Our capabilities are organised into nine areas, from data acquisition and real-time control to harnessing and defence test systems. Most systems we deliver combine several of them: a test cell might use high-channel acquisition, FPGA-based control, custom signal conditioning and a test executive, all integrated and commissioned by the same team.
Use the directory below to browse every skill by area, or filter by the industry you work in.
Describe the measurement or test problem and we will propose an architecture.
Aerospace and aero-engine test, defence and naval systems, automotive and mobility, space and research, and industrial and energy.
One route from requirement to site acceptance: requirements capture, architecture, procurement, build, development, integration, factory acceptance test, then site installation and commissioning. Review gates are held at design review, pre-FAT readiness, FAT and SAT.
LabVIEW, LabVIEW Real-Time, LabVIEW FPGA, TestStand and DIAdem on NI PXI/PXIe, CompactRIO and CompactDAQ hardware, alongside PLC, HMI and machine vision platforms.
ISO 9001:2015 for quality management and ISO 27001:2022 for information security. Harnesses are manufactured to IPC/WHMA-A-620 workmanship. SyncSols is an NI System Integration Partner with CLD and CLAD certified LabVIEW engineers, and is MSME Udyam registered.
One year of service support is included as standard, extendable to an annual maintenance contract with defined response times. Documented migration paths are provided as platforms reach end of life.
User and system requirements, architecture and ICD, wiring and panel drawings, harness build records, FAT and SAT protocols, calibration records, operation and maintenance manuals, and source code at handover.
A test bench measures and stimulates a unit under test. A HIL bench additionally runs a real-time model of the surrounding system, so the controller under test behaves as if it were installed in the vehicle, aircraft or plant. HIL is used where the controller's closed-loop response has to be exercised, including fault conditions that are unsafe to create on real hardware.
Yes. We assess the installed system, report its condition, calibration status and software maintainability, and set out costed options — from targeted repairs to full re-platforming onto current hardware with the application migrated and re-validated against the original results.
Source code, drawings and documentation for the delivered system are handed over to the customer under the contract terms. We retain our own reusable libraries and frameworks, which are licensed to the customer for use with the delivered system.
A single test bench usually runs eight to sixteen weeks from requirement freeze to site acceptance, depending on hardware lead times, panel and harness manufacture, and the customer's acceptance process. Multi-bed facilities and HIL programmes run longer and are delivered in phases.
Yes. Installation, integration with the customer's equipment, site acceptance testing and operator familiarisation are performed at the customer's facility by the same engineers who built the system.
Under our ISO 27001:2022 information security management system. Customer material is held on controlled systems with access restricted to the project team, and handled per the confidentiality terms of the contract.
Systems are designed with commonality across beds wherever possible, spares are quoted with the system, and we flag components with known end-of-life so the customer can plan. Support contracts include periodic obsolescence review.
Quality management to ISO 9001:2015, information security to ISO 27001:2022 and cable and harness assembly to IPC/WHMA-A-620. Project documentation is prepared to the customer's applicable standard, including defence documentation requirements.
Yes, where the customer's site policy permits it. Where remote access is not allowed, which is common on defence and secure sites, support is provided by scheduled site visits under the maintenance contract.
Operator and maintainer training is part of handover. Deeper LabVIEW and TestStand training for the customer's engineers is available as a separate service, run on the customer's own system so the examples are directly relevant.
Every skill, grouped by capability area. Filter by area or industry to narrow the list.
27 skills
Production-floor functional and EOL testers with barcode traceability, cycle-time-driven sequencing, operator guidance and MES/database reporting.
Cell, module and pack test benches: charge/discharge cycling, insulation and isolation checks, cell-simulator-based BMS validation and thermal-chamber integration.
Strain, load, displacement and fatigue acquisition for static and dynamic structural testing, with bridge completion, shunt calibration and engineering-unit reporting.
Inline and offline vision stations for presence/absence, dimensional measurement, OCR/OCV and surface defect checks, integrated with PLC and test sequencing.
Centralised test result storage, automated report generation, trend and capability analysis, and dashboards that turn raw test files into engineering decisions.
Assessment and re-platforming of ageing test systems — legacy GPIB, VXI, SCXI, PCI and Windows-XP-era applications moved to current, supportable hardware and code.
Calibration planning for delivered systems: channel verification procedures, shunt and loop checks, and calibration arranged through accredited (NABL) laboratories with certificate tracking.
Bridge-based measurement for strain gauges, load cells and pressure transducers, with excitation, shunt calibration and zeroing built in.
Thermocouple and RTD measurement at high channel counts, with cold-junction compensation, isolation and thermal-profile logging.
Microphone and IEPE-based acoustic measurement with frequency analysis, sound-level metrics and synchronised recording.
Acquisition nodes spread across a site or vehicle, time-aligned with GPS or network timing so data from every node shares one timebase.
Deterministic closed-loop control of hydraulic, pneumatic and electric actuators for test rigs, with tuning tools and safety limits.
Test and control of electric motors and drives, measuring torque, speed, electrical power and efficiency across operating points.
Functional test of printed circuit board assemblies with bed-of-nails or connector fixtures, power sequencing and firmware programming.
Functional and performance testing of converters, inverters and power supplies, including efficiency, protection and transient response.
Continuous monitoring of rotating machines and production equipment to detect degradation before it causes a failure.
Measurement and reporting of electrical energy and utility consumption across machines, lines and buildings.
Monitoring of process variables such as pressure, flow and temperature, with limits, alarms and historical records.
Connecting test and monitoring systems to central servers or cloud platforms for remote visibility and data access.
Complete automation cells combining mechanics, motion, sensing, PLC control and test into one delivered system.
Supervisory and operator interfaces for plants and test facilities, with alarms, trends, recipes and reporting.
Integrating industrial robots with test, inspection and handling stations, including tooling, safety and cell control.
Manufacture of electronic assemblies, panels and harnesses to your drawings and specifications, with inspection and test records.
Automated continuity, insulation and hipot testing of cables and harnesses, with wiring lists and pass/fail records.
Rigs for testing valves, actuators, pumps and fluid components, with pressure and flow control and automated test sequences.
Mechanical and electrical fixtures that hold and connect units under test reliably and quickly.
Reusable test-executive frameworks with limits management, reporting and hardware abstraction, so new tests are faster to build.
Complete test and control systems — requirements through site acceptance, under a single accountable contract.
LabVIEW, Real-Time and FPGA development, plus structured migration off obsolete platforms with documented equivalence.
Deputed engineers for commissioning, test campaigns and sustained operations, with defined response times under an AMC.
NI platform supply, panel build, harnessing and integration delivered as a single package.
Independent review of an existing test facility or a planned programme — architecture, coverage, cycle time, obsolescence risk and a costed upgrade path.
Structured LabVIEW, TestStand and test-architecture training for customer teams, delivered on the customer's own systems and datasets.