MQS TechnologiesContact us

Automated Test Equipments

When no instrument you can buy will answer the question.

Some assemblies cannot be verified by anything on a catalogue page. MQS designs and builds the test equipment for those: manual, microcontroller and PC-based systems for design, production and maintenance, engineered around one assembly and the way your people actually work.

20+ yearsBuilding defence test systems
3 categoriesManual, microcontroller, PC-based
Design → FieldLifecycle coverage
NCAGE 6567YNATO Commercial & Government Entity code

Why custom ATE

Catalogue instruments test parameters. ATE tests your assembly.

A bench multimeter measures voltage. It does not know what your unit is supposed to do, in what sequence, under what conditions, or what result counts as a pass. For a critical assembly, the gap between those two things is where escapes happen. Custom test equipment closes it: the test sequence, the limits, the fixture and the report are built around one assembly, so the operator presses start, and the system decides.

01

High throughput, low human error

Automated execution with minimal operator intervention. Repeatability stops depending on who is on shift.

02

Built for non-standard testing

Designed for critical assemblies where off-the-shelf equipment simply cannot perform the test.

03

Scalable architecture

Upgradeable as requirements evolve, so the system is not obsolete the first time the test spec changes.

04

Operation without a manual

Interfaces designed for minimal training, with custom report generation and storage for large volumes of results.

05

Rugged where it needs to be

Portable and battery-operated configurations for field and forward-area use.

06

Traceable by default

Self-test at startup, preset and user-configurable conditions, and stored results for audit and review.

Three categories

Three ways to build a test system.

The choice is driven by test speed, data complexity, budget, and sometimes by what your people were trained on. Most requirements resolve to one of these within the first conversation.

MQS manual test panel with toggle switches, rotary selectors, indicator lamps and connectors

A · Manual / analog

Built to match the training your operators already have.

User-operated equipment following a documented procedure: the operator sets inputs on toggle or rotary switches, reads voltage, current and frequency, and prepares the test report. These remain the traditional test systems in defence depots, specified where continuity with existing training matters.

IMG-02 · Launcher test panel, one of eight panels in a card-level and system-level test suite. The front-panel layout deliberately replicates the original equipment so trained operators need no retraining.

Best for
Depot and field use where operators are already trained on legacy equipment
Operator role
Sets inputs by switch, reads meters, records results
Interface
Toggle and rotary switches, analogue meters
Output
Manual test report
Choose when
Continuity with legacy equipment matters more than automation

B · Microcontroller-based

Embedded testing that travels to the unit.

Embedded test systems offered as a cost-effective package, designed for higher duty cycles and ease of operation. A typical system pairs an LCD or touch screen with a membrane keyboard, and connects to the unit under test through custom connectors or a mechanical enclosure suited to its form factor.

Best for
Cost-effective embedded testing at higher duty cycles
Operator role
Follows on-screen prompts; system evaluates
Interface
LCD or touch screen with membrane keypad
Output
On-board storage, optional USB printer
Choose when
The test sequence is well defined and unit count is high
MQS portable ruggedised test equipment in a hard case with keypad, display and rotary controls

IMG-03 · Portable field test system in a ruggedised case, battery powered for standalone operation, generating commands, measuring response time and displaying a PASS / FAIL verdict against preset limits.

MQS static regulator test rig cabinet with instrumentation, meters and control panel

C · PC-based (LabVIEW)

When you need to see the data, not just the verdict.

Workstation-driven systems for high-speed testing and complex data capture, combining analog and digital measurement sources with real-time data acquisition, visualization and custom software.

IMG-04 · Static regulator test rig, a cabinet system for functional verification of voltage and frequency regulation under controlled laboratory conditions.

Best for
High-speed testing and complex data capture
Operator role
Starts the sequence; system evaluates and logs
Interface
Full workstation GUI with real-time visualization
Output
Custom reporting, large result sets, export
Choose when
You need to see the data, not just the verdict

Systems built

What we have designed and delivered.

Each entry is a system MQS has built and delivered. Described by test function rather than by platform or customer, in line with the confidentiality our defence customers expect.

Aerospace test systems

Three systems

Alternator control & protection test rig

Voltage regulation, frequency regulation, current control and protection response, under simulated aircraft electrical conditions.

Static voltage regulator test rig

Voltage and frequency regulation of a 12 kVA three-phase alternator regulator, tested statically by substituting an equivalent AC source for the permanent magnet generator.

Duct temperature sensor test rig

Sensor output across a temperature range, with the sensor immersed in a temperature-controlled bath of aviation turbine fuel to replicate its real operating environment.

Defence test systems

Six systems

Portable missile checkout equipment (KMTE)

Final pre-firing checkout in the field: generates course and pitch commands, measures response time, and compares results against preset limits to display PASS or FAIL.

Launcher test panel suite

Eight panels covering card-level and system-level testing, fault isolation, calibration and final acceptance of launcher electronics.

Fire-control sighting test stand

Electrical parameters of the primary fire-control and sighting device of a main battle tank, verified before integration and field deployment.

Spin test equipment

Rotational speed at which fuze segment-lock shutters open, measured optically at speeds to 8,000 RPM and read out by an ARM-based controller.

Wire harness tester

Continuity, isolation resistance and insulation strength for airborne applications.

Gyro test rack

Drift parameters and stabilization rate for gyro gimbal assemblies.

One system named in full

Konkurs M Missile Test Equipment

The Konkurs M Missile Test Equipment (KMTE) can be named openly, because it was launched publicly by the Hon’ble Defence Minister in August 2023. That launch is a matter of public record, and it is the single strongest credential in the ATE portfolio: an indigenous test system, recognised at ministerial level, built for use at forward locations.

Standard capabilities

Included in every system we build.

Startup

Self-test at power-on

The system verifies itself before it verifies your assembly, so a fault in the tester is never mistaken for a fault in the unit.

Configuration

Preset and user-defined conditions

Standard test conditions stored as presets, with room for the operator to configure where the process requires it.

Records

Built-in result storage

Hundreds to thousands of test results retained on the system, available for recall and review.

Output

Custom report generation

Reports formatted to your documentation requirement, not to a generic template.

Applications

Where MQS test equipment is used.

Aerospace

Aircraft electrical and sensor systems

Alternator control and protection, voltage regulation, temperature sensing, verified under simulated aircraft conditions before installation.

Defence

Assemblies where test coverage is a safety requirement

Launcher electronics, fuzes, guidance sub-assemblies and integration-stage testing, validated at build and re-validated through maintenance.

Industrial QA

Production testing where cycle time decides output

Module and system fault diagnosis, and high-throughput production testing where repeatability and speed determine line performance.

Functional validationContinuity & isolationVoltage & frequency regulationResponse timeDrift & stabilizationRotational speed measurementEnvironmental simulationFault isolation & calibration

How it works

A custom system is a project, not a purchase order.

01

Define

Share the assembly, the parameters to verify, the throughput and the environment it will be tested in.

02

Architect

We propose a category and scope: manual, microcontroller or PC-based, plus fixturing, interfaces and reporting.

03

Build & validate

Design, manufacture and in-house validation against your acceptance criteria before dispatch.

04

Deploy & support

Installation, commissioning, operator familiarisation, and support through the life of the system.

Talk to us

Have a test requirement nothing on the market covers?

Tell us the assembly, the parameters you need to verify and where it will be tested. Our engineers will propose a category and a scope, and will say so if a standard instrument would do the job.

Get in touch

Tell us what you need to inspect

Share your part, material and defect type — our engineers will recommend the right MQS system.