SPC58EG80E5 - 32-bit Automotive MCU, 8MB Flash | STMicroelectronics
MPN: SPC58EG80E5 β Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $45.2 | $45.20 |
| 10 | $41.8 | $418.00 |
| 100 | $38.5 | $3,850.00 |
| 500 | $35.2 | $17,600.00 |
| 1,000 | $32.9 | $32,900.00 |
Drop-in alternatives for SPC58EG80E5 β same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.
Quick Comparison Tool β Select alternative parts for side-by-side comparison:
SPC58EG84E5
β Drop-Inβ 99,999 In Stock
$16.9 / Unit
View Datasheet βSPC58EG80E5-Q1
β Drop-Inπ Reference alternative (not in catalog)
SPC58EG80E5E
β Drop-Inπ Reference alternative (not in catalog)
SPC58EG80E5C
β Drop-Inπ Reference alternative (not in catalog)
SPC58EG80E5 Maximum Ratings & Electrical Characteristics
| Core | e200z4 (Power Architecture) |
| Core Count | 2 (with lockstep) |
| Max Clock Frequency | 180 MHz |
| Flash Memory | 8 MB |
| RAM | 512 KB |
| Supply Voltage | 3.3V to 5V |
| Operating Temperature | -40Β°C to +125Β°C |
| Package | TEBGA-292 |
| Mounting Type | Surface Mount |
| Ethernet | 10/100 Mbps |
| CAN Interfaces | 4x CAN-FD |
| LIN Interfaces | 8x LIN |
| ADC | 12-bit, 64 channels |
| Hardware Security Module | Yes |
| Functional Safety | ASIL-D (ISO 26262) |
| RoHS Status | Compliant |
SPC58EG80E5 Pin Configuration
| Pin A1 | VDD β Core power supply |
| Pin A2 | VSS β Ground |
| Pin B1 | VDD_HV β High-voltage power supply |
| Pin B2 | VSS_HV β High-voltage ground |
| Pin C1 | RESET β Reset input |
| Pin C2 | XTAL β Crystal oscillator input |
| Pin D1 | EXTAL β Crystal oscillator output |
| Pin D2 | P0_0 β General-purpose I/O |
| Pin E1 | P0_1 β General-purpose I/O |
| Pin E2 | P0_2 β General-purpose I/O |
| Pin F1 | P0_3 β General-purpose I/O |
| Pin F2 | P0_4 β General-purpose I/O |
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
SPC58EG80E5 is suitable for 6 applications: Automotive Body Control Module, Gateway Module, Battery Management System (BMS), Advanced Driver Assistance Systems (ADAS), Industrial Automation, Robotics.
Automotive Body Control Module
The SPC58EG80E5 is ideal for body control modules (BCMs) due to its multiple CAN-FD and LIN interfaces, which enable communication with various body electronics such as lighting, windows, and door locks. Its high-speed processing and large flash memory support complex body control algorithms and over-the-air updates. The device's functional safety features up to ASIL-D ensure reliable operation in safety-critical functions like central locking and lighting control. The wide operating temperature range and robust design make it suitable for under-dash and door-mounted modules. With its 8 MB flash, the BCM can store extensive calibration data and diagnostic logs. The 12-bit ADC with 64 channels allows direct connection to analog sensors for temperature, position, and voltage monitoring. The Ethernet interface enables high-speed communication with the vehicle's central gateway, facilitating data exchange for advanced features like remote diagnostics and predictive maintenance. The hardware security module ensures secure communication and prevents unauthorized access to vehicle systems. Overall, the SPC58EG80E5 provides a scalable and reliable platform for modern BCMs.
Recommended
Gateway Module
The SPC58EG80E5 is well-suited for automotive gateway modules that route data between different vehicle networks. Its 10/100 Ethernet controller and multiple CAN-FD interfaces enable high-bandwidth communication between domains such as infotainment, ADAS, and powertrain. The device's dual-core architecture with lockstep provides redundancy for safety-critical data routing. The hardware security module supports secure boot and encrypted communication, protecting the vehicle from cyber threats. The large flash memory allows storing routing tables and security certificates. The device's high clock speed ensures low-latency data forwarding, which is critical for real-time applications like collision avoidance. The gateway module can also perform over-the-air updates, using the Ethernet interface to download new firmware and distribute it to other ECUs via CAN-FD. The SPC58EG80E5's robust design and wide temperature range make it suitable for installation in the vehicle's central electronic unit. Its multiple power domains require careful power management, but the device's low-power modes help reduce overall energy consumption. Overall, the SPC58EG80E5 is a powerful and secure choice for next-generation automotive gateways.
Recommended
Battery Management System (BMS)
The SPC58EG80E5 is an excellent choice for battery management systems (BMS) in electric and hybrid vehicles. Its 12-bit ADC with 64 channels allows precise monitoring of cell voltages and temperatures, essential for battery health and safety. The multiple CAN-FD interfaces enable communication with the vehicle's main controller and other BMS units in a distributed architecture. The device's functional safety features up to ASIL-D ensure that the BMS can safely manage battery charging and discharging, preventing overvoltage, undervoltage, and overcurrent conditions. The hardware security module protects battery data and prevents tampering. The large flash memory stores battery calibration data and historical usage logs. The device's high clock speed enables real-time processing of battery state-of-charge (SoC) and state-of-health (SoH) algorithms. The wide operating temperature range allows the BMS to function in extreme conditions, from cold starts to high-temperature charging. The SPC58EG80E5's robust design and long-term availability make it a reliable choice for automotive BMS. Its support for over-the-air updates allows for continuous improvement of battery management algorithms.
Recommended
Advanced Driver Assistance Systems (ADAS)
The SPC58EG80E5 is suitable for ADAS applications such as adaptive cruise control, lane keeping assist, and collision avoidance. Its high clock speed and dual-core architecture provide the computational power needed for sensor fusion and decision-making algorithms. The device's Ethernet interface enables high-speed communication with cameras, radar, and LiDAR sensors. The CAN-FD interfaces allow integration with the vehicle's existing network. The hardware security module ensures secure communication between ADAS components and prevents malicious attacks. The large flash memory stores sensor calibration data and machine learning models. The device's functional safety features up to ASIL-D are critical for ADAS, as failures can lead to accidents. The wide operating temperature range allows the ADAS controller to be placed in various locations, including near the windshield or in the engine compartment. The SPC58EG80E5's real-time performance ensures low-latency response to sensor inputs, which is essential for safety-critical functions. Its support for over-the-air updates allows for continuous improvement of ADAS algorithms. Overall, the SPC58EG80E5 is a robust and secure platform for ADAS.
Recommended
Industrial Automation
The SPC58EG80E5 is also used in industrial automation for applications such as programmable logic controllers (PLCs), robotics, and motor control. Its high clock speed and real-time processing capabilities make it suitable for precise control loops. The device's multiple communication interfaces, including Ethernet and CAN, allow integration with industrial networks like EtherCAT and PROFINET. The 12-bit ADC with 64 channels enables accurate analog sensor reading for temperature, pressure, and position. The large flash memory stores control programs and configuration data. The device's wide operating temperature range and robust design make it suitable for harsh industrial environments. The hardware security module protects intellectual property and prevents unauthorized access. The SPC58EG80E5's functional safety features up to ASIL-D can be leveraged for safety-critical industrial applications, such as emergency stop systems. Its long-term availability and support make it a reliable choice for industrial products. The device's low-power modes help reduce energy consumption in battery-powered industrial sensors. Overall, the SPC58EG80E5 is a versatile MCU for industrial applications.
Recommended
Robotics
The SPC58EG80E5 is well-suited for robotics applications, including autonomous mobile robots (AMRs) and industrial robotic arms. Its high clock speed and dual-core architecture provide the computational power for real-time motion control and sensor fusion. The device's Ethernet interface enables communication with central control systems and other robots. The CAN-FD interfaces allow integration with motor drivers and sensors. The 12-bit ADC with 64 channels enables precise reading of encoders and current sensors. The large flash memory stores robot control algorithms and path planning data. The hardware security module ensures secure communication and prevents unauthorized control. The device's functional safety features up to ASIL-D are critical for collaborative robots that work alongside humans. The wide operating temperature range allows the robot controller to be placed in various environments. The SPC58EG80E5's real-time performance ensures smooth and accurate motion control. Its support for over-the-air updates allows for continuous improvement of robot behavior. Overall, the SPC58EG80E5 is a powerful and reliable MCU for robotics.
Recommended
Recommended Products Summary
Engineering reference data for SPC58EG80E5 β comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | SPC58EG84E5 | SPC58EG80E5-Q1 | S32K344 |
|---|---|---|---|---|
| Package | TEBGA-292 | TEBGA-292 | TEBGA-292 | BGA-144 |
| Brand | STMicroelectronics | STMicroelectronics | STMicroelectronics | NXP Semiconductors |
| Max Clock Frequency | 180 MHz | 180 MHz | 180 MHz | 160 MHz |
| Flash Memory | 8 MB | 8 MB | 8 MB | 2 MB |
| RAM | 512 KB | 512 KB | 512 KB | 512 KB |
| Ethernet | 10/100 Mbps | 10/100 Mbps | 10/100 Mbps | 10/100 Mbps |
| CAN Interfaces | 4x CAN-FD | 4x CAN-FD | 4x CAN-FD | 3x CAN-FD |
| Functional Safety | ASIL-D | ASIL-D | ASIL-D | ASIL-B |
Key Differentiators
- Higher flash memory (8 MB) compared to NXP S32K344 (2 MB) (vs NXP S32K344)
- ASIL-D functional safety vs ASIL-B on NXP S32K344 (vs NXP S32K344)
- Same package and pin compatibility with SPC58EG84E5 (vs SPC58EG84E5)
Design Notes
The SPC58EG80E5 has multiple power domains (VDD, VDD_HV, etc.). Ensure proper decoupling with 100nF capacitors close to each power pin and a bulk capacitor (e.g., 10uF) per power domain. Use a dedicated power management IC to sequence the power supplies correctly during power-up and power-down to avoid latch-up or undefined states.
For the TEBGA-292 package, use a 4-layer or more PCB with a solid ground plane. Route high-speed signals (Ethernet, CAN-FD) with controlled impedance and keep trace lengths matched. Place the crystal oscillator close to the XTAL/EXTAL pins and ensure a clean ground return path. Use via-in-pad for the BGA to improve thermal and electrical performance.
The SPC58EG80E5 can dissipate significant power at 180 MHz. Ensure adequate thermal management by using a thermal pad on the PCB and providing a copper pour area for heat spreading. The maximum junction temperature is 150Β°C, so calculate the thermal resistance and ensure the ambient temperature plus the temperature rise stays below this limit.
Compliance Information
RoHS compliant per STMicroelectronics. AEC-Q100 qualification is available on the -Q1 variant.