Product Details
Configured for high-power switching execution in ABB drive architectures, the ABB FS300R17KE3/AGDR-76C 68444195, also cataloged as the FS300R17KE3/AGDR-76C IGBT Module, provides direct physical/electrical execution. Operating with a 1700 V collector-emitter breakdown rating and handling up to 300 A continuous collector current, the EconoPACK+ assembly converts intermediate DC link voltages into variable-frequency AC outputs through rapid semiconductor gate actuation.
Hardware Specifications
| Parameter | Specification |
|---|---|
| Model | FS300R17KE3/AGDR-76C (68444195) |
| Brand | ABB |
| Origin | Finland |
| Weight | 0.5 kg |
| Dimensions | Standard EconoPACK+ Frame Package |
| Operating Temp | Standard Drive Thermal Envelope |
| Power Consumption | Circuit Losses / Drive Inverter Rating (1700 V, 300 A Peak) |
| Collector-Emitter Voltage | 1700 V |
| Continuous Collector Current | 300 A |
| Package / Frame | EconoPACK+ |
| Replacement Model ID | 68569362 |
Deterministic Drive Inverter Execution and Gate Drive Integration
The FS300R17KE3/AGDR-76C module relies on precise gate driver pulse-width modulation (PWM) signals to control high-current switching phases across drive inverter power bridges. Integrating directly into the inverter assembly, the low-inductance terminal design reduces transient voltage spikes during turn-off phases. Thermal conduction through the substrate maintains junction temperature stability across changing torque loads, preserving firmware flash compatibility and scan control stability within the primary drive processing unit.
Frequently Asked Questions
Q: What are the primary electrical switching ratings for the FS300R17KE3/AGDR-76C module assembly?
A: The module is rated for a maximum collector-emitter voltage of 1700 V and a continuous collector current of 300 A.
Q: Is there an officially designated direct replacement part number for this module?
A: Yes, ABB lists part number 68569362 as the official replacement hardware for the FS300R17KE3/AGDR-76C assembly.
Q: What installation precautions must be taken regarding the module thermal interface?
A: A uniform layer of thermal conductive paste must be applied between the module copper baseplate and the drive heatsink to optimize thermal dissipation and avoid localized junction overheating.
Field Installation Guidelines
- Safety Isolation: Ensure the host frequency inverter is fully de-energized and allow the DC link capacitors to discharge completely to 0 VDC before removing enclosure guards.
- Thermal Compound Application: Clean the heatsink contact surface thoroughly and apply a homogeneous layer of thermal grease to the baseplate using a roller or screen-printing mask prior to mounting.
- Mechanical Torque Control: Fasten baseplate mounting screws incrementally in a crosswise sequence using a calibrated torque wrench to prevent mechanical stress on the internal ceramic substrate.
- Terminal Power Connections: Secure high-current DC and AC phase power terminals to specified factory torque limits to prevent resistive heating at terminal contact surfaces.
- ESD Protection: Use grounded wrist straps when handling gate terminal control connections to protect against electrostatic discharge damage to internal gate oxide layers.
Additional Information
- 100% Genuine Parts: All products are original and authentic, ensuring reliable industrial performance.
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- 12-Month Warranty: Covers defects in materials or workmanship; excludes misuse, normal wear, or unauthorized modifications.
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- Purchase Guidance: Check product specifications and compatibility carefully before ordering to ensure proper application.































