200M 400M 200M
RNG: 2.4 KM
BRG: 047°
ALT: 3,200 FT
SPD: 480 KTS
HDG: 012° N
TGT: ALPHA-7
MODE: SEARCH
PWR: NOMINAL
FREQ: X-BAND
STATUS: LOCK
NAVTGTWPNDEFRDRCOM
MIL-STD-1553IFF: ACTIVELINK-16: SYNC
SECTOR: ALPHA
THREAT: CLEAR
RADAR: ACTIVE
TRACK: 6 TGT
LAT 28.6213°N LON 77.3873°E
NX
Neometrix Target Acquired
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NMX‑CCUBTB / Rev 01 / 27 Valve Types · Metro & Railway Air Brake / Noida · India 2026 · Product Page
NMX-CCUBTB

Computerized Control Universal Brake Test Bench.

A high-precision, fully automated pneumatic test bench for metro rail and railway air-brake systems. Tests 27 types of pneumatic valves in automatic or manual mode, with PLC and DAQ-based control, digital pressure monitoring, and automated PDF reporting.

Computerized Control Universal Brake Test Bench — Neometrix pneumatic air-brake valve test bench, Noida
Fig · 01 Installed configuration — SS-304 test bench, PLC control panel, and DAQ workstation
Qualification testing supported to:
DEF STAN STANAG MIL-SPEC
Valve Types
27types
Flow Rate
2400LPM
Pressure Rating
10.5kg/cm²
Supply Range
8–10kg/cm²
Temp. Max
48°C
01
Overview

Twenty-seven valves. One test bench.

In a metro rail or railway air-brake system, every pneumatic valve — from the distributor to the emergency brake valve — has to perform exactly to specification, every time. Manual, gauge-by-gauge testing cannot keep pace with a large rolling-stock fleet. The CCUBTB replaces that process with a single automated bench.

Computerized Control Universal Brake Test Bench — full bench with valve mounting fixture, pressure gauge panel, and DAQ rack
Fig · 02 Full bench configuration — valve mounting fixture, dual gauge panel, and DAQ workstation with PLC control panel

The Computerized Control Universal Brake Test Bench (CCUBTB) is a high-precision, automated testing system designed to ensure the functionality and safety of pneumatic brake components in metro rail and railway systems. Capable of testing 27 types of pneumatic valves, it features both automatic and manual operating modes, advanced PLC and DAQ-based control, and precision instrumentation for real-time monitoring.

Automatic and manual test modes in one bench — built for railway workshops and metro maintenance depots managing large-scale fleets.

The bench includes integrated air treatment, digital pressure monitoring, and automated reporting capabilities. Built with durable materials and modular components, it tests the four reservoir circuits of a metro AC brake system — Brake Pipe (BP), Auxiliary Reservoir (AR), Brake Cylinder Reservoir (BC), and Control Reservoir (CR) — making it an essential solution for railway workshops and maintenance depots.

02
System Composition

Four systems, one integrated bench.

The CCUBTB brings together mechanical structure, air treatment, electrical control, and measurement into a single modular unit — built with SS-304 and aluminium-profile framing so a workshop can test, maintain, and recalibrate without disturbing piping runs.

SYS · 01

Test Bench Structure

Built with SS-304 and aluminium profile framing for durability and corrosion resistance. Modular design with detachable side and rear panels for easy access during maintenance. Integrated reservoirs and pneumatic piping minimise external connections and leak risk.

SYS · 02

Air Treatment & Distribution

Twin Tower Air Dryer (2000 LPM flow capacity) ensures consistent delivery of clean, dry compressed air. Inline pneumatic valves and pressure regulators rated up to 12 bar provide precise airflow control, backed by 5-micron pre-, post-, and fine filters.

SYS · 03

Control Panels & Electrical Systems

A dedicated DAQ panel interfaces sensors and control valves with the software; a PLC control panel automates test sequences. A UPS guarantees uninterrupted power, and emergency-stop functions with safety interlocks protect the system during faults.

SYS · 04

Measurement & Analysis

A Digital Readout (DRO) panel displays real-time pressure, flow, and system diagnostics. Test data is recorded, saved, and automatically compiled into detailed reports for analysis and audit purposes.

03
Valve Types

27 valve types, four reservoir circuits.

The system tests the performance and functional behaviour of 27 types of pneumatic valves used in the AC brake system of an AC rake for Metro Rail, spanning the Brake Pipe, Auxiliary Reservoir, Brake Cylinder Reservoir, and Control Reservoir circuits.

VLV · 01  |  Brake Pipe Circuit

Distributor & Emergency Valves

Distributor Valve (manages airflow between brake cylinders and control reservoirs), Emergency Brake Valve (ensures rapid braking in emergency conditions), and Anti-Skid Valve (prevents wheel skidding by modulating brake pressure).

Brake Pipe (BP) · Anti-Skid · Emergency Braking
VLV · 02  |  Reservoir Circuit

Piston, Magnet & Pressure Reducer Valves

Piston valves and magnet valves governing reservoir charge/discharge cycles, plus pressure reducer valves that regulate downstream pressure across the Auxiliary and Control Reservoir circuits.

Auxiliary Reservoir (AR) · Control Reservoir (CR)
VLV · 03  |  Safety & Check

Check & Safety Valves

Check valves preventing reverse airflow, and safety valves protecting the circuit from over-pressure — tested individually or in pre-programmed sequence against pass/fail thresholds.

Brake Cylinder Reservoir (BC) · Over-Pressure Protection
VLV · 04  |  Air Treatment

Air Dryer Unit & Others

The Air Dryer Unit is tested to confirm compressed air stays moisture-free, preventing corrosion and operational failures downstream. Additional valve types across the 27-type list are tested under the same automated or manual sequence.

Moisture Control · Corrosion Prevention
04
Test Capabilities

Two modes. Full instrumentation.

The bench accommodates both novice and expert operators through dual-mode functionality, governed throughout by a PLC and DAQ-based control system with precision instrumentation on every channel.

T · 01

Automatic Mode

Utilises pre-programmed sequences to run diagnostic and functional tests automatically, with the flexibility to select specific valves or tests when required.

Pre-Programmed Sequences · Selectable Valve Tests
T · 02

Manual Mode

Allows the operator to control each test manually using toggle switches and control panels, for precise testing under varying conditions.

Toggle-Switch Control · Operator-Paced Testing
T · 03

PLC & DAQ Control

A PLC governs all automatic operations while a DAQ system integrated with custom software enables real-time monitoring. Operators configure test sequences, input parameters, and generate automated PDF reports through a graphical interface.

Real-Time Monitoring · Automated PDF Reports
T · 04

Precision Instrumentation

Digital pressure gauges accurate to ±0.5% of full scale (0.1 kg/cm² least count), pressure transmitters with 4–20mA output, sound level sensors (30–130 dB) for horn functionality, and dew point meters for moisture-free air verification.

±0.5% FS · 4–20mA · Dew Point Verification
05
Gallery

The bench, in the workshop.

The installed bench and its DAQ/PLC control workstation — the real hardware behind the specification.

Computerized Control Universal Brake Test Bench — full bench with valve mounting fixture and pressure gauge panel
Computerized Control Universal Brake Test Bench — DAQ workstation with PLC control panel
06
Downloads

Technical documents.

Product catalogue and engineering drawing for the Computerized Control Universal Brake Test Bench.

07
Specifications

Full technical parameters.

Key system parameters for the standard CCUBTB configuration. Custom envelopes available on request.

System TypeComputerized Control Universal Brake Test Bench
Test MediumCompressed Air
Pressure Rating10.5 kg/cm²
Air Supply Pressure Range8–10 kg/cm²
Flow Rate2400 LPM
Temperature RangeAmbient up to 48°C
Power Supply230V +10% / -20%, Single Phase, 50Hz
Valve Types Tested27 pneumatic valve types · AC brake system of an AC Rake, Metro Rail
Reservoir CircuitsBrake Pipe (BP) · Auxiliary Reservoir (AR) · Brake Cylinder Reservoir (BC) · Control Reservoir (CR)
Operating ModesAutomatic (pre-programmed sequences) & Manual (toggle-switch control)
Control & DAQ SystemPLC (Programmable Logic Controller) + DAQ with custom software, graphical interface
ReportingAutomated PDF test reports, configurable parameters and test sequences
Air DryerTwin Tower Air Dryer · 2000 LPM flow capacity
Filtration5-micron pre-filters, post-filters, and fine filters
Pressure Regulators / ValvesInline pneumatic valves and regulators rated up to 12 bar
Pressure GaugesDigital, ±0.5% of full scale accuracy, 0.1 kg/cm² least count
Pressure Transmitters4–20mA signal output
Sound Level Sensors30–130 dB range · horn functionality testing
Dew Point MetersVerifies moisture-free compressed air for optimal valve performance
StructureSS-304 and aluminium profile framing, modular detachable panels
Electrical BackupUPS for uninterrupted operation during critical test cycles
Safety FeaturesEmergency stop functions, safety interlocks, controlled testing environment
ReadoutDigital Readout (DRO) panel · real-time pressure, flow, and diagnostics display
08
Applications

Where it runs.

Metro corporations, railway workshops, rolling stock manufacturers, and maintenance depots involved in large-scale fleet management — plus defence and heavy-engineering sectors with similar pneumatic valve validation needs.

A · 01Functional / performance testing of 27 pneumatic valve types in metro rail AC brake systems
A · 02Railway workshop and maintenance depot brake system validation
A · 03Rolling stock manufacturer end-of-line quality assurance testing
A · 04Metro corporation fleet maintenance and overhaul programs
A · 05Distributor valve, anti-skid valve, and emergency brake valve functional testing
A · 06Air Dryer Unit moisture and performance verification
A · 07Piston valve, magnet valve, pressure reducer valve, check valve, and safety valve testing
A · 08Horn / sound-level functional verification (30–130 dB)
A · 09Compressed-air quality (dew point) verification for brake pneumatics
A · 10Defence and heavy-engineering pneumatic valve test applications
09
In Depth

The complete technical read.

Engineering narrative for railway engineers, workshop managers, and QA teams evaluating a brake test bench for metro or railway fleet maintenance.

Why the CCUBTB matters

The Computerized Control Universal Brake Test Bench (CCUBTB) is a high-precision, fully automated testing system designed to support Indian Railways and Metro Rail networks. It ensures the functionality and safety of pneumatic braking systems by conducting performance tests on critical pneumatic valves. This versatile, customisable test bench plays a vital role in optimising maintenance and ensuring compliance with stringent safety standards for railway brake systems.

Key functional features

1. Multi-valve testing capability

The CCUBTB is capable of testing 27 distinct types of pneumatic valves found in metro rail air-brake systems, including:

  • Air Dryer Unit — ensures compressed air is moisture-free to prevent corrosion or operational failures.
  • Anti-Skid Valve — prevents wheel skidding by modulating brake pressure.
  • Distributor Valve — manages airflow between brake cylinders and control reservoirs.
  • Emergency Brake Valve — ensures rapid braking during emergency conditions.
  • Piston Valve, Magnet Valve, Pressure Reducer Valve, Check Valve, Safety Valve, and others.

Each valve undergoes individual or sequential testing based on pre-programmed parameters, ensuring reliability and performance under various load and pressure conditions.

2. Dual operating modes

The bench accommodates both novice and expert operators through dual-mode functionality:

  • Automatic Mode — utilises pre-programmed sequences to run diagnostic and functional tests automatically, with the flexibility to select specific valves or tests when required.
  • Manual Mode — allows the operator to control each test manually using toggle switches and control panels for precise testing under varying conditions.

3. Comprehensive computerized control system

  • A PLC (Programmable Logic Controller) governs all automatic operations.
  • A DAQ (Data Acquisition System) integrated with custom software enables real-time monitoring of test parameters.
  • Operators can configure test sequences, input parameters, and generate automated reports in PDF format for documentation.
  • The system includes graphical interface screens, facilitating ease of use, parameter modification, and result analysis.

4. High-performance pneumatic system

  • Air Pressure Capacity: rated for 10.5 kg/cm², with an operational supply range of 8 to 10 kg/cm².
  • Flow Rate: supports a maximum flow of 2400 LPM, enabling rapid testing cycles.
  • Equipped with multiple air reservoirs for Brake Pipe (BP), Brake Cylinder (BC), Auxiliary Reservoir (AR), and Control Reservoir (CR) systems.

5. Precision instrumentation

  • Digital pressure gauges with high accuracy (±0.5% of full scale), least count of 0.1 kg/cm².
  • Pressure transmitters with 4–20mA signal output.
  • Sound level sensors (30–130 dB range) to test and monitor horn functionality.
  • Dew point meters to ensure compressed air meets moisture-free requirements for optimal performance.

System components

The CCUBTB consists of multiple integrated systems to ensure seamless testing and data acquisition:

1. Test bench structure

Built with SS-304 and aluminium profile framing for enhanced durability and corrosion resistance. Modular design with detachable side and rear panels for easy access during maintenance. The test stand includes integrated reservoirs and pneumatic piping, minimising external connections and reducing the risk of leaks.

2. Air treatment and distribution

A Twin Tower Air Dryer (flow capacity of 2000 LPM) ensures consistent delivery of clean and dry compressed air. Inline pneumatic valves and pressure regulators rated for pressures up to 12 bar provide precise control of airflow during tests. The system is fitted with 5-micron pre-filters, post-filters, and fine filters to maintain air quality.

3. Control panels and electrical systems

The Data Acquisition Panel houses hardware components that interface sensors, control valves, and software. The PLC Control Panel automates test sequences and integrates with the computer system. A UPS guarantees uninterrupted power for critical operations, and the bench is equipped with emergency-stop functions and safety interlocks to prevent system damage during faults.

4. Measurement and analysis tools

A Digital Readout (DRO) panel displays real-time pressure, flow, and system diagnostics. Test data is recorded, saved, and automatically compiled into detailed reports for analysis and audit purposes.

Operating conditions

ParameterValue
Test MediumHigh-purity compressed air
Operating PressureRated up to 10.5 kg/cm²
Flow Rate2400 LPM, for high throughput on large-scale operations
Ambient Temperature RangeSuitable for temperatures up to 48°C
Electrical Power Supply230V, single-phase, 50Hz, compatible with industrial standards

Maintenance and safety features

The CCUBTB incorporates comprehensive maintenance protocols to ensure long-term reliability. Integrated maintenance screens allow operators to monitor system status, including sensor calibration, valve integrity, and reservoir pressures.

Maintenance tasks

  • Draining moisture from air filters.
  • Tightening fittings and seals to prevent leaks.
  • Regular calibration of pressure gauges and transmitters.
  • Checking air dryer performance.

Do’s and don’ts

Do’s:

  • Read the user manual thoroughly before operating the system.
  • Understand pneumatic circuit diagrams for efficient troubleshooting.

Don’ts:

  • Never touch sensors or internal circuitry during operation.
  • Avoid switching on the control panel without a proper air supply.

Applications

This Universal Brake Test Bench is a critical component for metro rail maintenance operations, ensuring that braking systems are safe, reliable, and fully operational. The system is tailored for use by metro corporations, railway workshops, and maintenance depots, particularly those involved in large-scale fleet management.

10
FAQ

Common questions.

Plain-language answers from the engineering team.

Q · 01 What is a computerized control universal brake test bench?
A computerized control universal brake test bench is an advanced testing system designed to evaluate performance, pressure, leakage, and functionality of brake systems using automated digital controls.
Q · 02 What types of brake systems can be tested?
It can test pneumatic, hydraulic, and electro-pneumatic brake systems used in railway coaches, locomotives, and industrial vehicles.
Q · 03 What parameters are measured during testing?
The system measures pressure, leakage rate, response time, braking force, and system efficiency under simulated operating conditions.
Q · 04 Is the brake test bench fully automated?
Yes, it features computerized control with automated test cycles, real-time monitoring, and data logging for accurate and repeatable results. A manual mode is also available for operator-paced testing.
Q · 05 Can the system generate test reports?
Yes, it provides digital test reports, graphical analysis, and data storage for traceability and compliance documentation.
Q · 06 What industries use this brake test bench?
It is widely used in railway maintenance depots, rolling stock manufacturers, defence sectors, and heavy engineering industries.
Q · 07 Does the system support customization?
Yes, the test bench can be customised based on specific brake system configurations, pressure ranges, and testing standards.
Q · 08 What safety features are included?
It includes pressure relief systems, emergency stop functions, interlocks, and controlled testing environments to ensure operator safety.
Q · 09 How does computerized control improve testing accuracy?
Computerized control eliminates manual errors, ensures consistent test conditions, and provides precise data acquisition and analysis.
Q · 10 Is the system compliant with industry standards?
Yes, it is designed to meet relevant railway and industrial testing standards for brake system validation and quality assurance.
Related

Other brake & valve test systems from Neometrix.

Pneumatic and hydraulic brake-valve test rigs engineered and manufactured at our Noida facility.

Get a proposal

Tell us your valve types
and test requirements.

We size the system, propose a configuration, and walk through the test programme with your engineering team before you commit.

Request proposal +91 7777 876 876

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Engineered To Standards Used In UK, NATO & U.S. Defence Procurement
DEF STAN (UK MoD)
NATO STANAG
RTCA/EUROCAE DO-160
MIL-SPEC / MIL-STD
Address
E-148, Sector-63, Noida, Delhi-NCR, India
Phone
Email
Working Hours
8:30 AM – 5:30 PM  ·  Mon – Sat
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