AC Charger Testing / Field Service / Laboratory Testing
ST-HCAC-GB / UA / EA
Three-Standard AC EV Charger Comprehensive Tester
Portable GB, European and North American AC charger tester for interoperability, protocol, metering, waveform and field acceptance testing.

Product Overview
Three-Standard AC EV Charger Comprehensive Tester
ST-HCAC-GB / UA / EA is a portable three-standard AC EV charger tester that combines GB, European and North American charging interfaces in one system. It provides interoperability and protocol-conformance testing, independent line switching, high-current capability for laboratory work and field acceptance workflows. The system is designed for charger manufacturers, power utilities, third-party laboratories, buyers and inspection teams carrying out R&D debugging, production tests, commissioning and verification.
ST-HCAC-GB / UA / EA consolidates three regional AC charging interfaces into one validation platform. It is intended for manufacturers, laboratories and inspection teams comparing charger behavior, metering and control-pilot signals across target markets.
Choose the right test configuration
Interface and workflow
GB, European and North American AC charger validation in one platform. Confirm the connectors and test current for each regional interface before configuring the station.
External load and connection limits
Terminals accept resistive, electronic, battery or regenerative loads. Interface and load-path limits need configuration review; the up-to-100 A energy-acquisition range is not a guarantee that every connector supports 100 A.
Options and accessories
Precision 0.05-class metering, multi-channel waveform capture and Wi-Fi operation are optional. Specify calibration connections, accessories and portable or cabinet installation.
Procurement checklist
Confirm the delivered configuration before ordering
Interface and standards
Confirm the connector, market, protocol and exact standard editions required by the charger and test plan.
Electrical and load path
Separate socket, cable and measurement ratings from the source or external load used during sustained power tests.
Evidence and options
List required metering accuracy, message or waveform capture, fault cases, report fields and optional modules.
Acceptance and support
Agree supplied accessories, software, factory acceptance checks, commissioning, training and support boundaries.
Key Features
Designed for reliable EV charger validation.
- 01Supports GB, European and North American AC charging interfaces, with independent control of line switching and high-current carrying capability for laboratory testing.
- 02RS232 computer connection and optional Wi-Fi operation support remote control, while dedicated voltage, pilot-signal and hardware-synchronization terminals can feed external instruments.
- 03Optional 0.05-class metering supports verification of GB AC chargers against JJG 1148-2022. An optional multi-channel waveform module captures charging voltage, current and signal timing.
- 04Simulates the vehicle control-pilot circuit and the real charging process, with adjustable vehicle-side resistance and real-time voltage, current, power, status and charging-sequence displays.
- 05Provides standard GB, European and North American AC vehicle sockets, dedicated calibration terminals and load terminals for resistive, electronic, battery or regenerative loads.
- 06Built-in energy acquisition covers up to 100 A. L1, L2, L3, N, PE, CP and CC/PP safety terminals provide direct signal access for measurement and inspection.
- 07Compact and suitable for laboratory cabinets, with a complete PC interface that helps test engineers run repeatable charger verification workflows while conserving bench space.
Technical Specifications
Core specifications
| Supported Interfaces | GB / European / North American AC charging interfaces |
|---|---|
| Communications | RS232; optional Wi-Fi |
| Metering | Optional 0.05-class metering; JJG 1148-2022 support for GB AC chargers |
| Energy Acquisition Range | Up to 100 A |
| Signal Terminals | L1, L2, L3, N, PE, CP and CC/PP; 4 mm safety terminals |
| Waveform Acquisition | Optional multi-channel charging voltage, current and signal capture |
| External Load | Terminals for resistive, electronic, battery or regenerative loads |
| Installation | Portable; suitable for laboratory cabinets |
| Reference Standards | JJG 1148-2022; GB AC charging and interoperability test requirements |
Application Scenarios
Where this product is used
Product FAQ
Common questions about ST-HCAC-GB / UA / EA
Which AC interfaces are included?
The platform supports GB, European and North American AC charging interfaces with independent line control.
Can it perform metering verification?
An optional 0.05-class metering configuration supports higher-precision verification, including GB AC charger workflows.
What loads can be connected?
Dedicated terminals support resistive, electronic, battery or regenerative external loads.
Does the 100 A acquisition range apply to every connector?
No. Energy acquisition and connector current limits are different specifications. Confirm socket, cable and external-load limits for each selected regional interface.
Test workflows and application solutions
EV Charger Laboratory Testing →
Configure a complete laboratory around the charger type, target market and test plan instead of combining disconnected instruments.
Production-Line Testing & Aging →
Standardize production acceptance across models while keeping test conditions, results and exceptions visible to quality teams.
Interface testing guides
GB/T: equipment and workflow →
Plan GB/T AC and DC charger testing with the correct connector, communication revision, BMS simulation, metering and production or field workflow.
Type 2: equipment and workflow →
Compare Type 2 AC EVSE test equipment and plan control-pilot states, proximity behavior, switching, metering, faults and commissioning evidence.
Type 1 / SAE J1772: equipment and workflow →
Plan Type 1 SAE J1772 AC EVSE testing for control-pilot states, proximity behavior, supply ratings, switching, metering, faults and field evidence.
Reference application architectures
See how this equipment can fit into a laboratory, production or field workflow. Final configuration depends on the actual test scope.
Integrated EV Charger Validation Laboratory Architecture →
A reference architecture for coordinating charger interfaces, programmable power equipment, protocol analysis and traceable laboratory evidence.
EVSE Production End-of-Line and Aging Test Architecture →
A modular production architecture for repeatable charger identity, functional, communication and power checks with traceable result handling.
Inquiry Form
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