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LC5256MV-75F256C from LATTICE

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LC5256MV-75F256C

Manufacturer: LATTICE

3.3V, 2.5V and 1.8V In-System Programmable eXpanded Programmable Logic Device XPLD? Family

Partnumber Manufacturer Quantity Availability
LC5256MV-75F256C,LC5256MV75F256C LATTICE 191 In Stock

Description and Introduction

3.3V, 2.5V and 1.8V In-System Programmable eXpanded Programmable Logic Device XPLD? Family The LC5256MV-75F256C is a programmable logic device (PLD) manufactured by Lattice Semiconductor. Below are the factual specifications, descriptions, and features based on available knowledge:  

### **Manufacturer:** Lattice Semiconductor  
### **Part Number:** LC5256MV-75F256C  

### **Key Specifications:**  
- **Device Type:** Complex Programmable Logic Device (CPLD)  
- **Family:** ispMACH 5000VG  
- **Logic Elements:** 256 macrocells  
- **Speed Grade:** -75 (indicating a maximum propagation delay of 7.5 ns)  
- **Package:** 256-ball Fine-Pitch Ball Grid Array (FBGA)  
- **Operating Voltage:** 3.3V  
- **I/O Pins:** 192 (varies by package)  
- **Maximum Frequency:** ~100 MHz (dependent on design)  
- **On-Chip Memory:** None (pure CPLD architecture)  

### **Descriptions & Features:**  
- **High-Density CPLD:** Suitable for complex logic designs requiring fast pin-to-pin performance.  
- **In-System Programmability (ISP):** Supports reprogramming via IEEE 1149.1 (JTAG) interface.  
- **Low Power Consumption:** Optimized for 3.3V operation with power-saving features.  
- **Flexible I/O:** Supports 3.3V LVCMOS and LVTTL standards.  
- **Advanced Architecture:** Utilizes Lattice’s ispMACH 5000VG architecture for high-speed signal processing.  
- **Industrial Temperature Range:** Typically operates from -40°C to +85°C.  
- **Security Features:** Includes programmable security bit to prevent unauthorized access.  

### **Applications:**  
- Used in telecommunications, networking, industrial control, and consumer electronics.  

(Note: Specifications may vary slightly based on datasheet revisions. Always refer to the official Lattice Semiconductor documentation for precise details.)

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