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LC4128V-5TN144C LC4128V-5TN144C 32698 Lattice Semiconductor Corporation IC CPLD 128MC 5NS 144TQFP 144-LQFP
M4A3-192/96-10VNI M4A3-192/96-10VNI 35000 Lattice Semiconductor Corporation IC CPLD 192MC 10NS 144TQFP 144-LQFP
LC4128V-75TN144I LC4128V-75TN144I 55953 Lattice Semiconductor Corporation IC CPLD 128MC 7.5NS 144TQFP 144-LQFP
M4A3-256/128-10YNC M4A3-256/128-10YNC 10075 Lattice Semiconductor Corporation IC CPLD 256MC 10NS 208QFP 208-BFQFP
XC2C128-7CP132I XC2C128-7CP132I 2637 AMD IC CPLD 128MC 7NS 132CSPBGA 132-TFBGA, CSPBGA
LAMXO1200E-3FTN256E LAMXO1200E-3FTN256E 45187 Lattice Semiconductor Corporation IC CPLD 600MC 5.1NS 256FTBGA 256-LBGA
LC4128V-75TN128I LC4128V-75TN128I 23204 Lattice Semiconductor Corporation IC CPLD 128MC 7.5NS 128TQFP 128-LQFP
M4A3-256/128-10FANI M4A3-256/128-10FANI 15649 Lattice Semiconductor Corporation IC CPLD 256MC 10NS 256FPBGA 256-BGA
LC4128ZC-75TN100E LC4128ZC-75TN100E 11313 Lattice Semiconductor Corporation IC CPLD 128MC 7.5NS 100TQFP 100-LQFP
XCR3128XL-10CS144C XCR3128XL-10CS144C 9765 AMD IC CPLD 128MC 9.1NS 144LCSBGA 144-TFBGA, CSPBGA
LA4128ZC-75TN100E LA4128ZC-75TN100E 22858 Lattice Semiconductor Corporation IC CPLD 128MC 7.5NS 100TQFP 100-LQFP
XCR3064XL-7CP56I XCR3064XL-7CP56I 5557 AMD IC CPLD 64MC 7NS 56CSBGA 56-LFBGA, CSPBGA
M4A3-192/96-12VNI M4A3-192/96-12VNI 31580 Lattice Semiconductor Corporation IC CPLD 192MC 12NS 144TQFP 144-LQFP
LC4128V-75TN100E LC4128V-75TN100E 24371 Lattice Semiconductor Corporation IC CPLD 128MC 7.5NS 100TQFP 100-LQFP
XC2C128-7TQ144C XC2C128-7TQ144C 36430 AMD Xilinx IC CPLD 128MC 7NS 144QFP 100-LQFP
XA2C128-8VQG100Q XA2C128-8VQG100Q 30470 AMD IC CPLD 128MC 7NS 100VQFP 100-TQFP
XC2C128-7VQ100C XC2C128-7VQ100C 41105 AMD IC CPLD 128MC 7NS 100VQFP 100-TQFP
LC4256ZC-45TN176C LC4256ZC-45TN176C 8374 Lattice Semiconductor Corporation IC CPLD 256MC 4.5NS 176TQFP 176-LQFP
XCR3064XL-6CSG48C XCR3064XL-6CSG48C 27079 AMD Xilinx IC CPLD 64MC 5.5NS 48CSP 48-FBGA, CSPBGA
LC4256ZC-75TN176I LC4256ZC-75TN176I 34908 Lattice Semiconductor Corporation IC CPLD 256MC 7.5NS 176TQFP 176-LQFP

CPLDs (Complex Programmable Logic Devices)

‌1. What are Complex Programmable Logic Devices?‌

CPLD (Complex Programmable Logic Device) is a digital integrated circuit with user-defined logic functions. It was developed from the early PAL (Programmable Array Logic) and GAL (General Array Logic) and belongs to the category of large-scale integrated circuits. It was born in the mid-1980s to make up for the defect that early PLD devices could not realize complex circuits.

 

‌2. What are the Core Structural Features of Complex Programmable Logic Devices?‌

‌Logic Unit‌: It is composed of multiple programmable logic macrocells (Macro Cells). Each macrocell can process dozens of combinational logic inputs and is suitable for implementing complex combinational logic such as decoders.

‌Interconnection Resources‌: Logic units are connected through a central programmable interconnect matrix to provide flexible wiring capabilities.

‌I/O Resources‌: It integrates rich input/output pins and supports an efficient interface with external circuits.

 

‌3. What are the Technical Features of Complex Programmable Logic Devices?‌

‌Programming Technology‌: It adopts non-volatile storage technology based on EEPROM or Flash. After programming, data will not be lost when power is off, and it supports multiple updates in-system programming (ISP).

‌Performance Advantages‌: It has the characteristics of high-density integration, low power consumption, and high reliability, and is suitable for scenarios with high real-time requirements.

 

‌4. What are the Key Differences from FPGA? ‌‌

Features

‌CPLD

‌FPGA

‌Structural Basis

Product term technology, macrocell structure

Lookup table technology (LUT)

‌Configuration Storage

On-chip integrated EEPROM/Flash

External configuration memory required

‌Applicable Scenarios

Complex combinational logic, control intensive

Data-intensive, high-performance computing

‌Granularity

Large granularity (macrocell level)

Medium granularity (LUT level)

 

5. What are the Application Advantages of Complex Programmable Logic Devices?‌

Development Efficiency‌: Rapid design through schematics or hardware description language (HDL), shortening the development cycle and lowering the hardware experience threshold.

 

‌Cost-effectiveness‌: No tape-out cost, suitable for small and medium-scale production (such as less than 10,000 pieces) and prototype verification.

‌Flexibility‌: Repeatable programming to modify logic functions, widely used in communications, industrial control, automotive electronics, and other fields.

 

As a key component in digital system design, CPLD balances flexibility, integration, and cost, and is the preferred solution for the implementation of small and medium-scale logic circuits.