Description
MOOG T200-410-J-0AA1
Key Technical Specifications
| Parameter | Specification |
|---|---|
| Product Model | T200-410-J-0AA1 |
| Manufacturer | MOOG |
| Product Type | Programmable servo drive |
| Series | T200 |
| Input Voltage | 230 VAC RMS |
| Input Current | 10 A RMS maximum/phase |
| Input Frequency | 50/60 Hz |
| Input Phase | 3-phase / 1-phase |
| Output DC Bus | 325 VDC nominal |
| Maximum Output Current | 10 A DC |
| Maximum Output Power | 3.75 kW |
| Drive Architecture | Programmable servo drive |
| Typical Motor Application | MOOG brushless servo motor systems |
| Manufacturing Origin | MOOG Ltd., Ireland is reported for this configuration |
| Lifecycle | Discontinued according to secondary lifecycle records |
The available equipment documentation gives the key electrical ratings as 230 Vrms input, 10 Arms maximum per phase, 3.75 kW maximum input/output class, and 325 VDC nominal DC-bus output.
Product Introduction
The MOOG T200-410-J-0AA1 is a programmable servo drive from the T200 family, designed to convert an industrial AC supply into controlled DC-bus and motor-drive power for servo applications. Its documented electrical configuration uses a 230 VAC RMS supply, with a nominal 325 VDC output bus and up to 10 A DC output for a maximum drive power of approximately 3.75 kW.
This is a drive-level component, not a small signal servo-valve amplifier. That distinction matters during replacement: the incoming AC supply, DC-bus characteristics, motor rating, feedback arrangement, control configuration, and application software all need to match the original installation. The T200-410-J-0AA1 has also been reported as discontinued, so preserving an existing unit or verifying an equivalent replacement requires more than matching the nominal power rating.

T200-410-J-0AA1
Engineering Pain Point
The main field risk is substituting another 3.75 kW servo drive based only on voltage and power. The T200-410-J-0AA1 belongs to an older MOOG drive architecture, so motor feedback, control interfaces, parameter sets, acceleration/deceleration behavior, and application-specific programming can determine whether a replacement will actually run the machine correctly. A physically compatible drive with the wrong control configuration can produce commissioning problems even when its electrical ratings look acceptable.
Typical Applications
- Industrial servo systems: Controlled operation of MOOG brushless servo motors.
- Hydraulic motion equipment: Servo-driven systems requiring controlled motor and pump operation.
- Turbine auxiliary systems: Documented procurement records associate this exact drive with turbine gas/fuel control equipment.
- Legacy machine control: Replacement of -series drive hardware in established motion-control installations.
Technical Pitfalls to Avoid
- Do not confuse this drive with a servo-valve amplifier. Several secondary listings use inconsistent terminology. The electrical specification identifies the unit as a high-power servo drive with a 325 VDC nominal bus.
- Verify the incoming supply carefully. The documented configuration is based on 230 VAC RMS and up to 10 Arms per phase. A different model can have a materially different input and power rating.
- Check the motor before replacement. Confirm the connected MOOG motor model, rated current, feedback device, motor cable arrangement, and application parameters. Do not commission the drive against an unknown motor configuration.
- Preserve the existing parameter set. If the original controller is still accessible, capture drive parameters and application settings before removal. For an obsolete drive, those settings can be more valuable than the hardware itself.
- Verify the DC bus and braking arrangement. The 325 VDC nominal bus is a critical system parameter. Check braking hardware, regeneration requirements, fusing, and DC-bus wiring before energizing a replacement.
- Confirm the exact suffix. -410J-0AA1, -410G-0AA1, -410H-0AA1 and other variants are not automatically interchangeable simply because they share the -410 designation. Secondary catalogs show different electrical configurations among these variants.
Related Products
- MOOG -410G-0AA1 — Related 3.75 kW drive configuration; electrical and control details should be verified before substitution.
- MOOG -410H-0AA1 — Related -410 drive variant with different configuration details; not automatically a drop-in replacement.
- MOOG -410H-0BA1 — 230 VAC drive configuration documented with a 325 VDC nominal bus and 10 A maximum output.
- MOOG -510J-0AA1 — Higher-power programmable servo-drive family member; power rating differs substantially f-J-0AA1.
- MOOG -500H-0AA1 — Higher-power programmable drive; not a direct replacement based on model family alone.
- MOOG G493K604 — A MOOG brushless servo motor documented in with in equipment records; motor-drive compatibility must be confirmed from the installed system documentation.
Procurement check: For , verify the nameplate, input configuration, motor model, feedback type, stored drive parameters, firmware/application configuration, and braking arrangement. Because this is a legacy/discontinued drive, an exact model and revision match is preferable to selecting a replacement solely by 230 VAC and 3.75 kW ratings.
