Detailed Parameter Table
| Parameter Name | Parameter Value |
|---|---|
| Product Model | DIZ232.1-1 E0164.001.020 GE |
| Manufacturer | GE (General Electric) |
| Product Category | Digital Input Module |
| Power Supply | 24V DC ±10% |
| Physical Size | 130mm x 90mm x 35mm |
| Input Type | Digital (24V DC) |
| Number of Inputs | 16 Channels |
| Communication Protocol | Modbus RTU, Profibus |
| Environmental Requirements | Operating Temp: -20°C to +60°C |
| Installation Method | DIN rail mounted |
| Protection Class | IP20 |
| MTBF | >500,000 hours |
Product Introduction
The DIZ232.1-1 E0164.001.020 GE is a high-performance digital input module designed for seamless integration into industrial automation systems. This module provides 16 digital input channels, which are capable of receiving 24V DC signals, making it ideal for monitoring a wide range of binary sensors, switches, and other field devices in automation systems.
Manufactured by General Electric (GE), a global leader in industrial technology, the DIZ232.1-1 module features high reliability and ease of integration. It supports Modbus RTU and Profibus communication protocols, ensuring flexible connectivity to control systems in various industrial sectors. The DIZ232.1-1 E0164.001.020 is engineered for robustness and durability, with an operating temperature range of -20°C to +60°C, making it suitable for use in both harsh and standard environments.
This compact and modular device is DIN rail mounted, offering flexibility in panel design and ease of installation. It is designed to support a wide range of industrial automation applications, ensuring efficient and accurate data acquisition from remote field devices. Its long-term reliability, with an MTBF of over 500,000 hours, minimizes system downtime and improves operational efficiency.
Core Advantages and Technical Highlights
Reliable and Precise Signal Acquisition:
The DIZ232.1-1 E0164.001.020 GE provides 16 independent digital input channels, each capable of accepting 24V DC signals. This ensures reliable data acquisition from a variety of sensors and switches, whether monitoring machine status, position, or safety features. The DIZ232.1-1 is ideal for applications requiring precise and real-time monitoring of binary signals, ensuring system integrity and reducing the risk of failure.
Flexible Communication Options:
Supporting both Modbus RTU and Profibus communication protocols, the DIZ232.1-1 can easily integrate into different automation systems. This multi-protocol support provides flexibility for a wide range of applications, whether in factory automation, energy management, or process control. With both fieldbus options, it offers seamless integration into existing network infrastructure and enables smooth data transmission between the input module and control systems.
Rugged Design for Harsh Environments:
The DIZ232.1-1 GE is designed to withstand demanding environments with an operating temperature range of -20°C to +60°C. The module’s IP20 protection rating ensures it is resistant to dust and moisture, making it suitable for industrial environments with varying environmental conditions. This rugged design ensures consistent performance and durability even in harsh operating conditions.
Easy Integration and Installation:
Designed for easy installation, the DIZ232.1-1 is DIN rail mounted, allowing for fast and secure placement in control cabinets or panels. Its compact size makes it ideal for space-constrained applications while maintaining robust performance. The module can be integrated into a wide range of systems without extensive reconfiguration, simplifying installation and reducing setup time.
High Reliability and Long Lifecycle:
With an MTBF of over 500,000 hours, the DIZ232.1-1 E0164.001.020 GE is built for high durability and reliability. This ensures that the module will perform continuously without frequent failures, reducing the need for repairs or replacements and contributing to long-term cost savings. The DIZ232.1-1 is ideal for mission-critical applications where system uptime is essential, providing peace of mind for operators and engineers.
Typical Application Scenarios
The DIZ232.1-1 E0164.001.020 GE is designed for a wide range of industrial applications, particularly in environments where reliable digital signal acquisition is needed. In factory automation, the module is commonly used to monitor switches, sensors, and control signals from machines, conveyors, or robotic arms, ensuring that all components are functioning as expected.
In process control systems, the DIZ232.1-1 is employed to monitor status signals from devices like flow meters, pressure switches, and level sensors. It provides real-time input data to control systems, allowing operators to take immediate action when critical parameters are outside predefined thresholds.
The DIZ232.1-1 is also widely used in energy and power generation systems, where it monitors the status of protective relays, circuit breakers, and other control devices. By providing accurate digital inputs, the DIZ232.1-1 GE ensures that the protection systems are functioning correctly and that operators receive timely feedback on the status of the equipment.
Related Model Recommendations
- DIZ232.2-1 GE: A higher-density version of the DIZ232.1-1, offering 32 digital input channels for larger systems or more complex applications.
- DOZ232.1-1 GE: A digital output version of the DIZ232.1-1, designed for controlling actuators, alarms, and other devices that require digital output signals.
- DIA200 GE: An analog input module that can be paired with the DIZ232.1-1 for applications requiring both analog and digital signal acquisition.
- DIO1037B ULSTEIN: A related digital input/output module with additional flexibility, offering both input and output channels for bidirectional signal processing.
- DIO2300 GE: A modular I/O expansion unit compatible with the DIZ232.1-1, allowing for additional input channels and providing scalability in larger automation systems.
- DIZ240.1-1 GE: A more advanced version with enhanced diagnostic capabilities and extended environmental tolerances for more demanding industrial applications.

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