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Mitsubishi LM-H3S70-288-ASS0 - Linear Servo Motors
Mitsubishi LM-H3S70-288-ASS0 Servo Motor features 288 mm length and IP00 protection for secondary-side LM-H3 linear motion systems. This unit provides a 95 mm width, 15.3 mm height, and a 2.8 kg structure engineered for precise machine alignment. It is offered by Mitsubishi, classified under Mitsubishi Servo Motors, and belongs to the MELSERVO-JET, MELSERVO-J5, MELSERVO-J4 series.

| Brand | Mitsubishi |
| Product Type | Linear Servo Motors |
| Product | LM-H3S70-288-ASS0 |
Mitsubishi Linear Servo Motors LM-H3S70-288-ASS0 Technical Specifications:
| Specification | Value |
|---|---|
| Protection Class | IP00 |
| Series | MELSERVO-JET, MELSERVO-J5, MELSERVO-J4 |
| Type | LM-H3 |
| Side | SECONDARY |
| Lenght (mm) | 288 |
| Depth (mm) | 288 |
| Weight (kg) | 2,8 |
| Width (mm) | 95 |
| Height (mm) | 15,3 |
The Mitsubishi LM-H3S70-288-ASS0 Servo Motor is an LM-H3 secondary-side component designed for linear motion in industrial automation systems. It includes a 288 mm length, 95 mm width, 15.3 mm height, and IP00 protection, forming a consistent mechanical envelope for precise integration. As part of the MELSERVO-JET, MELSERVO-J5, and MELSERVO-J4 servo families, the model supports reliable positioning and controlled linear guidance.
This Mitsubishi LM-H3S70-288-ASS0 Servo Motor fits well in packaging machines, conveyor tracking systems, automated assembly stations, and synchronized transfer applications. Its 2.8 kg structure maintains stable mounting while supporting smooth motion exchange between linear modules. The LM-H3 secondary configuration enables repeatable alignment, predictable sliding response, and dependable performance in cycle-based production environments.
The Mitsubishi LM-H3S70-288-ASS0 Servo Motor offers consistent linear behavior through its defined LM-H3 geometry and placement within the MELSERVO-JET, MELSERVO-J5, and MELSERVO-J4 architecture. Its 288 mm length and IP00 structure ensure mechanical clarity and operational stability. Engineers can depend on this model for durable integration, accurate positioning, and long-term reliability in industrial automation processes.




