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NH Research 9510-75, Power Hardware in the Loop Testing, Regenerative Grid Simulator
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NHR 9510-75 Regenerative Grid Simulator
The NHR 9510-75 Regenerative Grid Simulator is a top-tier option for high-power grid-tied application testing and validation. It's commonly used to simulate real-world grid settings in research labs and industry. The 9510-75 is perfect for Power Hardware in the Loop (PHIL) testing because of its integrated power amplifier mode, which provides sophisticated simulation capabilities.
The NHR 9510-75's Advanced Digital Measurement System, which makes compliance tests like IEEE1547.1 and UL1741 easier to complete, is one of its primary features. Long-term measurements are generally needed for these studies, which can be difficult to do with conventional equipment. By offering special event-tracking features that allow it to report on the precise cycle numbers at which particular events take place, the 9510-75 gets around this. It is possible to evaluate grid standard compliance with accuracy using this data.
The control options available to this grid simulator are likewise very broad; external control via low-latency, per-phase analog inputs is supported. Its ability to amplify control inputs from real-time simulation systems makes it perfect for PHIL testing. In simulations, the dual-range output guarantees accuracy and adaptability. With the use of macros and user-definable wave forms, the 9510-75 can directly replicate power line disturbances such as Low Voltage Ride Through (LVRT) test patterns. These macros are pre-written sequences that are executed to enable exact output control. They are entered through an intuitive interface. Because it can replicate both multi-cycle and sub-cycle output variations, the 9510-75 from NH Research is adaptable enough to handle a variety of testing requirements.
NI standard tools like LabVIEW and VeriStand can be used to fully program the 9510-75's many control possibilities. After a few minutes of powering up, basic checks can be performed manually thanks to a touch-panel interface. Features such as wave-shape editors and waveform capturing can be used to remotely operate more complicated test programs from a PC or laptop. Advanced energy testing is also possible with the system's integration with Enerchron® Test Management Software.
Model Name | NHR 9510-75 |
---|---|
Part Type | Regenerative Grid Simulator |
Power Rating (AC Mode) | 75kW / 177kVA |
Power Rating (DC Mode) | 75kW |
Voltage Range (AC Mode) | 10-175V L-N, 10-350V L-N |
Current Range (AC Mode) | 50A, 168A per phase; 150A, 506A (1Φ) |
Voltage Accuracy | ±0.1% Full Scale |
Frequency Range | 30-120 Hz (10 mHz resolution) |
Control Interfaces | LabVIEW, VeriStand, Analog, Soft Panel |
PHIL Capability | Built-in Power Amplifier Mode |
Why Buy From Apex Waves:
"Hand carrying parts to fedex directly to make sure I get them overnight. Great service"
"They were very helpful to get me the test equipment that I need."
NHR 9510-75
Test & Measurement Misc > NH Research > Regenerative Grid Simulators
NH Research 9510-75, Power Hardware in the Loop Testing, Regenerative Grid Simulator
1-800-915-6216
- Description
- Technical Specifications
NHR 9510-75 Regenerative Grid Simulator
The NHR 9510-75 Regenerative Grid Simulator is a top-tier option for high-power grid-tied application testing and validation. It's commonly used to simulate real-world grid settings in research labs and industry. The 9510-75 is perfect for Power Hardware in the Loop (PHIL) testing because of its integrated power amplifier mode, which provides sophisticated simulation capabilities.
The NHR 9510-75's Advanced Digital Measurement System, which makes compliance tests like IEEE1547.1 and UL1741 easier to complete, is one of its primary features. Long-term measurements are generally needed for these studies, which can be difficult to do with conventional equipment. By offering special event-tracking features that allow it to report on the precise cycle numbers at which particular events take place, the 9510-75 gets around this. It is possible to evaluate grid standard compliance with accuracy using this data.
The control options available to this grid simulator are likewise very broad; external control via low-latency, per-phase analog inputs is supported. Its ability to amplify control inputs from real-time simulation systems makes it perfect for PHIL testing. In simulations, the dual-range output guarantees accuracy and adaptability. With the use of macros and user-definable wave forms, the 9510-75 can directly replicate power line disturbances such as Low Voltage Ride Through (LVRT) test patterns. These macros are pre-written sequences that are executed to enable exact output control. They are entered through an intuitive interface. Because it can replicate both multi-cycle and sub-cycle output variations, the 9510-75 from NH Research is adaptable enough to handle a variety of testing requirements.
NI standard tools like LabVIEW and VeriStand can be used to fully program the 9510-75's many control possibilities. After a few minutes of powering up, basic checks can be performed manually thanks to a touch-panel interface. Features such as wave-shape editors and waveform capturing can be used to remotely operate more complicated test programs from a PC or laptop. Advanced energy testing is also possible with the system's integration with Enerchron® Test Management Software.
Model Name | NHR 9510-75 |
---|---|
Part Type | Regenerative Grid Simulator |
Power Rating (AC Mode) | 75kW / 177kVA |
Power Rating (DC Mode) | 75kW |
Voltage Range (AC Mode) | 10-175V L-N, 10-350V L-N |
Current Range (AC Mode) | 50A, 168A per phase; 150A, 506A (1Φ) |
Voltage Accuracy | ±0.1% Full Scale |
Frequency Range | 30-120 Hz (10 mHz resolution) |
Control Interfaces | LabVIEW, VeriStand, Analog, Soft Panel |
PHIL Capability | Built-in Power Amplifier Mode |
Why Buy From Apex Waves
"The business transaction was super easy and friendly."
"Hand carrying parts to fedex directly to make sure I get them overnight. Great service"
"They were very helpful to get me the test equipment that I need."