Naugra Export manufactures industrial automation and Industry 4.0 training equipment for polytechnics, ITIs, engineering colleges, TVET institutes and corporate skill centres. Every system is built around real industrial components rather than simulations, so a student who learns on our bench can walk onto a plant floor and recognise what is in front of them.
The difference between a training system that produces employable technicians and one that produces exam passes is whether the components on the bench are the components used in industry. Our trainers are built with the same PLCs, contactors, sensors, valves and drives a graduate will meet in a factory, mounted so the wiring is visible and the faults are real.
Every station ships with shrouded 4 mm terminals, labelled test points at each functional block, an experiment manual with theory, procedure and expected results, and a spares list with manufacturer part numbers. Where a system supports fault insertion, the fault switches are keyed so an instructor can set a scenario without the class seeing which one.
Systems are built to the destination supply — voltage, frequency, phase and plug type confirmed before production, not after shipment.
| What every automation trainer includes | |
|---|---|
| Components | Industrial-grade PLCs, sensors, valves, contactors and drives from recognised manufacturers |
| Terminals | Shrouded 4 mm sockets, labelled test points at each functional block |
| Fault training | Keyed fault-insertion switches for instructor-set diagnostic scenarios |
| Documentation | Experiment manual, circuit diagrams, component datasheets, spares list with part numbers |
| Software | Programming and SCADA licences stated on the quotation, seat count confirmed |
| Supply | Built to destination voltage, frequency, phase and plug type |
| Safety | Emergency stop, RCD protection, guarded moving parts, CE-referenced construction |
| Support | Installation, commissioning, instructor training, warranty as per contract |
Twenty-four training system families, manufactured in our own unit in Ambala Cantt. Open any range for specifications, or send the BOQ and we will quote against it line by line.
Programmable logic controller trainers with real industrial CPUs, digital and analogue I/O, HMI and simulated plant faults for ladder logic and structured text.
View range 02Connected production cells combining PLC, robotics, RFID, vision and MES software so students work with a live digital twin, not a diagram.
View range 03Six-axis articulated and SCARA robot cells with teach pendant, gripper sets, safety fencing and conveyor integration for pick-and-place programming.
View range 04Humanoid platforms with servo joint control, vision, speech and open SDKs for teaching kinematics, machine learning and human-robot interaction.
View range 05Edge AI development kits, GPU trainer boards, dataset and vision labs for computer vision, predictive maintenance and machine learning coursework.
View range 06Sensor nodes, gateways and cloud dashboards over Wi-Fi, LoRa, Zigbee and MQTT for industrial IoT, telemetry and condition monitoring.
View range 07Inductive, capacitive, optical, ultrasonic, temperature, pressure, flow and load sensors on a common bench with signal conditioning and calibration.
View range 08Modular production system stations - distributing, testing, processing, handling, sorting - that run standalone or link into a full production line.
View range 09Flexible manufacturing systems with CNC machines, robot loading, AGV or conveyor transport and central supervisory control.
View range 10Process control systems for level, flow, pressure and temperature loops with PID controllers, control valves and SCADA visualisation.
View range 11Advanced control benches covering cascade, feedforward, ratio and adaptive control, distributed control and industrial fieldbus networks.
View range 12KNX, BACnet and Modbus building management trainers for lighting, HVAC, access control, fire and energy metering.
View range 13Integrated mechanical, electrical, pneumatic and control workstations where a single fault crosses all four disciplines.
View range 14Transparent and industrial circuit trainers with cylinders, valves, proportional control and electro-pneumatic PLC interfacing.
View range 15Fundamentals through to power electronics - analogue, digital, microcontroller, converter and inverter trainers with shrouded terminals.
View range 16AC and DC machine benches with dynamometer loading for characteristic, efficiency, starting and speed control testing.
View range 17Regulated supplies, UPS, converter and protection trainers with assessment software that scores wiring and fault-finding tasks.
View range 18Fault-insertion panels for motor control centres, starters, contactors and distribution boards, built for competency assessment.
View range 19CNC turning and milling trainers plus cutaway spindles, ATC, ballscrew and servo drive units for maintenance and alignment training.
View range 20Gear trains, cams, governors, gyroscopes, balancing and vibration apparatus for kinematics and machine design coursework.
View range 21Vapour compression and absorption units with instrumented cycles for COP calculation, plus charging, recovery and fault diagnosis rigs.
View range 22Solar PV and thermal, wind, fuel cell, biomass and hybrid microgrid trainers with grid-tie inverters and data logging.
View range 23Engine, transmission, braking, steering, EFI, ABS and EV powertrain trainers with cutaway assemblies and diagnostic interfaces.
View range 24Signalling, traction, door control, braking and depot maintenance trainers for metro and railway technician programmes.
View rangeSix things decide whether the quotations you receive are comparable. State them and the bidding becomes about price and delivery rather than interpretation.
“PLC trainer” is not a specification. State the CPU class, digital and analogue I/O count, communication ports and whether the programming software licence and seat count are included.
A trainer that only demonstrates is worth less than one students take readings from. State which quantities must be instrumented and to what resolution.
Competency-based curricula assess diagnosis, not assembly. Ask how many faults can be inserted, whether they are keyed, and whether they are documented in the manual.
Voltage, frequency, phase and plug type at the installation site. A 415 V three-phase bench shipped to a 208 V country is an expensive paperweight.
Request the manual contents at quotation stage. It tells you what the system can actually teach far better than a photograph does.
Sensors, seals, cutting tools, filters and licences are what a working automation lab runs through. A system whose spares cannot be sourced becomes a display piece.
Industrial automation training equipment is laboratory apparatus built around real industrial control components — PLCs, sensors, actuators, drives, valves and HMI or SCADA software — so that students learn to programme, wire, commission and fault-find the same systems used in manufacturing plants. It covers PLC and process control trainers, robotics and mechatronics cells, pneumatics and hydraulics benches, Industry 4.0 production lines and IoT and AI development platforms.
An industrial CPU rather than a simulator, a stated count of digital and analogue inputs and outputs, shrouded terminals for safe student wiring, an HMI panel, communication ports for fieldbus or Ethernet exercises, application modules such as traffic light, lift, conveyor or bottle filling, and the programming software with the licence seat count confirmed in writing. Fault insertion switches turn it from a programming bench into a diagnostic one.
An MPS, or modular production system, is a set of individual stations — distributing, testing, processing, handling, sorting — that each teach one function and can be linked into a line. An FMS, or flexible manufacturing system, is a production cell built around CNC machines with automated part transport, robot loading and central supervisory control, where the teaching point is scheduling and integration rather than the individual station.
Yes. Industry 4.0 cells combine PLC control, robotics, RFID part tracking, machine vision and MES software with a digital twin, so students see the physical process and its data model at the same time. IoT trainers cover sensor nodes, gateways and cloud dashboards over Wi-Fi, LoRa, Zigbee and MQTT, applied to condition monitoring and telemetry rather than as an abstract networking exercise.
Yes. We supply MOE, skill development and donor-funded tenders across Africa, the Middle East, South Asia and the Caribbean, and provide the priced BOQ in the tender format, technical datasheets per line item, manufacturer declarations, certificate of origin and the delivery, installation and training schedule.
Yes. Installation and commissioning are carried out on site by our engineers or by a supervised local team depending on the contract. Instructor training covers programming, operation, routine maintenance and the full experiment set, so teaching staff can run the laboratory independently from handover.
We will build the item list with the controller family, I/O count, instrumentation, fault training capability and supply requirements stated against each line, so the quotation you receive is directly comparable with every other one.