of 18.7 kg and gross weight of 20.2 kg make it relatively easy to transport and set up in various mining environments. Moreover, it can withstand a wide range of operating conditions, with an operational temperature range of -10°C to 45°C, ensuring it performs reliably in both hot and cold climates. Whether you’re a seasoned miner or just getting started, this mining rig’s combination of performance, efficiency, and adaptability positions it as a strong contender in the cryptocurrency mining arena.

Specification Detail
Crypto Algorithm SHA256
Normal Mode
– Hashrate 170Th/s
– Power Efficiency @25°C 22.5J/T ±5%
– Power On Wall @25°C 3825W ±5%
SmartBoost
– Hashrate 200Th/s
– Power Efficiency @25°C 24.5J/T ±5%
– Power On Wall @25°C 4900W ±5%
Internet Connection RJ45 Ethernet 100/1000M
Display 0.96″OLED, 128*64
Power Supply
AC Input Voltage 200~277V
AC Input Frequency Range 47~63Hz
AC Input Current IEC C19*2, 32A
Hardware Configuration
Miner Size Without Package (L*W*H) 335*195.7*299.5mm
Miner Size With Package (L*W*H) 445*294*407mm
Net Weight 16.2kg
Gross Weight 17.5kg
Environment Requirements
Operation Temperature -10~45℃
Storage Temperature -20~70℃
Operation Humidity 10%~90%RH

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Frequently Asked Questions

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Blockchain uses consensus mechanisms, such as Proof of Work (PoW) or Proof of Stake (PoS), to validate and agree on the state of the network. These mechanisms require participants (nodes or validators) to solve complex mathematical puzzles or stake cryptocurrency to participate in the consensus process.

Blockchain uses consensus mechanisms, such as Proof of Work (PoW) or Proof of Stake (PoS), to validate and agree on the state of the network. These mechanisms require participants (nodes or validators) to solve complex mathematical puzzles or stake cryptocurrency to participate in the consensus process.

Blockchain uses consensus mechanisms, such as Proof of Work (PoW) or Proof of Stake (PoS), to validate and agree on the state of the network. These mechanisms require participants (nodes or validators) to solve complex mathematical puzzles or stake cryptocurrency to participate in the consensus process.

Blockchain uses consensus mechanisms, such as Proof of Work (PoW) or Proof of Stake (PoS), to validate and agree on the state of the network. These mechanisms require participants (nodes or validators) to solve complex mathematical puzzles or stake cryptocurrency to participate in the consensus process.

Blockchain uses consensus mechanisms, such as Proof of Work (PoW) or Proof of Stake (PoS), to validate and agree on the state of the network. These mechanisms require participants (nodes or validators) to solve complex mathematical puzzles or stake cryptocurrency to participate in the consensus process.