MicroBT Whatsminer M63S+ Hydro Bitcoin Miner

$4,099.00

 

SKU: M63S+Categories: SHA-256 Miner, Asic Miners

Tags: BTC Miner, MicroBT Whatsminer M63S+ Hydro, Whatsminer M63S+ Hydro

Description

Whatsminer M63S+ 430TH/s Hydro Bitcoin Miner

The Whatsminer M63S+ is a professional hydro-cooled SHA-256 ASIC miner manufactured by MicroBT for industrial Bitcoin mining farms, containerized mining systems, hosting centres, and other high-density installations. This configuration delivers a rated hashrate of 430TH/s while consuming approximately 7,208W.

Based on the supplied performance figures, the Whatsminer M63S+ achieves a calculated energy efficiency of approximately 16.76J/TH. Its liquid-cooling design transfers heat directly from the mining components into a circulating coolant loop, reducing dependence on high-speed chassis fans and allowing more controlled thermal management.

The Whatsminer M63S+ operates on the SHA-256 algorithm and is primarily used to mine Bitcoin. It can also mine Bitcoin Cash and other compatible SHA-256 cryptocurrencies where suitable pools, wallets, firmware, and market liquidity are available.

This is not a household plug-and-play miner. Its 7.208kW electrical demand, 380–480V three-phase power requirement, rack-mounted form factor, and hydro-cooling needs make it suitable only for professionally designed facilities with trained technicians, active coolant circulation, external heat rejection, and industrial electrical protection.

Browse related machines in our ASIC miner collection, or explore professional cryptocurrency-mining hardware available from Hash Titans.

Whatsminer M63S+ Key Features

The Whatsminer M63S+ is intended for mining operators who need high SHA-256 output from a rack-mounted hydro platform. Its design supports dense deployments where electricity, cooling, networking, and heat-rejection infrastructure are centrally managed.

  • Manufacturer: MicroBT
  • Model: Whatsminer M63S+
  • Mining algorithm: SHA-256
  • Seller-supplied hashrate: 430TH/s
  • Seller-supplied power consumption: 7,208W
  • Calculated efficiency: Approximately 16.76J/TH
  • Cooling system: Hydro cooling
  • Form factor: 4U blade-style rack-mountable chassis
  • Input voltage: 380–480V AC
  • Electrical configuration: Three-phase power plus protective ground
  • Power cable requirement: Custom cable rated at 16A or higher
  • Network interface: Ethernet
  • Dimensions: Approximately 663 × 86 × 483mm
  • Net weight: Approximately 27.5kg
  • Coolant demand inside miner: Approximately 1L
  • Seller-listed operating temperature: 5°C to 45°C
  • Seller-listed humidity: 5–95%, non-condensing
  • Primary mineable cryptocurrency: Bitcoin
  • Additional compatible coin: Bitcoin Cash

Whatsminer M63S+ Specifications

ManufacturerMicroBT
ModelWhatsminer M63S+
Mining algorithmSHA-256
Rated hashrate430TH/s for this seller-supplied configuration
Power consumptionApproximately 7,208W
Calculated power efficiencyApproximately 16.76J/TH
Cooling methodHydro cooling
Form factor4U blade-style rack-mountable chassis
Input voltage380–480V AC
Electrical configurationThree-phase plus protective ground
Power cableCustom-made cable rated at 16A or higher
Network interfaceEthernet
DimensionsApproximately 663 × 86 × 483mm
Net weightApproximately 27.5kg
Internal coolant demandApproximately 1L
Seller-listed temperature range5°C to 45°C
Seller-listed humidity range5–95%, non-condensing
Primary supported networkBitcoin and compatible SHA-256 networks

Specification note: The Whatsminer M63S+ may be available in different hashrate bins, firmware modes, or production configurations. MicroBT also supports low and high performance modes on compatible hydro machines, so displayed hashrate and wall power can vary from the nominal factory setting.

This page uses the supplied 430TH/s and 7,208W figures. Buyers should verify the exact machine label, firmware-reported hashrate, wall-power rating, power-supply configuration, coolant requirements, and warranty information before purchase.

Whatsminer M63S+ Mining Overview

Whatsminer M63S+ SHA-256 mining algorithm

Algorithm

SHA-256

Whatsminer M63S+ 430TH per second hashrate

Hashrate

430TH/s

Whatsminer M63S+ 7208W power consumption

Power Consumption

Approximately 7,208W

Whatsminer M63S+ Bitcoin Mining Performance

Whatsminer M63S+ 430TH/s hydro Bitcoin miner

The Whatsminer M63S+ delivers up to 430TH/s in the configuration described on this page. This output is intended for professional mining farms where each machine can be supplied with stable three-phase electricity, coolant circulation, heat rejection, and reliable network connectivity.

Actual accepted hashrate may vary because of coolant temperature, flow rate, system pressure, firmware mode, electrical quality, network uptime, mining-pool latency, chip condition, and the machine’s factory performance bin.

Operators should compare the local management interface with pool-side accepted hashrate over several hours or days. Short dashboard peaks do not necessarily represent stable long-term output.

Important operating indicators include:

  • Real-time and average hashrate
  • Accepted and rejected shares
  • Hashboard status
  • ASIC chip errors
  • Coolant inlet temperature
  • Coolant outlet temperature
  • Liquid flow rate
  • System pressure
  • Pump status
  • Power consumption
  • Pool latency
  • Network uptime

A persistent decline in performance may indicate insufficient coolant flow, high liquid temperature, trapped air, incorrect pressure, unstable power, firmware problems, mining-pool interruption, or a hashboard fault.

Whatsminer M63S+ 16.76J/TH Efficiency

Energy-efficient Whatsminer M63S+ hydro miner

Dividing the supplied 7,208W power consumption by 430TH/s gives the Whatsminer M63S+ a calculated energy efficiency of approximately 16.76J/TH.

At the nominal 7,208W load, continuous operation consumes approximately:

  • 172.99kWh per day
  • 1,210.94kWh per week
  • 5,189.76kWh per 30-day month
  • 63,142.08kWh per year

Estimated monthly miner-only electricity costs are:

  • At $0.04/kWh: approximately $207.59
  • At $0.06/kWh: approximately $311.39
  • At $0.08/kWh: approximately $415.18
  • At $0.10/kWh: approximately $518.98
  • At $0.15/kWh: approximately $778.46
  • At $0.20/kWh: approximately $1,037.95

These calculations cover only the nominal miner load. Pumps, heat exchangers, dry coolers, cooling towers, monitoring equipment, routers, lighting, transformers, and electrical distribution losses increase total facility consumption.

Bitcoin mining profitability is not guaranteed. Bitcoin price, network difficulty, block rewards, transaction fees, pool fees, electricity rates, cooling overhead, machine price, maintenance, performance mode, and uptime all affect financial results.

Whatsminer M63S+ Hydro-Cooling Requirements

The Whatsminer M63S+ requires an active closed-loop hydro-cooling system. Coolant flows through internal aluminum-alloy cooling plates, absorbs heat from the mining components, and carries it to an external heat exchanger or facility cooling system.

Hydro cooling reduces dependence on high-speed chassis fans and helps isolate internal components from airborne dust. However, the miner still produces approximately 7.2kW of continuous heat that must be removed or reused by the facility.

Typical Hydro System Components

  • MicroBT-compatible coolant
  • Circulation pump
  • Supply and return manifolds
  • Compatible quick connectors
  • Flow meter
  • Pressure sensors
  • Coolant temperature sensors
  • Expansion tank
  • Air-separation or bleeding points
  • Filtration system
  • Heat exchanger
  • Dry cooler or cooling tower
  • Leak detection
  • Emergency shutdown controls

Hydro-Cooling Safety

  • Use coolant approved for the MicroBT hydro system.
  • Do not mix incompatible metals, fluids, or additives.
  • Flush new pipes and manifolds before connection.
  • Remove trapped air before applying mining load.
  • Maintain the required flow and pressure.
  • Monitor inlet and outlet temperatures continuously.
  • Inspect hoses, seals, fittings, and connectors regularly.
  • Protect electrical connections from leaks and condensation.
  • Shut down the miner if coolant circulation stops.
  • Do not replace factory quick connectors with incompatible types.

The approximately 1L coolant figure refers to fluid contained inside the miner. The complete facility loop requires substantially more coolant depending on pipe length, manifolds, heat exchangers, expansion volume, and the number of connected miners.

Mineable Coins with Whatsminer M63S+

Bitcoin mined with Whatsminer M63S+

Bitcoin

Bitcoin is the primary cryptocurrency mined by the Whatsminer M63S+. The machine performs SHA-256 calculations and submits valid shares to a compatible mining pool.

Bitcoin Cash mined with Whatsminer M63S+

Bitcoin Cash

The Whatsminer M63S+ can also mine Bitcoin Cash through a compatible SHA-256 mining pool.

Other technically compatible SHA-256 networks may include Fractal Bitcoin, eCash, Peercoin, Bitcoin SV, and additional coins where appropriate pool, wallet, and exchange support exist.

Before switching networks, compare mining difficulty, expected revenue, block rewards, pool availability, wallet compatibility, and market liquidity.

For general information about Bitcoin and proof-of-work mining, review the official Bitcoin educational resources.

Whatsminer M63S+ Mining-Pool Setup

The Whatsminer M63S+ will normally connect to a professional SHA-256 mining pool. Pool mining combines the output of many machines and distributes rewards according to accepted shares and the pool’s payment structure.

Before selecting a pool, compare:

  • Pool fees
  • Payout thresholds
  • Payout methods
  • Server locations
  • Historical uptime
  • Security controls
  • Monitoring features
  • Backup-server support

Configuration normally requires a mining-pool URL, worker name, password, and payout address. Secondary and tertiary servers should be entered where supported to reduce downtime.

The Ethernet interface of the Whatsminer M63S+ should connect to a secure, stable network with firewall protection, monitoring, and backup connectivity where practical.

Whatsminer M63S+ Electrical Requirements

The Whatsminer M63S+ requires a 380–480V AC three-phase supply with protective grounding. It must not be connected to an ordinary household single-phase outlet.

At the nominal 7,208W load, approximate balanced three-phase line current is:

  • Approximately 10.95A per phase at 380V, assuming a power factor near 1
  • Approximately 10.03A per phase at 415V, assuming a power factor near 1
  • Approximately 8.67A per phase at 480V, assuming a power factor near 1

Actual current depends on power factor, measured wall consumption, firmware mode, supply voltage, cable losses, and the delivered power-supply specification.

Electrical preparation may require:

  • A grounded 380–480V three-phase supply
  • A correctly rated breaker or fused disconnect
  • A custom cable rated at 16A or higher
  • Appropriate conductor sizes
  • Overcurrent and surge protection
  • Emergency shutdown capability
  • Dry and protected power connections
  • Phase and voltage monitoring
  • Compliance with local electrical regulations

A qualified industrial electrician must inspect and approve the electrical installation before the Whatsminer M63S+ is energized.

Whatsminer M63S+ Installation Guide

Installation of the Whatsminer M63S+ should be completed by personnel experienced with three-phase electricity, rack-mounted ASIC miners, pumps, coolant systems, heat exchangers, and mining-network configuration.

  1. Inspect the miner and packaging for shipping damage.
  2. Confirm the exact model, hashrate, and power rating.
  3. Verify that the rack can support the machine securely.
  4. Flush new coolant pipes and manifolds.
  5. Mount the miner in the approved rack position.
  6. Connect the coolant inlet and outlet correctly.
  7. Use compatible MicroBT quick connectors.
  8. Connect the miner to the facility manifolds.
  9. Fill and bleed the coolant circuit.
  10. Confirm stable flow and pressure.
  11. Verify heat-exchanger and external-cooling operation.
  12. Inspect the complete loop for leaks.
  13. Connect the Ethernet cable.
  14. Connect the approved three-phase power cable.
  15. Start the cooling system before applying mining load.
  16. Power on the miner.
  17. Locate its IP address.
  18. Open the management interface.
  19. Change default credentials where supported.
  20. Configure primary and backup mining pools.
  21. Monitor hashrate, coolant temperature, flow, pressure, and power.

During commissioning, watch the Whatsminer M63S+ for coolant leaks, trapped air, abnormal pressure, unstable flow, excessive temperature, electrical faults, repeated restarts, rejected shares, and hashboard errors.

Whatsminer M63S+ Maintenance

Regular maintenance helps the Whatsminer M63S+ preserve stable thermal performance, predictable hashrate, and lower downtime.

  • Monitor coolant inlet and outlet temperatures.
  • Check liquid flow and system pressure.
  • Inspect pumps, manifolds, hoses, and fittings.
  • Check coolant for contamination or degradation.
  • Maintain filters according to schedule.
  • Inspect heat exchangers and external coolers.
  • Bleed trapped air when necessary.
  • Compare local and pool-side hashrate.
  • Check rejected shares and hardware errors.
  • Inspect three-phase electrical connections.
  • Install firmware only from official MicroBT sources.
  • Record configuration settings before updates.
  • Isolate electrical power before servicing.

Do not operate the machine without confirmed coolant circulation. Do not introduce untreated tap water, incompatible coolant, or unapproved additives into the loop.

Review the official WhatsMiner hydro-cooling operation guide before installation or maintenance.

Why Choose the Whatsminer M63S+?

The Whatsminer M63S+ may suit large-scale operators who want high hashrate density, centralized liquid cooling, reduced chassis-fan maintenance, and a rack-mounted mining platform.

  • Up to 430TH/s for this configuration
  • Approximately 7,208W power consumption
  • Approximately 16.76J/TH calculated efficiency
  • Purpose-built hydro cooling
  • 4U blade-style rack form factor
  • 380–480V three-phase input
  • Ethernet connectivity
  • Approximately 27.5kg net weight
  • Approximately 1L internal coolant demand
  • Support for Bitcoin and Bitcoin Cash
  • Suitable for continuous professional operation

The main limitations are the requirement for industrial three-phase electricity, pumps, coolant infrastructure, external heat rejection, leak protection, compatible quick connectors, and trained technical maintenance.

Browse more Bitcoin ASIC miners to compare the Whatsminer M63S+ with other MicroBT, air-cooled, hydro-cooled, and immersion mining systems.

Whatsminer M63S+ Frequently Asked Questions

What is the Whatsminer M63S+?

The Whatsminer M63S+ is a professional hydro-cooled SHA-256 ASIC miner manufactured by MicroBT.

What is its rated hashrate?

The configuration described on this page is rated at 430TH/s.

How much power does it consume?

The supplied nominal power consumption is approximately 7,208W.

What is its energy efficiency?

At 430TH/s and 7,208W, the calculated efficiency is approximately 16.76J/TH.

Can specifications vary between units?

Yes. M63S+ miners may be sold in different factory bins or operated in different performance modes. Always verify the delivered machine label.

Which algorithm does it use?

The miner operates on SHA-256.

Can the Whatsminer M63S+ mine Bitcoin?

Yes. Bitcoin is the primary cryptocurrency associated with the miner.

Can it mine Bitcoin Cash?

Yes. Bitcoin Cash uses SHA-256 and can be mined through a compatible pool.

Is it air cooled?

No. The Whatsminer M63S+ requires an active hydro-cooling system.

Does hydro cooling eliminate heat?

No. It transfers heat into the coolant. The facility must still reject or reuse the heat through an external cooling system.

Does it require chassis fans?

Hydro models do not depend on the same high-speed chassis airflow used by conventional air-cooled miners.

What voltage does it require?

It requires approximately 380–480V AC three-phase power with protective grounding.

Can it run from a household outlet?

No. It requires a professionally installed industrial electrical supply.

What are its dimensions?

The listed dimensions are approximately 663 × 86 × 483mm.

How much does it weigh?

The listed net weight is approximately 27.5kg.

How much coolant does it require?

The miner itself holds approximately 1L, but the complete cooling loop requires additional fluid.

How much electricity does it use daily?

At 7,208W, continuous operation consumes approximately 172.99kWh every 24 hours.

Can the Whatsminer M63S+ be overclocked?

Compatible WhatsMiner hydro units may support performance modes, but settings should only be changed according to official MicroBT guidance and facility limits.

Is it suitable for home mining?

No. Its three-phase electrical demand, hydro infrastructure, heat output, and rack-installation requirements make it unsuitable for ordinary household use.

Is the Whatsminer M63S+ profitable?

Profitability is not guaranteed. It depends on Bitcoin price, network difficulty, block rewards, transaction fees, pool fees, electricity rates, cooling overhead, equipment price, maintenance, and uptime.

Buy Whatsminer M63S+ Hydro Mining Hardware

The Whatsminer M63S+ delivers up to 430TH/s of SHA-256 mining output in this configuration, with approximately 7,208W power consumption and a calculated efficiency of 16.76J/TH. Its hydro-cooling design, rack-mounted chassis, Ethernet connection, and three-phase power system make it suitable for professionally designed Bitcoin mining facilities.

Before ordering, confirm the exact factory hashrate, power rating, voltage, connector, coolant type, flow requirement, pressure limits, heat-rejection capacity, mining-pool compatibility, and warranty conditions. Visit Hash Titans to compare the Whatsminer M63S+ with other professional Bitcoin mining machines.

Reviews

There are no reviews yet.

Be the first to review “MicroBT Whatsminer M63S+ Hydro Bitcoin Miner”

Your email address will not be published. Required fields are marked *