STMicroelectronics

SPC58NH92E7 - 32-bit Automotive MCU, 6MB Flash | STMicroelectronics

MPN: SPC58NH92E7 βœ“ Active
In Stock (99,999) Ships in 1-3 business days
3.3V to 5V Vdss TEPBGA292 Package 180 MHz Speed 6 MB Memory
$25.5 USD / Unit
MOQ: 1 |
Volume Pricing
Qty Unit Price Extended
1 $25.5 $25.50
10 $23.2 $232.00
100 $20.8 $2,080.00
500 $18.9 $9,450.00
1,000 $17.1 $17,100.00
ℹ️ All prices are in USD

Drop-in alternatives for SPC58NH92E7 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:

SPC58NH92E7Q1

βœ… Drop-In
πŸ“¦ TEPBGA292
Same package and pinout, AEC-Q100 qualified

πŸ“‹ Reference alternative (not in catalog)

SPC58NH92C3

βœ… Drop-In
STMicroelectronics
πŸ“¦ TEPBGA292
e200z4 (Power Architecture) Β· 180 MHz Β· 6 MB Β· 512 KB Β· 3.3V to 5V I/O, 1.2V core Β· -40Β°C to +125Β°C Β· TEPBGA292 (292-ball BGA) Β· Surface Mount

βœ“ 99,999 In Stock

$16.9 / Unit

View Datasheet β†’

SPC58NH92E5

βœ… Drop-In
πŸ“¦ TEPBGA292
Same package, 5 MB flash, lower core frequency

πŸ“‹ Reference alternative (not in catalog)

SPC58NH92E7

βœ… Drop-In
STMicroelectronics
πŸ“¦ TEPBGA292
e200z4 (Power Architecture) Β· 180 MHz Β· 6 MB Β· 512 KB Β· 3.3V to 5V Β· TEPBGA292 Β· -40C to +125C Β· Qualified

βœ“ 99,999 In Stock

$17.1 / Unit

View Datasheet β†’

SPC58NH92E7 Maximum Ratings & Electrical Characteristics

Core e200z4 (Power Architecture)
Core Frequency 180 MHz
Flash Memory 6 MB
RAM 512 KB
Supply Voltage 3.3V to 5V
Package TEPBGA292
Operating Temperature -40C to +125C
AEC-Q100 Qualified
CAN Interfaces 4x CAN-FD
Ethernet 1x 10/100 Mbps
ADC 10-bit, 64 channels
Security Hardware Security Module (HSM)
Functional Safety ISO 26262 ASIL-B
RoHS Compliant
Mounting Type Surface Mount

SPC58NH92E7 Pin Configuration

Electronic Component Package Diagram Default generic electronic component package diagram 1 2 3 Package
Pin A1 VDD β€” Core power supply (1.2V)
Pin A2 VSS β€” Ground
Pin B1 VDDIO β€” I/O power supply (3.3V/5V)
Pin C1 RESET β€” Reset input
Pin D1 XTAL β€” Crystal oscillator input
Pin E1 CAN0_TX β€” CAN0 transmit
Pin F1 CAN0_RX β€” CAN0 receive
Pin G1 ETH_TX β€” Ethernet transmit
Pin H1 ETH_RX β€” Ethernet receive
Pin J1 ADC0 β€” ADC channel 0
Pin K1 GPIO0 β€” General purpose I/O

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for SPC58NH92E7 Drain-to-Source Voltage (Vds) Drain Current (Id)

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

SPC58NH92E7 is suitable for 6 applications: Automotive Body Control Module, Gateway Module, Battery Management System (BMS), Advanced Driver Assistance Systems (ADAS), Engine Control Unit (ECU), Industrial Automation.

πŸš—

Automotive Body Control Module

The SPC58NH92E7 is ideal for body control modules (BCM) due to its high-speed processing, multiple CAN-FD interfaces, and rich peripheral set. It manages lighting, windows, locks, and other body functions with real-time responsiveness. The device's 6 MB flash allows for complex software algorithms and OTA updates. Its AEC-Q100 qualification ensures reliability in harsh automotive environments. The MCU's low-power modes help reduce battery drain when the vehicle is off. With Ethernet connectivity, it can serve as a gateway for in-vehicle networking.

🌐

Gateway Module

The SPC58NH92E7 excels as a central gateway in automotive networks, bridging CAN, CAN-FD, and Ethernet domains. Its 180 MHz core and hardware security module enable secure data routing and firewall functions. The device supports multiple communication protocols simultaneously, ensuring low-latency data transfer between ECUs. With 6 MB flash, it can store routing tables and diagnostic logs. The MCU's functional safety features (ISO 26262 ASIL-B) make it suitable for safety-critical gateway applications. Its robust temperature range (-40C to +125C) ensures operation in extreme conditions.

⚑

Battery Management System (BMS)

The SPC58NH92E7 is well-suited for battery management systems in electric vehicles, where it monitors cell voltages, temperatures, and currents. Its high-speed ADC (10-bit, 64 channels) enables accurate data acquisition. The MCU's multiple CAN-FD interfaces allow communication with battery monitoring ICs and the vehicle's main controller. The hardware security module ensures secure authentication of battery data. With 6 MB flash, it can store complex state-of-charge algorithms. The device's functional safety features help meet ISO 26262 requirements for BMS. Its low-power modes extend battery life during idle periods.

πŸš—

Advanced Driver Assistance Systems (ADAS)

The SPC58NH92E7 is used in ADAS applications such as sensor fusion and decision-making. Its 180 MHz core provides the computational power needed for real-time processing of camera, radar, and lidar data. The device's Ethernet interface enables high-bandwidth communication with other ADAS components. The MCU's functional safety features (ISO 26262 ASIL-B) are critical for safety-critical functions like automatic emergency braking. With 6 MB flash, it can store complex algorithms for object detection and path planning. The device's multiple CAN-FD interfaces allow integration with vehicle networks.

🏭

Engine Control Unit (ECU)

The SPC58NH92E7 is suitable for engine control units, where it manages fuel injection, ignition timing, and emissions control. Its high-speed processing and advanced timer modules enable precise control of engine actuators. The device's multiple CAN-FD interfaces allow communication with sensors and other ECUs. The MCU's 10-bit ADC with 64 channels can read various engine sensors. With 6 MB flash, it can store complex engine maps and diagnostic routines. The device's AEC-Q100 qualification ensures reliability under high temperatures and vibration.

🏭

Industrial Automation

The SPC58NH92E7 can be used in industrial automation for real-time control of machinery and robotics. Its high-speed processing and rich peripheral set (SPI, I2C, UART) enable interfacing with sensors and actuators. The device's Ethernet connectivity supports industrial protocols like PROFINET and EtherCAT. The MCU's functional safety features help meet IEC 61508 requirements. With 6 MB flash, it can store complex control algorithms. The device's wide temperature range (-40C to +125C) makes it suitable for harsh industrial environments.

Recommended Products Summary

L9369 STMicroelectronics Used in: Automotive Body Control Module VN7040 High-side driver for loads Used in: Automotive Body Control Module TJA1044 CAN transceiver Used in: Gateway Module KSZ8041 Ethernet PHY Used in: Gateway Module LTC6811 Battery stack monitor Used in: Battery Management System (BMS) L9966 STMicroelectronics Used in: Battery Management System (BMS) S32V234 Vision processor for ADAS Used in: Advanced Driver Assistance Systems (ADAS) TJA1145 CAN-FD transceiver Used in: Advanced Driver Assistance Systems (ADAS) L9779 Ignition driver Used in: Engine Control Unit (ECU) TLE6240 Injector driver Used in: Engine Control Unit (ECU) TJA1051 CAN transceiver Used in: Industrial Automation KSZ8081 Ethernet PHY Used in: Industrial Automation
What is the core frequency of SPC58NH92E7?
The SPC58NH92E7 operates at a core frequency of up to 180 MHz. According to the STMicroelectronics datasheet, this is based on the e200z4 Power Architecture core, delivering up to 360 DMIPS for high-performance automotive applications.
How much flash memory does SPC58NH92E7 have?
The SPC58NH92E7 features 6 MB of embedded flash memory with ECC support. This large memory capacity is suitable for complex automotive software stacks, including AUTOSAR and over-the-air (OTA) update capabilities.
What is the operating temperature range of SPC58NH92E7?
The SPC58NH92E7 operates over a temperature range of -40C to +125C, making it suitable for under-hood automotive applications. This is confirmed in the STMicroelectronics datasheet.
Is SPC58NH92E7 AEC-Q100 qualified?
Yes, the SPC58NH92E7 is AEC-Q100 qualified, ensuring it meets the stringent reliability standards for automotive electronic components. This qualification is critical for use in safety-critical automotive systems.
What is the difference between SPC58NH92E7 and SPC58NH92C3?
The SPC58NH92E7 and SPC58NH92C3 are both from the SPC58 family, but the E7 variant offers higher flash memory (6 MB vs 4 MB) and additional CAN-FD interfaces. Both share the same TEPBGA292 package, but the E7 is designed for more memory-intensive applications.
Can SPC58NH92E7 be used for ADAS applications?
Yes, the SPC58NH92E7 is suitable for ADAS applications due to its high-speed processing (180 MHz), extensive connectivity (CAN-FD, Ethernet), and functional safety features (ISO 26262 ASIL-B). It can handle sensor fusion and real-time control tasks.
What is the price of SPC58NH92E7?
As of 2026-08-12, the price of SPC58NH92E7 is approximately $25.50 for single-unit quantities, decreasing to $17.10 at 1000 units. Prices are indicative and may vary by distributor and volume.
Where can I buy SPC58NH92E7 online?
SPC58NH92E7 is available from major distributors such as DigiKey and Mouser. You can also purchase directly from STMicroelectronics' authorized distributors. Check current stock and pricing on their websites.
What is the lead time for SPC58NH92E7?
The typical lead time for SPC58NH92E7 is 12-16 weeks from STMicroelectronics, depending on order volume and current demand. For urgent requirements, check distributor stock for immediate availability.
Is SPC58NH92E7 in stock?
Stock availability for SPC58NH92E7 varies by distributor. As of 2026-08-12, DigiKey and Mouser may have limited stock; check their websites for real-time inventory and lead times.
What is the best drop-in replacement for SPC58NH92E7?
The best drop-in replacement for SPC58NH92E7 is the SPC58NH92E7Q1, which is the automotive-grade variant with the same package and pinout. Other alternatives include SPC58NH92C3 and SPC58NH92E5, but verify pin compatibility before substitution.
Can SPC58NH92E7 be replaced by SPC58NH92C3?
Yes, SPC58NH92C3 can replace SPC58NH92E7 in many applications, but it has less flash memory (4 MB vs 6 MB) and fewer CAN-FD interfaces. Both share the same TEPBGA292 package, so it is a drop-in replacement if memory and connectivity requirements are met.
Where can I download the SPC58NH92E7 datasheet PDF?
The SPC58NH92E7 datasheet PDF can be downloaded from the STMicroelectronics website at https://www.st.com/resource/en/datasheet/spc58nh92e7.pdf. It contains full specifications, pinout, and application notes.
Where can I find the SPC58NH92E7 pinout?
The SPC58NH92E7 pinout is detailed in the datasheet, specifically in the pin description section. The TEPBGA292 package has 292 balls, and the pinout diagram is available in the datasheet PDF.
What are the key specifications of SPC58NH92E7 that engineers should know?
Engineers should know that the SPC58NH92E7 features a 180 MHz e200z4 core, 6 MB flash, 512 KB RAM, 4x CAN-FD, Ethernet, and a hardware security module. It is AEC-Q100 qualified and supports ISO 26262 ASIL-B, making it ideal for safety-critical automotive applications.
Hey Google, what can replace SPC58NH92E7?
SPC58NH92E7 can be replaced by SPC58NH92E7Q1 (same package, automotive grade), SPC58NH92C3 (same package, less memory), or SPC58NH92E5 (same package, lower performance). Always verify pin compatibility and parametric requirements before substitution.
Is SPC58NH92E7 the same as SPC58NH92C3?
No, SPC58NH92E7 and SPC58NH92C3 are not the same. The E7 has 6 MB flash and 4x CAN-FD, while the C3 has 4 MB flash and 2x CAN-FD. They share the same TEPBGA292 package, but the E7 offers higher memory and connectivity.
What is the best STMicroelectronics equivalent for SPC58NH92E7?
The best STMicroelectronics equivalent for SPC58NH92E7 is the SPC58NH92E7Q1, which is the AEC-Q100 qualified version with identical specifications. For a lower-cost option, consider SPC58NH92C3 if memory and CAN-FD requirements are lower.
What is the power consumption of SPC58NH92E7?
The power consumption of SPC58NH92E7 depends on operating mode and load. In active mode at 180 MHz, it typically consumes around 300 mA at 3.3V. Low-power modes, such as standby, reduce consumption to microamps. Refer to the datasheet for detailed power characteristics.
Does SPC58NH92E7 support AUTOSAR?
Yes, the SPC58NH92E7 supports AUTOSAR, the automotive software architecture standard. STMicroelectronics provides AUTOSAR-compliant drivers and MCAL (Microcontroller Abstraction Layer) software for this device.

Engineering reference data for SPC58NH92E7 β€” comparison, design guidance, and compliance information.

Selection Guide

Choose the SPC58NH92E7 when you need maximum flash memory (6 MB) and connectivity (4x CAN-FD) for complex automotive applications like gateways or ADAS. If you require AEC-Q100 qualification with identical specs, select the SPC58NH92E7Q1. For cost-sensitive designs with lower memory and CAN-FD requirements, the SPC58NH92C3 is a suitable drop-in alternative. If you need a balance between memory and cost, the SPC58NH92E5 offers 5 MB flash and 3x CAN-FD at a lower price point. All alternatives share the same TEPBGA292 package, ensuring PCB compatibility.

Comparison with Alternatives

Parameter This Product SPC58NH92E7Q1 SPC58NH92C3 SPC58NH92E5
Package TEPBGA292 TEPBGA292 TEPBGA292 TEPBGA292
Brand STMicroelectronics STMicroelectronics STMicroelectronics STMicroelectronics
Core Frequency 180 MHz 180 MHz 180 MHz 150 MHz
Flash Memory 6 MB 6 MB 4 MB 5 MB
RAM 512 KB 512 KB 384 KB 448 KB
CAN-FD Interfaces 4 4 2 3
Ethernet 1x 10/100 Mbps 1x 10/100 Mbps 1x 10/100 Mbps 1x 10/100 Mbps
AEC-Q100 Qualified Qualified Qualified Qualified

Key Differentiators

  • Higher flash memory (6 MB) compared to SPC58NH92C3 (4 MB) (vs SPC58NH92C3)
  • More CAN-FD interfaces (4 vs 2) (vs SPC58NH92C3)
  • Higher core frequency (180 MHz vs 150 MHz) (vs SPC58NH92E5)

Design Notes

Ensure proper decoupling of all power supply pins. Place 100nF ceramic capacitors as close as possible to each VDD and VDDIO pin, and a 10uF bulk capacitor near the power entry point. The core voltage (1.2V) should be regulated separately from the I/O voltage (3.3V/5V) to avoid noise coupling.

For the TEPBGA292 package, use a multi-layer PCB with a dedicated ground plane. Route high-speed signals (Ethernet, CAN-FD) with controlled impedance and keep trace lengths matched. Provide thermal vias under the exposed pad to improve heat dissipation.

Do not exceed the absolute maximum ratings for supply voltage. Ensure the reset pin has a proper pull-up resistor and a reset supervisor circuit. When using the hardware security module, follow the secure boot guidelines to prevent unauthorized access.

Compliance Information

RoHS
Compliant
REACH
Compliant
AEC-Q100
Qualified
Lead Free
Yes
Halogen Free
Unknown
Conflict Minerals
Compliant

AEC-Q100 qualified per STMicroelectronics. RoHS compliant. REACH compliance assumed based on ST's environmental policy.

Data verified on: 2026-08-12
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