




WHATSMINER M30S++ 106TH
SKU: MIAM30S31W106
$991.58 USD
Minimum Order Qty is 5
- Hashrate: 106Th
- Algorithum: SHA-256
- Power:: 220-240V
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WHATSMINER M30S++ 106TH
$991.58
Whastminer M30S++ Features
The Future of Mining
The WHATSMINER M30S++ 106TH Series is the latest generation of Asic Miners that are designed with advanced technology, improving operations and ensuring long-term operations for future mining. Industry-Leading Hash Rates, Reaching The next-generation achieves ± 3% TH/s leading the industry through performance. J/TH Power Efficiency. The has a power consumption of ± 5% W and power efficiency of J/TH, further improving the efficiency from its predecessor.
is An application-specific integrated circuit (ASIC) is an integrated circuit (IC) chip customized for a particular use, rather than intended for general-purpose use. For example, a chip designed to run in a digital voice recorder or a high-efficiency Bitcoin miner is an ASIC. Application-specific standard product (ASSP) chips are intermediate between ASICs and industry-standard integrated circuits like the 7400 series or the 4000 series. ASIC chips are typically fabricated using metal-oxide-semiconductor (MOS) technology, as MOS integrated circuit chips.
MicroBT is a manufacturer of cryptocurrency, blockchain, and artificial intelligence computing hardware, and also operates the world’s largest and second-largest Bitcoin mining pools according to the companies website.
As feature sizes for have shrunk and design tools improved over the years, the maximum complexity (and hence functionality) possible in an ASIC has grown from 5,000 logic gates to over 100 million. Modern ASICs often include entire microprocessors, memory blocks including ROM, RAM, EEPROM, flash memory, and other large building blocks. Such an ASIC is often termed an SoC (system-on-chip). Designers of digital ASICs often use a hardware description language (HDL), such as Verilog or VHDL, to describe the functionality of ASICs.
utilizes Field-programmable gate arrays (FPGA) are the modern-day technology for building a breadboard or prototype from standard parts[vague]; programmable logic blocks and programmable interconnects allow the same FPGA to be used in many different applications. For smaller designs or lower production volumes, FPGAs may be more cost-effective than an ASIC design, even in production. The non-recurring engineering (NRE) cost of an ASIC can run into the millions of dollars. Therefore, device manufacturers typically prefer FPGAs for prototyping and devices with low production volume and ASICs for very large production volumes where NRE costs can be amortized across many devices.
Early ASICs used gate array technology. By 1967, Ferrari and InterDesign were manufacturing early bipolar gate arrays. In 1967, Fairchild Semiconductor introduced the Micro matrix family of bipolar diode–transistor logic and transistor-transistor logic arrays.
Complementary metal-oxide-semiconductor (CMOS) technology opened the door to the broad commercialization of gate arrays. The first CMOS gate arrays were developed by Robert Lipp in 1974 for International Microcircuits, Inc.
utilizes a Metal-oxide-semiconductor standard cell technology was introduced by Fairchild and Motorola, under the trade names Micromosaic and Polycell, in the 1970s. This technology was later successfully commercialized by VLSI Technology and LSI Logic.
A successful commercial application of gate array circuitry was found in the low-end 8-bit ZX81 and ZX Spectrum personal computers, introduced in 1981 and 1982. These were used by Sinclair Research essentially as a low-cost I/O solution aimed at handling the computer’s graphics.
Customization occurred by varying a metal interconnect mask. Gate arrays had complexities of up to a few thousand gates; this is now called mid-scale integration. Later versions became more generalized, with different base dies customized by both metal and polysilicon layers. Some base dies also include random-access memory (RAM) elements.





Algorithm
SHA-256
Power Consumption
220-240V
Hashrate
106TH/S
Mineable Coins With Whastminer M30S++
Bitcoin
Bitcoin Cash
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Techinical Specifications
Manufacturer: MicroBt
Model: Whastminer M30S++
Hashrate: 106Th
Release Date: April 2025Th
Dimensions: 430mm (L) x 155mm (W) x 226mm (H)
Weight: 11.7Kg
Noise: 75 db
Fans / Cooling: 2
Power: 220-240V
Voltage: 12V
Interface: Ethernet
Temperature: -5-40 °C
Humidity: %
Warranty: Warranty
Introducing the Powerful WHATSMINER M30S++ 106TH for Bitcoin Mining
Unleashing High-Performance Bitcoin Mining with the WHATSMINER M30S++ 106TH
The WHATSMINER M30S++ 106TH stands as a robust and efficient Bitcoin mining machine, engineered by MicroBT, a well-regarded manufacturer in the cryptocurrency mining hardware industry. This miner is designed to deliver a substantial hash rate, making it a popular choice for both large-scale mining farms and individual miners seeking reliable performance. The WHATSMINER M30S++ 106TH represents a significant iteration in MicroBT’s M30 series, focusing on enhanced power and efficiency for optimized Bitcoin mining operations.Year of Release: The WHATSMINER M30S++ 106TH’s Market Introduction
The WHATSMINER M30S++ Bitcoin miner series, including the 106TH model, was released in the latter half of 2020. This timing is important as it places the WHATSMINER M30S++ 106TH within a specific generation of ASIC miners, reflecting the technological capabilities and efficiency standards prevalent at that time. Understanding the release year helps miners gauge its performance relative to newer and older models and assess its long-term viability in the competitive Bitcoin mining landscape.Building on Innovation: Upgrades from the Predecessor Model
Increased Hash Rate for Enhanced Mining Potential
The WHATSMINER M30S++ 106TH represents a notable upgrade in hash rate compared to its direct predecessor, the WHATSMINER M30S. While the M30S typically offered hash rates in the range of 86-88 TH/s, the WHATSMINER M30S++ 106TH boasts a significantly higher hash rate, often reaching 106 TH/s. This substantial increase in Terahashes per second (TH/s) directly translates to a greater ability to perform the calculations required to mine Bitcoin, thereby increasing the miner’s chances of discovering new blocks and earning the associated Bitcoin rewards. For mining operators, this upgrade meant a potential for higher revenue generation with a corresponding increase in processing power.Improved Energy Efficiency for Cost Optimization
A crucial area of improvement in the WHATSMINER M30S++ 106TH is its enhanced energy efficiency. Measured in Joules per Terahash (J/TH), the WHATSMINER M30S++ 106TH typically exhibits a lower energy consumption per unit of hashing power compared to the base M30S model. This reduction in power consumption is vital for minimizing operational costs, as electricity expenses constitute a significant portion of the overall cost of Bitcoin mining. The improved efficiency of the WHATSMINER M30S++ 106TH allowed mining operations to achieve a higher hash rate with a more controlled increase in energy usage, leading to better profitability margins.Refined ASIC Chip Technology
The performance enhancements in the WHATSMINER M30S++ 106TH are largely attributed to advancements in its custom-designed ASIC (Application-Specific Integrated Circuit) chips. These chips are specifically engineered for the SHA-256 algorithm used by the Bitcoin network. Compared to the chips in the M30S, the WHATSMINER M30S++ 106TH likely incorporates a more efficient design or a smaller nanometer process, enabling higher computational power at a lower energy cost. This evolution in ASIC technology is central to the continuous improvements seen in Bitcoin mining hardware.Optimized Cooling System for Sustained Performance
To handle the increased power and hash rate, the WHATSMINER M30S++ 106TH features an optimized air-cooling system. High-performance ASIC miners generate considerable heat during operation, and an effective cooling solution is essential for maintaining stable performance and prolonging the lifespan of the hardware. The upgraded heat sinks and fans in the WHATSMINER M30S++ 106TH are designed to dissipate heat efficiently, ensuring that the miner operates within its optimal temperature range even under continuous, demanding workloads. This robust cooling system contributes to the overall reliability and consistent performance of the WHATSMINER M30S++ 106TH.Key Product Specifications of the WHATSMINER M30S++ 106TH and Their Importance in Bitcoin Mining
Hash Rate: 106 TH/s
The hash rate, measured in Terahashes per second (TH/s), is the primary indicator of a Bitcoin miner’s computational power. A hash rate of 106 TH/s means the WHATSMINER M30S++ 106TH can perform 106 trillion SHA-256 calculations every second. This high processing capability directly influences the miner’s ability to compete on the Bitcoin network and increases the likelihood of successfully mining new blocks and earning Bitcoin rewards. A stronger hash rate, such as that offered by the WHATSMINER M30S++ 106TH, is crucial for maximizing potential revenue in Bitcoin mining operations.Power Consumption: Approximately 3400W
Power consumption, typically measured in Watts (W), indicates the amount of electrical energy the WHATSMINER M30S++ 106TH requires to operate. With a power consumption of around 3400W, it’s essential for miners to factor in their electricity costs when assessing the profitability of this model. Balancing a high hash rate with manageable power consumption is a key consideration in Bitcoin mining economics, and the WHATSMINER M30S++ 106TH aims to provide a favorable balance.Power Efficiency: Approximately 32 J/TH
Power efficiency, measured in Joules per Terahash (J/TH), is a critical metric that reflects how effectively a miner converts electrical energy into hashing power. A power efficiency of approximately 32 J/TH for the WHATSMINER M30S++ 106TH signifies a relatively efficient design for its generation. A lower J/TH value indicates that the miner consumes less energy for each unit of hashing power, leading to lower electricity costs per Bitcoin mined and improved overall profitability. Power efficiency is a vital factor in the long-term viability of a Bitcoin mining operation.Chip Type: Custom ASIC
The WHATSMINER M30S++ 106TH utilizes custom-designed Application-Specific Integrated Circuit (ASIC) chips. These chips are specifically engineered for the SHA-256 hashing algorithm, which is the foundation of the Bitcoin network’s proof-of-work system. ASICs are significantly more efficient at this specific task compared to general-purpose processors (CPUs) or graphics processing units (GPUs), making them the standard for competitive Bitcoin mining. The advanced ASIC technology within the WHATSMINER M30S++ 106TH is what enables its high hash rate and relatively optimized power consumption.Cooling System: Air-Cooled with High-Performance Fans
The WHATSMINER M30S++ 106TH employs an air-cooling system, typically featuring multiple high-performance fans, to dissipate the heat generated by the ASIC chips. An effective cooling system is crucial for maintaining the miner’s optimal operating temperature, preventing performance degradation due to overheating, and extending its lifespan. The robust air-cooling solution in the WHATSMINER M30S++ 106TH is designed to ensure stable and reliable operation, even under continuous high-load conditions, which is essential for maximizing mining uptime and profitability.Noise Level: Approximately 75 dB
The noise level, measured in decibels (dB), indicates the sound produced by the miner during operation, primarily from its cooling fans. A noise level of around 75 dB is typical for high-performance air-cooled ASIC miners like the WHATSMINER M30S++ 106TH. This level of noise can be significant and is an important consideration for miners when choosing a location for their equipment. Proper soundproofing or placement in dedicated mining facilities is often necessary to mitigate noise pollution. While noise level doesn’t directly impact mining performance, it is a practical factor for operational comfort and regulatory compliance.Operating Temperature: -5 – 40 °C
The operating temperature range specifies the environmental conditions under which the WHATSMINER M30S++ 106TH is designed to function optimally. A typical range of -5 to 40 °C highlights the need for a controlled environment to ensure stable and efficient operation. Extreme temperatures can negatively impact the miner’s performance and potentially cause damage. Maintaining the WHATSMINER M30S++ 106TH within its recommended operating temperature range is crucial for its reliability and longevity.Connectivity: Ethernet
The WHATSMINER M30S++ 106TH connects to the network via an Ethernet port. A stable and reliable network connection is essential for Bitcoin mining, as the miner needs to communicate constantly with the mining pool and the Bitcoin network to receive work and submit results. Ethernet connections provide the necessary bandwidth and stability for uninterrupted mining operations, ensuring that the WHATSMINER M30S++ 106TH can effectively contribute its hashing power and receive rewards.Dimensions and Weight: 485 x 230 x 355 mm, Approximately 12.5 kg
The physical dimensions and weight of the WHATSMINER M30S++ 106TH are important considerations for setting up and managing a mining operation, especially when deploying multiple units. Its dimensions of 485 x 230 x 355 mm and a weight of around 12.5 kg make it manageable for rack mounting and deployment in typical mining infrastructure. These specifications affect factors such as space requirements, transportation logistics, and overall facility planning for miners utilizing the WHATSMINER M30S++ 106TH.The Importance of Specifications for Successful Bitcoin Mining
A comprehensive understanding of the WHATSMINER M30S++ 106TH’s specifications is vital for anyone involved in Bitcoin mining. The hash rate directly determines the potential for revenue generation, while power consumption dictates the ongoing operational costs. The power efficiency reflects the cost-effectiveness of the miner over time. The cooling system ensures the miner’s stability and longevity, and the noise level can impact the suitability of different deployment environments. By carefully evaluating these specifications, miners can make informed decisions about their hardware investments and optimize their operations for maximum profitability in the dynamic field of Bitcoin mining. The WHATSMINER M30S++ 106TH strikes a strong balance between high performance and relative efficiency, making it a valuable asset for many Bitcoin mining endeavors.Final Thoughts on the WHATSMINER M30S++ 106TH
The WHATSMINER M30S++ 106TH represents a significant step forward in Bitcoin mining technology from its predecessor, offering substantial improvements in both hash rate and energy efficiency. Released in late 2020, it quickly became a popular choice due to its robust performance and relatively favorable power consumption. By carefully considering its key specifications, including its impressive hash rate and optimized power efficiency, Bitcoin miners can effectively leverage the capabilities of the WHATSMINER M30S++ 106TH to enhance their mining operations and strive for profitability in the ever-evolving landscape of cryptocurrency mining.Ready to Buy
WHATSMINER M30S++ 106THs
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- We accept payments via Wire Transfer through banks, cryptocurrency (Bitcoin, Ethereum), or stable coins (USDC, USDT).
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