Product Short Description

Product Overview

Socapel PAM-R1N-H8F-AP-P V10800 is a distributed high-speed multi-axis synchronization motion control module under H006.7538 part number, dedicated to high-precision printing, textile, and packaging machinery requiring multi-axis electronic cam and phase correction synchronization control. PAM stands for Programmable Axes Manager; V10800 denotes firmware version V10800 with enhanced PAM-Ring fieldbus real-time synchronization performance

Description

Core Technical Specifications

  1. Power Supply Input: 9–36VDC wide-range industrial DC power; rated power consumption 10W
  2. Axis Control Capacity: Max 8 synchronized servo axes via proprietary PAM-Ring high-speed fieldbus
  3. Communication Interfaces: Isolated RS485 Modbus RTU, PAM-Ring dedicated motion bus, digital GPIO expansion channel
  4. Output Drive Capacity: Analog output max 2A for servo command signal transmission
  5. Operating Environmental Range: -20°C ~ +85°C; humidity 5–95% RH non-condensing
  6. Physical Dimension: 140mm(W) × 85mm(H) × 30mm(D); net weight 200g; standard DIN rail mounting
  7. Firmware Version: V10800 (optimized flying shear, rotary printing press synchronization algorithm)

Function Features

  • Distributed multi-axis real-time synchronization with dynamic phase correction during running production speed changes
  • Replace mechanical cam and gearbox functions fully via software electronic cam curve programming, flexible recipe switching
  • Priority task scheduling architecture: motion axis control executed as highest priority, PLC sequential logic processed as secondary low-priority task to eliminate synchronization delay
  • Support on-the-fly indexing, variable speed master-slave tracking, and continuous interpolation across all connected servo axes
  • Isolated RS485 communication enables data exchange with third-party PLC, HMI, and production data logging systems
  • Non-volatile Flash memory stores up to 32 sets of electronic cam motion recipes for rapid product changeover
  • Built-in fault diagnostic function to detect PAM-Ring bus disconnection, servo axis communication loss, and signal short-circuit

Working Principle

  1. Main master motion speed reference signal (encoder pulse or analog voltage) inputs to PAM module reference channel as master synchronization clock
  2. Internal high-speed motion DSP calculates electronic cam curve and phase offset for each connected slave servo axis per stored recipe parameters
  3. Transmit synchronized motion command signals to each servo drive via dedicated PAM-Ring fieldbus with microsecond-level timing precision
  4. Secondary low-priority task processes digital input/output logic signals for machine auxiliary actuator interlock control
  5. RS485 Modbus bus uploads real-time axis position, speed, and fault status to upper HMI and production management PLC
  6. Automatically trigger axis stop interlock and fault code storage upon PAM-Ring bus communication failure or servo drive fault feedback

Material & Structural Characteristics

  • DIN Rail Housing: High-temperature resistant black PA plastic with anti-vibration integrated snap mounting clip
  • Main Control PCB: Multi-layer isolated circuit board separating high-speed motion bus and low-speed Modbus communication circuits
  • Terminal Blocks: Nickel-plated spring-cage screw terminals with wire retention springs for vibration-prone textile/printing workshop environments
  • Internal Memory Chip: Industrial grade wide-temperature Flash memory chip to retain motion recipes during power outage

Installation Requirements

  1. Mount horizontally on 35mm DIN rail inside control cabinet; maintain 20mm vertical clearance between adjacent automation modules
  2. PAM-Ring motion bus cable uses shielded differential twisted pair, maximum single bus segment length 50m
  3. Separate motion bus wiring from high-power inverter and servo motor power cables with ≥25cm distance to avoid timing jitter interference
  4. 24VDC power supply wiring fitted with 1A slow-blow fuse for over-current protection
  5. Connect module protective earth terminal to cabinet low-resistance grounding bar

Usage Precautions

  • Do not modify electronic cam curve parameters during machine running production; pause equipment before recipe editing
  • Upgrade firmware version V10800 only via official Socapel configuration software to avoid motion algorithm compatibility failure
  • Clean cabinet ventilation filters monthly to prevent dust accumulation leading to module over-temperature shutdown
  • Do not daisy-chain more than 8 servo axes on single PAM-Ring bus to maintain synchronization timing accuracy
  • Perform full axis synchronization test after replacing any PAM module or servo drive unit before resuming mass production

Reviews

There are no reviews yet.

Be the first to review “Socapel H006.7538 PAM-R1N-H8F-AP-P V10800”

Your email address will not be published. Required fields are marked *

View Related Products