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Applied Materials (AMAT)  0100-20003 Digital I/O (DI/DO) Interface Board
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Applied Materials (AMAT) 0100-20003 Digital I/O (DI/DO) Interface Board

Applied Materials (AMAT)  0100-20003 Digital I/O (DI/DO) Interface Board

U.S.$8960.00
U.S.$7580.00
U.S.$7201.00
U.S.$7049.40
Weight:1.290KG
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(Inventory: 1)
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Description

Applied Materials (AMAT)  0100-20003 Digital I/O (DI/DO) Interface Board


AMAT 0100-20003 is a high-performance Digital I/O (Input/Output) Interface Board developed by Applied Materials (AMAT).

It is a cornerstone component of the electronics architecture for industry-standard semiconductor manufacturing platforms, including the Centura, Endura, and P5000 systems.

Introduction

The AMAT 0100-20003 serves as the primary communication bridge between the system’s central processing unit and its peripheral hardware.

By managing digital signals, it controls the "on/off" states of critical chamber components such as pneumatic valves, relays, and interlocks.

Designed for the high-speed requirements of the VME-bus architecture, this module ensures that hardware responses are synchronized perfectly with the process recipe.

Technical Parameter Table

ParameterSpecification
ManufacturerApplied Materials (AMAT)
Part Number0100-20003
Component TypeDigital I/O (DI/DO) Interface Board
ArchitectureVME Bus Standard
I/O ChannelsMulti-channel Digital Input/Output
Logic VoltageStandard TTL / Industrial 24V Logic support
System CompatibilityCentura, Endura, P5000, and Producer Platforms
Mounting TypeRack-mounted (VME Chassis)
IsolationOpto-isolated signal paths for noise reduction

Product Advantages and Features

High-Speed Signal Logic: Engineered for low-latency command execution, essential for precise timing in atomic layer deposition (ALD) and etching.

Opto-Isolation Technology: Protects the sensitive central controller from electrical noise and voltage spikes generated by high-power chamber hardware.

Robust Diagnostic LEDs: Features on-board status indicators that allow technicians to troubleshoot I/O states in real-time without external software.

Industrial Reliability: Built to operate 24/7 in fab environments with specialized heat-dissipation layouts to prevent thermal drift.

Application Cases

Chamber Sequencing: Managing the precise opening and closing of slit valves and gas isolation valves during wafer transfer.

Safety Interlocks: Monitoring vacuum sensors and door switches to ensure tool safety protocols are met before high-voltage systems engage.

Legacy Tool Upgrades: Providing a reliable replacement part for aging 200mm and 300mm fabs looking to maintain original OEM performance standards.

Unique Product Description

The AMAT 0100-20003 is the "tactile sensor" of the semiconductor tool. While other boards handle complex calculations, this module translates those calculations into physical action.

It is the definitive choice for engineers who require the exactness of original Applied Materials engineering to prevent "misfire" errors in the gas delivery system, which could otherwise lead to costly wafer scrap.

Other Models in the Same Series

The 0100-series interface cards work in tandem to provide a complete control solution:

0100-20001: System Electronics Interface (SEI) Master Board.

0100-20002: Analog I/O Interface for mass flow controllers and pressure gauges.

0100-20069: Robotic Orienter Control Board.

0100-01996: Advanced System Controller Module.

Installation and Maintenance

CTCAMM-4000-1
CTCATM-4505-0
CTCSC203-100A-002IR-010-01K-05
CTI2500-RBC   901E-2500-RBC
CURRENTCLILMFO-40CT
CUS7BP702.1
CUTLER HAMMER87-01368-01
CUTLER HAMMER1755T-PMPP-1700
Cutler HammerJW3250F
CUTLER HAMMER10923H5A
CUTLER-HAMMER1775T-PMPS-1700
cutler-hammerE111A12X3N
Cutler-HammerHLDB3600FT33W
Cutler-HammerCE15KN3
Cutler-HammerC825KN10   200A
cyberpowerUPS   UT650EGC
DAC41072001
DAIICHI-DENTSUSAN4-40M
DALLASDS1230Y-150+

Installation

System Power-Down: Ensure the VME rack is fully powered off before inserting or removing the board to prevent "hot-plug" damage.

Jumper Verification: Check the hardware address jumpers on the PCB to ensure they match the slot configuration required by the system software.

Seating the Board: Slide the module into the designated slot, ensuring the DIN connectors align perfectly with the backplane. Secure using the top and bottom captive screws.

Maintenance

Connection Integrity: Inspect the backplane pins for oxidation or bending during scheduled tool downtime.

Dust Mitigation: Use ionized compressed air to remove particulate buildup from the board surface, ensuring optimal cooling.

Logic Testing: Utilize the system’s diagnostic interface to "pulse" outputs during maintenance to verify the switching speed and signal clarity of the 0100-20003.


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