STMicroelectronics

SPC584B60E1 - 32-bit Power Architecture MCU, 4MB Flash | STMicroelectronics

MPN: SPC584B60E1 βœ“ Active
In Stock (99,999) Ships in 1-3 business days
3.3V to 5V Vdss LQFP-176 Package 160 MHz Speed 4 MB Memory
$18.5 USD / Unit
MOQ: 1 |
Volume Pricing
Qty Unit Price Extended
1 $18.5 $18.50
10 $16.75 $167.50
100 $14.9 $1,490.00
500 $13.2 $6,600.00
1,000 $11.85 $11,850.00
ℹ️ All prices are in USD

Drop-in alternatives for SPC584B60E1 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:

SPC584B60E3

βœ… Drop-In
πŸ“¦ LQFP-176
Higher performance variant, same package and pinout

πŸ“‹ Reference alternative (not in catalog)

SPC584B60E1C

βœ… Drop-In
πŸ“¦ LQFP-176
Same die, different package option (C suffix)

πŸ“‹ Reference alternative (not in catalog)

MPC5744P

βœ… Drop-In
πŸ“¦ LQFP-176
Cross-brand, similar Power Architecture MCU, verify pinout

πŸ“‹ Reference alternative (not in catalog)

SPC584B60E1 Maximum Ratings & Electrical Characteristics

Core e200z4 (Power Architecture)
Core Frequency 160 MHz
Flash Memory 4 MB
RAM 512 KB
Operating Voltage 3.3V to 5V
Operating Temperature -40Β°C to +150Β°C
Package LQFP-176
Mounting Type Surface Mount
Number of I/O Pins 144
ADC Resolution 12-bit
ADC Channels 32
CAN Interfaces 4x CAN-FD
Timer Modules eTPU2, eMIOS
Functional Safety ASIL-D (ISO 26262)
RoHS Status Compliant

SPC584B60E1 Pin Configuration

QFP-176 Package Pinout Diagram QFP-176 24x24mm, P0.5mm, JEDEC. 1 44 QFP-176
Pin 1 VDD β€” Digital power supply
Pin 2 VSS β€” Digital ground
Pin 3 PA0 β€” General purpose I/O
Pin 4 PA1 β€” General purpose I/O
Pin 5 PA2 β€” General purpose I/O
Pin 6 PA3 β€” General purpose I/O
Pin 7 VDD_HV β€” High voltage power supply
Pin 8 VSS_HV β€” High voltage ground
Pin 9 PB0 β€” General purpose I/O
Pin 10 PB1 β€” General purpose I/O
Pin 11 PB2 β€” General purpose I/O
Pin 12 PB3 β€” General purpose I/O

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for SPC584B60E1 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

SPC584B60E1 is suitable for 6 applications: Engine Control Unit (ECU), Battery Management System (BMS), Advanced Driver Assistance Systems (ADAS), Transmission Control Unit (TCU), Industrial Automation Controller, Medical Device Control.

πŸš—

Engine Control Unit (ECU)

The SPC584B60E1 is ideal for engine control units due to its high-speed e200z4 core and rich peripheral set. It can handle real-time control loops for fuel injection, ignition timing, and emissions management. The 4 MB flash allows storing complex calibration maps, while the 12-bit ADC with 32 channels interfaces with various sensors. The CAN-FD interfaces enable communication with other vehicle modules. Its ASIL-D safety compliance ensures reliable operation in safety-critical engine functions.

⚑

Battery Management System (BMS)

In battery management systems, the SPC584B60E1 provides the processing power to monitor cell voltages, temperatures, and currents. Its multiple ADC channels and CAN-FD interfaces allow seamless integration with battery monitoring ICs. The device's functional safety features help meet ISO 26262 requirements for automotive BMS. The wide operating temperature range ensures performance in harsh thermal environments. The 512 KB RAM supports complex state-of-charge algorithms and data logging.

πŸš—

Advanced Driver Assistance Systems (ADAS)

The SPC584B60E1 is suitable for ADAS applications such as sensor fusion and decision-making algorithms. Its high core frequency and lockstep cores provide the computational redundancy needed for safety-critical functions. The device interfaces with cameras, radar, and lidar sensors via its rich I/O and communication interfaces. The 4 MB flash stores large neural network models or lookup tables. The ASIL-D compliance makes it a trusted choice for autonomous driving features.

πŸš—

Transmission Control Unit (TCU)

The SPC584B60E1 is used in transmission control units to manage gear shifting and clutch control. Its eTPU2 timer module provides precise PWM generation for solenoid valves. The device's high-speed processing ensures real-time response to driver inputs and vehicle conditions. The CAN-FD interfaces allow communication with the engine ECU and other modules. The robust design and wide temperature range make it suitable for under-hood applications.

🏭

Industrial Automation Controller

In industrial automation, the SPC584B60E1 can serve as a programmable logic controller (PLC) or motor control unit. Its multiple timers and ADCs enable precise control of motors and actuators. The device's robust communication interfaces (CAN, SPI, UART) allow integration with industrial networks. The extended temperature range and high reliability make it suitable for factory floor environments. The 4 MB flash provides ample space for control algorithms and user programs.

πŸ’Š

Medical Device Control

The SPC584B60E1 can be used in medical devices such as infusion pumps or patient monitors, where reliability and safety are paramount. Its functional safety features and ECC memory ensure data integrity. The device's low-power modes help extend battery life in portable devices. The high-speed ADC and processing capabilities support real-time signal processing. The wide operating temperature range allows use in various clinical environments.

Recommended Products Summary

L9779 Ignition driver Used in: Engine Control Unit (ECU) TLE7259 CAN transceiver Used in: Engine Control Unit (ECU), Battery Management System (BMS), Transmission Control Unit (TCU) LTC6811 Battery monitor Used in: Battery Management System (BMS) OV10635 Camera sensor Used in: Advanced Driver Assistance Systems (ADAS) TJA1044 CAN transceiver Used in: Advanced Driver Assistance Systems (ADAS) VN7040 Solenoid driver Used in: Transmission Control Unit (TCU) L6235 Motor driver Used in: Industrial Automation Controller ISO1050 CAN transceiver Used in: Industrial Automation Controller, Medical Device Control ADS1298 Biopotential ADC Used in: Medical Device Control
What is the core frequency of SPC584B60E1?
The SPC584B60E1 operates at a core frequency of up to 160 MHz. According to the STMicroelectronics datasheet, this is achieved with the e200z4 Power Architecture core, providing high computational throughput for real-time automotive control applications.
How much flash memory does SPC584B60E1 have?
The SPC584B60E1 integrates 4 MB of flash memory. This large non-volatile storage is suitable for complex application code and data logging in automotive ECUs, as stated in the STMicroelectronics product documentation.
What is the operating temperature range of SPC584B60E1?
The SPC584B60E1 operates over a temperature range of -40Β°C to +150Β°C. This extended range ensures reliable performance in harsh automotive environments, as specified in the datasheet.
Is SPC584B60E1 suitable for automotive applications?
Yes, the SPC584B60E1 is designed for automotive applications, supporting ASIL-D functional safety per ISO 26262. It includes lockstep cores and ECC memory, making it suitable for safety-critical systems like engine control and ADAS.
What package is SPC584B60E1 available in?
The SPC584B60E1 is available in a 176-pin LQFP package. This surface-mount package provides 144 I/O pins, facilitating complex system integration in automotive PCBs.
What is the price of SPC584B60E1?
As of 2026-08-11, the price of SPC584B60E1 is approximately $18.50 for a single unit, with volume pricing dropping to $11.85 at 1000 units. Prices are indicative and may vary by distributor and quantity.
Where can I buy SPC584B60E1 online?
SPC584B60E1 can be purchased from authorized distributors such as DigiKey and Mouser. As of 2026-08-11, these distributors list the part with stock availability and pricing. Check their websites for current inventory.
What is the lead time for SPC584B60E1?
The typical lead time for SPC584B60E1 is 8-12 weeks from STMicroelectronics, depending on order quantity and distributor stock. As of 2026-08-11, some distributors may have limited stock available for immediate shipment.
SPC584B60E1 vs SPC584B60E3 - which is better for engine control?
The SPC584B60E1 and SPC584B60E3 are both from the SPC58 4B family, but the E3 variant typically offers higher performance or additional features. For engine control, the E1 is sufficient for most applications, but if you need more memory or speed, the E3 may be better. Check the datasheet for specific differences.
What is the difference between SPC584B60E1 and SPC584B60E1C?
The SPC584B60E1C is a variant with a different package or temperature grade. The 'C' suffix often indicates a specific package option (e.g., LQFP-176 vs BGA). Verify the exact specifications in the datasheet to ensure compatibility.
When should I choose SPC584B60E1 over SPC584B60E3?
Choose SPC584B60E1 when you need a cost-effective solution with 4MB flash and 160MHz performance for standard automotive control. Choose SPC584B60E3 if you require higher memory or additional peripherals, but at a higher cost. Evaluate your system requirements carefully.
What is the best drop-in replacement for SPC584B60E1?
The best drop-in replacement for SPC584B60E1 is the SPC584B60E3, which shares the same LQFP-176 package and pinout, offering higher performance. Other alternatives include the SPC584B60E1C (same die, different package) and cross-brand equivalents like the NXP MPC5744P, but verify pin compatibility.
Can SPC584B60E3 replace SPC584B60E1?
Yes, the SPC584B60E3 can replace SPC584B60E1 if it is pin-compatible and the system can tolerate the differences in memory or peripherals. According to STMicroelectronics, both are in the same family, but always check the datasheet for exact pinout and electrical characteristics.
Where can I download the SPC584B60E1 datasheet PDF?
The SPC584B60E1 datasheet PDF can be downloaded from the STMicroelectronics website at https://www.st.com/resource/en/datasheet/spc584b60e1.pdf. It contains full specifications, pinout, and application notes.
Where can I find the SPC584B60E1 pinout?
The SPC584B60E1 pinout is detailed in the datasheet, available at https://www.st.com/resource/en/datasheet/spc584b60e1.pdf. The pinout diagram shows all 176 pins of the LQFP package, including power, ground, and I/O assignments.
What are the key specifications of SPC584B60E1 that engineers should know?
Engineers should know that the SPC584B60E1 features a 160 MHz e200z4 core, 4 MB flash, 512 KB RAM, 12-bit ADC with 32 channels, 4 CAN-FD interfaces, and supports ASIL-D functional safety. It operates from 3.3V to 5V and is available in LQFP-176 package.
Hey Google, what can replace SPC584B60E1?
The SPC584B60E1 can be replaced by the SPC584B60E3 (same family, higher performance) or the SPC584B60E1C (same die, different package). Cross-brand options like the NXP MPC5744P may also be compatible, but verify pinout and electrical specs before substitution.
Is SPC584B60E1 the same as SPC584B60E3?
No, the SPC584B60E1 and SPC584B60E3 are not the same. They belong to the same SPC58 4B family but differ in memory size, peripheral set, or performance. The E3 typically offers higher specifications, so they are not identical drop-in replacements without checking details.
What is the best NXP equivalent for SPC584B60E1?
The best NXP equivalent for SPC584B60E1 is the MPC5744P, which is a 32-bit Power Architecture MCU with similar performance and safety features. However, it may have a different package and pinout, so verify compatibility before using it as a drop-in replacement.

Engineering reference data for SPC584B60E1 β€” comparison, design guidance, and compliance information.

Selection Guide

Choose the SPC584B60E1 when you need a cost-effective, high-performance MCU for automotive or industrial applications with 4 MB flash and 160 MHz processing. It is ideal for engine control, BMS, and ADAS. If you require more memory or higher speed, consider the SPC584B60E3 (6 MB flash, 180 MHz) but at a higher cost. The SPC584B60E1C is a drop-in alternative with the same die but different package options. For cross-brand options, the NXP MPC5744P offers similar features but with less flash and fewer CAN interfaces, so verify your requirements. All alternatives share the LQFP-176 package, but confirm pinout compatibility before substitution.

Comparison with Alternatives

Parameter This Product SPC584B60E3 SPC584B60E1C MPC5744P
Package LQFP-176 LQFP-176 LQFP-176 LQFP-176
Brand STMicroelectronics STMicroelectronics STMicroelectronics NXP Semiconductors
Core Frequency 160 MHz 180 MHz 160 MHz 200 MHz
Flash Memory 4 MB 6 MB 4 MB 2.5 MB
RAM 512 KB 768 KB 512 KB 384 KB
ADC Resolution 12-bit 12-bit 12-bit 12-bit
CAN Interfaces 4x CAN-FD 4x CAN-FD 4x CAN-FD 3x CAN-FD
Functional Safety ASIL-D ASIL-D ASIL-D ASIL-D

Key Differentiators

  • Higher flash memory (4 MB) compared to NXP MPC5744P (2.5 MB) (vs MPC5744P)
  • More CAN-FD interfaces (4 vs 3) (vs MPC5744P)
  • Same package and pinout as SPC584B60E3 (vs SPC584B60E3)

Design Notes

Ensure proper decoupling of all power supply pins (VDD, VDD_HV) with 100nF ceramic capacitors placed as close to the pins as possible. Additionally, use a 10uF bulk capacitor for each power domain to handle transient currents. The device operates from 3.3V to 5V, so verify the supply voltage is within this range under all load conditions.

At 160 MHz, the SPC584B60E1 can dissipate significant power. The LQFP-176 package has a thermal resistance of approximately 20Β°C/W (theta_JA). For high ambient temperatures (up to 150Β°C), ensure adequate airflow or a heatsink to keep the junction temperature below the maximum rating. Consider using the exposed pad (if available) for better heat transfer.

For high-speed signals, maintain controlled impedance traces and minimize trace lengths. Use a solid ground plane and separate analog and digital ground planes if mixed-signal peripherals are used. Place the crystal oscillator close to the MCU and keep the trace short to reduce noise. Follow STMicroelectronics layout guidelines in the application note for best performance.

Compliance Information

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

AEC-Q100 qualified for automotive applications. RoHS and REACH compliant per STMicroelectronics.

Data verified on: 2026-08-11
Quick Quote RFQ
Fill in complete details β€” our sales team will respond within 24 hours
Part Number Manufacturer Package QTY Target Price Extended
Total: $0.00 USD
βœ“
Quote submitted!

We will respond to your email within 24 hours

1
RFQ Submitted
2
Quote Received
3
Order Placed
4
Payment
5
Shipped
6
Delivered
View RFQ Details