EPM9320LC84-15 Allicdata Electronics
Allicdata Part #:

544-2362-5-ND

Manufacturer Part#:

EPM9320LC84-15

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Intel FPGAs/Altera
Short Description: IC CPLD 320MC 15NS 84PLCC
More Detail: N/A
DataSheet: EPM9320LC84-15 datasheetEPM9320LC84-15 Datasheet/PDF
Quantity: 1000
Stock 1000Can Ship Immediately
Specifications
Series: MAX® 9000
Packaging: Tube 
Part Status: Obsolete
Programmable Type: In System Programmable
Delay Time tpd(1) Max: 15.0ns
Voltage Supply - Internal: 4.75 V ~ 5.25 V
Number of Logic Elements/Blocks: 20
Number of Macrocells: 320
Number of Gates: 6000
Number of I/O: 60
Operating Temperature: 0°C ~ 70°C (TA)
Mounting Type: Surface Mount
Package / Case: 84-LCC (J-Lead)
Supplier Device Package: 84-PLCC (29.31x29.31)
Base Part Number: EPM9320
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

Embedded Complex Programmable Logic Devices (CPLDs) are becoming increasingly popular as an efficient and powerful system solution for addressing a variety of applications. The EPM9320LC84-15 is a powerful and cost-effective field programmable logic device designed specifically for embedded applications, providing greater flexibility and versatility than conventional microprocessors or ASICs.

The EPM9320LC84-15 is a Complex Programmable Logic Device (CPLD) based on Altera\'s MAX 7 family of devices, and offers the best combination of programmability, performance, and cost. It delivers up to 8920 logic elements, 600 pins, and a maximum operating frequency of 200MHz. The device also features an on-chip voltage regulator and power management components, which together allow it to operate in low power, space-constrained environments.

The EPM9320LC84-15 offers a range of programming options, enabling it to be customized for specific applications. Using Altera\'s patented QuickSwitch technology, the device is capable of supporting multiple image files and in-system programmable options. It also includes a wide variety of programming options, including in-circuit programming with a PC, as well as in-system programming with JTAG, USB, or SPI.

In addition, the EPM9320LC84-15 provides integrated memory and communication options, which further enhance its flexibility and versatility. The device includes an independent memory controller that supports multiple memory types, including SDRAM, DDR2, and DDR3. It also features Dual-Port Memory, which allows user-defined data to be read or written simultaneously from multiple locations within the device. Additionally, the EPM9320LC84-15 supports communication protocols, such as Ethernet, USB, and I2C, which allow it to easily connect to external devices, as well as enable communication between multiple CPLDs.

The EPM9320LC84-15\'s versatility also extends to its application field. The device is used in a wide variety of embedded applications, from networking and communications, to process control, to automotive, and medical applications. Its powerful architecture and integrated memory, communication, and programming options enable it to handle complex logic and memory operations, without the need for external components.

The EPM9320LC84-15 is also an excellent option for applications requiring low power consumption. The device includes an integrated power management system that allows it to operate efficiently and reduce power dissipation. This makes it an ideal low power solution for space-constrained and battery-operated applications.

The EPM9320LC84-15 is a highly efficient and cost-effective solution for embedded applications. Its combination of flexibility, versatility, and low power consumption make it an excellent choice for a wide range of applications. The device\'s integrated memory, communication, and programming options, as well as its power management system, allow it to handle tasks that would otherwise require additional components, while its built-in power efficiency allow it to reduce energy consumption in battery-powered applications.

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

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