Elphapex DG1 Series Scrypt Miners (LTC/DOGE)

$6,150.00$10,712.00

Per 10 GH/s

Per 10 GH/s

Per 10 GH/s

✓ Manufacturer: Elphapex

✓ Model: DG Series

✓ Algorithm: Scrypt (LTC+DOGE)

✓ Cryptocurrency: LTC/DOGE

✓ Hashrate: 9.5G to 14.4G

✓ Power Consumption Range: 2945W to 3950W

✓ Power Efficiency: 0.27 – 0.32 J/MH

✓ Miner Size (LengthWidthHeight, w/o package): 369 x 196 x 287 mm

 Miner Size (LengthWidthHeight, with package): 480 x 289 x 387 mm

✓ Net Weight: 16.1 kg to 18.3 kg

✓ Gross Weight: 17.4 KG

✓ Power AC Input: 200~240V

✓ Power Supply AC Input Current: 20A

✓ Networking Connection Mode: RJ45 Ethernet 10/100M

✓ Operation Temp: 0~45°C

✓ Noise: 75 dB

✓ Operation Humidity (non-condensing): 10~90% RH

✓ 3 Month repair or replace warranty included

 

All sales final. No returns or cancellations. For bulk inquiries, consult a live chat agent or call our toll-free number.

Description

✓ Manufacturer: Elphapex

✓ Model: DG Series

✓ Algorithm: Scrypt (LTC+DOGE)

✓ Cryptocurrency: LTC/DOGE

✓ Hashrate: 9.5G to 14.4G

✓ Power Consumption Range: 2945W to 3950W

✓ Power Efficiency: 0.27 – 0.32 J/MH

✓ Miner Size (LengthWidthHeight, w/o package): 369 x 196 x 287 mm

 Miner Size (LengthWidthHeight, with package): 480 x 289 x 387 mm

✓ Net Weight: 16.1 kg to 18.3 kg

✓ Gross Weight: 17.4 KG

✓ Power AC Input: 200~240V

✓ Power Supply AC Input Current: 20A

✓ Networking Connection Mode: RJ45 Ethernet 10/100M

✓ Operation Temp: 0~45°C

✓ Noise: 75 dB

✓ Operation Humidity (non-condensing): 10~90% RH

✓ 3 Month repair or replace warranty included

 

All sales final. No returns or cancellations. For bulk inquiries, consult a live chat agent or call our toll-free number.

Additional information

HASHRATE

DG1 9.5G, DG1 10G, DG1 11G, DG1+ 11.8G, DG1+ 13.6G, DG1+ 14.4G, DG1+ 14G, DG1+ 13.8G

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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.