Manufacturer Part Number
EPF10K50RC240-4N
Manufacturer
Intel
Introduction
Intel's EPF10K50RC240-4N is a member of the FLEX-10K® series of embedded Field Programmable Gate Arrays.
Product Features and Performance
Embedded FPGA with 360 Logic Array Blocks (LABs)
2,880 Logic Elements/Cells for efficient logic operations
20,480 Total RAM Bits for data storage and management
189 Input/Output pins to interface with other components
Provides 116,000 gates for complex logic circuitry
75V to 5.25V operating voltage range supports a wide array of uses
Surface Mount technology for a secure and compact PCB design
Operates within a 0°C to 70°C temperature range, suitable for commercial applications
Product Advantages
High gate density for complex designs
Ample I/O to manage numerous connections
Large number of RAM bits for storing instructions and data
FLEX-10K® devices known for their reprogrammability and versatility
Key Technical Parameters
Number of LABs/CLBs: 360
Number of Logic Elements/Cells: 2880
Total RAM Bits: 20480
Number of I/O: 189
Number of Gates: 116000
Voltage Supply: 4.75V ~ 5.25V
Operating Temperature: 0°C ~ 70°C
Quality and Safety Features
Robust operating temperature range ensures reliability across different environments
High-quality construction typical of Intel FPGAs
Compatibility
Compatible with surface mount technology board assembly
Can be programmed using Intel's FPGA design software
Application Areas
Telecommunications
Data processing
Industrial control systems
Automotive electronics
Medical instrumentation
Product Lifecycle
Obsolete status indicates discontinuation and suggests looking for replacements or upgrades
Alternative products or next-generation FPGAs may be offered by Intel
Several Key Reasons to Choose This Product
High integration capability facilitating complex system designs on a single chip
FLEX-10K® devices' reputation for reliability and flexibility in various applications
Support and legacy from Intel, a leading manufacturer in semiconductor technology
While obsolete, it may still be the best fit for legacy systems requiring specific compatibility