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Industrial Manual Thermostatic Condensate Stainless Steel Steam Trap

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • Condensate Management: Designed to efficiently discharge condensate from steam systems while preventing steam loss, ensuring optimal energy efficiency.
  • Backflow Prevention: Integrates check valve functionality to block reverse fluid flow, safeguarding against contamination and system damage.
  • Thermostatic Control: Utilizes temperature-based operation to automatically regulate condensate discharge in steam and air media applications.

Key features

  • 1. Corrosion-Resistant Stainless Steel Construction

  • Material Technology

  • 2. Flexible Manual and Pneumatic Operation

  • Interactive Design

  • 3. High-Pressure Performance

  • Performance Parameters

  • 4. Industrial Scenario Optimization

  • Scenario Solutions

  • 5. Compliance with Safety Standards

  • Certification Standards

Product details

Industrial Manual Thermostatic Condensate Stainless Steel Steam Trap

The Industrial Manual Thermostatic Condensate Stainless Steel Steam Trap is engineered for high-pressure steam and air systems, ensuring efficient condensate removal while preventing backflow. Its corrosion-resistant stainless steel body and durable rubber/elastomer seals make it ideal for harsh industrial environments.

Technical specifications

FeatureSpecificationApplication Scenario
Material304 Stainless SteelCorrosion-prone industrial steam systems
Pressure RatingHigh Pressure (Up to 1500 PSI)Heavy-duty manufacturing and power plants
Media CompatibilitySteam/AirMulti-media applications in HVAC systems
Operation TypeManual/PneumaticCustomizable control for varying workflows
Sealing MechanismRubber/Elastomer GasketLeak-proof performance in fluctuating pressures

Customization guide

Adjustable parameters:

  • Material: Choose between 304/316 stainless steel or brass for corrosion resistance or cost efficiency.
  • Size: Custom NPS (1/2" to 4") to match pipe systems.
  • Pressure Rating: Scale from 500 PSI to 2500 PSI for extreme applications.

Get inspired

With its thermostatic element, this steam trap ensures precise condensate drainage in fluctuating temperatures. The manual/pneumatic hybrid design offers flexibility for both automated and manual control systems.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Max Pressure1500 PSI+15% (1725 PSI)+30% (1950 PSI)*
Temperature Range0–400°F0–450°F0–500°F
Material Grade304 Stainless316L Stainless316H Stainless
Service Life5 years7 years10 years

Supplier's note

  1. Three Breakthroughs:

    • Thermostatic Control: Maintains optimal condensate drainage in temperature fluctuations (e.g., 50% faster response than non-thermostatic traps).
    • High-Pressure Endurance: The Pro Model’s 1950 PSI rating exceeds industry benchmarks by 30%, ideal for petrochemical plants.
    • Dual Operation Modes: Manual override paired with pneumatic control ensures reliability in both automated and manual systems.
  2. Optimal Version Selection:

    • Base Model: Suitable for standard industrial plants with moderate pressure (e.g., food processing).
    • Advanced Model: Best for heavy manufacturing requiring corrosion resistance (e.g., chemical facilities using 316L stainless).
    • Pro Model: Designed for extreme conditions like power plants, where 500°F temperatures and 1950 PSI pressures are standard.

With the Pro Model’s 316H stainless steel, you can withstand aggressive chemicals 20% longer than industry-standard materials.

Frequently asked questions

  • Which steam trap model suits high-pressure industrial steam systems?

  • How do I maintain the sealing gasket of a stainless steel steam trap?

  • Stainless Steel vs Brass Steam Traps: Which is better for corrosive environments?

  • Can this steam trap be customized for pneumatic control systems?

  • Is the stainless steel steam trap FDA-approved for food-grade systems?

  • How does this steam trap prevent backflow in steam lines?

  • What size options are available for high-pressure steam trap customization?

  • Does the DSC branded steam trap handle both steam and air media?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
MaterialCorrosive chemical plants316L Stainless Steel (ASTM A276) ▲
(Base: 304 SS; Advanced: 316L)
Resists pitting in acidic condensate (Industry Standard: 304 SS)Advanced variant 2x costlier than Base due to alloy composition
Pressure RatingIndustrial boilers (≥400 PSI)420 PSI (ASME B16.34) ▲
(Base: 300 PSI; Advanced: 420 PSI)
Handles extreme fluctuations in high-pressure steam systemsRequires reinforced piping infrastructure for full performance
Operating MediaMulti-media systems (steam + air)Dual-media compatibility (steam/air per ISO 10370) ▲
(Base: Steam only)
Flexible for mixed systems (e.g., HVAC with steam and compressed air)Complex maintenance protocols for dual-media seals
Control MechanismRemote operation in hazardous zonesPneumatic Actuation (ISO 5208) ▲
(Base: Manual; Advanced: Pneumatic)
Enables remote operation in explosive environments (Industry: Manual default)Relies on compressed air supply (Base: No external power needed)
Temperature RangeHigh-temperature refineries (>500°F)550°F (288°C) (ASTM A370) ▲
(Base: 450°F; Advanced: 550°F)
Operates in extreme thermal conditions (Industry: 450°F max)Advanced variant may degrade faster at peak temps over prolonged use
Emission RateEmission-sensitive pharmaceutical plants0.02 lb/yr (EPA 40 CFR Part 63) ▲
(Base: 0.05 lb/yr; Advanced: 0.02 lb/yr)
Meets strict environmental regulations (Industry: 0.05 lb/yr)Advanced design increases valve complexity and repair costs

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