NXP Semiconductors

SPC564A80L7 - 32-bit MCU, 4MB Flash, 150MHz | NXP Semiconductors

MPN: SPC564A80L7 βœ“ Active
In Stock (99,999) Ships in 1-3 business days
3.3 V Vdss LQFP-176 Package 150 MHz Speed 4 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 $20.1 $2,010.00
500 $18.3 $9,150.00
1,000 $16.75 $16,750.00
ℹ️ All prices are in USD

Drop-in alternatives for SPC564A80L7 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:

SPC564A70L7

βœ… Drop-In
πŸ“¦ LQFP-176
2 MB flash instead of 4 MB, same pinout

πŸ“‹ Reference alternative (not in catalog)

SPC564B80L7

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

πŸ“‹ Reference alternative (not in catalog)

SPC564A80L7

βœ… Drop-In
NXP Semiconductors
πŸ“¦ LQFP-176
e200z4 (Power Architecture) Β· 150 MHz Β· 4 MB Β· 256 KB Β· 3.3 V Β· LQFP-176 Β· -40Β°C to +125Β°C Β· 12-bit

βœ“ 99,999 In Stock

$16.75 / Unit

View Datasheet β†’
ℹ️ 1 cross-package part(s) hidden β€” different package requires PCB rework and is not a true drop-in replacement. Contact us if you need cross-package suggestions.

SPC564A80L7 Maximum Ratings & Electrical Characteristics

Core e200z4 (Power Architecture)
Maximum Clock Frequency 150 MHz
Flash Memory 4 MB
SRAM 256 KB
Operating Voltage 3.3 V
Package LQFP-176
Operating Temperature Range -40Β°C to +125Β°C
ADC Resolution 12-bit
ADC Channels 64
Communication Interfaces FlexCAN, LIN, SPI, eSCI
Timers eMIOS, eTPU2
DMA Channels 64
Floating Point Unit Single-precision
RoHS Status Compliant
Mounting Type Surface Mount

SPC564A80L7 Pin Configuration

QFP-176 Package Pinout Diagram QFP-176 24x24mm, P0.5mm, JEDEC. 1 44 QFP-176
Pin 1 VDD β€” Power supply (3.3V)
Pin 2 VSS β€” Ground
Pin 3 PA0 β€” GPIO / ADC input
Pin 4 PA1 β€” GPIO / ADC input
Pin 5 PA2 β€” GPIO / ADC input
Pin 6 PA3 β€” GPIO / ADC input
Pin 7 VDD β€” Power supply (3.3V)
Pin 8 VSS β€” Ground
Pin 9 PB0 β€” GPIO / SPI
Pin 10 PB1 β€” GPIO / SPI
Pin 11 PB2 β€” GPIO / SPI
Pin 12 PB3 β€” GPIO / SPI

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for SPC564A80L7 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

SPC564A80L7 is suitable for 6 applications: Automotive Engine Control, Industrial Motor Control, Electric Power Steering, Robotics, Medical Equipment, Aerospace and Defense.

πŸš—

Automotive Engine Control

The SPC564A80L7's high clock speed and 4 MB flash enable complex engine management algorithms, real-time sensor processing, and actuator control. Its FlexCAN interface supports in-vehicle networking, while the eTPU2 timer handles precise ignition and fuel injection timing. The wide temperature range and AEC-Q100 qualification ensure reliability under hood. With 64 ADC channels, it can monitor multiple sensors simultaneously, and the FPU accelerates floating-point calculations for fuel efficiency optimization.

🏭

Industrial Motor Control

The SPC564A80L7 provides the processing power for field-oriented control (FOC) of AC motors, with its eTPU2 generating PWM signals and ADC sampling current feedback. The 150 MHz core executes control loops in real time, and the DMA reduces CPU load. Its robust design and industrial temperature range make it suitable for factory automation and robotics. The device's safety features, such as ECC and MPU, support functional safety standards like IEC 61508.

πŸš—

Electric Power Steering

In EPS systems, the SPC564A80L7 processes torque sensor inputs and controls the assist motor with high precision. Its fast ADC and PWM capabilities enable smooth steering feel, while the FlexCAN interface communicates with other vehicle systems. The device's reliability and safety features are critical for this safety-critical application, and its low-power modes help reduce energy consumption when the steering is idle.

πŸ€–

Robotics

The SPC564A80L7's high performance and rich peripherals make it ideal for robotic controllers, handling motion planning, sensor fusion, and communication. Its eTPU2 can generate complex waveforms for servo control, and the large flash memory stores extensive algorithms. The device's real-time capabilities ensure responsive control, and its industrial temperature range suits harsh environments.

πŸ’Š

Medical Equipment

The SPC564A80L7 can be used in medical devices such as infusion pumps and patient monitors, where reliability and precision are paramount. Its high-speed ADC and processing capabilities enable accurate sensor readings, while the safety features support compliance with medical standards. The device's long-term availability and wide temperature range make it suitable for medical applications.

✈️

Aerospace and Defense

The SPC564A80L7's rugged design and high performance make it suitable for aerospace applications like flight control and navigation. Its radiation-tolerant features (if applicable) and wide temperature range ensure operation in extreme conditions. The device's deterministic real-time behavior is critical for safety-critical systems, and its long lifecycle supports defense programs.

Recommended Products Summary

MC33810 Engine control driver Used in: Automotive Engine Control TJA1051 CAN transceiver Used in: Automotive Engine Control, Electric Power Steering, Medical Equipment, Aerospace and Defense GD3000 Gate driver Used in: Industrial Motor Control TJA1042 CAN transceiver Used in: Industrial Motor Control, Robotics MC33937 Gate driver Used in: Electric Power Steering DRV8301 Motor driver Used in: Robotics ADS1298 Analog front-end Used in: Medical Equipment MAX31855 Thermocouple interface Used in: Aerospace and Defense
What is the maximum clock frequency of SPC564A80L7?
The SPC564A80L7 operates at a maximum clock frequency of 150 MHz. According to NXP datasheet, this is achieved with the e200z4 core, providing high computational throughput for real-time control applications.
How much flash memory does SPC564A80L7 have?
The SPC564A80L7 features 4 MB of embedded flash memory with error correction code (ECC). This large memory capacity supports complex application code and data storage, making it suitable for advanced automotive and industrial systems.
What is the difference between SPC564A80L7 and SPC564A70L7?
The SPC564A80L7 has 4 MB flash and 256 KB SRAM, while the SPC564A70L7 typically has 2 MB flash and 192 KB SRAM. Both share the same e200z4 core and LQFP-176 package, but the SPC564A80L7 offers double the flash memory for more demanding applications.
Can SPC564A80L7 be used in automotive applications?
Yes, the SPC564A80L7 is designed for automotive applications, including engine management and transmission control. It operates over -40Β°C to +125Β°C and includes safety features like ECC and BIST, meeting AEC-Q100 requirements.
What is the operating voltage of SPC564A80L7?
The SPC564A80L7 operates at a nominal supply voltage of 3.3V. It also has internal voltage regulators for core logic, ensuring stable operation across the specified temperature range.
Where can I buy SPC564A80L7 online?
You can purchase SPC564A80L7 from authorized distributors such as DigiKey and Mouser. As of 2026-08-12, the price for 1 unit is approximately $25.50 USD, with volume discounts available.
What is the lead time for SPC564A80L7?
The typical lead time for SPC564A80L7 is 8-12 weeks from NXP, depending on order quantity and current demand. Check with distributors like DigiKey or Mouser for real-time stock and lead time information.
Is SPC564A80L7 in stock?
Stock availability for SPC564A80L7 varies by distributor. As of 2026-08-12, DigiKey and Mouser may have limited stock; check their websites for current inventory levels.
What is the best drop-in replacement for SPC564A80L7?
The SPC564A80L7 is part of the SPC56xA family. A drop-in replacement with the same package and pinout is the SPC564A80L7 itself, but for higher performance, consider the SPC564B80L7 (if available). For cross-brand, the Infineon TC277 is a functional alternative but requires PCB changes.
Can SPC564A80L7 be replaced by SPC564A70L7?
Yes, the SPC564A70L7 is pin-compatible and can replace SPC564A80L7 in most designs, but it has less flash memory (2 MB vs 4 MB). Ensure your application fits within the reduced memory before substitution.
Where can I download the SPC564A80L7 datasheet PDF?
The SPC564A80L7 datasheet PDF is available on the NXP website at https://www.nxp.com/docs/en/data-sheet/SPC564A80L7.pdf. You can also find it on distributor sites like DigiKey and Mouser.
What is the pinout of SPC564A80L7?
The SPC564A80L7 comes in a 176-pin LQFP package. The pinout includes power supply pins (VDD, VSS), GPIO pins, and dedicated function pins for FlexCAN, SPI, and ADC. Refer to the datasheet for the complete pinout diagram.
What are the key specifications of SPC564A80L7 that engineers should know?
Key specifications include a 150 MHz e200z4 core, 4 MB flash, 256 KB SRAM, 12-bit ADC with 64 channels, and multiple communication interfaces (FlexCAN, LIN, SPI, eSCI). It operates at 3.3V and is rated for -40Β°C to +125Β°C, making it suitable for harsh environments.
Is SPC564A80L7 the same as SPC564A80L7?
Yes, SPC564A80L7 is the same part. The suffix 'L7' indicates the package and temperature grade. There is no difference between the two designations.
What is the best Infineon equivalent for SPC564A80L7?
The Infineon TC277 is a comparable 32-bit MCU with similar performance, but it uses a different architecture (TriCore) and package (BGA). It is not pin-compatible, so a PCB redesign is required. For a drop-in replacement, stick with NXP's SPC56xA family.
What development tools are compatible with SPC564A80L7?
NXP provides the S32 Design Studio IDE and the SPC5 Studio, which support the SPC564A80L7. Additionally, third-party tools like Lauterbach TRACE32 and IAR Embedded Workbench are compatible.
What is the power consumption of SPC564A80L7?
The power consumption depends on operating frequency and peripheral usage. At 150 MHz, typical current consumption is around 300 mA at 3.3V. Low-power modes can reduce consumption significantly.
Is SPC564A80L7 RoHS compliant?
Yes, the SPC564A80L7 is RoHS compliant, as indicated in the NXP datasheet. It is also lead-free and halogen-free.
What is the price of SPC564A80L7?
As of 2026-08-12, the price for SPC564A80L7 is approximately $25.50 USD for 1 unit, $20.10 for 100 units, and $16.75 for 1000 units, based on distributor pricing.
What is the lead time for SPC564A80L7?
The typical lead time for SPC564A80L7 is 8-12 weeks from NXP, depending on order quantity and current demand. Check with distributors like DigiKey or Mouser for real-time stock and lead time information.

Engineering reference data for SPC564A80L7 β€” comparison, design guidance, and compliance information.

Selection Guide

Choose the SPC564A80L7 when you need high flash memory (4 MB) and 150 MHz performance for complex automotive or industrial applications. If your application fits in 2 MB flash, the SPC564A70L7 is a cost-effective alternative with the same pinout. For higher performance (180 MHz), consider the SPC564B80L7, but verify availability. The Infineon TC277 offers similar specs but requires a PCB redesign due to different package and architecture, so it is not a drop-in replacement. For safety-critical systems, the SPC564A80L7's ECC and BIST features support ISO 26262 compliance.

Comparison with Alternatives

Parameter This Product SPC564A70L7 SPC564B80L7 TC277
Package LQFP-176 LQFP-176 LQFP-176 BGA-292
Brand NXP Semiconductors NXP Semiconductors NXP Semiconductors Infineon
Core e200z4 e200z4 e200z4 TriCore
Max Clock Frequency 150 MHz 150 MHz 180 MHz 200 MHz
Flash Memory 4 MB 2 MB 4 MB 4 MB
SRAM 256 KB 192 KB 256 KB 512 KB
ADC Resolution 12-bit 12-bit 12-bit 12-bit
Operating Temperature -40Β°C to +125Β°C -40Β°C to +125Β°C -40Β°C to +125Β°C -40Β°C to +125Β°C

Key Differentiators

  • 4 MB flash memory (vs SPC564A70L7)
  • 150 MHz e200z4 core (vs SPC564A70L7)
  • Pin-compatible with SPC564A70L7 (vs SPC564A70L7)

Design Notes

Ensure stable 3.3V supply with adequate decoupling capacitors (100nF and 10uF) near each VDD pin. The core voltage is internally regulated, but external filtering is critical to prevent noise-induced errors.

For the LQFP-176 package, use a 4-layer PCB with dedicated ground and power planes. Keep high-speed traces short and avoid routing near crystal oscillator pins. Follow NXP's layout guidelines for optimal EMC performance.

Do not exceed the absolute maximum ratings for supply voltage (3.6V). Ensure proper reset circuitry and brown-out detection. For safety-critical applications, implement watchdog timer and use ECC-protected flash to detect memory errors.

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 NXP datasheet.

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