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Embedded - PLDs (Programmable Logic Device)
Embedded - PLDs (Programmable Logic Device)

Embedded - PLDs (Programmable Logic Device) - Category Overview

1. Definition of Embedded - PLDs (Programmable Logic Device)

Programmable Logic Devices (PLDs) are a specialized category of Integrated Circuits (ICs) designed to provide flexible digital logic functionality. Unlike fixed-function ICs, PLDs can be programmed and reprogrammed to perform custom logic operations, making them ideal for prototyping, system development, and adaptive hardware solutions. PLDs are widely used in embedded systems, telecommunications, industrial automation, and consumer electronics, where hardware configurability is critical.

2. Types of PLDs in This Category

This classification encompasses several key types of programmable logic devices, including:
- CPLDs (Complex Programmable Logic Devices) Feature non-volatile memory and moderate logic density, suitable for glue logic and control applications.
- FPGAs (Field-Programmable Gate Arrays) High-density, reconfigurable logic blocks with volatile memory, used in high-performance computing and signal processing.
- SPLDs (Simple Programmable Logic Devices) Basic programmable logic, such as PALs (Programmable Array Logic) and GALs (Generic Array Logic), for simpler tasks.
- Configuration PROMs (Programmable Read-Only Memory) Support memory storage for FPGA configurations.

3. Buying Recommendations for PLDs

When selecting a PLD (Programmable Logic Device), consider the following factors:
- Logic Capacity & Performance Match the device s gate count, speed, and I/O requirements to your application.
- Volatility vs. Non-Volatility FPGAs typically require external boot memory, while CPLDs retain configuration without power.
- Development Tools & Ecosystem Ensure vendor-supplied software (e.g., Xilinx Vivado, Intel Quartus) supports your design workflow.
- Power Consumption & Packaging Industrial and portable applications may demand low-power or ruggedized packages.
- Future Reprogrammability Needs Opt for flash-based or SRAM-based PLDs depending on update flexibility.

By carefully evaluating these aspects, engineers and procurement specialists can optimize their PLD selection for reliability, scalability, and cost-efficiency in embedded system designs.

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PAL20R6ACNS

OT PLD, 25NS, PAL-TYPE, TTL, PDI


TIBPAL16R8-30MWB

TIBPAL16R8-30M LOW-POWER HIGH-PE


PAL16R8B2CN

VANTIS PLD


EP910LI-30

OT PLD, 30NS, PQCC44


EP610PC-30

OT PLD, 32NS, CMOS, PDIP24


5962-89841013A

PAL22V10 - EE PAL DEVICE


ATF22V10CZ-12PC

EE PLD, 12NS, PAL-TYPE, CMOS


PAL20R8A-2MJS/883B

OT PLD, 25NS, PAL-TYPE, TTL


ATF16V8C-7SU

IC PLD 8MC 7.5NS 20SOIC


5962-89841023A

PAL22V10 - EE PAL DEVICE


PAL20L8-10/2PC

OT PLD, 10NS, PAL-TYPE, TTL, PDI


PAL20R4A2CNS

VANTIS PLD


TIBPAL16R4-5CFN

IC PLD 5NS 20PLCC


EP600IDC-45

UV PLD, 45NS, CDIP24


TIBPAL20R6-15CFN

IC PLD 15NS 28PLCC


PAL20L8B2CFN

VANTIS PLD


PAL20R8ACNS

OT PLD, 25NS, PAL-TYPE, TTL, PDI


EP22V10EPC-10

OT PLD, 10NS, PAL-TYPE


PAL22V10-7JC

OT PLD, 7.5NS, PAL-TYPE, TTL, PQ


TIBPAL20R6-7CFN

IC PLD 7NS 28PLCC


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