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DT7-17-20-E00 A2525CD Industrial Servo Drive

The DT7-17-20-E00 A2525CD is a compact, high-torque servo drive engineered to deliver precise motor control in demanding industrial applications. It acts as the bridge between motion controllers and servo motors, converting digital control signals into the precise voltage and current required to achieve accurate speed, position, and torque regulation. This drive is part of a comprehensive motion control ecosystem, seamlessly integrating with PLCs, HMIs, and encoder feedback systems to form closed-loop control architectures. In the hierarchy of a motion control system, it sits between the controller and the motor, processing real-time feedback to adjust motor output and maintain desired performance parameters.

Model DT7-17-20-E00 A2525CD
Type Industrial Servo Drive
Input Voltage 200-240V AC (single-phase)
Output Current 20A continuous, 40A peak
Rated Power 4.5kW
Operating Temperature 0°C to +55°C (32°F to +131°F)
Mounting DIN rail (35mm standard)
Dimensions 145mm x 85mm x 160mm (W x H x D)
Weight 1.8kg (3.97lb)
Interfaces EtherCAT, PROFINET, 2 x encoder feedback ports
Certifications IEC 61800-5-1, UL 508C, CE
Feedback Compatibility SSI, EnDat 2.2, BiSS-C
Control Modes Position, velocity, torque
Protection Features Overcurrent, overvoltage, thermal shutdown, short-circuit
Environmental Rating IP20

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Description

The DT7-17-20-E00 A2525CD is a compact, high-torque servo drive engineered to deliver precise motor control in demanding industrial applications. It acts as the bridge between motion controllers and servo motors, converting digital control signals into the precise voltage and current required to achieve accurate speed, position, and torque regulation. This drive is part of a comprehensive motion control ecosystem, seamlessly integrating with PLCs, HMIs, and encoder feedback systems to form closed-loop control architectures. In the hierarchy of a motion control system, it sits between the controller and the motor, processing real-time feedback to adjust motor output and maintain desired performance parameters.

DT7-17-20-E00 A2525CD

DT7-17-20-E00 A2525CD

In the hierarchy of a motion control system, it sits between the controller and the motor, processing real-time feedback to adjust motor output and maintain desired performance parameters. What makes the DT7-17-20-E00 A2525CD invaluable to motion control engineers is its ability to deliver consistent performance across varying loads and operating conditions, ensuring repeatable results even in high-speed, high-precision applications.

DT7-17-20-E00 A2525CD

DT7-17-20-E00 A2525CD

 

Main features and advantages:

One of the defining technical features of the DT7-17-20-E00 A2525CD is its advanced servo control algorithm. This algorithm enables ultra-fast response times—less than 1ms—to changes in command signals or load conditions, making it ideal for applications requiring rapid acceleration and deceleration, such as pick-and-place robots in electronics assembly. The drive’s hardware design balances power and compactness: its rugged aluminum housing dissipates heat efficiently, allowing it to operate at full load in ambient temperatures up to 55°C without external cooling. This durability is complemented by robust protection features, including overcurrent, overvoltage, and thermal shutdown, which safeguard both the drive and connected motor from damage during unexpected events.
Compatibility is another key strength of the DT7-17-20-E00 A2525CD. It supports a wide range of servo motors, including both rotary and linear models with incremental or absolute encoders, via its flexible feedback interfaces (SSI, EnDat, and BiSS). It also integrates seamlessly with common industrial communication protocols like EtherCAT and PROFINET, enabling easy integration into centralized control systems. This versatility allows system integrators to use the DT7-17-20-E00 A2525CD in both new installations and retrofits, reducing the need for custom programming or hardware modifications. Long-term reliability is further enhanced by its low electromagnetic interference (EMI) emissions, which prevent interference with nearby sensitive electronics, and its vibration-resistant design, which ensures stable performance in machinery subject to constant motion.
DT7-17-20-E00 A2525CD

DT7-17-20-E00 A2525CD

 

Technical specifications:
Model DT7-17-20-E00 A2525CD
Type Industrial Servo Drive
Input Voltage 200-240V AC (single-phase)
Output Current 20A continuous, 40A peak
Rated Power 4.5kW
Operating Temperature 0°C to +55°C (32°F to +131°F)
Mounting DIN rail (35mm standard)
Dimensions 145mm x 85mm x 160mm (W x H x D)
Weight 1.8kg (3.97lb)
Interfaces EtherCAT, PROFINET, 2 x encoder feedback ports
Certifications IEC 61800-5-1, UL 508C, CE
Feedback Compatibility SSI, EnDat 2.2, BiSS-C
Control Modes Position, velocity, torque
Protection Features Overcurrent, overvoltage, thermal shutdown, short-circuit
Environmental Rating IP20

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DT7-17-20-E00 A2525CD

DT7-17-20-E00 A2525CD

Application areas:

In the high-stakes world of industrial motion control, where precision and reliability directly impact production quality and efficiency, theDT7-17-20-E00 A2525CD stands as a critical component. Consider a semiconductor packaging facility, where robotic arms must position microchips with micron-level accuracy to ensure proper bonding. Even the slightest deviation in motor movement can render thousands of chips useless, leading to significant financial losses. Similarly, in a precision CNC machining workshop, the ability to control spindle speed and axis movement with exacting precision determines the quality of finished parts—from aerospace components to medical devices. This is where the DT7-17-20-E00 A2525CD excels. Used in industrial automation across sectors like electronics manufacturing, precision machining, and automated material handling, it serves as a high-performance servo drive, translating control signals into smooth, precise motor movements that keep critical processes on track.

 

DT7-17-20-E00 A2525CD

DT7-17-20-E00 A2525CD

 

Related products:

DT7-17-15-E00 A2525AB – A lower-current variant (15A continuous) designed for smaller servo motors in light-duty applications like lab automation.
DT7-17-30-E00 A2525DE – A higher-power model (30A continuous) built for heavy-duty motors in applications like large-scale material handling robots.
MTR-200S-3000 – A 200V servo motor perfectly matched to the DT7-17-20-E00 A2525CD, featuring high-resolution absolute encoders for precise feedback.
ENC-1024-HD – A high-dynamic encoder that pairs with the DT7-17-20-E00 A2525CD to provide sub-micron position feedback in precision applications.
CTL-500-MC – A motion controller that communicates with the DT7-17-20-E00 A2525CD via EtherCAT to coordinate multi-axis motion sequences.
PSU-240-5kW – A 240V AC power supply unit optimized for use with the DT7-17-20-E00 A2525CD, ensuring stable voltage during peak loads.
CAB-ECAT-5M – A shielded EtherCAT cable designed to maintain signal integrity between the DT7-17-20-E00 A2525CD and control systems.
FIL-3PH-20A – A line filter that reduces EMI emissions from the DT7-17-20-E00 A2525CD, protecting nearby sensitive electronics.
Installation and maintenance:

 

Before installing the DT7-17-20-E00 A2525CD, ensure the mounting rail is rated to support its weight and that there is at least 60mm of clearance above and below for heat dissipation—critical given its high-power density. Verify that the input power supply includes proper overcurrent protection (a 30A circuit breaker is recommended) and that the ground connection is secure to prevent electrical noise. For multi-axis setups, arrange drives in a staggered pattern to improve airflow, and use shielded motor cables with the shield terminated at both the drive and motor to minimize EMI. Calibrate the drive with the connected motor using the manufacturer’s software tool before full operation to ensure optimal performance and prevent resonance issues.
Maintenance of the DT7-17-20-E00 A2525CD focuses on preserving precision and preventing downtime. Conduct monthly visual inspections to check for loose connections, particularly at the motor and encoder terminals, and ensure the heatsink remains free of dust and debris. Monitor drive temperatures during operation using the built-in thermal sensor—consistent readings above 50°C may indicate insufficient cooling or excessive load. Update the firmware annually to access performance improvements and new control features, which can be done remotely via the EtherCAT or PROFINET interface to avoid production interruptions. If fault codes appear, use the drive’s diagnostic LED display to identify issues (e.g., overcurrent, encoder loss) and consult the troubleshooting guide to resolve them before resuming operation.
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