FogHashing B100 1MW Dry Cooler

$153,200.00

✓ Dimensions: 11800mm(L) * 2200mm(W) * 2350mm(H)

✓ Miner Capacity: 200

✓ Number of Tanks: 10 * B100 Tank (New design)

✓ Cooling Capacity: 1MW

✓ Circulation Mode: Single Loop / Dual Loop

✓ Coolant Volume: 7000L

✓ Cooling Type: Dry Cooler

✓ Input Voltage: 3-phase 350-480V 50/60Hz

✓ Max Power Load: 1437kW

✓ Operating Power: 100kW

✓ Max Inlet/Outlet Temp: 48/56°C

✓ Ambient Temperature: -25°C~48°C

✓ Monitoring: Tank level mini-LED | Web-based portal for remote control | Standard SNMP protocol | Email integration

✓ Coolant: Not Included

 

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Specifications Overview

The setup boasts dimensions of 11800mm in length, 2200mm in width, and 2350mm in height, accommodating up to 200 miners across 10 newly designed B100 tanks. With a robust cooling capacity of 1MW and the flexibility of both single and dual loop circulation modes, it ensures efficient heat dissipation. The system holds a substantial coolant volume of 7000L and employs a dry cooler for cooling. Operating within a voltage range of 3-phase 350-480V 50/60Hz, it can handle a maximum power load of 1437kW while operating at 100kW. It maintains optimal operational temperatures with a maximum inlet/outlet temperature of 48/56°C and can endure ambient temperatures ranging from -25°C to 48°C. Monitoring is facilitated through various means, including tank level mini-LED indicators, a web-based portal for remote control, standard SNMP protocol, and email integration.

Specification Detail
Dimensions 11800mm(L) * 2200mm(W) * 2350mm(H)
Miner Capacity 200
Number of Tanks 10 * B100 Tank (New design)
Cooling Capacity 1MW
Circulation Mode Single Loop / Dual Loop
Coolant Volume 7000L
Cooling Type Dry Cooler
Input Voltage 3-phase 350-480V 50/60Hz
Max Power Load 1437kW
Operating Power 100kW
Max Inlet/Outlet Temp 48/56°C
Ambient Temperature -25°C~48°C
Monitoring
1. Tank level mini-LED
2. Web-based portal for remote control
3. Standard SNMP protocol
4. Email integration

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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.