

MicroBT Whatsminer M30S++ 86Th Bitcoin Miner
SKU: MBWM30S++86
$949.00 USD
Minimum Order Qty is 5
- Hashrate: 88Th
- Algorithum: SHA-256
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MicroBT Whatsminer M30S++ 86Th Bitcoin Miner
$949.00
Whatsminer M30S++ Features
The Future of Mining
The MicroBT Whatsminer M30S++ 86Th Bitcoin Miner 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
Hashrate
88TH/S
Mineable Coins With Whatsminer M30S++
Bitcoin
Bitcoin Cash
Fully Managed Crypto Hosting
Leverage years of hosting expertise to maximize your crypto mining profitability with our proven solution
Techinical Specifications
Manufacturer: Bitmain
Model: Whatsminer M30S++
Hashrate: 88Th
Dimensions: 390mm(L) x 130mm(W) x 220mm(H)
Noise: Unlisted
Fans / Cooling: 2
Voltage: 12V
Interface: Ethernet
Temperature: '-5-40 °C
Humidity: %
Warranty: Warranty
Introducing the High-Performance Whatsminer M30S++ 86Th for Bitcoin Mining
Unleashing Superior Mining Efficiency with the Whatsminer M30S++ 86Th
Embark on a journey of optimized Bitcoin mining with the robust Whatsminer M30S++ 86Th. Engineered by MicroBT, a prominent player in the cryptocurrency mining hardware industry, this powerful miner is meticulously designed to deliver exceptional hash rates and enhanced energy efficiency. The Whatsminer M30S++ 86Th stands as a testament to MicroBT’s dedication to innovation, offering a compelling solution for both large-scale mining farms and individual miners seeking to maximize their returns. The Whatsminer M30S++ 86Th represents a significant advancement in ASIC mining technology, building upon the legacy of its predecessors and incorporating state-of-the-art features to thrive in the competitive Bitcoin mining ecosystem.Year of Release and Technological Context of the Whatsminer M30S++ 86Th
The highly anticipated Whatsminer M30S++ 86Th was introduced to the market in 2020. Its release year is crucial for understanding its technological standing within the timeline of Bitcoin mining hardware development. 2020 was a period marked by intense competition and a growing demand for more efficient and powerful mining equipment. The arrival of the Whatsminer M30S++ 86Th addressed this demand, offering a significant upgrade in performance and efficiency, solidifying its position as a key player in the Bitcoin mining hardware landscape.Evolutionary Advancements: Upgrades from the Predecessor Model
Significant Increase in Hash Rate for Enhanced Mining Power
The Whatsminer M30S++ 86Th showcases a notable increase in hash rate compared to its predecessor, the Whatsminer M30S. While the exact specifications of the base M30S could vary, the Whatsminer M30S++ 86Th typically delivers a substantial boost in Terahashes per second (TH/s), often reaching an impressive 86 TH/s. This enhanced hash rate directly translates to a greater computational capability to tackle the complex cryptographic challenges of the Bitcoin network, thereby increasing the miner’s potential to discover new blocks and earn valuable Bitcoin rewards. For mining operators, this upgrade signifies a direct pathway to higher revenue generation potential for a comparable operational footprint, making the Whatsminer M30S++ 86Th a more potent and profitable asset.Enhanced Energy Efficiency for Optimized Operational Costs
A critical area of improvement in the Whatsminer M30S++ 86Th lies in its refined energy efficiency. Measured in Joules per Terahash (J/TH), the Whatsminer M30S++ 86Th typically exhibits a lower energy consumption per unit of hashing power when compared to earlier Whatsminer models. This reduction in power consumption is paramount for minimizing the substantial operational expenses associated with electricity in Bitcoin mining. The improved efficiency of the Whatsminer M30S++ 86Th enables mining operations to achieve a higher level of performance with a more controlled energy expenditure, leading to enhanced profitability and a more sustainable mining practice.Advanced Thermal Management System for Stable Performance
The Whatsminer M30S++ 86Th incorporates an advanced thermal management system meticulously engineered to effectively dissipate the significant heat generated during intensive mining operations. High-performance ASIC miners produce substantial heat, which, if not properly managed, can lead to instability, reduced performance, and a shortened lifespan of the hardware. The upgraded cooling solution in the Whatsminer M30S++ 86Th ensures that the miner maintains optimal operating temperatures, preventing overheating and sustaining consistent performance even under demanding workloads. This robust thermal management system is crucial for the long-term reliability and sustained performance of the Whatsminer M30S++ 86Th, safeguarding the investment of mining enterprises.Refined Control System and Firmware for Seamless Operation
The Whatsminer M30S++ 86Th often features an updated control board and optimized firmware, providing enhanced system stability, improved monitoring capabilities, and a more intuitive user interface for management. These refinements empower miners with greater control over their hardware, allowing for fine-tuning of settings to suit specific mining environments and more efficient troubleshooting of potential issues. The enhanced firmware of the Whatsminer M30S++ 86Th contributes to a smoother and more dependable mining experience, minimizing downtime and maximizing overall operational efficiency.Key Product Specifications of the Whatsminer M30S++ 86Th and Their Significance in Bitcoin Mining
Hash Rate: Approximately 86 TH/s
The hash rate, expressed in Terahashes per second (TH/s), is the fundamental measure of a miner’s computational prowess. An impressive hash rate of 86 TH/s signifies that the Whatsminer M30S++ 86Th can perform 86 trillion calculations every second in its pursuit of solving the Bitcoin network’s intricate cryptographic puzzle. A higher hash rate directly correlates with an increased probability of successfully mining a new block and earning the associated Bitcoin reward. In the fiercely competitive arena of Bitcoin mining, a substantial hash rate like that offered by the Whatsminer M30S++ 86Th is indispensable for maintaining a competitive edge and maximizing profitability.Power Consumption: Approximately 3400W
Power consumption, typically measured in Watts (W), indicates the electrical energy required by the Whatsminer M30S++ 86Th to operate. A power consumption figure of around 3400W underscores the energy-intensive nature of high-performance Bitcoin mining hardware. Understanding the power consumption is crucial for miners to accurately calculate their electricity expenses, which constitute a significant portion of their overall operational costs. Achieving a balance between a high hash rate and manageable power consumption, as demonstrated by the Whatsminer M30S++ 86Th, is essential for optimizing profitability and ensuring the economic viability of mining operations.Power Efficiency: Approximately 39.5 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 39.5 J/TH for the Whatsminer M30S++ 86Th indicates a relatively efficient design, meaning it consumes less energy for each unit of hashing power compared to less efficient models. Lower J/TH values are highly desirable as they directly translate to lower electricity costs per Bitcoin mined, significantly impacting profitability and the overall sustainability of mining operations.Chip Type: Custom ASIC
The Whatsminer M30S++ 86Th is powered by custom-designed Application-Specific Integrated Circuit (ASIC) chips. These specialized chips are specifically engineered to execute the SHA-256 algorithm, which is the cryptographic algorithm underpinning the Bitcoin network. ASICs offer significantly superior efficiency for this specific task compared to general-purpose processors (CPUs) or graphics processing units (GPUs), making them the indispensable standard for competitive Bitcoin mining. The advanced ASIC technology integrated into the Whatsminer M30S++ 86Th is the key enabler of its high hash rate and relatively optimized power consumption.Cooling: Air-Cooled with High-Performance Fans
The Whatsminer M30S++ 86Th utilizes an air-cooling system, typically employing multiple high-performance fans, to effectively dissipate the heat generated by its powerful ASIC chips. An efficient cooling system is paramount for maintaining the miner’s optimal operating temperature, preventing performance degradation due to overheating, and extending its operational lifespan. The robust cooling solution implemented in the Whatsminer M30S++ 86Th ensures stable and reliable operation, even under continuous high-load conditions, which is crucial for maximizing mining uptime and overall profitability.Noise Level: Approximately 75 dB
The noise level, measured in decibels (dB), indicates the sound produced by the miner during operation, primarily originating from its cooling fans. A typical noise level of around 75 dB for high-performance ASIC miners like the Whatsminer M30S++ 86Th can be considerable and represents an important factor for miners to consider when selecting a deployment location for their equipment. Adequate soundproofing measures or placement in dedicated mining facilities are often necessary to mitigate potential noise pollution. While noise level does not directly influence mining performance, it is a practical consideration for operational comfort and adherence to regulatory standards.Operating Temperature: -5 – 40 °C
The operating temperature range specifies the environmental conditions within which the Whatsminer M30S++ 86Th is designed to function optimally. A typical range of -5 to 40 °C underscores the importance of maintaining a controlled environment to ensure stable and efficient operation. Exposure to temperatures outside this recommended range can negatively impact the miner’s performance and potentially lead to hardware damage. Maintaining the Whatsminer M30S++ 86Th within its specified operating temperature range is crucial for its reliability and longevity.Connectivity: Ethernet
The Whatsminer M30S++ 86Th connects to the network via a standard Ethernet port. A stable and reliable network connection is absolutely essential for Bitcoin mining, as the miner needs to maintain constant communication with the chosen mining pool and the broader Bitcoin network to receive mining tasks and submit the results of its computations. Ethernet connections provide the necessary bandwidth and stability for uninterrupted mining operations, ensuring that the Whatsminer M30S++ 86Th can effectively contribute its hashing power and receive its share of mining rewards.Dimensions: 390 x 150 x 225 mm
The physical dimensions of the Whatsminer M30S++ 86Th, typically around 390 x 150 x 225 millimeters, are important considerations for planning and managing a mining operation, particularly when deploying multiple units. These dimensions influence factors such as rack space utilization, airflow management within the mining facility, and overall infrastructure design. Miners need to take these physical attributes into account when designing their mining setups to ensure efficient space utilization and optimal operating conditions.Weight: Approximately 12.5 kg
The weight of the Whatsminer M30S++ 86Th, typically around 12.5 kilograms, is another practical consideration for setting up and maintaining a mining operation. The weight affects transportation logistics, the structural requirements of racking systems, and the ease of handling during installation and maintenance. Miners need to consider the weight of the equipment, especially when dealing with large-scale deployments, to ensure safe and efficient management of their mining hardware.The Significance of Specifications for Successful Bitcoin Mining
A thorough understanding of the key specifications of a Bitcoin miner like the Whatsminer M30S++ 86Th is fundamental for achieving success in Bitcoin mining. The hash rate directly dictates the potential for revenue generation, while power consumption and efficiency determine the core operational costs. A miner exhibiting a high hash rate but poor energy efficiency may struggle to maintain profitability, especially in the face of increasing Bitcoin mining difficulty and fluctuating electricity prices. The cooling system is crucial for the miner’s reliability and longevity, while stable network connectivity ensures its effective participation in the mining ecosystem. By carefully analyzing these specifications, miners can make well-informed decisions regarding their hardware investments and strategically optimize their operations to maximize profitability within the ever-evolving landscape of Bitcoin mining. The Whatsminer M30S++ 86Th presents a compelling combination of high performance and enhanced efficiency, making it a strong contender for serious Bitcoin mining endeavors.Final Thoughts on the Whatsminer M30S++ 86Th
The Whatsminer M30S++ 86Th represents a significant step forward in the evolution of Bitcoin mining hardware. Its robust hash rate, coupled with notable improvements in energy efficiency compared to its predecessors, establishes it as a powerful and relatively cost-effective solution for Bitcoin mining operations. Introduced in 2020, the Whatsminer M30S++ 86Th embodies the crucial balance between high performance and optimized operational costs that is essential for achieving profitability in the competitive Bitcoin mining environment. By carefully considering its key specifications and the advancements it offers, miners can effectively leverage the capabilities of the Whatsminer M30S++ 86Th to enhance their mining endeavors and strive for greater success in the decentralized realm of cryptocurrency.Ready to Buy
MicroBT Whatsminer M30S++ 86Th Bitcoin Miners
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