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MBM29F040C-90PD from FUJ

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MBM29F040C-90PD

Manufacturer: FUJ

4M (512K X 8) BIT

Partnumber Manufacturer Quantity Availability
MBM29F040C-90PD,MBM29F040C90PD FUJ 60 In Stock

Description and Introduction

4M (512K X 8) BIT The **MBM29F040C-90PD** is a flash memory chip manufactured by **Fujitsu (FUJ)**. Below are its specifications, descriptions, and features based on factual information:

### **Specifications:**
- **Memory Type:** Flash  
- **Memory Format:** Non-Volatile  
- **Density:** 4 Mbit (512K x 8)  
- **Access Time:** 90 ns  
- **Supply Voltage:** 5V ± 10%  
- **Operating Temperature Range:** Commercial (0°C to +70°C)  
- **Package Type:** 32-Pin PDIP (Plastic Dual In-Line Package)  
- **Interface:** Parallel  
- **Sector Architecture:** Uniform 64K-byte sectors  
- **Endurance:** 100,000 write/erase cycles per sector  
- **Data Retention:** 10 years minimum  

### **Descriptions:**
- The **MBM29F040C-90PD** is a 4Mbit (512K x 8) CMOS flash memory device with a fast access time of 90 ns.  
- It supports a **5V-only** operation for read, program, and erase functions.  
- The device features a **uniform sector architecture** with eight 64K-byte sectors, allowing flexible erase and programming operations.  
- It is designed for applications requiring **high-density, non-volatile storage** with fast access times.  

### **Features:**
- **Single 5V Power Supply** for read, program, and erase operations.  
- **Low Power Consumption:**  
  - Active Read Current: 30 mA (typical)  
  - Standby Current: 100 µA (typical)  
- **Fast Sector Erase Time:** 10 seconds (typical) per sector.  
- **Byte Programming Time:** 10 µs (typical).  
- **Hardware Data Protection:**  
  - VPP (Programming Voltage) detection to prevent accidental writes.  
  - Power-on reset circuitry.  
- **Compatibility:** JEDEC-standard pinout and command set.  
- **Reliability:** High endurance and long data retention.  

This information is strictly based on the manufacturer's datasheet and technical documentation.

Application Scenarios & Design Considerations

4M (512K X 8) BIT

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