Bitmain ANT COLD STORAGE (ACS) Compatible With ANTSPACE HW7 HD5 HK3

Bitmain ANT Cold Storage (ACS) provides high-temperature cooling support for ANTSPACE HW7, HD5 and HK3, with up to 55°C ambient tolerance and no operating water consumption.

    Immediate4–8 weeks8–12 weeks12+ weeks

    $68,000.00

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      Bitmain ANT Cold Storage (ACS) 8 GJ High-Temperature Cooling System

      THERMAL ENERGY STORAGE

      COLD STORAGE

      8 GJ

      1.91M kcal thermal reserve

      PEAK COOLING

      6 HOURS

      Continuous supply @ 50°C

      MAX AMBIENT

      55°C

      Extreme-heat operation

      WATER USAGE

      ZERO

      No operating water loss

      POWER INPUT

      380V–415V AC 50/60Hz

      AVAILABILITY

      Typical lead time 45 days • DDP Sea Shipping Available

      Product Description

      Engineered specifically for high-temperature and water-scarce mining regions, the Bitmain ANT Cold Storage (ACS) delivers an innovative thermal energy storage solution with an impressive 8 GJ of cold storage capacity. Designed to conquer extreme ambient conditions up to 55°C, the ACS provides up to 6 hours of continuous peak cooling at 50°C, preventing costly daytime miner curtailment and thermal throttling.

      Operating with zero operating water consumption, the ACS is the ultimate plug-and-play infrastructure for desert and arid deployments where water resources are restricted or expensive. Serving as a standard application for the ANTSPACE HW7—and customizable for HD5, HK3, and liquid-cooled data centers—the ACS shifts cooling loads to cooler night hours, keeping your hydro farm online at full hashrate 24/7.

      Core Advantages

      Full Specifications

      External dimensions

      L:12192mm、W:2438mm、H:2896mm

      Internal dimensions

      L:12000mm、W:2230mm、H:2660mm

      Weight

      11000 KG

      Model

      ANTCOLDSTORAGE

      Tank volume, m³

      48

      Cold storage capacity, GJ

      8

      Typical cooling supply duration, h

      6

      Cold storage temperature range, ℃

      5~45

      Cold storage medium

      Pure water / deionized water

      EER

      2.5

      Maximum supported ambient temperature, ℃

      55

      Input voltage and frequency

      380V/50Hz, 3P/N/PE;480V/60Hz, 3P/N/PE

      Operating ambient temperature, ℃

      -20~55

      Storage ambient temperature, ℃

      -20~70

      Operating ambient humidity, RH

      10%~90%, non-condensing

      Altitude, m

      ≤2000

      Noise level, dBA@15m

      70

      Compatible containers

      ANTSPACE HW7/HD5/HK3

      Certification standards

      CE/UL

      Rated cooling capacity, kW

      100

      Rated power, kW

      40

      Maximum input power, kW

      80

      Main circuit breaker specification, A

      250

      Input cable specification, mm²

      95

      ANT COLD STORAGE (ACS) Product Brochure

      Complete product specifications, installation guide, and operational instructions.

        Data download verification

        Downloadable materials: Bitmain ANT COLD STORAGE (ACS) Compatible With ANTSPACE HW7 HD5 HK3

        Certification Standards

        Our products meet leading international standards for safety, reliability, and performance.

        China Classification Society

        Marine & offshore compliance

        UL Listed

        Safety tested & certified

        CSA Certified

        North American compliance

        CE Marking

        European conformity

        ANT COLD STORAGE (ACS) Cooling Solutions FAQs

        What is Bitmain ANT Cold Storage (ACS), and how does this new thermal storage solution differ from standard dry coolers or cooling towers?

        Bitmain ANT Cold Storage (ACS) is an industry-first thermal energy storage (TES) system—acting as an "active cold battery" designed to solve summer daytime miner curtailment in extreme-heat desert environments (up to 55°C).

        Unlike traditional cooling equipment that relies on real-time heat rejection during scorching afternoons, the ACS operates on a two-phase "Store Cold by Night, Discharge by Day" cycle:

        1. Off-Peak Nighttime Charging: When ambient temperatures drop and grid power is cheapest, the ACS draws an ultra-low 40kW of electrical input to charge its internal thermal core at a 100kW rated cooling rate, locking in 8 GJ (1.91 million kcal) of stored cooling reserve.

        2. Peak Daytime Discharging: During the 6 hottest hours of the day (when ambient temperatures soar to 50°C–55°C and standard dry coolers lose efficiency), the ACS discharges this stored energy directly into the miner loop, allowing Antminer hydro containers to run at 100% full hashrate without thermal throttling or shutdowns.

        Key Differences:

        • Vs. Dry Coolers: Dry coolers fail when ambient air exceeds 42°C–45°C due to shrinking heat exchange margins. ACS bypasses this bottleneck by releasing pre-chilled energy regardless of outdoor ambient heat.

        • Vs. Wet Cooling Towers: Open evaporative towers consume thousands of gallons of water daily and cause scaling. ACS utilizes a 100% sealed closed loop with absolute zero operating water consumption.

        How can a system with only 40kW rated power assist in cooling a massive 1.2MW–1.5MW hydro container?

        The ACS does not replace your primary cooling system; it acts as a concentrated peak-shaving thermal booster. While your main dry cooler or cooling loop handles baseline heat dissipation, the ACS injects its stored 8 GJ (1.91 million kcal) of reserve specifically during the 6 hottest hours of the day.

        By discharging 8 GJ across 6 hours, the ACS delivers an effective ~370 kW of supplemental peak cooling capacity directly to the miner loop. Because this chilling capacity was slowly accumulated and stored overnight using low 40kW input power, it allows you to overcome extreme daytime heat spikes without requiring a massive, expensive electrical substation upgrade.

        How is "zero operating water consumption" achieved, and why is this critical for desert sites?

        Unlike open evaporative cooling towers that continuously lose water to evaporation and purge cycles, the ACS uses a 100% hermetically sealed thermal loop. The internal storage medium charges and discharges through closed-circuit heat exchangers without any fluid exposure to the ambient atmosphere.

        For arid mining hubs like the Middle East, West Texas, or Northern Africa, zero operational water consumption eliminates water trucking and hauling costs, avoids costly municipal water rights permitting, prevents chemical biocide expenses, and completely eliminates scale accumulation on miner cold plates.

        Can ACS guarantee miner stability when outdoor temperatures reach 50°C–55°C?

        Yes. The ACS is officially engineered for ambient operating limits up to 55°C, specifically designed to deliver 6 hours of sustained peak cooling at 50°C ambient.

        In standard setups, ambient air above 42°C causes coolant return temperatures to exceed ASIC safe operating thresholds. By blending the stored 8 GJ chilled reserve into the supply header, the ACS artificially depresses the miner inlet water temperature to safe operating parameters (typically ≤35∘Cto 40∘C), fully protecting hashboards from heat-induced throttling or thermal shutdown.

        How does ACS connect to ANTSPACE HW7, and what is required for an HD5 or HK3 "fit assessment"?
        • ANTSPACE HW7 (Standard Application): The ACS features native, plug-and-play hydraulic and electrical interfaces pre-matched to the HW7 container. Connection involves standard industrial flange tie-ins and communication cabling.

        • ANTSPACE HD5 / HK3 (Fit Assessment Required): Deploying with HD5 or HK3 is fully viable, but requires a brief engineering review. Our technical team evaluates your site’s hydraulic pipe diameters, dry cooler flow rates (>85 m3/h on HK3), pump head pressures, and local summer temperature profiles to provide a customized hydraulic tie-in kit and bypass valve schematic.

        How can ANT Cold Storage (ACS) be applied to enterprise liquid-cooled data centers and AI computing clusters?

        As modern AI clusters and high-performance computing (HPC) facilities adopt high-density Direct-to-Chip (DLC) liquid cooling (often exceeding 40kW–100kW+ per rack), they face severe peak electricity demand charges and thermal strain during hot summer afternoons. The ACS integrates into data center environments to provide three critical advantages:

        1. Peak Shaving & Grid Cost Optimization: By storing 8 GJ of cold reserve during cheap off-peak nighttime hours and discharging it during peak daytime hours, the ACS significantly reduces daytime chiller runtime, slashing expensive utility demand charges and driving down facility PUE.

        2. Zero-Water ESG Compliance (WUE = 0): Many jurisdictions now prohibit or heavily penalize evaporative cooling towers due to water scarcity. The ACS’s 100% sealed closed loop enables hyperscale and enterprise facilities to maintain full cooling performance with zero operational water consumption, directly meeting strict corporate Water Usage Effectiveness (WUE) sustainability goals.

        3. Seamless CDU Integration: Following an engineering fit assessment, the ACS ties directly into the data center’s primary chilled-water loop or central Coolant Distribution Unit (CDU) via standard plate heat exchangers, acting as an active thermal buffer without requiring any modifications to server-level cold plates.