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SPC5646CCK0VMJ1R

In Stock 847 pcs Reference Price(In US Dollars)
1000+
$43.3712
Manufacturer Part Number:
SPC5646CCK0VMJ1R
Manufacturer / Brand
NXP USA Inc.
Part of Description:
IC MCU 32BIT 3MB FLASH 256MAPBGA
Datasheets:
SPC5646CCK0VMJ1R(1).pdfSPC5646CCK0VMJ1R(2).pdfSPC5646CCK0VMJ1R(3).pdfSPC5646CCK0VMJ1R(4).pdfSPC5646CCK0VMJ1R(5).pdfSPC5646CCK0VMJ1R(6).pdf
Lead Free Status / RoHS Status:
ROHS3 Compliant
Stock Condition:
New original, 847 pcs Stock Available.
ECAD Model:
Ship From:
Hong Kong
Shipment Way:
DHL/Fedex/TNT/UPS

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Part Number SPC5646CCK0VMJ1R
Manufacturer / Brand NXP USA Inc.
Stock Quantity 847 pcs Stock
Category Integrated Circuits (ICs) > Embedded - Microcontrollers
Description IC MCU 32BIT 3MB FLASH 256MAPBGA
Lead Free Status / RoHS Status: ROHS3 Compliant
Voltage - Supply (Vcc/Vdd) 3V ~ 5.5V
Supplier Device Package 256-MAPBGA (17x17)
Speed 80MHz/120MHz
Series MPC56xx Qorivva
RAM Size 256K x 8
Program Memory Type FLASH
Program Memory Size 3MB (3M x 8)
Peripherals DMA, POR, PWM, WDT
Package / Case 256-LBGA
Package Tape & Reel (TR)
Oscillator Type Internal
Operating Temperature -40°C ~ 105°C (TA)
Number of I/O 199
Mounting Type Surface Mount
EEPROM Size 64K x 8
Data Converters A/D 33x10b, 10x12b
Core Size 32-Bit Dual-Core
Core Processor e200z4d, e200z0h
Connectivity CANbus, Ethernet, I²C, LINbus, SCI, SPI
Base Product Number SPC5646

Packaging & ESD

Industry-standard static shielding packaging is used for electronic components.Anti-static, light-transparent materials allow easy identification of ICs and PCB assemblies.
The packaging structure provides electrostatic protection based on Faraday cage principles.This helps protect sensitive components from static discharge during handling and transportation.


All products are packed in ESD-safe anti-static packaging. Outer packaging labels include part number, brand, and quantity for clear identification. Goods are inspected prior to shipment to ensure proper condition and authenticity.

ESD protection is maintained throughout packing, handling, and global transportation. Secure packaging provides reliable sealing and resistance during transit. Additional cushioning materials are applied when required to protect sensitive components.

QC(Part Testing by IC Components)Quality Warranty

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Global Shipment by DHL/FedEx/TNT/UPS

Shipping Fees reference DHL/FedEx
1). You can offer your express delivery account for shipment, ifyou haven’t any express account for shipment, we can offer our account inadvance.
2). Use our account for shipment, Shipment charges(Reference DHL/FedEx, Different Countries has different price.)
Shipment charges: (Reference DHL and FedEX)
Weight(KG): 0.00kg-1.00kg Price(USD$) : USD$60.00
Weight(KG): 1.00kg-2.00kg Price(USD$) : USD$80.00
* The price of cost is reference with DHL/FedEx. The detail charges, please contact us. Different country the express charges are different.



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SPC5646CCK0VMJ1R Product Details:

The SPC5646CCK0VMJ1R from Freescale/NXP Semiconductors is a high-performance 32-bit dual-core microcontroller designed to address demanding automotive and industrial control applications where robust processing power, extensive memory, and comprehensive connectivity are essential. This embedded microcontroller belongs to the MPC56xx Qorivva series and features dual e200z4d and e200z0h core processors operating at speeds up to 80MHz/120MHz, providing exceptional computational capabilities for complex real-time control systems. The device integrates an impressive 3MB of flash program memory (3M x 8) and 256KB of RAM (256K x 8), along with 64KB of EEPROM, offering substantial storage for sophisticated firmware and data logging requirements that are critical in modern automotive safety systems, engine management, and industrial automation.

The microcontroller is housed in a compact 256-MAPBGA (17x17mm) surface mount package that addresses space constraints in densely populated PCB designs while providing 199 I/O pins for extensive peripheral interfacing. Its comprehensive connectivity suite includes CANbus for automotive networking, Ethernet for industrial communications, I²C, LINbus for cost-effective vehicle networks, SCI, and SPI interfaces, making it exceptionally versatile for multi-protocol environments. The integrated peripherals such as DMA for efficient data transfers, POR (Power-On Reset), PWM for motor control and power management, and WDT (Watchdog Timer) for system reliability enhance its functionality without requiring external components. The device features robust data conversion capabilities with 33 channels of 10-bit A/D converters and 10 channels of 12-bit A/D converters, enabling precise analog signal acquisition for sensor interfacing and monitoring applications.

Operating across an industrial temperature range of -40°C to 105°C and supporting a flexible voltage supply range of 3V to 5.5V, this microcontroller is engineered for harsh environmental conditions typical in automotive under-hood applications and industrial settings. The internal oscillator simplifies system design by reducing external component count and board space requirements. The device is RoHS3 compliant, meeting current environmental regulations, and is available in tape and reel packaging with 2635 units, facilitating automated assembly processes for high-volume manufacturing. Primary application areas include automotive body control modules, powertrain management, advanced driver assistance systems (ADAS), industrial motor control, robotics, and safety-critical embedded systems where dual-core redundancy and fail-safe operation are paramount.

Equivalent and alternative models within the MPC56xx Qorivva family include the SPC5643L, SPC5644A, SPC5645B, and SPC5668G variants, which offer different memory configurations, core speeds, and peripheral combinations to match specific application requirements and cost targets while maintaining software compatibility within the Power Architecture ecosystem.

SPC5646CCK0VMJ1R Image
SPC5646CCK0VMJ1R (1)

SPC5646CCK0VMJ1R Key Technical Attributes

SPC5646CCK0VMJ1R

32-Bit Dual-Core Microcontroller

3MB Flash, 256KB RAM, 64KB EEPROM

SPC5646CCK0VMJ1R Packing Size

This product is supplied in the 256-pin MAPBGA (Metric Array Plastic Ball Grid Array) package, with a dimension of 17mm x 17mm. The material is plastic with a ball grid array for efficient thermal dissipation and robust mechanical strength, suitable for surface-mount installation. Pins are ball-type, arranged over a 17×17 matrix, and comply with RoHS3 environmental standards.

SPC5646CCK0VMJ1R Application

The SPC5646CCK0VMJ1R is widely used in automotive and industrial control systems, such as engine management, body electronics, safety systems, and advanced networked controllers. Its rich peripheral integration and multiple connectivity interfaces make it highly adaptable for various real-time embedded control applications requiring high reliability and processing power.

SPC5646CCK0VMJ1R Features

This microcontroller features a dual-core architecture, based on the robust Power Architecture® e200z4d and e200z0h cores, enabling parallel computing for complex operations. It has a large flash memory of 3MB for code and data storage, 256KB RAM for fast program execution, and 64KB EEPROM for non-volatile data retention. Operating speeds reach up to 120MHz, ensuring rapid and responsive control. The device incorporates a comprehensive set of peripherals, including Direct Memory Access (DMA) for efficient data handling, Programmable Output Buffer (POR), Pulse Width Modulation (PWM) for motor and actuator drivers, and a Watchdog Timer (WDT) for system safety. Its analog-to-digital converters support up to 33 channels at 10-bit and 10 channels at 12-bit precision, suited for sensor inputs and mixed signal processing. Multiple connectivity options are provided, including CANbus, Ethernet, I2C, LINbus, SCI, and SPI, supporting both fast inter-module communication and industry-standard vehicular networks. The integrated internal oscillator guarantees stable clock generation even without an external crystal. The device operates across an extended temperature range of -40°C to 105°C, offering robust performance in harsh environments, with power supply voltage flexibility from 3.0V to 5.5V.

SPC5646CCK0VMJ1R Quality and Safety Features

The SPC5646CCK0VMJ1R adheres to stringent RoHS3 environmental compliance, ensuring it is free of hazardous substances. The inclusion of a hardware watchdog timer, brown-out reset features, and extensive error detection ensures high reliability and safety in mission-critical solutions, particularly in automotive and industrial sectors.

SPC5646CCK0VMJ1R Compatibility

As a member of the MPC56xx Qorivva series, this microcontroller is hardware- and software-compatible with a wide range of existing Freescale/NXP automotive controllers. It supports legacy development tools and programming environments, streamlining design upgrades and reducing time to market for new applications.

SPC5646CCK0VMJ1R Datasheet PDF

Our website provides the most authoritative and up-to-date datasheet for the SPC5646CCK0VMJ1R. Customers are strongly encouraged to download this comprehensive PDF from the current product page to ensure they have access to all the technical details, specifications, and design guidelines essential for successful implementation.

Quality Distributor

IC-Components is a premier authorized distributor of Freescale/NXP products, including the SPC5646CCK0VMJ1R microcontroller. We guarantee 100% genuine components, competitive pricing, and expeditious global shipping. To experience professional service and secure your supply chain, request a quote directly from our website today!

Frequently Asked Questions

How should I determine the appropriate power supply voltage range when integrating the SPC5646CCK0VMJ1R microcontroller into my design?
The SPC5646CCK0VMJ1R operates reliably within a supply voltage range of 3V to 5.5V. When designing your power system, ensure your power source can provide a stable voltage within this range, considering potential voltage transients. Implement proper decoupling and filtering to minimize noise and voltage fluctuations, which is critical for maintaining device stability and reliable operation, especially in industrial environments.
Can the SPC5646CCK0VMJ1R handle elevated temperature environments, and what are the key considerations for long-term industrial reliability?
Yes, the SPC5646CCK0VMJ1R is rated for operating temperatures from -40°C to 105°C, making it suitable for industrial applications. For long-term reliability, ensure proper thermal management—such as adequate heat sinking or airflow—and verify that the device’s power consumption does not induce thermal stress. Additionally, consider the impact of temperature variations on peripheral and I/O operation, and test the system across the entire operating temperature range during development.
When replacing an older microcontroller with the SPC5646CCK0VMJ1R, what are the main differences I should consider in terms of I/O or peripheral compatibility?
The SPC5646CCK0VMJ1R features 199 I/O pins, a 32-bit dual-core architecture, and integrated peripherals like CANbus, Ethernet, LINbus, SCI, SPI, DMA, PWM, and WDT. When replacing an older device, verify that existing peripheral interfaces and communication protocols are supported. Confirm the compatibility of I/O voltage levels, pin multiplexing, and peripheral functions. Additionally, account for differences in memory sizes (3MB Flash, 256K RAM) and ensure your firmware can leverage these features without requiring extensive modifications.
What are the critical design constraints regarding clock sources when integrating the SPC5646CCK0VMJ1R into a new system?
The SPC5646CCK0VMJ1R uses an internal oscillator, which simplifies design by reducing external components. However, for precise timing or external synchronization, you may need to supplement this with an external clock or crystal oscillator. Ensure that the internal oscillator’s frequency stability and accuracy meet your application’s timing requirements. Proper clock planning is essential to prevent timing violations, especially at higher speeds such as 120MHz, and to guarantee correct peripheral operation and data integrity.
Is the SPC5646CCK0VMJ1R suitable for use in safety-critical or harsh industrial environments, and what reliability considerations should I implement?
With an operating temperature range up to 105°C and RoHS3 compliance, the SPC5646CCK0VMJ1R can be used in many industrial scenarios. For safety-critical applications, ensure adherence to relevant standards (e.g., IEC 61508, ISO 26262). Implement robustness measures such as adequate board layout, proper grounding, redundancy where needed, and thorough testing under expected environmental conditions. It’s also advisable to consider additional hardware watchdogs and firmware safety mechanisms to enhance reliability in long-term operation.
How does the internal memory architecture of the SPC5646CCK0VMJ1R influence my firmware development and application scalability?
The 3MB Flash program memory and 256K RAM provide ample space for complex applications and firmware updates. This large memory footprint allows for extensive feature sets, over-the-air updates, or dual-boot configurations. Design firmware with efficient memory management and consider partitioning code and data to optimize access. For scalability, ensure your toolchain supports the full memory range and that the memory latency is acceptable for your real-time requirements, particularly at 120MHz operation speed.
What are the key integration considerations for using the SPC5646CCK0VMJ1R in high-speed communication applications such as Ethernet or CANbus?
The microcontroller includes integrated Ethernet and CANbus peripherals, supporting fast and reliable communication. Ensure that your PCB design maintains proper signal integrity by providing impedance control and minimizing electromagnetic interference (EMI). Pay attention to the power supply’s power noise filtering and ensure the peripheral clock domains are properly configured to avoid timing issues. Additionally, verify that your firmware correctly implements hardware abstraction and supports the specific protocols for your application.
How do I assess whether the SPC5646CCK0VMJ1R’s GPIO count and peripheral features meet my custom design's needs?
With 199 I/O pins and a broad set of peripherals, the SPC5646CCK0VMJ1R offers high integration capability. During the design phase, map all your required interfaces—communication, sensors, control signals—and verify that the available I/O pins can support these connections without conflicts. Use the device’s pin multiplexing capabilities to optimize peripheral usage. Also, consider future expansion; choose the part and package that provide enough flexibility for scaling your application.
Are there any specific considerations or limitations when deploying the SPC5646CCK0VMJ1R in low-power or battery-powered applications?
Although the device supports a broad voltage range (3V to 5.5V), it does not specify low-power modes explicitly. For battery-powered applications, implement power-saving features such as the WDT (Watchdog Timer), sleep modes, and dynamic clock scaling. Carefully evaluate the internal power consumption at different operating speeds and temperatures. Additional external circuitry might be necessary to optimize power efficiency, and firmware should be designed to maximize idle and standby power savings.
How does the product's package type (256-MAPBGA 17x17) affect manufacturing and PCB design considerations?
The 256-MAPBGA (17x17 mm package with a 17x17 ball grid array) offers high pin density but requires precise PCB layout, including controlled impedance traces, proper via placement, and adequate PCB pad design for reliable soldering. During manufacturing, ensure the assembly process accommodates BGA rework and inspection, using X-ray or AOI systems. The package size necessitates careful component placement to avoid interference with neighboring components, and adequate thermal vias or heat sinking should be incorporated for thermal management.
Can I use the SPC5646CCK0VMJ1R beyond its maximum operating temperature of 105°C, or in more extreme environments?
The specified maximum operating temperature is 105°C; exceeding this could compromise device reliability and safety. For environments with extreme temperatures, consider selecting devices with higher temperature ratings, or implement additional thermal management solutions such as heatsinks or active cooling. It is also essential to verify that the system design and materials can withstand the operational stresses encountered outside the specified temperature range to prevent failure.
What are the best practices for ensuring firmware migration or porting from older microcontrollers to the SPC5646CCK0VMJ1R?
Successful firmware migration requires understanding differences in core architecture, peripherals, and memory mapping. Use abstraction layers and hardware drivers compatible with the new device to facilitate porting. Validate peripheral configurations, communication protocols, and timing parameters thoroughly in hardware-in-the-loop testing. Also, leverage development tools provided by NXP and thoroughly review the existing firmware for assumptions based on the previous microcontroller’s features. Proper documentation and incremental migration strategies minimize risks during the transition.

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