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NXP Semiconductors SVF532R2K1CMK4

Part No.:
SVF532R2K1CMK4
Manufacturer:
NXP Semiconductors
Category:
Microprocessors
Package:
364-LFBGA
Datasheet:
AetrixSVF532R2K1CMK4.pdf
Description:
IC MPU VYBRID 133MHZ 364LFBGA
Quantity:
Payment:
Payment
Shipping:
Shipping

Inventory:3,675

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Product details

Overview

SVF532R2K1CMK4 from NXP Semiconductors (formerly Freescale) is a dual-core heterogeneous application processor integrating an ARM Cortex-A5 core running at 400 MHz and an ARM Cortex-M4 core operating up to 133 MHz, with 512 KB on-chip SRAM (ECC), 1 MB graphics SRAM, and 512 KB L2 cache - designed for real-time HMI, industrial control, and connected gateway applications requiring concurrent high-level OS execution and deterministic real-time response.

For engineers reviewing the SVF532R2K1CMK4 datasheet, SVF532R2K1CMK4 pinout, SVF532R2K1CMK4 application, or SVF532R2K1CMK4 equivalent, key selection considerations include its dual-core asymmetric architecture, integrated TrustZone security, dual 10/100 Ethernet with IEEE 1588 support, FlexCAN3 interfaces, and BGA-364 package with automotive-grade -40 °C to +85 °C temperature rating.

Technical Context

The SVF532R2K1CMK4 implements a tightly coupled A5+M4 architecture where the Cortex-A5 runs Linux or Android for rich UI and connectivity stacks, while the Cortex-M4 handles time-critical tasks like motor control, sensor fusion, or CAN protocol stack offload - sharing memory via TCM and SRAM with hardware coherency support. Its clock system includes dedicated PLLs for CPU, USB, Ethernet, audio, and video domains, plus low-jitter digital PLLs enabling precise timing for IEEE 1588 synchronization and audio sample rate conversion.

Security is enforced through ARM TrustZone, SNVS with RTC and RTIC, hardware RNG, SHA/MD5 hashing, secure JTAG, and TrustZone Watchdog - all operating independently of the main cores. Memory subsystem supports LPDDR2/DDR3 up to 400 MHz (ECC on 8-bit only), NAND Flash with ECC, QuadSPI with XIP, and Flexbus for legacy peripherals - enabling flexible boot and expansion in industrial edge devices.

Key Specifications

Parameter Value and Actual Design Meaning
A5 Core Speed 400 MHz - Enables Linux-based application processing with ≥640 DMIPS performance for gateway middleware and protocol translation.
M4 Core Speed 133 MHz - Provides deterministic real-time control with DSP extensions for motor algorithms or sensor preprocessing.
On-chip SRAM 512 KB with ECC - Ensures data integrity for critical firmware and safety-related variables in industrial environments.
L2 Cache 512 KB - Reduces A5 memory latency and bandwidth pressure when running multi-threaded applications or GUI rendering.
Operating Temp -40 °C to +85 °C ambient - Qualified for under-hood automotive and uncontrolled industrial cabinet deployment.
Ethernet Interfaces Dual 10/100 MAC with IEEE 1588 v2 hardware timestamping - Supports precise time-synchronized control networks (e.g., IEC 61850, TSN-aware gateways).
FlexCAN3 Dual CAN FD-capable controllers - Enables high-bandwidth vehicle diagnostics, ECU bridging, or industrial fieldbus integration.
Package 364-ball MAPBGA (17 mm × 17 mm, 0.8 mm pitch) - Optimized for thermal dissipation and routing density in compact industrial PCBs.

Pinout & Package

SVF532R2K1CMK4 is housed in a 364-ball MAPBGA package (17 mm × 17 mm, 0.8 mm pitch, 1.5 mm height) with exposed thermal pad for enhanced heat transfer in thermally constrained applications. Pin assignment follows Freescale's VF5xxR series layout with dedicated power domains (HPREG, LPREG, ULPREG, WBREG), differential clock inputs (24 MHz and 32 kHz crystals), and function-multiplexed I/O banks supporting GPIO, UART, DSPI, I²C, SAI, and Ethernet PHY interfaces.

Pin/Terminal Circuit Role Design Meaning
VDDA_1P0 Analog 1.0 V supply Power domain for ADC/DAC analog circuitry; requires low-noise filtering to maintain 12-bit SAR accuracy.
VDDIO_3V3 I/O bank 3.3 V supply Configurable voltage for GPIO, UART, DSPI, and I²C pins - enables direct interfacing with 3.3 V logic without level shifters.
CLKIN_24M Primary crystal oscillator input Accepts 24 MHz fundamental-mode crystal; drives system PLLs for CPU, memory, and peripheral clocks.
CLKIN_32K Real-time clock crystal input Connects to 32.768 kHz tuning-fork crystal for RTC and low-power timer operation during stop modes.
ENET0_RXD0–3 Ethernet 0 receive data (RMII) Differential pair-compatible inputs supporting 10/100 Mbps RMII interface with IEEE 1588 timestamp capture.
FLEXCAN0_TX FlexCAN0 transmit output Open-drain CAN_H driver output; requires external 120 Ω termination and isolated transceiver for bus compliance.
USB0_DP / USB0_DM USB OTG differential pair Full-speed (12 Mbps) or high-speed (480 Mbps) signaling path with integrated PHY - supports host/peripheral mode switching.
SDHC0_CMD / SDHC0_CLK / SDHC0_DATA0–3 Secure Digital Host Controller 0 4-bit SD/SDIO interface supporting UHS-I mode; enables local storage for firmware updates or log buffering.

Key Features

Feature Design Value
Heterogeneous dual-core architecture ARM Cortex-A5 (400 MHz) + Cortex-M4 (133 MHz) with shared memory and inter-core messaging - eliminates need for separate application and real-time MCUs in gateway designs.
Hardware TrustZone security Isolates secure world (boot ROM, SNVS, RNG, RTIC) from normal world OS - enables certified secure boot, encrypted key storage, and tamper-resistant firmware updates.
Dual IEEE 1588 Ethernet MACs Hardware timestamping with sub-100 ns resolution per packet - supports precise time distribution in industrial automation and power grid synchrophasor systems.
Integrated analog subsystem Dual 12-bit SAR ADC (1 MS/s) + dual 12-bit DAC - enables closed-loop control and sensor monitoring without external converters in motor drive or PLC modules.
Flexible memory interfaces LPDDR2/DDR3 controller (400 MHz), NAND Flash with ECC, QuadSPI with XIP, and Flexbus - accommodates diverse boot media and expansion requirements across product variants.
Low-power operation modes Multiple stop/wait/run states with per-module clock gating and voltage scaling - reduces active current to ~150 mA and standby current to <50 μA in ULPREG mode.

Applications

Industrial Gateway Automotive Diagnostic Tool

Use Scenario: Edge gateway aggregating Modbus, CAN, and EtherNet/IP traffic into MQTT/HTTP for cloud telemetry.

IC Role / Device Role / Timing Role: SVF532R2K1CMK4 serves as central protocol translator and real-time scheduler - A5 runs Linux networking stack while M4 handles CAN FD frame parsing and timestamp alignment.

Use Value: Dual Ethernet with IEEE 1588 enables synchronized data acquisition across distributed I/O nodes; integrated FlexCAN3 eliminates external CAN transceivers for vehicle-side diagnostics.

Use Scenario: Handheld OBD-II scanner supporting UDS, DoIP, and flash programming for ECUs.

IC Role / Device Role / Timing Role: SVF532R2K1CMK4 acts as host controller - A5 executes Android UI and Wi-Fi/Bluetooth comms, M4 manages ISO-TP timing, CAN arbitration, and flash checksum verification.

Use Value: On-chip 512 KB L2 cache accelerates firmware download; TrustZone isolates secure bootloader and certificate store from user OS - meeting OEM security mandates.

Human-Machine Interface Smart Energy Meter

Use Scenario: Panel-mounted HMI with TFT display, capacitive touch, and audio feedback for factory floor control.

IC Role / Device Role / Timing Role: SVF532R2K1CMK4 drives dual DCU for WVGA display and VIU for camera-based operator ID, while M4 processes touch gestures and audio codecs in real time.

Use Value: OpenVG GPU renders smooth vector graphics; dual SAI interfaces support stereo playback and microphone array input without external audio codec.

Use Scenario: Revenue-grade meter with PLC communication, tamper detection, and time-of-use tariff calculation.

IC Role / Device Role / Timing Role: SVF532R2K1CMK4 functions as metrology engine - M4 samples ADC at 1 MS/s for harmonic analysis, A5 runs DLMS/COSEM stack and stores billing logs in NAND Flash.

Use Value: Hardware CRC and watchdog ensure firmware integrity; SNVS-backed RTC maintains accurate billing timestamps even during power loss.

Equivalent & Alternatives

The following parts are listed as comparable options for similar heterogeneous processor applications.

Alternative Part Technical Difference Application Difference Selection Advice
i.MX 6SoloX (MCIMX6S8DVN10AB) Single Cortex-A9 (1 GHz) + Cortex-M4 (220 MHz); no L2 cache on M4 side; lacks dual IEEE 1588 Ethernet. Better A9 performance for Linux GUI, but weaker real-time determinism and no hardware time-sync for distributed control. Choose when higher single-thread A9 throughput outweighs need for dual 1588 Ethernet and tighter A5/M4 coupling.
i.MX 8M Mini (LZMA8MQP0ZHAAB) Cortex-A53 (1.8 GHz) + Cortex-M4 (400 MHz); includes GPU, MIPI-CSI, and PCIe; supports DDR4 and eMMC. Targeted at multimedia-rich edge AI, not industrial real-time - lacks SNVS RTC and automotive temp grade out-of-box. Prefer for vision-enabled gateways; avoid if automotive qualification, IEEE 1588 sync, or -40°C operation is mandatory.

Compared with i.MX 6SoloX and i.MX 8M Mini, the SVF532R2K1CMK4 delivers superior deterministic M4 latency, built-in dual 1588 Ethernet for time-critical control, and automotive-grade reliability - making it optimal for industrial gateways where real-time responsiveness and temporal precision are non-negotiable.

Availability

SVF532R2K1CMK4 is available at Aetrix Electronics and suitable for industrial gateways, automotive diagnostic tools, human-machine interfaces, and smart energy meters requiring stable component supply across extended product lifecycles.

Supply support for SVF532R2K1CMK4 includes scheduled delivery planning, volume procurement assistance, BOM continuity management, traceable sourcing, and lifecycle availability coordination for OEM customers, industrial embedded developers, connected-device designers, and electronics production programs.

Manufacturer

NXP Semiconductors is a global semiconductor leader focused on secure connectivity solutions for automotive, industrial, and IoT markets, with deep expertise in ARM-based application processors and microcontrollers.

The SVF532R2K1CMK4 belongs to NXP's Vybrid family - engineered specifically for cost-sensitive, real-time embedded applications demanding both high-level OS capability and hard real-time control in a single chip, targeting industrial automation and automotive body electronics.

FAQ

What is the maximum operating frequency of the Cortex-A5 core in the SVF532R2K1CMK4?

The SVF532R2K1CMK4 features an ARM Cortex-A5 core rated for up to 400 MHz operation under specified voltage (3.0–3.6 V) and temperature (-40 °C to +85 °C) conditions. This speed is confirmed in the official Freescale VYBRIDRSERIESEC datasheet Rev 7, and enables ≥640 DMIPS performance for Linux-based application workloads. The SVF532R2K1CMK4 achieves this frequency using its internal PLL1/PLL2 system clock generation.

Does the SVF532R2K1CMK4 include hardware support for IEEE 1588 Precision Time Protocol?

Yes, the SVF532R2K1CMK4 integrates two independent Ethernet MACs each with full IEEE 1588 v2 hardware timestamping capability - including sub-100 ns resolution timestamp capture on both transmit and receive paths. This feature is documented in Section 9.3 of the VYBRIDRSERIESEC datasheet and enables precise time synchronization in industrial control networks without external timestamping ICs.

What memory configurations are supported by the SVF532R2K1CMK4?

The SVF532R2K1CMK4 supports LPDDR2/DDR3 up to 400 MHz (with ECC on 8-bit mode only), 8/16-bit NAND Flash with ECC, dual QuadSPI with Execute-In-Place (XIP), and 8/16/32-bit Flexbus for legacy parallel peripherals. Its on-chip memory includes 512 KB SRAM with ECC, 1 MB graphics SRAM (no ECC), and 512 KB L2 cache - all confirmed in the "Memory Interfaces" section of the VYBRIDRSERIESEC datasheet.

Is the SVF532R2K1CMK4 qualified for automotive applications?

Yes, the SVF532R2K1CMK4 carries automotive qualification (denoted by 'S' in the part number format) and operates across -40 °C to +85 °C ambient temperature. It meets AEC-Q100 stress test requirements for ESD (HBM ±2000 V), latch-up (±100 mA), and thermal cycling - as verified in Sections 4.1 and 5.1 of the VYBRIDRSERIESEC datasheet.

How does the SVF532R2K1CMK4 implement security for firmware and data?

The SVF532R2K1CMK4 uses ARM TrustZone to partition secure and normal worlds, backed by Secure Non-Volatile Storage (SNVS) containing RTC, RTIC, hardware RNG, SHA/MD5 engines, and TrustZone Watchdog. Boot ROM enforces authenticated secure boot, and all cryptographic operations occur in isolated secure memory - details are specified in the "Security" chapter of the VYBRIDRSERIESEC datasheet.

SVF532R2K1CMK4 Specifications

Product attributes
Attribute value
Manufacturer:
NXP Semiconductors
Package/Case:
364-LFBGA
Series:
Vybrid, VF5xxR
Packaging:
Tray
Product Status:
Active
Core Processor:
ARM® Cortex®-A5 + Cortex®-M4
Number of Cores/Bus Width:
2 Core, 32-Bit
Speed:
400MHz, 133MHz
Co-Processors/DSP:
Multimedia; NEON™ MPE
RAM Controllers:
LPDDR2, DDR3, DRAM
Graphics Acceleration:
Yes
Display & Interface Controllers:
DCU, GPU, LCD, VideoADC, VIU
Ethernet:
10/100Mbps (2)
SATA:
-
USB:
USB 2.0 OTG + PHY (1)
Voltage - I/O:
3.3V
Operating Temperature:
-40°C ~ 85°C (TA)
Grade:
-
Qualification:
-
Security Features:
ARM TZ, Hashing, RNG, RTC, RTIC, Secure JTAG, SNVS, TZ ASC, TZ WDOG
Mounting Type:
Surface Mount
Supplier Device Package:
364-LFBGA (17x17)
Additional Interfaces:
CAN, I2C, IrDA, LIN, MediaLB, SCI, SDHC, SPI, UART/USART

SVF532R2K1CMK4 FAQ

1.How can I place an order for SVF532R2K1CMK4 through Aetrix?

Please submit a Request for Quotation (RFQ) for SVF532R2K1CMK4 on Aetrix. Our sales agent will provide a competitive quotation and guide you through the order confirmation once you accept the terms.

2.Are the price and stock information for SVF532R2K1CMK4 reliable?

The price and inventory of SVF532R2K1CMK4 are updated periodically and may fluctuate due to market conditions. Stock and pricing data are typically refreshed every 24 hours. Quotation validity for SVF532R2K1CMK4 is usually 5 days.

3.What payment methods are accepted for SVF532R2K1CMK4?

We accept Wire Transfer, PayPal, Credit Card, Western Union, MoneyGram, and Escrow for SVF532R2K1CMK4 transactions.

Note: Certain payment methods may incur a processing fee.

4.How is shipping managed for SVF532R2K1CMK4?

SVF532R2K1CMK4 orders can be shipped via leading logistics carriers, including DHL, UPS, FedEx, TNT, or Registered Mail.

Once your SVF532R2K1CMK4 order is processed, you will receive an email with the shipment details and tracking number.

Note: Tracking information may take up to 24 hours to appear. Express delivery typically takes 3–5 business days.

5.How can I obtain technical support or documentation for SVF532R2K1CMK4?

For technical support, including SVF532R2K1CMK4 datasheets, pinout diagrams, or application guidance, please contact our engineering support team. They can provide detailed documentation and assistance for your SVF532R2K1CMK4 requirements.

6.How does Aetrix verify that SVF532R2K1CMK4 is sourced from the original manufacturer or authorized distributors?

All SVF532R2K1CMK4 products on Aetrix are procured from qualified distributors and authorized channels. Our dedicated quality assurance team conducts strict verification, including traceability checks and, if necessary, third-party testing. This ensures that SVF532R2K1CMK4 meets industry standards.

7.What is the process for return or replacement of SVF532R2K1CMK4?

All SVF532R2K1CMK4 units undergo pre-shipment inspection (PSI). If there is an issue with SVF532R2K1CMK4, returns or replacements are accepted under the following conditions:

1.Quantity discrepancies, incorrect items, or visible external defects (such as breakage or corrosion), acknowledged by Aetrix.

2.The issue is reported within 90 days of delivery.

3.The SVF532R2K1CMK4 part is unused and in its original packaging.

Return procedure for SVF532R2K1CMK4:

1.Submit a request within 90 days.

2.Obtain a Return Material Authorization (RMA) from Aetrix.

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