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ISPLSI1032E-80LTI from LATTICE

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ISPLSI1032E-80LTI

Manufacturer: LATTICE

In-System Programmable High Density PLD

Partnumber Manufacturer Quantity Availability
ISPLSI1032E-80LTI,ISPLSI1032E80LTI LATTICE 6250 In Stock

Description and Introduction

In-System Programmable High Density PLD The **ISPLSI1032E-80LTI** is a high-density programmable logic device (PLD) manufactured by **Lattice Semiconductor**. Below are its key specifications, descriptions, and features:

### **Specifications:**
- **Device Type**: In-System Programmable Large-Scale Integration (ISPLSI)  
- **Family**: 1000E Series  
- **Logic Cells**: 32  
- **Gates**: 6000 PLD Gates  
- **Macrocells**: 32  
- **I/O Pins**: 64  
- **Speed Grade**: -80 (80 MHz maximum operating frequency)  
- **Package**: **LTI** (Thin Quad Flat Pack, TQFP)  
- **Operating Voltage**: 5V ±10%  
- **Operating Temperature**: **Industrial (-40°C to +85°C)**  
- **Technology**: Electrically Erasable CMOS (E²CMOS)  

### **Descriptions:**
- **Architecture**: Combines a programmable AND array with fixed OR gates and macrocells.  
- **In-System Programmability (ISP)**: Supports reprogramming via IEEE 1149.1 (JTAG) interface.  
- **Non-Volatile**: Retains configuration when powered off.  
- **High-Speed Performance**: Optimized for timing-critical applications.  

### **Features:**
- **Flexible I/O**: 64 I/O pins with programmable slew rate control.  
- **Global Routing Pool (GRP)**: Central interconnect for efficient signal routing.  
- **Programmable Macrocell**: Supports registered or combinatorial logic.  
- **Security**: Built-in security bit prevents unauthorized readback.  
- **JTAG Boundary Scan**: Supports testing and debugging.  
- **Low Power Consumption**: Advanced E²CMOS technology for power efficiency.  

This device is commonly used in digital logic applications, including industrial control, communication systems, and embedded processing.  

(Source: Lattice Semiconductor Datasheet)

Application Scenarios & Design Considerations

In-System Programmable High Density PLD

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