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IDT70V27S20PF from IDT

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IDT70V27S20PF

Manufacturer: IDT

HIGH-SPEED 3.3V 32K x 16 DUAL-PORT STATIC RAM

Partnumber Manufacturer Quantity Availability
IDT70V27S20PF IDT 41 In Stock

Description and Introduction

HIGH-SPEED 3.3V 32K x 16 DUAL-PORT STATIC RAM The IDT70V27S20PF is a high-speed 3.3V CMOS synchronous dual-port static RAM (SRAM) manufactured by IDT (Integrated Device Technology). Below are the key specifications, descriptions, and features:

### **Specifications:**
- **Density:** 256K x 18-bit (4.5 Mbit)  
- **Organization:** Dual-port, 18-bit I/O  
- **Voltage Supply:** 3.3V (±10%)  
- **Access Time:** 20 ns  
- **Operating Temperature Range:** Commercial (0°C to +70°C) or Industrial (-40°C to +85°C)  
- **Package:** 100-pin TQFP (Thin Quad Flat Pack)  
- **Power Consumption:**  
  - Active: ~1.5W (typical)  
  - Standby: Low power CMOS standby mode  

### **Descriptions:**
- The IDT70V27S20PF is a synchronous dual-port RAM designed for high-speed data transfer and communication between two processors or systems.  
- It supports simultaneous read and write operations on both ports, enabling real-time data sharing.  
- The device is optimized for applications requiring high bandwidth, such as networking, telecommunications, and multiprocessing systems.  

### **Features:**
- **True Dual-Port Operation:** Independent access for both ports with no arbitration required.  
- **Synchronous Interface:** Clock-controlled reads and writes for high-speed operation.  
- **Byte Write Control:** Individual byte write enables for flexible data handling.  
- **Bus Matching:** On-chip arbitration logic for simultaneous access conflicts.  
- **Low Power Modes:** Standby and power-down options for reduced power consumption.  
- **3.3V Operation:** Compatible with low-voltage systems.  
- **JTAG Boundary Scan:** Supports IEEE 1149.1 for testability.  
- **High Reliability:** Industrial-grade temperature range available.  

This device is commonly used in applications such as data buffering, interprocessor communication, and high-performance embedded systems.  

(Note: Always refer to the official datasheet for the most accurate and detailed specifications.)

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