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FBGA-256
(431 partes no total)Número da peça do fabricante | Descrição | Fabricante | Em estoque | Operação |
---|---|---|---|---|
EPM570F256I5N | 56-Pin FBGA Tray CPLD MAX II Family 440 Macro Cells 201.1MHz 0.18um Technology 3.3V | Altera Corporation (Intel) | 3.853 | Add to BOM |
EPM570F256C5N | CPLD MAX® II Family 440 Macro Cells | Altera | 3.075 | Add to BOM |
EPM570F256C3N | Ideal for complex digital designs | Altera Corporation (Intel) | 2.828 | Add to BOM |
EP1C12F256C8N | Cyclone I FPGA with 185 Input/Output channels | Intel | 3.400 | Add to BOM |
XC6SLX9-2FT256I | High-speed digital processing and configuration for embedded systems | Amd | 3.561 | Add to BOM |
EPM2210GF256C5N | The EPM2210GF256C5N is designed for complex programmable logic applications, offering extensive macro and IO options for flexibility | Altera Corporation (Intel) | 3.496 | Add to BOM |
EPM2210F256I5N | Elevate your design possibilities with this flexible and powerful CPLD solution | Altera Corporation (Intel) | 3.297 | Add to BOM |
EPM2210F256C5N | Product Description: CPLD MAX® II Family with 1700 Macro Cells, operating at 201 | Altera Corporation (Intel) | 3.615 | Add to BOM |
EPM2210F256C5 | High-performance 0.18um Technology | Altera Corporation (Intel) | 2.631 | Add to BOM |
EPM1270F256I5N | Operates at speeds up to 201.1MHz | Altera | 2.225 | Add to BOM |
EPM1270F256C3N | This CPLD is made using 0.18um technology and is designed to operate at either 2.5V or 3.3V | Altera Corporation (Intel) | 2.491 | Add to BOM |
EP3C5F256I7N | Lead-free Industrial-grade FPGA with CMOS technology | Altera | 2.289 | Add to BOM |
EP3C5F256C8N | Description of EP3C5F256C8N product: FPGA Cyclone® III Family with 5136 Cells, operating at 402MHz and built on 65nm Technology, featuring 1 | Altera | 7.687 | Add to BOM |
EP3C16F256C8N | 256-pin BGA package | Altera | 2.776 | Add to BOM |
EP3C10F256C6N | Advanced technology | Altera | 3.253 | Add to BOM |
EP2C8F256C7N | EP2C8F256C7N is part of the FPGA Cyclone® II Family with 8256 cells and operates at 402.58MHz | Altera | 2.332 | Add to BOM |
EP2C20F256C6N | High-performance 2006 FPGA | Altera | 3.194 | Add to BOM |
EP1K50FI256-2 | PLD device with fast 0.4ns load time | Intel | 2.723 | Add to BOM |
EP1C6F256I7N | High-performance digital logic solution for complex system-on-chip designs, optimized for power efficiency and area utilizatio | Intel | 3.412 | Add to BOM |
EP2C8F256I8 | This cutting-edge EPdevice is a programmable logic solution perfect for implementing complex digital systems with ease and efficienc | Altera | 3.419 | Add to BOM |
5CEBA2F17C8N | High-performance FPGA for demanding application | Altera | 2.900 | Add to BOM |
EP4CE10F17I7N | Demo description for product development | Altera | 3.450 | Add to BOM |
XC3S400-4FT256C | Programmable Gate Array, 256 Pin, 896 Cell | Amd | 3.234 | Add to BOM |
XC6SLX25-2FTG256I | FPGA, 1879 configurable logic blocks, 667MHz, in a PBGA256 package | Amd | 7.175 | Add to BOM |
XC6SLX9-3FTG256C | The XC6SLX9-3FTG256C is a powerful and efficient FPGA for a variety of applications | Amd | 3.700 | Add to BOM |
XC6SLX25-3FTG256C | 62MHz operating frequency | Amd | 3.126 | Add to BOM |
5M570ZF256I5N | It comes in a 256-pin Fine-Pitch Ball Grid Array (FBGA) package for easy mounting on circuit boards | Altera | 2.990 | Add to BOM |
5M570ZF256C5N | Detailed Description of CPLD with Flash Memory Technology | Intel | 2.363 | Add to BOM |
5M1270ZF256I5N | CPLD - Complex Programmable Logic Devices CPLD - MAX V 980 Macro 211 IOs | Intel | 9.458 | Add to BOM |
5M2210ZF256C5N | IC CPLD 1700MC 7NS 256FBGA / 3. DC and Switching Characteristics for MAX V Devices | ALTERA | 9.497 | Add to BOM |
5M2210ZF256I5N | IC MAX V CPLD 2210 LE 256-FBGA | Intel | 7.042 | Add to BOM |
10M25DAF256C8G | Programmable semiconductor for flexible electronics | Intel | 3.280 | Add to BOM |
5CEBA4F17I7N | Ideal for a wide range of applications including data center equipment, industrial controls, and mor | Altera | 2.625 | Add to BOM |
5CEBA4F17C8N | This ROHS-compliant programmable logic device boasts 49000 logic elements, packaged in a compact FBGA-256 form factor | Altera | 2.765 | Add to BOM |
EPM2210GF256I5N | CPLD - Complex Programmable Logic Devices | Altera Corporation (Intel) | 2.292 | Add to BOM |
EPM2210F256I5 | Product EPM22 is a high-density, low-power EPROM suitable for a wide range of applications including data logging and control systems | Altera Corporation (Intel) | 2.085 | Add to BOM |
EPM2210F256C4 | Flexible and customizable logic solutions suited for various applications | Altera | 3.536 | Add to BOM |
EPM2210F256C4N | Low-power consumption and high-reliability architectur | Altera Corporation (Intel) | 2.122 | Add to BOM |
EPM1270F256I5 | Over 30 years of experience in the industry | Intel Corp | 3.314 | Add to BOM |
EP4CE6F17I7N | This product features a total of 6272 cells and comes in a PBGA256 package | Altera | 6.515 | Add to BOM |
EP4CE22F17C8N | Advanced logic and digital signal processing capabilitie | Altera | 3.430 | Add to BOM |
XC6SLX16-3FTG256C | Product XC6SLX16-3FTG256C is an FPGA from the Spartan-6 LX family, featuring 14579 cells and utilizing 45nm CMOS technology at 1.2V | Xilinx | 2.267 | Add to BOM |
XC6SLX16-3FTG256I | This product features a 256-pin FTBGA package, making it suitable for a variety of applications | Amd | 3.960 | Add to BOM |
XC6SLX25-2FTG256C | High-speed processing capabilities for real-time data analysi | Amd | 7.883 | Add to BOM |
XC6SLX25-3FTG256I | FPGA XC6SLX25-3FTG256I | Amd | 2.876 | Add to BOM |
XC3S250E-4FTG256C | PQFP208 package offers compact footprint and reduced power consumption for space-constrained systems | Amd | 2.517 | Add to BOM |
XC2S50-5FGG256C | Low-power, high-density IC for embedded systems application | Amd | 3.565 | Add to BOM |
XC3S400-4FTG256C | ROHS compliant FTBGA-256 Programmable Logic Device XC3S400-4FTG256C | Amd | 3.207 | Add to BOM |
XC3S400A-4FT256I | Advanced Spartan-3A processor for fast computing | Xilinx | 3.580 | Add to BOM |
XC7A50T-2FTG256I | FPGA with 150 I/O, ARTIX-7, FTBGA-256 | Amd | 2.387 | Add to BOM |
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