Description
Technical Specifications
-
Product Model: E94ASHE0134
-
Brand: Lenze
-
Warranty: One Year
-
Input Voltage: 3-phase 400 VAC (320–480 V operational range)
-
Operating Temperature: 0 °C ~ +60 °C
-
Storage Temperature: -40 °C ~ +85 °C
-
Response Time: ≤ 10 ms
-
Protection Class: IP20
-
Accuracy Class: High-precision servo control grade
-
Output Frequency: 0–600 Hz
-
Rated Current Range: 2.4 A (1.1 kW rated power)
-
Communication Interface: High-speed Ethernet interface
-
Supported Protocols: EtherCAT, Modbus TCP
-
Overload Capacity: 150% rated current for 60 seconds, 200% peak short-term overload
-
Dimensions: 135 mm × 82 mm × 205 mm

Product Overview
The Lenze E94ASHE0134 is a high-performance servo drive module from the Lenze 9400 series, designed for precise dynamic motion control in high-precision industrial automation equipment. Tailored for 1.1 kW servo motor loads, this Lenze drive adopts advanced vector servo control algorithms, delivering ultra-fast response and stable torque output under high-frequency cyclic operation. It features built-in comprehensive fault diagnosis and electromagnetic anti-interference design, effectively avoiding operational abnormalities caused by on-site environmental interference. Equipped with high-speed Ethernet communication, it supports rapid data interaction with upper-level control systems to achieve synchronous multi-axis linkage.
Application Scenarios
-
High-Precision Processing Machinery: This Lenze servo drive is widely used in cutting, engraving and precision machining equipment. Its ultra-high frequency output and fast response capability ensure accurate positioning and stable running speed of servo motors, effectively improving workpiece processing accuracy and qualification rate, and adapting to long-term continuous industrial production.
-
Automated Assembly Lines: Deployed in multi-axis linkage assembly and handling equipment. The E94ASHE0134 supports high-speed EtherCAT synchronous communication, realizing precise cooperative motion of multiple axes, solving the problems of asynchronous operation and positioning deviation of traditional drive equipment, and greatly improving assembly efficiency and production stability.





Reviews
There are no reviews yet.