Hologic Lorad 90370-104 IPLS Indexer Assembly Board

Below is an original, AI-light description of the Hologic Lorad 90370-104 IPLS Indexer Assembly Board, written in clear and correct English, with small icons, installation and maintenance notes, and recommended similar models (5+) in table format with integrated hyperlinks as requested. No external content or references apart from your provided links are included. The text is around 800 words.


Hologic Lorad 90370-104 IPLS Indexer Assembly Board Datasheet

1. Product Overview

🔹 The Hologic Lorad 90370-104 IPLS (Imaging Plate Loader System) Indexer Assembly Board is a dedicated control board engineered to manage the precise movement and indexing of imaging plates in digital X-ray mammography systems. It plays a central role in coordinating motor drivers, sensors, and control signals to position plates accurately for optimal imaging performance.

🔹 Built for medical imaging environments, this board emphasizes consistent precision, low-noise operation, and rugged reliability. Its design supports seamless integration with the Lorad series of devices, offering dependable performance over extended operational cycles.


2. Technical Specifications

Parameter Specification Icon
Model 90370-104 IPLS Indexer Assembly Board 🖥️
Function Indexing and positioning of imaging plates 🔄
Interface Types Motor control, sensor inputs, logic outputs 🔌
Signal Voltage Levels TTL-compatible logic, ±12 V motor drive
Response Speed Millisecond-scale index movements ⏱️
Precision ±0.1 mm mechanical tolerance 🎯
Operating Temperature 5°C to 40°C 🌡️
Storage Temperature -20°C to +60°C ❄️
Humidity 10% – 80% RH, non-condensing 💧
Dimensions 150 mm × 100 mm × 20 mm 📏
Weight Approx. 200 g ⚖️
Mounting Enclosed slot in IPLS module 🛠️
Compliance Medical-grade, low EMI design 🩺

This board manages real-time tasks using onboard logic and interfaces with stepper motors, end-sensors, and control protocols to coordinate plate movement seamlessly.


3. Installation Instructions

  1. Power Down Equipment
    • Always ensure that the mammography unit is completely powered off and unplugged before accessing the IPLS. This prevents risk of electrical shock or unintended movement.
  2. Accessing the IPLS Module
    • Remove the access panel of the IPLS chassis to expose the existing indexing board and connections. Use anti-static precautions (e.g., wrist straps) when handling any electronics.
  3. Remove and Insert
    • Carefully unplug all connectors—motor, sensor, and logic ribbon—suppressing any tugging force. Remove the existing board by sliding it from its slot, then seat the new 90370-104 board firmly, ensuring full engagement of connector pins.
  4. Reconnect Wiring
    • Reconnect cables in the proper orientation. Secure connector latches if available. Confirm that sensor lines are clearly labeled to avoid mis-wiring.
  5. Verify Mechanical Alignment
    • Manually move the plate mechanism (if safe to do so) to ensure free motion and proper alignment. The board should not obstruct movement or apply unwanted torque.
  6. Power Up and Self-Test
    • Restore power and allow the IPLS to run its internal diagnostics. Observe the indexing operation—plates should move accurately, with no hesitation or unusual noise.

4. Maintenance Guidelines

  • Routine Cleaning
    Use a soft, lint-free brush or compressed air (at low pressure) to remove dust from the board and adjacent components. Avoid solvents or abrasive materials.
  • Connector Inspection
    Quarterly, verify that all edge-connectors and ribbon leads remain firmly seated and free of corrosion. Re-seat any slightly loose connectors.
  • Environment Control
    Maintain ambient conditions within specified ranges—temperature between 5°C and 30°C for best longevity and humidity below 60% RH to avoid condensation and corrosion.
  • Functional Testing
    Periodically activate basic indexing cycles through the operator interface to confirm smooth and accurate movement. Any jitter, delay, or missed steps should trigger further inspection.
  • Firmware Awareness
    Although no user-accessible firmware is present, ensure the IPLS system’s control software is current to maintain compatibility with board behavior.

5. Usage Precautions

  • Static Safety
    Always ground yourself before handling the board to prevent electrostatic discharge damage.
  • Voltage Limits
    Do not attempt to power the board with non-specified voltages. Using improper supply levels can result in irreversible damage.
  • No Modifications
    Refrain from altering board layout, drilling, or adding components. Any physical changes compromise safety and system integrity.
  • Clean Handling
    Avoid touching circuit traces or connector pins directly. Hold the board by its edges to prevent oils or static from causing faults.
  • Qualified Personnel Only
    Installation and maintenance must be performed by trained technicians familiar with medical electrical equipment and safety standards.

6. Recommended Similar Products

Below is a table of similar indexing or control boards often found in compatible or alternate-gen IPLS systems:

Model Description Link
IPLS Indexer Board 90370-105 Upgraded version with higher speed logic Link
IPLS Sensor Controller 90370-106 Board with integrated sensor diagnostics Link
IPLS Motor Interface 90370-107 Dedicated motor drive interface card Link
IPLS Logic & Timing Module 90370-108 Advanced timing control board Link
IPLS Backup Indexer 90370-109 Redundant indexer board for critical systems Link
IPLS Compact Indexer 90370-110 Slim profile variant for smaller IPLS enclosures Link

7. Purchase & Support

For ordering details, technical support, and product documentation, please visit the Hologic IPLS component hub at https://www.fy-module.com/ or explore specific offerings at https://www.fy-module.com/product/.


This datasheet aims to offer clear guidance for engineers, service technicians, and purchasing staff who require a reliable, hands-on understanding of the 90370-104 IPLS Indexer Assembly Board, promoting proper installation, secure operation, and confident maintenance.

Share this story: