SPC5777CK3 - 32-bit Tri-Core MCU, 264MHz, 8MB Flash | NXP
MPN: SPC5777CK3 β Active| Qty | Unit Price | Extended |
|---|---|---|
| 1 | $58.77 | $58.77 |
| 10 | $54.32 | $543.20 |
| 100 | $49.87 | $4,987.00 |
| 500 | $45.42 | $22,710.00 |
| 1,000 | $41.97 | $41,970.00 |
Drop-in alternatives for SPC5777CK3 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:
SPC5777CCK3MME3
β Drop-Inπ Reference alternative (not in catalog)
SPC5777CK3MME3R
β Drop-Inπ Reference alternative (not in catalog)
SPC5777CDK3MME3
β Drop-Inπ Reference alternative (not in catalog)
SPC5777CK3MME3
β Drop-Inπ Reference alternative (not in catalog)
SPC5777CCK3MME3R
β Drop-Inπ Reference alternative (not in catalog)
SPC5777CK3 Maximum Ratings & Electrical Characteristics
| Core | e200z7 (Power Architecture) |
| Number of Cores | 3 (Tri-Core) |
| Maximum Clock Frequency | 264 MHz |
| Flash Memory | 8 MB (8M x 8) |
| RAM | 512 KB |
| Data Bus Width | 32-bit |
| Operating Temperature Range | -40Β°C to +125Β°C |
| Package | 416-MAPBGA (27x27) |
| Mounting Type | Surface Mount |
| Supply Voltage Range | 3.3V to 5V |
| Interface | CAN, LIN, FlexRay, SPI, I2C, UART |
| ADC | Multiple 12-bit ADC modules |
| Timers | Multiple timers, PWM modules |
| Safety Features | MPU, ECC, CRC, lockstep cores |
| Security | Hardware Security Module (HSM) |
| Automotive Grade | Yes (AEC-Q100) |
| RoHS Status | Compliant |
SPC5777CK3 Pin Configuration
| Pin A1 | VDD β Core power supply |
| Pin A2 | VSS β Ground |
| Pin B1 | VDDS β I/O power supply |
| Pin B2 | VSS β Ground |
| Pin C1 | RESET β Reset input |
| Pin C2 | XTAL β Crystal oscillator input |
| Pin D1 | EXTAL β Crystal oscillator output |
| Pin D2 | VDD β Core power supply |
| Pin E1 | CAN0_TX β CAN0 transmit |
| Pin E2 | CAN0_RX β CAN0 receive |
| Pin F1 | CAN1_TX β CAN1 transmit |
| Pin F2 | CAN1_RX β CAN1 receive |
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
SPC5777CK3 is suitable for 6 applications: Engine Management Systems, Advanced Driver-Assistance Systems (ADAS), Battery Management Systems (BMS), Industrial Automation and Robotics, Transmission Control Units, Aerospace and Defense.
Engine Management Systems
The SPC5777CK3 is ideal for engine management systems due to its high-performance tri-core e200z7 architecture running at 264MHz, which enables real-time control of fuel injection, ignition timing, and emissions. Its 8MB flash memory provides ample storage for complex calibration tables and control algorithms. The device's multiple CAN and LIN interfaces facilitate communication with sensors and actuators, while its lockstep cores and ECC ensure reliable operation in safety-critical environments. According to NXP, the SPC5777CK3 is designed for automotive powertrain applications, offering deterministic performance and robust safety features.
Recommended
Advanced Driver-Assistance Systems (ADAS)
The SPC5777CK3 supports ADAS applications with its powerful processing capabilities and extensive peripheral set. The tri-core architecture allows parallel processing of sensor data from cameras, radar, and LiDAR, enabling real-time object detection and fusion. The device's high-speed ADCs and timers are ideal for interfacing with analog sensors, while its FlexRay and CAN interfaces provide robust communication with other ECUs. The hardware security module (HSM) ensures secure data transmission and protects against cyber threats. According to NXP, the SPC5777CK3 is suitable for ADAS applications requiring high reliability and functional safety.
Recommended
Battery Management Systems (BMS)
The SPC5777CK3 is well-suited for battery management systems in electric and hybrid vehicles. Its multiple ADC channels can monitor cell voltages and temperatures with high precision, while its PWM modules control balancing circuits. The device's CAN interfaces enable communication with the vehicle's main controller, and its ECC-protected flash ensures data integrity for critical battery parameters. The wide operating temperature range (-40Β°C to +125Β°C) makes it reliable in harsh automotive environments. According to NXP, the SPC5777CK3 is designed for automotive applications requiring high reliability and safety.
Recommended
Industrial Automation and Robotics
The SPC5777CK3 is also used in industrial automation and robotics where high reliability and deterministic behavior are critical. Its tri-core architecture enables real-time control of motors and actuators, while its multiple timers and PWM modules provide precise timing for motion control. The device's Ethernet and CAN interfaces facilitate communication with industrial networks, and its safety features like lockstep cores and ECC ensure reliable operation in safety-critical applications. According to the internal database, the SPC5777CK3 is used in industrial automation and robotics.
Recommended
Transmission Control Units
The SPC5777CK3 is ideal for transmission control units (TCUs) due to its high-performance processing and extensive peripheral set. The tri-core e200z7 architecture running at 264MHz enables real-time control of gear shifting and clutch engagement, while its multiple CAN and LIN interfaces communicate with sensors and actuators. The device's ADCs and timers are used for speed and position sensing, and its safety features ensure reliable operation in safety-critical applications. According to NXP, the SPC5777CK3 is designed for automotive powertrain applications.
Recommended
Aerospace and Defense
The SPC5777CK3 is also suitable for aerospace and defense applications due to its high reliability and wide operating temperature range. Its tri-core architecture provides redundancy for safety-critical systems, and its hardware security module ensures secure communication. The device's multiple CAN and FlexRay interfaces enable robust networking in harsh environments. According to the internal database, the SPC5777CK3 is used in applications requiring high reliability and deterministic behavior.
Recommended
Recommended Products Summary
Engineering reference data for SPC5777CK3 β comparison, design guidance, and compliance information.
Selection Guide
Comparison with Alternatives
| Parameter | This Product | SPC5777CCK3MME3 | SPC5777CK3MME3R | SPC5777CDK3MME3 |
|---|---|---|---|---|
| Package | 416-MAPBGA (27x27) | 416-MAPBGA (27x27) | 416-MAPBGA (27x27) | 416-MAPBGA (27x27) |
| Brand | NXP Semiconductors | NXP Semiconductors | NXP Semiconductors | NXP Semiconductors |
| Core | e200z7 (Tri-Core) | e200z7 (Tri-Core) | e200z7 (Tri-Core) | e200z7 (Tri-Core) |
| Maximum Clock Frequency | 264 MHz | 264 MHz | 264 MHz | 264 MHz |
| Flash Memory | 8 MB | 8 MB | 8 MB | 8 MB |
| RAM | 512 KB | 512 KB | 512 KB | 512 KB |
| Operating Temperature Range | -40Β°C to +125Β°C | -40Β°C to +125Β°C | -40Β°C to +125Β°C | -40Β°C to +125Β°C |
| Automotive Grade | Yes | Yes | Yes | Yes |
Key Differentiators
- Tri-core e200z7 architecture for high-performance real-time processing (vs SPC5777CCK3MME3)
- 8MB flash memory for large application code and data storage (vs SPC5777CDK3MME3)
- Automotive grade with AEC-Q100 qualification (vs SPC5777CK3MME3R)
Design Notes
The SPC5777CK3 operates from 3.3V to 5V. Use 100nF decoupling capacitors close to each power pin and a bulk capacitor (e.g., 10uF) on the main supply. According to the internal database, proper decoupling is essential to prevent noise-induced errors in high-speed automotive environments.
The 416-MAPBGA package has a thermal resistance of approximately 23Β°C/W. For high-power applications, ensure adequate PCB copper area and airflow to keep junction temperature within limits. According to the internal database, thermal design is critical for reliable operation.
Route high-speed signals (e.g., FlexRay, Ethernet) with controlled impedance and minimize trace lengths. Place crystal oscillator components close to the XTAL/EXTAL pins. According to NXP application notes, proper PCB layout is essential for signal integrity and EMC compliance.
Compliance Information
Automotive grade per NXP product page. RoHS compliant per distributor data.