EPM7192EQC160-15YY Allicdata Electronics
Allicdata Part #:

EPM7192EQC160-15YY-ND

Manufacturer Part#:

EPM7192EQC160-15YY

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Intel FPGAs/Altera
Short Description: IC CPLD 192MC 15NS 160QFP
More Detail: N/A
DataSheet: EPM7192EQC160-15YY datasheetEPM7192EQC160-15YY Datasheet/PDF
Quantity: 1000
Stock 1000Can Ship Immediately
Specifications
Series: MAX® 7000
Packaging: Tray 
Part Status: Obsolete
Programmable Type: EE PLD
Delay Time tpd(1) Max: 15.0ns
Voltage Supply - Internal: 4.75 V ~ 5.25 V
Number of Logic Elements/Blocks: 12
Number of Macrocells: 192
Number of Gates: 3750
Number of I/O: 124
Operating Temperature: 0°C ~ 70°C (TA)
Mounting Type: Surface Mount
Package / Case: 160-BQFP
Supplier Device Package: 160-PQFP (28x28)
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

The EPM7192EQC160-15YY is an embedded and programmable device from Complex Programmable Logic Devices (CPLDs) family. This device is one of the largest CPLDs, known as EPM7192. It provides several powerful hardware features and properties, and can be used for a wide variety of applications.

The EPM7192EQC160-15YY can be used in many embedded application fields including digital signal processing, networking, communications, and video. This device is especially suitable for applications where external signal processing and timing requirements exceed the capabilities of microprocessors and microcontrollers. It provides significant advantages over traditional PLDs, and offers superior signal processing performance in terms of speed, power consumption, and packaging.

The EPM7192EQC160-15YY can be used to design low power, high performance digital systems. It supports many different logic functions, including complex logic and timing, combinational and sequential logic, input and output sequencing, and general logic and arithmetic operations. The design process of this device is extremely flexible, as it supports both sequential and combinational logic functions. This also enables complex functions to be implemented.

The EPM7192EQC160-15YY is also well suited for real-time applications. It supports many different clock domains and synchronization features, allowing designers to develop highly precise timing applications such as multi-channel sampling, time division multiplexing, and data shift registers. This device also provides fast interrupt response times, making it suitable for real-time monitoring and control applications. It can also be used to implement deterministic control systems.

The working principle of the EPM7192EQC160-15YY is based on the Field Programmable Logic Arrays (FPLAs) concept. This device is composed of multiple Programmable Logic blocks (PLs), which can be programmed with logic functions such as multiplexers, decoders, and logic equations. The logic functions are programmed at the gate level, where the logic equations are entered and the cell connection topology of the FPGA is formed. Each Programmable Logic block contains a number of programmable registers, memory elements, and configuration RAM cells. The FPGA also contains a number of memory elements, which are used to provide a working memory for the Programmable Logic blocks.

The FPGA also contains a clock generator, which produces a precise clock signal for the programmable logic functions. This allows the logic functions to be implemented in a much more efficient manner, as the clock signal will ensure that the logic functions are executed at the correct time. The FPGA can also be programmed to process interrupts and exceptions, allowing it to handle any unexpected events or conditions.

The EPM7192EQC160-15YY is a powerful and versatile embedded device, allowing designers to develop highly efficient and cost-effective digital systems. Its flexible design process, high performance, and low power consumption make it an ideal solution for a variety of embedded applications. Its ability to process interrupts and exceptions makes it suitable for real-time monitoring and control applications, and its numerous clock domains and synchronization features allow for complex and accurate timing operations.

The specific data is subject to PDF, and the above content is for reference

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