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HIMA X-DI1601 985210222 Digital Input Module

HIMA X-DI1601 985210222 Digital Input Module photo-1
HIMA X-DI1601 985210222 Digital Input Module photo-2
HIMA X-DI1601 985210222 Digital Input Module photo-3
Negotiable MOQ: 1 Piece (Price negotiable depending on order volume and customization)
Key Specifications
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Material:
Other, Global universal model
Certification:
CE
Function:
Other, Global universal model
Payment & Shipping
Payment Methods:
Port of Shipment:
guizhou
Delivery Detail:
5 days
Material Other, Global universal model
Certification CE
Function Other, Global universal model
Condition New
Task Other, Global universal model
Mathematical Model Other, Global universal model
Signal Other, Global universal model
Customized Non-Customized
Structure Other, Global universal model
I. Product Overview
The HIMA X-DI1601 985210222 Digital Input Module is a high-performance product meticulously designed for industrial automation and safety control systems. It belongs to the highly acclaimed HIMatrix series under HIMA. As a leader in the field of industrial safety control, HIMA has always adhered to the ultimate pursuit of quality and safety, boasting profound technical heritage and rich industry experience. Inheriting the excellent genes of HIMA's products, the X-DI1601 985210222 Module undertakes the critical task of accurately collecting on-site digital signals and reliably transmitting them to the controller in the system, serving as a core component for building a highly reliable industrial automation system.
II. Basic Information
  • Product Model: Specifically X-DI1601 985210222. This model serves as the unique identifier of the product, facilitating accurate positioning and query in procurement, inventory management, technical support, and other links.

  • Manufacturer: Produced by HIMA, a company with a long-standing reputation in the industrial safety field. HIMA has won the trust of numerous industrial enterprises worldwide with its advanced technology, strict quality control system, and in-depth understanding of customer needs.

  • Product Type: Classified as a digital input module, it focuses on processing various digital signals from the field and provides accurate status information for the control system.

  • Product Series: Belongs to the HIMatrix series. Renowned for its excellent safety, strong system compatibility, and high reliability, this series can meet the stringent requirements for Safety Integrity Level (e.g., SIL 3 and above) in the industrial field.

HIMA X-DI1601 985210222 (1)

III. Functional Features1. Multi-Channel Efficient Acquisition
Equipped with 16 independent digital input channels, it can connect to multiple external digital devices simultaneously, such as switches, buttons, and sensors. The design with such a large number of channels greatly improves signal acquisition efficiency, making it suitable for industrial application scenarios that require monitoring the status of a large number of devices or complex process flows. It can comprehensively and efficiently acquire on-site digital signals, providing sufficient data support for the control system.
2. Wide Voltage Range Adaptation
Supports an input voltage range of 19.2V DC to 30V DC, enabling good compatibility with the output voltages of different on-site devices. Whether it is a standard 24V DC signal or a voltage signal that fluctuates within a certain range, the module can stably receive and accurately process it. This effectively reduces signal transmission issues caused by voltage mismatch and enhances applicability in complex industrial environments.
3. High-Speed and Accurate Sampling
Features high-speed sampling function, which can quickly capture fast-changing digital signals, such as high-frequency pulse signals generated by sensors. The high-speed sampling characteristic of the module ensures timely monitoring and accurate acquisition of dynamic signals, providing strong support for industrial control processes that require real-time response and avoiding control errors caused by signal sampling delays.
4. Reliable Electrical Isolation
Reliable electrical isolation technology is adopted between each input channel and between the channels and the backplane, with an isolation voltage of up to 500V AC. Electrical isolation can effectively block electrical interference between different circuits, prevent external interference signals from affecting the normal operation of the system through input channels, and at the same time avoid the spread of faults from one channel to others. This significantly improves the anti-interference capability and operational stability of the module.
5. Comprehensive Diagnostic Functions
Built with advanced diagnostic circuits, it can real-time monitor the status of each input channel. It can timely and accurately detect common faults such as wire breakage and short circuit, and send detailed fault alarm information to the control system through indicator lights or communication interfaces. This comprehensive diagnostic function helps maintenance personnel quickly locate fault points, shorten fault troubleshooting time, and greatly improve the availability and maintainability of the system.
6. Flexible Configuration Capability
The working mode of each input channel is configurable. Parameters such as input type (e.g., status input, frequency input, pulse input, etc.) and input voltage range can be flexibly set according to actual application requirements. This high degree of flexibility allows the module to easily adapt to different types of input signals and diverse industrial application scenarios, providing users with personalized solutions.
7. Safety System Integration
Designed specifically for integration with safety systems, it can be used to monitor safety-critical signals and effectively ensure safe production in industrial processes. For example, in industries such as petrochemicals and electric power, it can connect to safety-related equipment such as emergency stop buttons, flame detectors, and pressure switches, accurately transmit the status signals of these equipment to the safety control system. Once an abnormal situation is detected, the system can quickly respond and activate corresponding safety protection measures to prevent accidents from occurring or expanding.
8. PLC Cooperative Work

Can work in cooperation with Programmable Logic Controllers (PLC). The input signals are processed through PLC programs, and corresponding control operations are triggered. The module has good compatibility and communication efficiency with PLC, enabling fast data interaction and processing, and jointly building an efficient and stable automation control system. It is widely used in various industrial automation production lines, smart factories, and other scenarios.

HIMA X-DI1601 985210222 (2)

IV. Technical Parameters
  • Input Current: The input current of each channel is approximately 10mA (typical value). While ensuring accurate reading of input signals, it maintains low power consumption, which helps reduce the energy consumption of the entire system and improve energy efficiency.

  • Input Type: Complies with the IEC 61131-2 Type 1 standard, ensuring compatibility with numerous industrial equipment that follows this standard and facilitating equipment selection and integration for users in the process of system construction.

  • Operating Temperature: The operating temperature range is -25°C to +70°C, enabling adaptation to various harsh industrial ambient temperature conditions. Whether in cold outdoor working environments or high-temperature industrial production workshops, the module can operate stably, ensuring that the system is not affected by changes in ambient temperature.

  • Storage Temperature: The storage temperature range is -40°C to +85°C. During long-term storage, the module can maintain good performance, extending the service life of the product and reducing the risk of product damage caused by storage condition limitations.

  • Humidity Range: The allowable humidity range is 5% to 95% (non-condensing). In high-humidity environments, the module has good moisture-proof performance, which can effectively prevent problems such as electrical short circuits and corrosion caused by moisture intrusion, ensuring stable operation in humid environments.

  • Protection Rating: The protection rating reaches IP20, which can effectively prevent the intrusion of solid foreign objects with a diameter greater than 12mm, such as accidental contact of large tools or fingers with the internal circuits of the module. It provides basic physical protection for the module and ensures the safe operation of internal circuits.

  • Installation Method: Adopts the standard DIN rail installation method. The installation process is simple and convenient, requiring no special tools or complex operation procedures. The module can be installed by simply clamping it into the corresponding position of the DIN rail and fixing it, facilitating layout and maintenance in equipment such as control cabinets and saving installation time and labor costs.

  • Communication Protocol: Supports the HIMA Safe Ethernet (SIL 3) communication protocol, ensuring high-speed and reliable data transmission with other system components, guaranteeing the stability and real-time performance of system communication, and meeting the strict requirements for data interaction in industrial automation systems.

V. Installation and MaintenanceInstallation Steps1. Pre-Installation Preparation
Before installing the HIMA X-DI1601 985210222 Module, carefully read the relevant HIMatrix system manual and module specification to fully understand the installation requirements and precautions. Ensure that the installation environment meets the technical specifications of the module, such as temperature, humidity, and electromagnetic compatibility. Carefully check whether the appearance of the module is intact, and confirm that the terminal blocks are not damaged or loose. Prepare suitable cables and installation tools according to the engineering design drawings. At the same time, ensure that the control cabinet is powered off and take effective anti-static measures to prevent static electricity from damaging the module.
2. Module Installation
Accurately align the module with the installation position on the DIN rail, press it gently to make it firmly clamped into the rail. Use supporting fixing accessories (such as screws) to further fix the module on the rail, ensuring that the module is installed stably and will not loosen due to vibration or other external forces. During the fixing process, pay attention to applying moderate force to avoid damaging the module or the rail due to excessive force.
3. Wiring Operation

Connect the external signal wires in strict accordance with the wiring diagram. When connecting, ensure that each wire is correctly connected to the corresponding terminal block, and tighten the terminal screws to ensure reliable connection, avoiding problems such as poor contact and short circuit. For safety-related wiring, be sure to use shielded cables and ensure that the cables are properly grounded to improve the anti-interference capability of signal transmission and ensure the safe operation of the system. After wiring is completed, check again whether the wiring is correct and firm.

HIMA X-DI1601 985210222 (3)

Maintenance Recommendations1. Regular Connection Inspection
Regularly inspect the connection between the module and the rail to ensure that the module is firmly fixed without signs of looseness. At the same time, check the connection between the external signal wires and the module's terminal blocks to see if there are any loose, disconnected, or oxidized wires. If connection problems are found, re-tighten or replace the damaged components in a timely manner to ensure stable signal transmission.
2. Cleaning and Maintenance
Regularly clean the dust and dirt on the surface of the module to avoid excessive dust accumulation affecting the heat dissipation and electrical performance of the module. A clean and soft brush or compressed air can be used for cleaning, but care should be taken to avoid physical damage to the module during the cleaning process. Keep the environment around the module clean to reduce the possibility of dust, debris, etc., entering the control cabinet.
3. Heat Dissipation Management
Check the ventilation around the module to ensure good heat dissipation. Avoid placing other equipment with large heat generation near the module to prevent excessive local temperature from affecting the normal operation of the module. If the operating temperature of the module is found to rise abnormally, timely troubleshoot the heat dissipation problem, such as cleaning the air vents and checking whether the cooling fan is operating normally.
4. Functional Testing
In accordance with the maintenance manual of the HIMatrix system, regularly conduct functional tests and diagnostic inspections on the module. By simulating input signals, verify whether the module can accurately collect and transmit signals, and at the same time check whether the diagnostic function of the module is normal. If functional abnormalities are found in the module during the test, repair or replace it in a timely manner, and the work should be carried out by professional technicians.
5. Fault Handling
Once a fault occurs in the module, such as abnormal flashing of indicator lights, communication interruption, or inability to collect signals correctly, immediately stop the operation of the relevant equipment and disconnect the power supply of the control system to ensure personnel safety. Contact HIMA's official technical support or professional maintenance personnel, describe the fault phenomenon in detail, and cooperate with them in fault troubleshooting and repair. During the fault handling process, strictly follow the operating procedures to avoid expanding the fault due to improper operation.
VI. Application Fields1. Oil and Gas Industry
Safety is of paramount importance in all links of oil and gas exploration, extraction, transportation, and refining. The HIMA X-DI1601 985210222 Module can be used to monitor the signal status of safety-related equipment such as emergency stop buttons, flame detectors, pressure switches, and liquid level switches. By timely and accurately collecting these signals and transmitting them to the safety control system, once an abnormal situation occurs, the system can respond quickly and take measures such as emergency shutdown, effectively preventing accidents and ensuring the safety of personnel and the normal operation of production facilities.
2. Chemical Industry
The chemical production process involves a large number of flammable, explosive, toxic, and harmful substances, requiring extremely high safety control. The module can connect to various sensors and switches on key equipment such as reactors and storage tanks, such as temperature sensors, pressure sensors, and valve position switches, to real-time monitor the operating status of the equipment. When abnormal equipment operating parameters or safety hazards such as leaks are detected, the module quickly transmits the signals to the control system, triggering corresponding safety protection measures such as activating emergency sprinkler devices and closing relevant valves, so as to avoid accidents and reduce accident risks.
3. Electric Power Industry
In power plants and power transmission and transformation systems, the HIMA X-DI1601 985210222 Module can be used to monitor the contact signals of protection devices and the status signals of circuit breakers. By accurately collecting these signals, it provides reliable data support for the stable operation of the power system. For example, when a circuit breaker trip signal is detected, the control system can make a timely judgment and take corresponding handling measures to ensure the safe and stable power supply of the power system and avoid production interruptions or equipment damage caused by power failures.
4. Other High-Risk Industries
The module also plays an important role in industries with strict safety requirements such as pharmaceuticals, metallurgy, and rail transit. In the pharmaceutical industry, it can be used to monitor signals such as the access control system of clean workshops and equipment operating status, ensuring that the production environment meets the requirements of Good Manufacturing Practice (GMP) for pharmaceuticals. In the metallurgical industry, it can connect to sensors of large equipment such as blast furnaces and converters to real-time monitor the operating status of the equipment and ensure the safety of the production process. In the rail transit industry, it can be used to monitor signals such as train door status and track signals, providing guarantee for train operation safety.


Product Tags: HIMA , X-DI1601 985210222 , Digital Input Module

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Verified Business License
Business Type
Trading Company
Year Established
2014
Factory Size
1,000-3,000 square meters
Product Certifications
SA8000