1HU3076-0AF01-0ZZ9-Z SIEMENS Digital input module SIEMENS

Brand: SIEMENS

Model number: 1HU3076-0AF01-0ZZ9-Z

Colour:new                                    Warranty: 12 months

Lead Time:3-day working day   Country of origin: USA

Price: Please contact us         Product weight:0.5kg

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Description

1HU3076-0AF01-0ZZ9-Z SIEMENS Digital input module

Product Dimensions:

Product Description

The Siemens Digital Input (DI) Module is a fundamental component of the SIMATIC PLC and Distributed I/O systems. Its core function is to acquire binary signals (ON/OFF, logical 1 or 0) from field devices such as pushbuttons, limit switches, proximity sensors, and other discrete measuring instruments.

The module acts as the interface, electrically isolating the sensitive PLC backplane and CPU from the industrial environment. It converts the incoming electrical signal (typically $24\ V\ DC$, but also available for $120/230\ V\ AC$ or other voltages) into the digital format that the Central Processing Unit (CPU) can read and process as part of the scan cycle.

Product Parameters

Category Typical Specifications
Channel Count Available in various densities, such as 8, 16, or 32 channels per module.
Input Voltage $24\ V\ DC$ (most common), $120\ V\ AC$, $230\ V\ AC$, or other industrial standards.
Input Type Sinking (PNP) or Sourcing (NPN), compliant with IEC 61131 Type 1, 2, or 3 standards.
Signal Polarity Positive switching (P-reading) or Negative switching (M-reading).
Input Delay Time Configurable: Ranging from very fast (e.g., $0.05\ ms$) for high-speed signals to standard (e.g., $3.2\ ms$ or higher) for noise suppression.
Isolation Typically provides electrical isolation between the field circuits and the backplane bus, sometimes with channel-to-channel or group-to-group isolation.
Diagnostic Capability Standard (ST) and High Feature (HF) versions offer comprehensive diagnostics like wire break, short circuit to sensor supply, and supply voltage monitoring.

Product Advantages

  1. High Density and Compact Design: Modules are designed for high channel count within minimal space, optimizing control cabinet footprint.
  2. Flexible Integration: Fully integrated into the TIA Portal engineering framework, enabling consistent parameterization, documentation, and diagnostics.
  3. High Noise Immunity: Features like configurable input filters allow users to suppress electrical noise and signal bounce (debouncing), ensuring reliable and stable signal acquisition.
  4. Integrated Diagnostics (HF Modules): High Feature modules provide channel-specific diagnostics, simplifying fault finding and maintenance by pinpointing issues like short circuits or wire breaks directly in the engineering environment.
  5. Scalability and Modularity: Allows the user to precisely match the I/O capacity to the application requirements by adding or removing modules, supporting both centralized and distributed I/O architectures.
  6. High-Speed Signal Processing: Specific modules offer functions like oversampling or high-speed counting capabilities, allowing the PLC to capture time-critical events or process high-frequency signals that standard inputs cannot handle.

Important Notes

  • Wiring Standards: Ensure the module’s input type (Sinking/Sourcing) matches the output type of the connected field sensor to maintain signal integrity and proper current flow.
  • Response Time vs. Filtering: Be mindful when configuring the input delay time; while longer delays filter out noise, they increase the module’s reaction time, which may be unacceptable for high-speed processes.
  • Channel Density and Power: Modules with high channel density require careful consideration of terminal block sizes and current limits for the sensor supply and internal module power.
  • Documentation: Always refer to the specific module’s technical manual for precise wiring diagrams, maximum cable lengths, and operational temperature ranges.

Product Applications

  1. Process Status Monitoring: Reading the status of simple discrete devices, such as the position of a valve (open/closed), the state of a pump (running/stopped), or the presence of a part via a limit switch.
  2. Operator Control Interface: Acquiring signals from manual input devices like emergency stop buttons, selector switches, and pushbuttons on a control panel.
  3. Safety Interlocks: Monitoring safety-critical limit switches or gate positions (often combined with a Safety Integrated module) to ensure machinery operates within safe limits.
  4. High-Speed Counting and Encoders: Utilizing High-Speed Digital Input channels to connect to incremental encoders, proximity sensors, or flow meters for high-precision counting and speed measurement applications.
  5. Packaging and Material Handling: Capturing fast-changing sensor states (e.g., product detection) on conveyor belts or robotic cells where millisecond timing is critical.

 

 

 

 

 

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