Bomba Aumentadora de Gas Serie OMD1/2/5B

Para el aumento de presión de gas accionado por aire y salida de alta presión predecible.

Bomba Aumentadora de Gas Serie OMD1/2/5B

Bomba de refuerzo de gas serie OMD
Bomba de refuerzo de gas serie OMD

introducción del producto

The OMD Series Gas Booster Pumps are air-driven pneumatic gas booster pumps designed for boosting and compressing industrial gases such as air, nitrogen, oxygen, helium, hydrogen, and other gases. This series is engineered for applications where stable, adjustable high-pressure gas output is required, and where an air-driven (no electricity) boosting principle is preferred.

The OMD series provides a broad model range from low ratio to ultra-high ratio boosters, including OMD80-2 (160:1) and OMD100-2 (200:1) variants, enabling system designers to match inlet pressure conditions and target outlet pressure precisely.

Descripción del producto

The OMD Series Gas Booster Pumps are air-driven pneumatic boosters. Compressed air is used as the driving source (PL, 1–8 bar), and the gas inlet pressure (PA) is boosted to a higher outlet pressure (PB) according to the model’s design.

In the latest OMD selection table, the gas outlet pressure is defined model-by-model as:

PB = k × PL + PA

where k is the multiplier specified in the table for each model (for example: 1×, 1.6×, 2.5×, 4×, 10×, 16×, 25×, 40×, 60×, 80×, 100×, 160×, 200×).
Because k is not always identical to the numeric “pressure ratio” label in every case, the correct PB calculation and selection must follow the Gas outlet pressure row and Pump stop pressure PB row in the table for the specific model you choose.

The OMD series includes OMD standard models and higher-pressure variants such as OMD80-2 (160:1) and OMD100-2 (200:1).

Bomba de refuerzo de gas serie OMD

Bomba de refuerzo de gas serie OMD

Technical Parameters OMD1B OMD2B OMD5B
Relación de presión 2.5:1 1.6:1 5:1
Max. Compression Ratio 10:1 10:1 10:1
Min. Gas Inlet Pressure PA (bar) Slight Negative Pressure Atmospheric Pressure 1
Max. Gas Inlet Pressure PA (bar) 8 64 40
Gas Outlet Pressure PB (bar) 1×PL+PA 1.6×PL+PA 4×PL+PA
Max. Gas Outlet Pressure PB (bar) 16 20 40
Single Stroke Capacity (ml) 1570 1004 502
Driven Air Pressure PL (bar) 1–8 1–8 1–8
Driven Air Port Size ZG1/2″ ZG1/2″ ZG1/2″
Medium Inlet Port Size ZG1/2″ ZG1/2″ ZG1/2″
Medium Outlet Port Size ZG1/2″ ZG1/2″ ZG1/2″
Pump Material Aleación de aluminio / Acero inoxidable
Max. Working Frequency (times/min) 60 60 60
Presión de parada de la bomba PB 1×PL+PA 1.6×PL+PA 4×PL+PA
Max. Working Temperature (°C) 60 60 60
Net Weight (kg) 44 41 21
Juntas estándar PTFE, FKM, NBR
Dimensions (L×W×H) (mm) 534 × 261 × 524 534 × 261 × 524 503 × 460 × 273
Inert Gas Service (Standard) OMT01BNL OMT02BNL OMT05BNL
Oxygen Service OMT01BOL OMT02BOL OMT05BOL
CO2 Service OMT01BCL OMT02BCL OMT05BCL

 

 Características y funciones

  • Air-driven boosting (PL 1–8 bar): operates with compressed air as the driving source, suitable for pneumatic systems and non-electric working environments.
  • Predictable outlet pressure formula: the OMD series uses a clear pressure relationship PB = ratio×PL + PA, convenient for system design and pressure calculation.
  • Wide model coverage: pressure ratios from 1.6:1 to 200:1, supporting different boosting targets and inlet pressure conditions.
  • High outlet pressure capability: max PB ranges up to 1600 bar (OMD100-2) per the model selection table.
  • Multiple inlet pressure ranges: PA ranges differ by model, including special conditions such as micro negative pressure and atmospheric pressure entries (as listed for OMD01B/OMD02B).
  • Standardized installation interfaces: consistent driven air port size ZG1/2″, and standardized inlet/outlet port sizes to simplify integration.
  • Material and seal options aligned to service: Aluminum Alloy / Stainless Steel body material and PTFE / FKM / NBR sealing set as standard.
  • Defined operating limits: max working frequency 60 times/min, max working temperature 60°C (all models).
Bomba de refuerzo de gas serie OMD

Si desea más información sobre otros modelos, póngase en contacto con nuestro equipo de atención al cliente.

 

Ventajas del producto

  • Strong engineering selectability: the OMD series table provides direct selection guidance by ratio, PA inlet limits, and PB maximum pressure, reducing selection errors.
  • Broader ratio range than common single-series boosters: supports both standard models and high-ratio -2 models for higher pressure needs.
  • Stable pneumatic drive range: PL 1–8 bar across all models supports common factory air supply conditions.
  • Integration-friendly dimensions: consistent sizes for many mid-range models (OMD10–OMD100 mostly 590–593 mm length with uniform height), supporting skid mounting and compact layouts.
  • Service model coding available: inert gas standard (NL) across all models, with dedicated oxygen (OL) and CO₂ (CL) codes where listed.

 

Ventajas de nuestra empresa

Highlight is a manufacturer focused on pressure testing equipment and pneumatic boosting systems. For gas booster pumps and integrated boosting solutions, we provide:

  • 16+ years focused on R&D and production of pressure testing equipment and pneumatic boosting equipment
  • 1000+ sets/year production capacity
  • Más de 8000 clientes atendidos
  • National High-Tech Enterprise
  • 28 patents
  • Technical team with 10+ years experience
  • ISO9001 quality system and CE compliance
  • Support for both complete systems and single-unit supply, with engineering technical support

 

Working Principle of OMD Gas Booster Pumps

OMD gas booster pumps operate with a reciprocating air-driven mechanism:

  • Driving side (PL): compressed air (1–8 bar) drives the piston movement.
  • Gas side (PA → PB): inlet gas pressure PA is boosted to outlet pressure PB based on the selected model’s multiplier k.

For system design and pressure calculation, the outlet pressure relationship is strictly as listed in the selection table:

PB = k × PL + PA (k varies by model and must follow the table)

The pump will automatically stop boosting when the outlet pressure reaches the model’s Pump stop pressure PB value shown in the table, which follows the same k × PL + PA format.

This table-defined pressure logic ensures users can select the correct model by matching:

  • available inlet pressure PA range,
  • available driving pressure PL, and
  • required maximum outlet pressure PB.

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