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Key Parameters for Compressor inquiry

Suction Pressure

Discharge Pressure

Flow Rate

Cooling Method

Suction Temperature (℃)
Discharge Temperature(℃)
Power Supply(V/HZ)
Control Requirements
Gas Medium
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China Hydrogen Bromide Compressor from Reliable Suppliers and Factory for Semiconductor Manufacturing

This specialized equipment, meticulously crafted for chip etching and cleaning processes within the electronics industry, is an ideal solution from reliable China suppliers. Utilizing oil-free compression and corrosion-resistant materials like Hastelloy, it effectively eliminates contamination risks while delivering impressive gas purity levels exceeding 99.999%. Our advanced design features an inherently safe static sealing structure, optimized for efficient and stable compression, ensuring leak-proof performance and an extended service life. This makes it an exceptional choice for applications with stringent purity and safety requirements, particularly in semiconductor manufacturing. Choose our factory for top-quality equipment that meets the high standards of the electronics sector

    Advantages of Hydrogen Bromide Diaphragm Compressor

    • 01 Absolutely Oil-Free & Zero Leakage

      The unique metal diaphragm completely physically isolates the process gas from the hydraulic oil system, achieving 100% oil-free compression. The entire gas chamber adopts a static sealing structure, fundamentally eliminating the risk of hydrogen bromide gas leaking outward or external impurities penetrating inward, perfectly meeting the extremely high purity requirements of semiconductor etching and similar applications.

    • 02 Intrinsically Safe Corrosion-Resistant Platform

      All flow-wetted components can be manufactured from high-grade corrosion-resistant alloys. The gas only contacts carefully selected anti-corrosion surfaces, avoiding the complex corrosion and wear issues associated with dynamic seals in reciprocating compressors. This results in long equipment life and significantly extended maintenance intervals.

    Key Design Points for Hydrogen Bromide Diaphragm Compressor

    • 01 Full-Series Corrosion-Resistant Materials

      All components in contact with hydrogen bromide, including the diaphragm head, cylinder head, gas valves, internal piping, and flanges, must be made of materials resistant to hydrobromic acid corrosion. SS316L stainless steel is the basic choice. For extreme conditions with high moisture content or other oxidizing impurities, duplex stainless steel or nickel-based alloys are necessary. All stainless steel components must ensure sufficient corrosion allowance (typically not less than 2 mm) and undergo thorough degreasing, cleaning, and passivation treatment.

    • 02 Core Diaphragm & Rupture Monitoring

      The diaphragm is the core component for isolation and sealing. Materials with excellent corrosion resistance in hydrogen bromide environments and high fatigue strength, such as special alloys like Inconel 718, must be selected. A standard three-layer diaphragm structure with a diaphragm rupture alarm device is required. When the middle diaphragm ruptures, the pressure sensor immediately triggers an alarm for maintenance, while the outer diaphragm still ensures no gas leakage, providing dual safety protection.

    • 03 Safety Discharge & Monitoring System

      Exhaust gas containing hydrogen bromide from the safety valve must never be discharged directly into the atmosphere or a flare; it must be directed to a dedicated caustic scrubber for neutralization treatment. A fixed hydrogen bromide gas detector probe shall be integrated into the compressor skid to monitor the ambient concentration in real-time and interlock with the ventilation system. Simultaneously, continuous monitoring of cooling water flow, oil pressure, and pressures and temperatures at each stage shall be conducted, with comprehensive alarm and shutdown interlock logic configured.

    Certificate

    eac
    ce
    iso
    iso2033
    atex

    Model Selection

    GZ Model
    ModelG70Z / G95Z / G110Z / G130Z Piston Stroke70mm ~ 130mm
    Maximum Piston Force10KN ~ 30KN Maximum Discharge Pressure70Mpa
    Flow Range1 ~ 500 Nm³/h Motor Power2.2KW ~ 30KW
    Crankshaft Speed420rpm Cooling MethodWater Cooled / Air Cooled
    GV Model
    ModelG70V / G95V / G130V Piston Stroke70mm ~ 130mm
    Maximum Piston Force10KN ~ 30KN Maximum Discharge Pressure50Mpa
    Flow Range1 ~ 200 Nm³/h Motor Power2.2KW ~ 30KW
    Crankshaft Speed420rpm Cooling MethodWater Cooled / Air Cooled
    GL Model
    ModelG110L / G130L Piston Stroke110mm ~ 130mm
    Maximum Piston Force20KN ~ 40KN Maximum Discharge Pressure100Mpa
    Flow Range10 ~ 1000 Nm³/h Motor Power7.5KW ~ 90KW
    Crankshaft Speed420rpm Cooling MethodWater Cooled / Air Cooled
    GD Model
    ModelG110D / G130D / G150D / G180D / G182D / G210D Piston Stroke110mm ~ 210mm
    Maximum Piston Force20KN ~ 160KN Maximum Discharge Pressure100Mpa
    Flow Range30 ~ 2000 Nm³/h Motor Power22KW ~ 200KW
    Crankshaft Speed420rpm Cooling MethodWater Cooled / Air Cooled
    G Diaphragm type compressor
    Z Piston stroke 70mm
    30 Flow (Nm³/h)
    5 Inlet pressure (barg)
    10 Outlet pressure (barg)
    No. Model Cooling water Flow Inlet pressure Outlet pressure Dimensions L×W×H Weight Motor Power
    (L/h) (Nm³/h) (MPa) (MPa) (≈mm) (≈kg) (kW)
    1 GZ-30/5-10 500 30 0.5 1 1400×740×1330 700 3
    2 GZ-12/0.5-8 500 12 0.05 0.8 1500×760×1200 750 4
    3 GZ-30/0.15-5 1000 30 0.015 0.5 1200×900×1200 800 7.5
    4 GV-30/1-3 1000 30 0.1 0.3 1400×900×1200 900 7.5
    5 GV-120/3.5-12 2000 120 0.35 1.2 2030×1045×1700 2200 22
    6 GV-120/3.5-12 2000 120 0.35 1.2 2030×1045×1700 3000 22
    7 GL-30/21 4200 30 Atmospheric 2.1 2200×1700×1800 2600 11
    8 GL-60/0.05-4 4000 60 0.005 0.4 2400×1800×1600 3000 15
    9 GL-150/0.3-5 2000 150 0.03 0.5 3230×1770×2200 3000 18.5
    10 G130D-278/1.1-3 2000 278 0.11 0.3 3000×2000×1800 4000 22
    11 GD-600/1.5-5 5000 600 0.15 0.5 3500×2300×1800 4500 45
    12 GD-1306/6-12 8000 1306 0.6 1.2 3800×2300×1800 6000 75
    The equipment size and weight are for reference only, and the final design shall prevail.

    Case Study

    Russia Case Study
    Russia
    United States Case Study
    United States
    Spain Case Study
    Spain
    Kazakhstan Case Study
    Kazakhstan

    Frequently Asked Questions

    Why is a diaphragm compressor required for Hydrogen Bromide (HBr) applications?
    Hydrogen Bromide is highly toxic, corrosive, and requires extreme purity for semiconductor applications. Diaphragm compressors use static seals and metal diaphragms to completely isolate the gas, ensuring zero leakage and 100% oil-free compression.
    How does the diaphragm rupture monitoring system protect the equipment?
    The compressor features a standard three-layer diaphragm structure. If the middle layer ruptures, a pressure sensor immediately triggers an alarm for maintenance while the remaining layers prevent gas leakage, ensuring dual safety protection.
    What materials are used for the flow-wetted components?
    All parts in contact with HBr, including the diaphragm head, valves, and piping, are made from high-grade corrosion-resistant materials like SS316L stainless steel, duplex stainless steel, or nickel-based alloys (e.g., Inconel 718) depending on moisture and pressure conditions.
    How is safety exhaust gas managed in these compressors?
    Exhaust gas containing hydrogen bromide is never discharged into the atmosphere. It is safely directed to a dedicated caustic scrubber system for neutralization. Skid-integrated HBr gas detectors monitor ambient air and link directly to safety ventilation systems.
    What cooling methods are available for the different compressor models?
    Depending on the model selection (GZ, GV, GL, GD) and application requirements, we offer both highly efficient water-cooled and air-cooled systems to manage thermal loads during high-pressure cycles.