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PSI64C0.715-W1 Bosch Rexroth Indramat

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The Bosch Rexroth Indramat PSI64C0.715-W1 is a medium frequency inverter from the PSI Frequency Inverters series. It uses water cooling with a minimum flow of 4 liters per minute and supports a mains voltage of 400 to 480 VAC and a nominal current of 220 Amps. This inverter features Ethernet I/O connection and has a maximum primary current of 1600 Amps.

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Product Description:

Bosch Rexroth Indramat builds the PSI64C0.715-W1 for its PSI Frequency Inverters series. Classified as a medium-frequency inverter, the unit converts plant AC power into the controlled output needed by automated power systems. Water cooling stabilizes thermal behavior during sustained operation, and Ethernet I/O with an EtherNet timer interface supports direct integration with higher-level control hardware. Network connectivity also allows status exchange and coordinated timing within a larger automation architecture. Its narrow, tall cabinet form suits dense drive lineups without crowding adjacent assemblies.

The inverter accepts a three-phase supply of 400 – 480 VAC and has a nominal mains current of 220 A. Basic cabinet dissipation is 69 W under nominal load, while the cooling circuit must be able to remove up to 700 W from the power stage at peak duty. At the specified coolant flow, the pressure drop is limited to 0.6 bar across the threaded water connections. A 95 mm² mains conductor cross-section is used at the terminals, which supports low-resistance current transfer and secure connection of the supply leads. Because a large share of the heat is carried by the liquid circuit, the surrounding cabinet air is exposed to less thermal load than with fully air-cooled power sections.

On the output side, the drive can deliver a primary current of up to 1 600 A, enabling secondary pulses that reach 54 kA through a matched transformer. The cooling circuit requires a continuous water supply of 4 l/min, and the hydraulic connections use M16 × 1.5 threads for the water lines. The overall cabinet height is 653 mm, and the housing uses a width of 288 mm with a depth of 280 mm to keep control wiring accessible while leaving room for the heat exchanger surfaces. This combination of output capacity and liquid cooling suits installations that need strong pulse delivery without relying on large volumes of cabinet airflow. The enclosure proportions also support side-by-side mounting in racks where front access needs to remain clear.

Basic Cabinet Losses
69 W
Cabinet Losses At Max %i
210 W
Connection Cross-section
95 mm²
Cooling Method
Water Cooled
Depth
280 mm
Height
653 mm
I/o Connection
Ethernet
Mains Nominal Current
220 A
Mains Voltage
400 - 480 VAC
Max Cooling Losses
700 W
Max Primary Current
1600 A
Max Secondary Current
54 kA
Min Cooling Water Flow
4 l/min
Product Type
Medium Frequency Inverter
Timer Type
EtherNet
Water Connection Thread
M16x1.5
Water Pressure Drop
0.6 bar at 4 l/min
Width
288 mm

Frequently Asked Questions about PSI64C0.715-W1:

Q: What is the mains voltage range for the PSI64C0.715-W1 frequency inverter?

A: This model supports a mains voltage range of 400 to 480 VAC, making it suitable for standard industrial power supplies.

Q: How is the PSI64C0.715-W1 frequency inverter cooled?

A: The cooling system for the PSI64C0.715-W1 is water-cooled, ensuring efficient thermal management during operation.

Q: What type of I/O connection does the PSI64C0.715-W1 support?

A: Ethernet is provided as the I/O connection type on this frequency inverter.

Q: What is the required cooling water flow for the PSI64C0.715-W1?

A: This inverter requires a minimum cooling water flow of 4 liters per minute for proper operation.

Q: What is the connection cross-section for the PSI64C0.715-W1 inverter?

A: The PSI64C0.715-W1 is designed with a connection cross-section of 95 mm².


Internal Product Review

  • ‘‘The PSI64C0.715-W1 is a Bosch Rexroth Indramat medium frequency inverter with water-cooled thermal management and Ethernet I/O connectivity. Operation on 400 to 480 VAC mains and a 220 A nominal current rating supports confident integration into high-demand power systems. A 54 kA maximum secondary current paired with only 4 l/min minimum cooling water flow makes the unit especially appealing for intensive medium-frequency applications.’’

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