| Attribute | Value |
|---|---|
| Brand | CKD CORPORATION |
| Series | ABSODEX |
| Type | DRIVER GS TYPE |
| Model | AX9000GS |
| Input Voltage | 3AC 200-230V 50/60 HZ |
| Operating Temperature | 0~50°C |
| Humidity | 20~90%RH |
| Country of Origin | MADE IN JAPAN |
| Weight | 1.730 KG |
| Condition | USED 1 PCS |
| Reference Number | 40026 |
Key Features of the CKD ABSODEX AX9000GS Driver GS
High Precision Control: The AX9000GS provides the highest precision in rotary positioning, making it ideal for applications that require accuracy.
Compact Design: The driver has a compact and lightweight design, yet it packs powerful capabilities that are suitable for space-constrained environments.
Energy Efficiency: The driver is designed to consume minimal energy without compromising performance, making it a sustainable choice.
User-Friendly Interface: The AX9000GS comes with a user-friendly interface through intuitive controls and easy-to-read indicators for easy operation and monitoring.
Versatile Compatibility: This driver is compatible with a wide range of rotary actuators, hence allowing for flexible integration into various systems.
Benefits of the AX9000GS
Increased productivity
High-speed operation and accuracy that reduce downtime and improve overall production efficiency.
Cost Savings: Energy-saving design with minimal maintenance requirements, offering a cost-effective solution.
Higher Durability: Durable materials and advanced technology used in the manufacture of the driver enhance reliability and performance
Safety: The equipment is fitted with safety features that ensure safe operation from the operators and during the handling of equipment.
Applications of the CKD ABSODEX AX9000GS
Industrial applications where such a driver AX9000GS is perfectly fitting include:
Manufacturing: Precision machining, assembly lines, and automated material handling systems.
Robotics: As a core component in robotic arms and automation systems.
Aerospace: For tasks requiring extreme precision and reliability.
Healthcare: Used in medical devices requiring intricate positioning and control.









