Manufacturer Part Number
EPM7192EGI160-20
Manufacturer
Intel
Introduction
The EPM7192EGI160-20 is part of Intel's MAX 7000 series, which includes embedded CPLDs designed for high-performance logic circuit applications.
Product Features and Performance
EE PLD programmable type
Maximum Tpd of 20 ns provides quick signal propagation
Supply voltage ranges from 4.5V to 5.5V, accommodating typical digital logic levels
Contains 12 logic elements/blocks enabling versatile logic design
Incorporates 192 macrocells for complex logic integration
Features 3750 gates for comprehensive logic development
Provides a broad spectrum of 124 I/O pins for connectivity
Operates reliably between -40°C and 85°C, suitable for industrial temperatures
Product Advantages
High density of logic cells for complex circuitry
Reliable operation in extreme temperatures enhances durability
Broad voltage range for greater compatibility with various systems
Through-hole mounting for sturdy and durable PCB connections
Key Technical Parameters
Delay Time Tpd 20 ns max
Internal Voltage 4.5V ~ 5.5V
Logic Elements/Blocks 12
Macrocells 192
Gates 3750
I/O Count 124
Temperature Range -40°C to 85°C
Mounting Type Through Hole
Package 160-BPGA
Quality and Safety Features
Qualified for industrial temperature ranges
Manufactured by Intel, a leader in semiconductor quality and performance
Compatibility
Through-hole mounting compatible with standard PCB designs
Broad I/O count for interfacing with various peripheral devices
Application Areas
Automotive electronics
Industrial control systems
Telecommunications
Data processing
Product Lifecycle
Obsolete product
Replacement or upgrade options may be available from Intel or alternate manufacturers
Reasons to Choose This Product
Designed by Intel, ensuring reliable performance and customer support
Robust temperature range for industrial applications
High I/O and macrocell count permit a flexible and scalable design
Legacy support for existing embedded system platforms requiring CPLD devices
Significant gate count for implementing complex logic functions in a single chip