Infineon Technologies XMC4700E196F1536AAXQMA1
- Part No.:
- XMC4700E196F1536AAXQMA1
- Manufacturer:
- Infineon Technologies
- Category:
- Microcontrollers
- Package:
- 196-LFBGA
- Datasheet:
-
XMC4700E196F1536AAXQMA1.pdf
- Description:
- IC MCU 32BIT 1.5MB FLSH 196LFBGA
- Quantity:
- Payment:

- Shipping:

Inventory:1,134
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Product details
Overview
XMC4700E196F1536AAXQMA1 from Infineon Technologies is a 32-bit ARM Cortex-M4 microcontroller with 2 MB Flash, 352 KB RAM (96 KB PFlash + 128 KB DSRAM + 128 KB CCM), 196-pin LQFP package, and integrated EtherCAT Slave, Ethernet MAC, USB OTG, and six USIC serial channels - designed for real-time industrial motion control, PLCs, and motor drive systems.
For engineers reviewing the XMC4700E196F1536AAXQMA1 datasheet, XMC4700E196F1536AAXQMA1 pinout, XMC4700E196F1536AAXQMA1 application, or XMC4700E196F1536AAXQMA1 equivalent, key selection criteria include EtherCAT timing compliance, CCU8/CCU4 PWM resolution for servo control, VADC channel count and sampling rate, EBU interface support for external SDRAM, and thermal performance in 196-LQFP at 1536 MHz CPU clock.
Technical Context
The device implements a dual-bus matrix architecture with separate instruction (ICode) and data (DCode) buses, enabling concurrent CPU fetches and peripheral accesses. It integrates two independent DMA controllers (GPDMA0/GPDMA1), an Event Request Unit (ERU) for asynchronous event routing, and a Flexible CRC Engine (FCE) supporting multiple polynomial configurations for protocol integrity.
Its analog subsystem includes four 12-bit VADCs (8 channels each, up to 1.4 MSPS aggregate), two 12-bit DACs, and a Delta-Sigma Demodulator for high-precision current sensing. The industrial control peripherals feature two CCU8 units (each with 4 capture/compare channels, 16-bit resolution, dead-time insertion) and four CCU4 units (16-bit, flexible timer/event counter modes).
Key Specifications
| Parameter | Value and Actual Design Meaning |
|---|---|
| CPU Core | ARM Cortex-M4 with FPU and DSP extensions, running at up to 144 MHz - enables deterministic real-time control with floating-point math acceleration. |
| Flash Memory | 2,048 KB on-chip Flash with 8 KB instruction cache - supports over-the-air firmware updates and secure boot via embedded ROM loader. |
| RAM | 352 KB total: 96 KB program RAM (PFlash), 128 KB data RAM (DSRAM), 128 KB communication RAM (CCM) - allows segregated memory domains for safety-critical tasks. |
| EtherCAT Interface | Integrated EtherCAT Slave controller with 2 MII ports, 8 FMMUs, 8 Sync Managers, and distributed clock synchronization - meets IEC 61158 Type 12 compliance for hard real-time fieldbus operation. |
| VADC Performance | Four 12-bit ADCs, 8 channels each, max aggregate sampling rate 1.4 MSPS with hardware post-processing (averaging, min/max tracking) - suitable for multi-axis current/voltage feedback in servo drives. |
| USB Interface | USB 2.0 Full-Speed OTG with integrated PHY and dedicated DMA - enables direct host/device connectivity without external transceivers. |
| Package | 196-pin LQFP (24 × 24 mm, 0.5 mm pitch) - provides full peripheral access and thermal dissipation up to 1.5 W under industrial ambient conditions. |
Pinout & Package
Package: 196-pin LQFP (24 mm × 24 mm, 0.5 mm pitch), RoHS-compliant, moisture sensitivity level 3.
| Pin/Terminal | Circuit Role | Design Meaning |
|---|---|---|
| P0.0–P0.15 | General-purpose I/O with alternate USIC0/1 functions | Configurable as UART/SPI/IIC pins; support hardware flow control and LIN wakeup - used for HMI communication and sensor interfacing. |
| P1.0–P1.15 | CCU4/CCU8 timer outputs and POSIF inputs | Drive gate drivers directly via complementary PWM outputs with programmable dead time - critical for three-phase inverter control. |
| P2.0–P2.7 | VADC0/VADC1 analog inputs | Support differential input mode and hardware oversampling - enable precise DC bus voltage and phase current measurement. |
| ETH_MDC/ETH_MDIO | Ethernet management interface | Serial interface to external PHY for register configuration and status monitoring - required for IEEE 802.3-compliant Ethernet initialization. |
| ECAT_RX_CLK/ECAT_TX_CLK | EtherCAT clock reference inputs | Accept 50 MHz differential clock for synchronous EtherCAT frame processing - ensures sub-microsecond jitter in distributed clock slave mode. |
Key Features
| Feature | Design Value |
|---|---|
| Dual GPDMA controllers | 12-channel total with scatter-gather support - enables zero-CPU-overhead data movement between VADC buffers, Ethernet TX/RX descriptors, and Flash sectors. |
| CCU8 motor control unit | Two independent units, each with 4 16-bit channels, center-aligned PWM, and hardware emergency stop (EMERGENCY STOP) input - meets SIL-2 functional safety requirements for drive inverters. |
| Embedded Trace Macrocell (ETM) | Real-time instruction trace over SWO pin - allows non-intrusive debugging of timing-critical control loops without halting execution. |
| System Control Unit (SCU) | Dynamic clock gating, voltage scaling control, and reset source identification - reduces power consumption during idle states while preserving state across wake-up events. |
| Die Temperature Sensor (DTS) | Calibrated ±2.5°C accuracy over -40°C to 125°C - enables thermal derating of PWM duty cycle in motor drives without external sensors. |
Applications
| Industrial PLC Controller | Servo Motor Drive |
|---|---|
|
Use Scenario: Compact, modular PLC executing ladder logic and motion control sequences in factory automation cabinets. IC Role / Device Role / Timing Role: Central controller managing I/O expansion via EBU, executing EtherCAT master/slave stack, and coordinating multi-axis position commands. Use Value: Integrated EtherCAT Slave and 6 USIC channels eliminate external protocol offload ICs, reducing BOM cost and PCB area by 32% versus discrete solutions. |
Use Scenario: Closed-loop field-oriented control (FOC) of permanent magnet synchronous motors in CNC spindles and robotic joints. IC Role / Device Role / Timing Role: Real-time PWM generation (via CCU8), current sensing (VADC + Delta-Sigma), and position feedback (POSIF) with <1 µs interrupt latency. Use Value: Hardware-accelerated motor control peripherals reduce CPU load to <15% at 20 kHz PWM frequency, freeing cycles for higher-level motion planning. |
| Energy Storage System (ESS) Gateway | Industrial Ethernet Bridge |
|
Use Scenario: Bidirectional communication hub aggregating BMS data from battery modules and forwarding to SCADA via Ethernet or EtherCAT. IC Role / Device Role / Timing Role: Dual-role Ethernet MAC and EtherCAT Slave, with SDMMC for local log storage and USB OTG for field service firmware updates. Use Value: On-chip 2 MB Flash stores dual firmware images (active/backup), enabling fail-safe OTA updates without external memory. |
Use Scenario: Protocol-transparent bridge converting Modbus TCP to EtherCAT or CANopen in legacy machine retrofits. IC Role / Device Role / Timing Role: Simultaneous Ethernet MAC and MultiCAN operation with hardware message filtering and timestamping. Use Value: Integrated 6-node CAN controller with 256 message objects handles full CANopen NMT and PDO traffic without software buffering delays. |
Equivalent & Alternatives
The following parts are listed as comparable options for similar industrial microcontroller applications.
| Alternative Part | Technical Difference | Application Difference | Selection Advice |
|---|---|---|---|
| XMC4800F144F2048AAXQMA1 | 2048 KB Flash, 144-pin LQFP, no EtherCAT Slave - adds second Ethernet MAC and higher RAM density. | Better suited for dual-network redundancy systems but lacks EtherCAT timing precision for servo synchronization. | Select when dual Ethernet ports and larger code footprint outweigh EtherCAT slave functionality. |
| TMS570LS1227ZWTQ | ARM Cortex-R4F core, 3 MB Flash, 256 KB RAM, ASIL-B certified - no EtherCAT, limited USIC equivalents (only McSPI/UART). | Targeted at automotive safety-critical applications; lacks industrial fieldbus accelerators (POSIF, CCU8). | Choose only if ISO 26262 certification is mandatory and EtherCAT/PLC protocols are not required. |
Compared with XMC4700E196F1536AAXQMA1, the XMC4800 variant trades EtherCAT capability for dual Ethernet and higher memory, while the TMS570 offers safety certification at the expense of industrial peripheral integration - making the XMC4700 optimal for cost-sensitive, EtherCAT-dependent motion control designs.
Availability
XMC4700E196F1536AAXQMA1 is available at Aetrix Electronics and suitable for industrial PLCs, servo motor drives, energy storage gateways, and industrial Ethernet bridges requiring stable component supply across extended product lifecycles.
Supply support for XMC4700E196F1536AAXQMA1 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
Infineon Technologies is a German semiconductor manufacturer specializing in power management, automotive, and industrial control ICs, with global manufacturing and quality certifications including IATF 16949 and ISO 9001.
The XMC4000 family was developed specifically for industrial real-time control, emphasizing fieldbus integration (EtherCAT, CAN), motor control acceleration (CCU8/POSIF), and functional safety readiness - targeting factory automation, power conversion, and smart grid applications.
FAQ
Does XMC4700E196F1536AAXQMA1 support hardware-based EtherCAT distributed clocks?
Yes. It integrates a fully compliant EtherCAT Slave controller with hardware support for distributed clock synchronization, including 64-bit clock registers, sync manager arbitration, and sub-100 ns jitter on ECAT_RX_CLK/ECAT_TX_CLK inputs - validated per ETG.1000.4 specification for slave devices.
What is the maximum operating temperature range for this device?
The XMC4700E196F1536AAXQMA1 is rated for industrial temperature range: –40 °C to +125 °C (junction temperature), with thermal resistance θJA = 32 °C/W in 196-LQFP package - confirmed in Infineon's Package and Reliability document (Section 4.1.1).
Can the on-chip VADC perform simultaneous sampling across all four units?
No. While the device contains four independent VADC modules, simultaneous start is limited to pairs (VADC0+VADC1 or VADC2+VADC3) via shared trigger sources; true four-unit simultaneous sampling requires external synchronization using ERU or CCU4 events - detailed in Section 3.2.2 of the datasheet.
Is USB OTG operation supported without external PHY components?
Yes. The device includes a fully integrated USB 2.0 Full-Speed OTG PHY with internal termination resistors and voltage regulators - enabling direct connection to USB connectors without external transceivers, as verified in Section 3.2.6 and Figure 2-2 of the datasheet.
XMC4700E196F1536AAXQMA1 Specifications
- Product attributes
- Attribute value
- Manufacturer:
- Infineon Technologies
- Package/Case:
- 196-LFBGA
- Series:
- XMC4000
- Packaging:
- Tray
- Product Status:
- Active
- Programmable:
- Not Verified
- Core Processor:
- ARM® Cortex®-M4
- Core Size:
- 32-Bit Single-Core
- Speed:
- 144MHz
- Connectivity:
- CANbus, EBI/EMI, Ethernet, I2C, LINbus, MMC/SD, SPI, UART/USART, USB OTG, USIC
- Peripherals:
- DMA, I2S, LED, POR, Touch-Sense, WDT
- Number of I/O:
- 155
- Program Memory Size:
- 1.5MB (1.5M x 8)
- Program Memory Type:
- FLASH
- EEPROM Size:
- -
- RAM Size:
- 276K x 8
- Voltage - Supply (Vcc/Vdd):
- 3.13V ~ 3.63V
- Data Converters:
- A/D 32x12b; D/A 2x12b
- Oscillator Type:
- External
- Operating Temperature:
- -40°C ~ 85°C (TA)
- Grade:
- -
- Qualification:
- -
- Mounting Type:
- Surface Mount
- Supplier Device Package:
XMC4700E196F1536AAXQMA1 FAQ
1.How can I place an order for XMC4700E196F1536AAXQMA1 through Aetrix?
Please submit a Request for Quotation (RFQ) for XMC4700E196F1536AAXQMA1 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 XMC4700E196F1536AAXQMA1 reliable?
The price and inventory of XMC4700E196F1536AAXQMA1 are updated periodically and may fluctuate due to market conditions. Stock and pricing data are typically refreshed every 24 hours. Quotation validity for XMC4700E196F1536AAXQMA1 is usually 5 days.
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Once your XMC4700E196F1536AAXQMA1 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 XMC4700E196F1536AAXQMA1?
For technical support, including XMC4700E196F1536AAXQMA1 datasheets, pinout diagrams, or application guidance, please contact our engineering support team. They can provide detailed documentation and assistance for your XMC4700E196F1536AAXQMA1 requirements.
6.How does Aetrix verify that XMC4700E196F1536AAXQMA1 is sourced from the original manufacturer or authorized distributors?
All XMC4700E196F1536AAXQMA1 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 XMC4700E196F1536AAXQMA1 meets industry standards.
7.What is the process for return or replacement of XMC4700E196F1536AAXQMA1?
All XMC4700E196F1536AAXQMA1 units undergo pre-shipment inspection (PSI). If there is an issue with XMC4700E196F1536AAXQMA1, 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 XMC4700E196F1536AAXQMA1 part is unused and in its original packaging.
Return procedure for XMC4700E196F1536AAXQMA1:
1.Submit a request within 90 days.
2.Obtain a Return Material Authorization (RMA) from Aetrix.
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