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AMAT 0100-00523 | VME Multi-Channel Analog-to-Digital (A/D) Board
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AMAT 0100-00523 | VME Multi-Channel Analog-to-Digital (A/D) Board

AMAT 0100-00523 | VME Multi-Channel Analog-to-Digital (A/D) Board

U.S.$7580.00
U.S.$6870.00
U.S.$6526.50
U.S.$6389.10
Weight:1.290KG
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Description

AMAT 0100-00523 | VME Multi-Channel Analog-to-Digital (A/D) Board


AMAT 0100-00523 | VME Multi-Channel Analog-to-Digital (A/D) Board

Introduction

The AMAT 0100-00523 is a high-precision Analog-to-Digital (A/D) Converter Board manufactured by Applied Materials.

Based on the robust VME (Versa Module Europa) bus architecture, this board is a vital data acquisition component for Centura, Endura, and P5000 semiconductor platforms.

Its primary role is to translate continuous analog signals from chamber sensors—such as pressure transducers, thermocouples,

 and flow meters—into precise digital data that the system's central CPU can process for real-time chamber control.

Technical Parameter Table

AttributeSpecification
ManufacturerApplied Materials (AMAT)
Model Number0100-00523
Component TypePrinted Wiring Board (PWB) / Data Acquisition
Bus InterfaceVME Bus Standard
Input ChannelsMulti-channel High-Resolution Analog Inputs
Conversion RateHigh-speed Sampling (System dependent)
CompatibilityAMAT Centura 5200, Endura 5500, P5000 Phase IV
Weight0.50 kg (approx. 1.10 lbs)
Dimensions160mm x 233mm (Standard 6U VME Card)
Power Requirements+5V, +/-12V (Sourced via VME Backplane)

Unique Product Description

The AMAT 0100-00523 is engineered to meet the extreme signal integrity requirements of the semiconductor cleanroom.

In an environment saturated with RF noise from plasma sources, the 0100-00523 utilizes advanced differential signaling and onboard filtering to prevent data corruption.

Unlike standard industrial A/D cards, this board features ultra-stable voltage references that minimize "signal drift" caused by thermal fluctuations in the electronics rack.

This ensures that critical process variables, such as chamber vacuum levels and gas flow rates, remain accurate to within 0.1% of the setpoint, directly contributing to superior wafer-to-wafer uniformity.

Product Advantages and Features

High-Resolution Sampling: Delivers fine-grained digital resolution for precise monitoring of sensitive analog process parameters.

Superior Noise Rejection: Hardened against electromagnetic interference (EMI), specifically the 13.56 MHz frequencies common in Etch and CVD tools.

Real-Time Data Processing: Low-latency conversion ensures the system controller can react instantly to process deviations.

Industrial Durability: Features high-grade tantalum capacitors and gold-plated 96-pin connectors for extended service life in 24/7 FAB environments.

Legacy System Support: Provides a critical replacement path for aging 200mm toolsets, ensuring continued operational uptime.

Related Models

AMAT 0100-00007: VME Analog I/O Board.

AMAT 0100-00398: VME System Control Interface Board.

AMAT 0100-00196: System Mainframe CPU Board.

AMAT 0190-01121: Analog signal breakout cable assembly.

Other Models in the Same Series

The 0100-xxxxx series includes a range of specialized logic and interface boards:

0100-00522: Specialized Digital-to-Analog (D/A) variant.

0100-00524: High-speed Serial Communication module.

0100-01051: Single Board Computer (SBC) Controller.

0100-20161: Digital I/O Expansion PWB.

Application Cases

Vacuum Level Monitoring: Converting signals from capacitance manometers (Baratrons) to monitor chamber base pressure.

MFC Feedback: Processing analog flow signals from Mass Flow Controllers to ensure precise chemical delivery.

Heater Temperature Control: Translating thermocouple millivolt signals into digital values for precise substrate temperature regulation.

Installation and Maintenance

Installation:

ESD Precautions: This board contains sensitive ADC chips. Always handle at an ESD-safe station with a grounded wrist strap.

Jumper Verification: Check the onboard address and gain jumpers to ensure they match the system's hardware configuration for that specific slot.

Secure Insertion: Use the card's injector/ejector handles to seat the board firmly into the backplane; improper seating can cause intermittent data spikes.

Maintenance:

Calibration Verification: Periodically check the accuracy of the inputs using a calibrated voltage source during system preventative maintenance.

Connector Care: Inspect the backplane pins for signs of oxidation or wear every 12 months; clean with electronic-grade IPA if needed.

Error Logs: Monitor for "ADC Timeout" or "Data Overflow" errors in the system logs, which may indicate the board requires replacement.

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