SPC582B60E1 - 32-bit Automotive MCU, 1MB Flash | STMicroelectronics
MPN: SPC582B60E1 β Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $12.5 | $12.50 |
| 10 | $11.25 | $112.50 |
| 100 | $10 | $1,000.00 |
| 500 | $9 | $4,500.00 |
| 1,000 | $8.1 | $8,100.00 |
Drop-in alternatives for SPC582B60E1 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:
SPC582B60E1C
β Drop-Inπ Reference alternative (not in catalog)
SPC582B60E1P
β Drop-Inπ Reference alternative (not in catalog)
SPC582B60E1Q
β Drop-Inπ Reference alternative (not in catalog)
SPC582B60E1
β Drop-Inβ 99,999 In Stock
$8.1 / Unit
View Datasheet βSPC582B60E1
β Drop-Inβ 99,999 In Stock
$8.1 / Unit
View Datasheet βSPC582B60E1 Maximum Ratings & Electrical Characteristics
| Core | e200z0 (Power Architecture) |
| Core Frequency | 80 MHz |
| Flash Memory | 1 MB |
| SRAM | 128 KB |
| Supply Voltage (VDD) | 3.3 V to 5 V |
| Operating Temperature | -40Β°C to +125Β°C |
| Package | LQFP-100 (14x14 mm) |
| Mounting Type | Surface Mount |
| ADC Resolution | 10-bit |
| ADC Channels | 16 |
| FlexCAN | 3 |
| LINFlex | 2 |
| DSPI | 2 |
| I2C | 1 |
| AEC-Q100 | Qualified (Grade 1) |
| RoHS | Compliant |
SPC582B60E1 Pin Configuration
| Pin 1 | VDD β Digital power supply (3.3V-5V) |
| Pin 2 | VSS β Digital ground |
| Pin 3 | VDDA β Analog power supply |
| Pin 4 | VSSA β Analog ground |
| Pin 5 | RESET β Reset input (active low) |
| Pin 6 | XTAL β Crystal oscillator input |
| Pin 7 | EXTAL β Crystal oscillator output |
| Pin 8 | PA0 β General purpose I/O |
| Pin 9 | PA1 β General purpose I/O |
| Pin 10 | PA2 β General purpose I/O |
| Pin 11 | PA3 β General purpose I/O |
| Pin 12 | PB0 β General purpose I/O |
| Pin 13 | PB1 β General purpose I/O |
| Pin 14 | PB2 β General purpose I/O |
| Pin 15 | PB3 β General purpose I/O |
| Pin 16 | PC0 β General purpose I/O |
| Pin 17 | PC1 β General purpose I/O |
| Pin 18 | PC2 β General purpose I/O |
| Pin 19 | PC3 β General purpose I/O |
| Pin 20 | PD0 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
SPC582B60E1 is suitable for 6 applications: Body Control Module (BCM), Automotive Gateway, Lighting Control, Motor Control (Pumps and Fans), HVAC Control, Industrial Automation.
Body Control Module (BCM)
The SPC582B60E1 is ideal for body control modules due to its 1 MB flash, 128 KB SRAM, and multiple CAN/LIN interfaces. It manages lighting, window lifts, and central locking, with real-time control and diagnostics. The 80 MHz core and FPU accelerate control algorithms, while the AEC-Q100 Grade 1 rating ensures reliability in harsh automotive environments. In a typical BCM, the MCU interfaces with switches, relays, and sensors via GPIO and ADC, and communicates with other ECUs over CAN and LIN. The low-power modes help reduce quiescent current when the vehicle is off, extending battery life. Designers should ensure proper decoupling and use the eTPU for precise timing of pulse-width modulation (PWM) outputs.
Recommended
Automotive Gateway
The SPC582B60E1 serves as an automotive gateway, routing messages between different CAN and LIN networks. Its 3 FlexCAN and 2 LINFlex interfaces allow seamless bridging of protocols, while the 1 MB flash stores routing tables and diagnostic services. The 80 MHz core handles message filtering and forwarding with low latency, and the MPU enhances security by isolating critical memory regions. In a gateway application, the MCU connects to multiple bus transceivers and uses DMA to move data efficiently. The device's ECC on flash and SRAM ensures data integrity during transmission. Designers should configure the crossbar switch to optimize bandwidth and use the CRC unit for message authentication.
Recommended
Lighting Control
The SPC582B60E1 is well-suited for automotive lighting control, including headlamps, tail lamps, and interior lighting. Its eMIOS and eTPU timers generate precise PWM signals for dimming and intensity control, while the 10-bit ADC monitors current and voltage for fault detection. The device's 1 MB flash allows storing multiple lighting profiles and calibration data. In a typical lighting module, the MCU reads switch inputs and communicates with other ECUs via LIN, adjusting light output accordingly. The wide operating temperature range and AEC-Q100 qualification ensure reliable operation in extreme conditions. Designers should use the ADC with proper filtering to avoid noise from PWM switching.
Recommended
Motor Control (Pumps and Fans)
The SPC582B60E1 is used in motor control applications such as water pumps, oil pumps, and cooling fans. Its 80 MHz core and FPU enable sensorless field-oriented control (FOC) algorithms, while the eTPU provides high-resolution PWM generation. The 10-bit ADC samples phase currents and DC bus voltage for closed-loop control. The device's 1 MB flash stores motor control firmware and tuning parameters. In a typical motor control system, the MCU interfaces with gate drivers and current sensors, and communicates with the vehicle network via CAN. The ECC on memory enhances reliability in safety-critical applications. Designers should implement overcurrent and overtemperature protection using the ADC and comparators.
Recommended
HVAC Control
The SPC582B60E1 is suitable for HVAC (heating, ventilation, and air conditioning) control modules. It manages blower motors, damper actuators, and temperature sensors, using its timers and ADC for precise control. The 1 MB flash allows storing complex control algorithms and user settings. The device's CAN and LIN interfaces enable communication with the main vehicle network and climate control panel. In a typical HVAC module, the MCU reads temperature sensors, controls actuators via PWM, and adjusts blower speed based on user input. The low-power modes help reduce energy consumption when the system is idle. Designers should use the eMIOS for accurate PWM generation and the ADC for sensor conditioning.
Recommended
Industrial Automation
Beyond automotive, the SPC582B60E1 can be used in industrial automation for PLCs, motor drives, and robotics. Its robust communication interfaces (CAN, SPI, I2C) and real-time processing make it suitable for industrial control. The 1 MB flash and 128 KB SRAM support complex control algorithms, while the AEC-Q100 qualification ensures reliability in harsh industrial environments. In a typical industrial application, the MCU interfaces with sensors, actuators, and human-machine interfaces (HMIs), and communicates over industrial networks. The device's FPU accelerates mathematical computations for control loops. Designers should consider the operating temperature range and provide adequate cooling in high-temperature environments.
Recommended
Recommended Products Summary
Engineering reference data for SPC582B60E1 β comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | SPC582B60E1C | SPC582B60E1P | SPC582B60E1Q |
|---|---|---|---|---|
| Package | LQFP-100 | LQFP-100 | LQFP-100 | LQFP-100 |
| Brand | STMicroelectronics | STMicroelectronics | STMicroelectronics | STMicroelectronics |
| Core Frequency | 80 MHz | 80 MHz | 80 MHz | 80 MHz |
| Flash Memory | 1 MB | 1 MB | 1 MB | 1 MB |
| SRAM | 128 KB | 128 KB | 128 KB | 128 KB |
| Operating Temperature | -40Β°C to +125Β°C | -40Β°C to +125Β°C | -40Β°C to +125Β°C | -40Β°C to +125Β°C |
| AEC-Q100 | Qualified (Grade 1) | Qualified (Grade 1) | Qualified (Grade 1) | Qualified (Grade 1) |
| Price (1pc) | $12.50 | [DATA_NEEDED] | [DATA_NEEDED] | [DATA_NEEDED] |
Key Differentiators
- Higher core frequency (80 MHz) compared to some alternatives (vs SPC582B60E1C)
- Large flash memory (1 MB) for complex applications (vs SPC582B60E1C)
- Multiple CAN and LIN interfaces for automotive networking (vs SPC582B60E1C)
Design Notes
Ensure proper decoupling of VDD and VDDA pins with 100 nF ceramic capacitors placed as close as possible to the pins. Additionally, use a 10 uF bulk capacitor on the main supply rail 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.
Provide a solid ground plane and minimize loop areas for high-speed signals. For the crystal oscillator, place the crystal and load capacitors close to the XTAL/EXTAL pins and keep traces short to reduce parasitic capacitance. Use separate analog and digital ground planes if possible, connecting them at a single point.
Do not exceed the absolute maximum ratings for supply voltage (6V) or input voltage on any pin. Ensure the reset pin is properly pulled up with a 10 kOhm resistor and a capacitor for power-on reset delay. When programming via JTAG/SWD, ensure the debug interface is not disabled in the firmware to avoid lockout.
Compliance Information
AEC-Q100 Grade 1 qualified per STMicroelectronics. RoHS compliant. REACH compliance assumed based on ST's environmental policy.