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SKU:1756-HSC
1756-HSC Allen-Bradley ControlLogix High Speed Counter Module
Manufacturer: Allen-Bradley
Product No.: 1756-HSC
Product Type: High Speed Counter Module
Product Origin: USA
Payment:T/T, Western Union
Weight: 320g
Shipping port: Xiamen
Warranty: 12 months
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Product Overview
The Allen-Bradley 1756-HSC is a high-performance, high-speed counter module designed for the flagship ControlLogix PLC platform. Engineered for real-time, precision-critical motion and tracking applications, this module excels at monitoring rapid pulse streams from quadrature encoders, high-speed proximity switches, and flow meters. Weighing approximately 0.32 kg (0.71 lbs), this compact chassis-based module provides high-speed input tracking paired with an ultra-low latency 4-point digital output matrix, enabling instantaneous direct-drive control actions independent of the core PLC overhead or overhead scan cycles.
Core Technical Advantages
- Sub-Millisecond Multi-Input Capture: Provides 3 dedicated high-speed inputs per counter channel to cleanly capture A, B, and Z marker pulse signals simultaneously, ensuring flawless position and velocity tracking.
- Direct Hardware-Linked Outputs: Features a 4-point onboard output grid that responds directly to pre-configured count thresholds, bypassing backplane scan latencies to protect fast-moving automated axes.
- Rugged Industrial Longevity: Boasts a Mean Time Between Failures (MTBF) rating of 50,000 hours and a broad 0 to 60 degrees Celsius operating profile, ensuring long-term hardware survival inside high-density control panels.
Technical Specifications
| Parameter | Specification Details |
|---|---|
| Brand / Manufacturer | Allen-Bradley / Rockwell Automation |
| Model Part Number | 1756-HSC (ControlLogix Series) |
| Gross Weight | 0.32 kg (0.71 lbs) |
| Module Subtype | High Speed Counter (HSC) Hardware Card |
| Input Channel Structure | 3 high-speed inputs per counter loop (Supports differential/single-ended) |
| Onboard Discrete Outputs | 4-Point hardware-driven transistor outputs |
| Nominal Input Voltage | 24 Volts DC |
| Power Consumption | 1 Watt low-draw internal circuit configuration |
| Mean Time Between Failures | 50,000 Hours (MTBF operational life) |
| Operating Temperature Bounds | 0 deg C to 60 deg C (32 deg F to 140 deg F) |
| Storage / Transit Range | minus 40 deg C to plus 85 deg C (minus 40 deg F to 185 deg F) |
| Relative Atmospheric Humidity | Up to 95% non-condensing moisture index |
Installation & Engineering Guide
- Chassis Insertion Mechanics: Isolate all primary backplane and field power loops before mounting. Slide the 0.32 kg module frame straight into the target slot of any 1756 ControlLogix chassis, pushing inward smoothly until the top and bottom structural latches click tightly over the metal housing rails.
- Encoder Field Wiring Array: Route high-speed encoder leads carefully to the appropriate removable terminal block pins. For typical quadrature tracking, wire the Phase A, Phase B, and Index/Z pulse lines to the 3 distinct inputs per counter to establish steady directional evaluation.
- Direct Output Calibration: Terminate your local fast-action devices (e.g., glue valves, braking coils) directly to the 4-point onboard outputs. Configure your window comparisons or target preset values via Studio 5000 to enable the hardware to trigger these pins instantaneously when targets are hit, bypassing CPU scan cycles.
Technical FAQs
Q1: Why does the 1756-HSC provide 3 distinct input points per counter circuit?
A1: The 3 inputs are engineered to accept complete encoder signals: Input 1 tracks Phase A for frequency, Input 2 tracks Phase B to evaluate rotation direction, and Input 3 monitors the Z marker pulse to establish home registration parameters.
Q2: How does the hardware-driven 4-point output design prevent product errors or overrun?
A2: Because these 4 outputs are controlled directly by the onboard counter processor, they bypass the regular backplane communication cycle. The moment the pulse count reaches its target, the output fires within microseconds, ensuring pinpoint positioning at high assembly line speeds.
Q3: Does the lightweight 0.32 kg construction mean this module requires external thermal spacing?
A3: No. At only 0.32 kg, its specialized low-power layout generates minimal thermal overhead, dissipating just 1 Watt. This allows it to run continuously from 0 deg C up to 60 deg C without needing dedicated empty slots on either side.
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