Model No: EP4CE22F17I7N
Altera EP4CE22F17I7N
Manufacturer: Altera
SEMICON NO.: EP4CE22F17I7N
Package: 256-LBGA
Stock: In stock
Description: IC FPGA 153 I/O 256FBGA
SEMICON NO.: EP4CE22F17I7N
Package: 256-LBGA
Stock: In stock
Description: IC FPGA 153 I/O 256FBGA
Quantity :
| Mfr | Altera |
| Device Family | Cyclone® IV E |
| Logic Elements (LEs) | 22,320 |
| Embedded Memory | 594 Kbits (M9K blocks) |
| Embedded 18x18 Multipliers | 66 |
| User I/O Pins | 153 |
| Global Clock Networks | 20 |
| Supply Voltage (Core) | 1.2 V |
| Supply Voltage (I/O) | 1.2V, 1.5V, 1.8V, 2.5V, 3.0V, 3.3V (Bank-dependent) |
| Protocol Support | LVDS, RSDS, PCI, PCI-X, LVCMOS, SSTL, HSTL |
| Configuration Support | Active Serial (AS), Passive Serial (PS), JTAG |
| Operating Temperature | -40°C to +100°C (Industrial) |
| Package | 256-LBGA |
| Mounting Type | Surface Mount (SMD/SMT) |
| Compliance | RoHS Compliant |
EP4CE22F17I7N Cyclone IV E Field Programmable Gate Array IC
The EP4CE22F17I7N is a mid-range FPGA (Field-Programmable Gate Array) from Intel (formerly Altera), belonging to the Cyclone IV series. It is designed to provide a balance of performance, flexibility, and cost-effectiveness for a wide range of digital design applications. The device features a robust set of digital signal processing (DSP) capabilities, high-speed serial interfaces, and a large number of I/Os, making it suitable for applications requiring complex digital logic and signal processing. The EP4CE22F17I7N offers several key features that make it suitable for a wide range of applications:
● Logic Elements: 22,320 logic elements (LEs) provide ample resources for complex digital designs.
● DSP Blocks: 120 DSP blocks with 18x18 multipliers and adders, ideal for digital signal processing tasks.
● RAM Blocks: 1152 Kbits of block RAM for data storage and buffering.
● High-Speed Serial Interfaces: Supports up to 8.5 Gbps serial interfaces, enabling high-speed data communication.
● I/Os: 344 user I/Os with support for various I/O standards, providing flexibility in interfacing with external devices.
EP4CE22F17I7NCyclone IV E FPGA ICApplications
The EP4CE22F17I7N is widely used in applications requiring complex digital logic and signal processing:
1. Digital Signal Processing: Ideal for applications such as digital filters, FFTs, and other DSP tasks.
2. Communication Systems: Used in high-speed serial communication systems, including Ethernet and other protocols.
3. Industrial Control: Provides robust digital logic for industrial automation and control systems.
4. Consumer Electronics: Suitable for applications requiring high-speed data processing and low power consumption.
5. Medical Equipment: Used in medical imaging and diagnostic equipment for signal processing and control.
Alternative Digital Signal Processing FPGA Models
● XC7A35T: A mid-range FPGA from Xilinx, featuring 35,000 logic cells and a wide range of DSP and memory resources. It is suitable for applications requiring high performance and flexibility.
● Lattice ECP5: A low-power FPGA from Lattice Semiconductor, offering a balance of performance and cost-effectiveness. It is suitable for applications requiring low power consumption and high flexibility.
● Microsemi IGLOO2: A low-power FPGA from Microsemi, featuring a wide range of logic and memory resources. It is suitable for applications requiring low power consumption and robust performance.
● Intel MAX 10: A low-power FPGA from Intel, offering a balance of performance and cost-effectiveness. It is suitable for applications requiring low power consumption and high flexibility.
The EP4CE22F17I7N is a mid-range FPGA (Field-Programmable Gate Array) from Intel (formerly Altera), belonging to the Cyclone IV series. It is designed to provide a balance of performance, flexibility, and cost-effectiveness for a wide range of digital design applications. The device features a robust set of digital signal processing (DSP) capabilities, high-speed serial interfaces, and a large number of I/Os, making it suitable for applications requiring complex digital logic and signal processing. The EP4CE22F17I7N offers several key features that make it suitable for a wide range of applications:
● Logic Elements: 22,320 logic elements (LEs) provide ample resources for complex digital designs.
● DSP Blocks: 120 DSP blocks with 18x18 multipliers and adders, ideal for digital signal processing tasks.
● RAM Blocks: 1152 Kbits of block RAM for data storage and buffering.
● High-Speed Serial Interfaces: Supports up to 8.5 Gbps serial interfaces, enabling high-speed data communication.
● I/Os: 344 user I/Os with support for various I/O standards, providing flexibility in interfacing with external devices.
EP4CE22F17I7NCyclone IV E FPGA ICApplications
The EP4CE22F17I7N is widely used in applications requiring complex digital logic and signal processing:
1. Digital Signal Processing: Ideal for applications such as digital filters, FFTs, and other DSP tasks.
2. Communication Systems: Used in high-speed serial communication systems, including Ethernet and other protocols.
3. Industrial Control: Provides robust digital logic for industrial automation and control systems.
4. Consumer Electronics: Suitable for applications requiring high-speed data processing and low power consumption.
5. Medical Equipment: Used in medical imaging and diagnostic equipment for signal processing and control.
Alternative Digital Signal Processing FPGA Models
● XC7A35T: A mid-range FPGA from Xilinx, featuring 35,000 logic cells and a wide range of DSP and memory resources. It is suitable for applications requiring high performance and flexibility.
● Lattice ECP5: A low-power FPGA from Lattice Semiconductor, offering a balance of performance and cost-effectiveness. It is suitable for applications requiring low power consumption and high flexibility.
● Microsemi IGLOO2: A low-power FPGA from Microsemi, featuring a wide range of logic and memory resources. It is suitable for applications requiring low power consumption and robust performance.
● Intel MAX 10: A low-power FPGA from Intel, offering a balance of performance and cost-effectiveness. It is suitable for applications requiring low power consumption and high flexibility.