Microchip Technology AT49F040A-55TU
| Quantity | Unit Price | Total Price |
|---|---|---|
| 1 | Dhs. 4.65 | Dhs. 4.65 |
| 15+ | Dhs. 4.48 | Dhs. 67.20 |
| 25+ | Dhs. 4.38 | Dhs. 109.50 |
| 50+ | Dhs. 4.14 | Dhs. 207.00 |
| 100+ | Dhs. 3.65 | Dhs. 365.00 |
| N+ | Dhs. 0.73 | Price Inquiry |
Request Quote / Inquiry
AT49F040A-55TU - High-Performance 4Mbit Parallel Flash Memory
The AT49F040A-55TU from Microchip Technology is a premium 4Mbit parallel flash memory IC engineered for demanding embedded and industrial applications. This non-volatile flash memory delivers exceptional reliability with a 55ns access time and operates across a wide temperature range of -40°C to 85°C, making it ideal for mission-critical systems that require consistent performance in harsh environments.
Featuring a 512K x 8 memory organization and parallel interface, this flash memory component provides fast, efficient data storage and retrieval. The 4.5V to 5.5V supply voltage range ensures compatibility with standard logic families, while the surface mount 32-TSOP package enables space-efficient PCB designs.
Key Features & Benefits:
- Fast Access Time: 55ns access time ensures rapid data retrieval for time-sensitive applications
- Robust Operating Range: -40°C to 85°C temperature tolerance for industrial-grade reliability
- Flexible Memory Architecture: 512K x 8 organization optimized for byte-wide data operations
- Low Power Design: Efficient 4.5V to 5.5V supply voltage reduces system power consumption
- Compact Footprint: 32-TSOP surface mount package saves valuable board space
- Quick Write Cycles: 40µs write cycle time enables efficient programming operations
- RoHS Compliant: Environmentally friendly design meets global regulatory standards
Technical Specifications:
Applications & Use Cases:
The AT49F040A-55TU is perfectly suited for a wide range of embedded system applications including:
- Industrial control systems and automation equipment
- Telecommunications infrastructure and networking devices
- Automotive electronics and engine control units
- Medical instrumentation and diagnostic equipment
- Aerospace and defense systems requiring extended temperature operation
- Data logging and firmware storage applications
- Point-of-sale terminals and payment processing systems
Why Choose HQICKEY for Your Memory Components?
At HQICKEY, we specialize in providing authentic, high-reliability semiconductor components for embedded and industrial markets. Our extensive Memory collection features premium flash memory, DRAM, SRAM, and specialized memory ICs from leading manufacturers worldwide.
We understand the critical importance of component authenticity and lifecycle support in industrial applications. Every product we supply comes with full traceability documentation and technical support to ensure your design success. Our engineering-focused approach means you get not just components, but the technical resources and expertise to make informed design decisions.
Technical Resources & Support:
Need detailed technical specifications, application notes, or design guidance? Visit our Technical Blog for the latest semiconductor news, design tips, and industry insights. Our team of experienced engineers is ready to assist with component selection, cross-reference information, and technical consultation.
Order your AT49F040A-55TU today and experience the HQICKEY difference in quality, authenticity, and technical support.
| Product attributes | Property Value |
| Manufacturer | Microchip Technology |
| Product Series | |
| Packaging | Tray | |
| Memory Type | Non-Volatile |
| Memory Format | FLASH |
| Technology | FLASH |
| Memory Size | 4Mbit |
| Memory Organization | 512K x 8 |
| Memory Interface | Parallel |
| Clock Frequency | - |
| Write Cycle Time - Word, Page | 40µs |
| Access Time | 55 ns |
| Voltage - Supply | 4.5V ~ 5.5V |
| Operating Temperature | -40°C ~ 85°C (TC) |
| Grade | - |
| Qualification | - |
| Mounting Type | Surface Mount |
| Package / Case | 32-TFSOP (0.724", 18.40mm Width) |
| Supplier Device Package | 32-TSOP |
| ROHS |

AT49F040A-55TU.pdf