5CSEBA4U23I7N - 40K Logic Elements SoC FPGA | Intel
MPN: 5CSEBA4U23I7N ✓ Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $157.0583 | $157.06 |
| 10 | $0 | $0.00 |
| 100 | $0 | $0.00 |
| 500 | $0 | $0.00 |
| 1,000 | $0 | $0.00 |
Drop-in alternatives for 5CSEBA4U23I7N — same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.
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Request Alternatives5CSEBA4U23I7N Maximum Ratings & Electrical Characteristics
| Product Type | System on Chip (SoC) FPGA |
| FPGA Family | Cyclone V SE |
| Logic Elements | 40,000 |
| Processor Subsystem | Dual ARM Cortex-A9 MPCore with CoreSight |
| Processor Cores | 2 |
| Operating Frequency | 800 MHz |
| I/O Count | 224 |
| Supply Voltage | 1.1 V |
| Package | 672-pin UBGA |
| Package Dimensions | 23 mm x 23 mm |
| Package Type | FBGA |
| Mounting Type | Surface Mount |
| Cell Count | 40,000 |
| RoHS Status | Compliant |
5CSEBA4U23I7N fbga Pin Configuration Guide
Complete pinout information for 5CSEBA4U23I7N (fbga package). This digital IC includes GPIO, communication interfaces (UART, SPI, I2C), and power pins. Refer to the manufacturer datasheet for alternate pin functions and configuration options. Essential for embedded system design and PCB layout.
No detailed pinout data available for 5CSEBA4U23I7N.
Refer to the datasheet for full pin configuration.
Safe Operating Area (SOA) & Thermal Characteristics
No official SOA curve available for this digital IC. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.
Typical Applications
5CSEBA4U23I7N is suitable for 6 applications: Industrial Automation Controller, Communications Infrastructure, Machine Vision and Image Processing, Embedded Control Platform, Test and Measurement Equipment, Automotive Electronic Control.
Industrial Automation Controller
The 5CSEBA4U23I7N fits industrial automation controllers that need deterministic programmable logic alongside a software processor. Its 40,000 logic elements can implement machine-control state machines, timing, protocol conversion, and sensor-data processing, while the dual ARM Cortex-A9 MPCore with CoreSight can run communications stacks, diagnostics, and supervisory software. The 224 I/O provide a substantial interface budget for digital sensors, actuators, encoders, and industrial networks. The 1.1 V supply and 672-UBGA package require disciplined power and PCB design. Use the Intel Cyclone V reference design and exact-package pinout to validate I/O bank assignments, clocking, decoupling, and thermal behavior.
Recommended
Communications Infrastructure
The 5CSEBA4U23I7N is suitable for communications infrastructure that combines packet processing, hardware protocol handling, and embedded software. The FPGA fabric can accelerate framing, filtering, buffering, or interface conversion, while the dual ARM Cortex-A9 MPCore with CoreSight subsystem can manage control-plane tasks and network software. Its 40,000 logic elements and 224 I/O support moderate-complexity designs, but the verified data does not state transceiver count, supported I/O standards, or memory interfaces. Confirm those details in the manufacturer documentation before assigning high-speed lanes. The 672-UBGA package also requires controlled-impedance routing and careful return-path design.
Recommended
Machine Vision and Image Processing
The 5CSEBA4U23I7N can support machine-vision systems requiring parallel pixel processing and embedded control. Its 40,000 logic elements are appropriate for selected filtering, line buffering, format conversion, or camera-interface functions, while the dual ARM Cortex-A9 MPCore subsystem can manage acquisition, metadata, networking, and application software. The 224 I/O can connect image sensors, memories, converters, and control peripherals. Actual image throughput depends on logic implementation, clock frequency, memory bandwidth, and I/O configuration, none of which are fully specified in the verified web data. Validate timing and resource utilization with the Intel toolchain and target memory architecture before committing to the 672-UBGA device.
Recommended
Embedded Control Platform
The 5CSEBA4U23I7N is a strong fit for embedded control platforms that need both software flexibility and hardware determinism. The dual ARM Cortex-A9 MPCore with CoreSight supports operating-system, device-management, and communication functions, while the FPGA fabric can implement real-time control, data acquisition, and custom interfaces. The 40,000 logic elements provide capacity for moderate control algorithms, and 224 I/O support numerous external devices. Because the verified data does not provide processor clock, memory capacity, peripheral list, or temperature grade, those specifications require manufacturer confirmation. The 1.1 V device should be designed with the manufacturer’s power sequencing and thermal guidance.
Recommended
Test and Measurement Equipment
The 5CSEBA4U23I7N can serve in test and measurement equipment where hardware acquisition and embedded analysis must operate together. The 40,000 logic elements can implement timing, trigger logic, digital filtering, and acquisition control, while the dual ARM Cortex-A9 MPCore subsystem can run calibration, display, storage, and communications functions. The 224 I/O allow connections to converters, clocks, and control buses. Designers must verify signal integrity, supported I/O standards, memory interfaces, and operating temperature from the exact device documentation. The 672-UBGA 23 mm by 23 mm package demands a controlled stack-up, robust decoupling, and detailed signal-integrity review.
Recommended
Automotive Electronic Control
The 5CSEBA4U23I7N may be evaluated for automotive electronic-control designs that combine sensor processing, communications, and embedded software. The FPGA fabric can implement deterministic signal conditioning, protocol bridging, or actuator control, and the dual ARM Cortex-A9 MPCore with CoreSight can support system management and application software. The verified data does not confirm AEC-Q100 qualification, automotive temperature grade, or supported automotive interfaces, so the part should not be selected for safety-related or production automotive use without current Intel documentation. The 672-UBGA package also requires validated power integrity, thermal analysis, BGA assembly controls, and exact-ball verification.
Recommended
Recommended Products Summary
Engineering reference data for 5CSEBA4U23I7N — comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product |
|---|---|
| Package | 672-pin UBGA, 23 mm x 23 mm |
| Brand | Intel |
| Family | Cyclone V SE |
| Logic Elements | 40,000 |
| I/O | 224 |
| Listed Frequency | 800 MHz |
| Supply Voltage | 1.1 V |
| Processor Subsystem | Dual ARM Cortex-A9 MPCore with CoreSight |
| RoHS | Compliant |
| Verified Drop-In Status | Target device |
Key Differentiators
- Dual-core ARM Cortex-A9 MPCore with CoreSight integration (vs 5CSEBA4U23C8SN)
- 40,000-logic-element Cyclone V SE configuration (vs 5CSEBA2U23I7N)
- 800 MHz device listing (vs 5CSEBA4U23C7N)
Design Notes
The 672-UBGA package requires a controlled PCB stack-up and escape strategy. Use the manufacturer package drawing to map every ball before schematic capture, then verify the selected fan-out against the board fabricator’s via and microvia rules. Keep high-speed traces over continuous reference planes, minimize via stubs, and maintain uninterrupted return paths. The verified web data confirms 672 pins and 23 mm by 23 mm dimensions but does not provide ball coordinates, so no pin-specific placement should be inferred.
Treat 1.1 V as only the supply-voltage value explicitly present in the verified data. The complete device design may require additional or differently regulated rails for the FPGA fabric, processor subsystem, I/O, memory interfaces, and configuration circuitry. Use the Intel Cyclone V power-design guidance and power estimator to determine voltage tolerances, current demand, sequencing, and decoupling. Place local capacitors at the appropriate power balls and analyze rail droop during simultaneous logic and processor activity.
A 672-pin SoC FPGA requires thermal validation based on actual logic utilization, clock rates, toggle activity, and board airflow. The verified sources do not provide power consumption, thermal resistance, junction-temperature limits, or required airflow, so those values are not specified here. Use the manufacturer thermal model and post-layout simulation with the intended enclosure and operating temperature. Do not assume the 1.1 V supply value alone determines total dissipation.
Plan high-speed interfaces from the exact 5CSEBA4U23I7N datasheet, including supported I/O standards, bank rules, voltage levels, clocking, and any transceiver requirements. The supplied data confirms 224 I/O but does not list I/O-bank assignments or supported memory protocols. Route clocks and critical data with controlled impedance, keep differential pairs length-matched, avoid layer transitions without nearby return vias, and validate timing with the FPGA design tool and board-level signal-integrity model.
Compliance Information
The verified Ampheo result lists 5CSEBA4U23I7N as ROHS COMPLIANT. The supplied data does not provide REACH, AEC-Q100, lead-free, halogen-free, or conflict-minerals declarations.