Infineon Technologies XMC4104F64K128BAXQMA1
- Part No.:
- XMC4104F64K128BAXQMA1
- Manufacturer:
- Infineon Technologies
- Category:
- Microcontrollers
- Package:
- 64-LQFP Exposed Pad
- Datasheet:
-
XMC4104F64K128BAXQMA1.pdf
- Description:
- IC MCU 32BIT 128KB FLASH 64LQFP
- Quantity:
- Payment:

- Shipping:

Inventory:4,890
Please send an inquiry. Send us your inquiry, and we will respond immediately.
Product details
Overview
XMC4104F64K128BAXQMA1 from Infineon Technologies is an ARM® Cortex®-M4 32-bit microcontroller with 128 KB on-chip Flash, 20 KB SRAM, 64-pin LQFP package, and industrial temperature range (−40°C to +125°C). It integrates dual 12-bit VADCs (8 channels each), two 12-bit DACs, four HRPWM channels, CCU4/CCU8 timers, MultiCAN with two nodes, four USIC channels supporting UART/I²C/I²S/SPI/LIN, and USB 2.0 device interface - targeted for motor control and industrial power conversion systems.
For engineers reviewing the XMC4104F64K128BAXQMA1 datasheet, XMC4104F64K128BAXQMA1 pinout, XMC4104F64K128BAXQMA1 application, or XMC4104F64K128BAXQMA1 equivalent, key selection criteria include Flash/SRAM capacity, HRPWM resolution (150 ps), CAN node count, USIC flexibility, and −40°C to +125°C operation in compact LQFP-64 packaging.
Technical Context
The XMC4104F64K128BAXQMA1 implements a deterministic real-time architecture centered on the ARM Cortex-M4 core with FPU and MPU, coupled with hardware-accelerated peripherals including CCU8 for high-precision motor timing and POSIF for servo position feedback. Its dual VADC subsystem supports simultaneous sampling with out-of-range comparators for fast overcurrent detection.
USB 2.0 device interface includes integrated PHY; MultiCAN supports full-CAN protocol with 64 message objects and up to 1 Mbit/s data rate; four USIC channels are independently configurable as UART, SPI (single/dual/quad), I²C, I²S, or LIN - enabling consolidated communication in space-constrained industrial nodes.
Key Specifications
| Parameter | Value and Actual Design Meaning |
|---|---|
| Core | ARM Cortex-M4 with FPU and MPU - enables floating-point math and memory isolation for safety-critical firmware. |
| Flash / SRAM | 128 KB Flash / 20 KB SRAM - sufficient for complex motor control algorithms with bootloader and parameter storage. |
| VADC | Dual 12-bit, 8-channel VADC with out-of-range comparator - supports synchronized current/voltage sampling and hardware-triggered fault response. |
| HRPWM | 4 channels, 150 ps resolution - achieves precise dead-time control and phase-shifted outputs for three-phase inverters. |
| CAN Interface | MultiCAN with 2 nodes, 64 message objects, up to 1 Mbit/s - meets automotive-grade messaging density and real-time latency in industrial networks. |
| USB | USB 2.0 device with integrated PHY - enables direct PC-based configuration, firmware updates, and diagnostics without external transceiver. |
| Temperature Range | −40°C to +125°C - qualified for under-hood or enclosed drive cabinet environments without derating. |
| Package | LQFP-64 (PG-LQFP-64-19) - surface-mount compatible with standard reflow profiles and accessible debug/test pins. |
Pinout & Package
Package: PG-LQFP-64-19 (10 mm × 10 mm, 0.5 mm pitch, exposed thermal pad).
| Pin/Terminal | Circuit Role | Design Meaning |
|---|---|---|
| VDDP / VSSP | Core power supply / ground | 1.3 V ±5% core domain supply; decoupling required within 1 cm for stable CPU/flash operation. |
| VDDA / VSSA | Analog supply / ground | 3.3 V ±5% analog domain; isolated from digital rails to maintain 12-bit ADC accuracy. |
| P0.0–P0.15 | General-purpose I/O port 0 | Configurable as push-pull, open-drain, or analog input; supports JTAG/SWD debug and ERU event routing. |
| P1.0–P1.15 | General-purpose I/O port 1 | Includes dedicated USIC0/USIC1 signals and CCU40/CCU41 capture inputs for timer synchronization. |
| P2.0–P2.7 | High-resolution PWM output group | HRPWM0–HRPWM3 outputs with complementary pairs and programmable dead time - directly drives gate drivers. |
| CAN0_TX / CAN0_RX | MultiCAN node 0 differential interface | 5 V-tolerant, slew-rate controlled; requires external 120 Ω termination and common-mode choke for EMC compliance. |
| USBDP / USBDM | USB 2.0 differential data pair | Integrated PHY eliminates external transceiver; requires 1.5 kΩ pull-up on USBDP for device enumeration. |
Key Features
| Feature | Design Value |
|---|---|
| CCU8 Timer Unit | 8-channel, 32-bit capture/compare unit with shadow transfer and emergency stop - enables field-oriented control (FOC) with <1 µs interrupt latency. |
| POSIF Interface | Dedicated position sensor interface supporting incremental encoder, SSI, and Hall sensor inputs - eliminates software polling for rotor position. |
| Flexible CRC Engine (FCE) | Programmable polynomial engine supporting CRC-8/16/32 with byte/word streaming - accelerates firmware signature verification and communication frame integrity checks. |
| LEDTS Controller | Capacitive touch sensing with 16-channel scan and proximity detection - enables robust HMI on control panels without external ICs. |
| System Control Unit (SCU) | Centralized clock gating, reset management, and voltage monitoring - simplifies power state transitions and brown-out recovery sequences. |
Applications
| Industrial Motor Drive | Solar Inverter Control |
|---|---|
|
Use Scenario: Closed-loop vector control of 3-phase PMSM/BLDC motors in HVAC compressors and pumps. IC Role / Device Role / Timing Role: Real-time execution of FOC algorithm, synchronized ADC sampling, and sub-microsecond HRPWM update for IGBT/SiC gate drivers. Use Value: 150 ps HRPWM resolution enables precise dead-time compensation, reducing shoot-through risk and improving inverter efficiency by ≥1.2% at 16 kHz switching. |
Use Scenario: MPPT tracking and grid-synchronization in single-phase string inverters. IC Role / Device Role / Timing Role: Dual VADC channels sample DC-link voltage/current and AC grid voltage simultaneously; CCU8 generates isolated PWM for transformerless topology. Use Value: Integrated MultiCAN supports rapid firmware updates across inverter clusters via central gateway, cutting commissioning time by 40% versus UART-based alternatives. |
| Programmable Logic Controller (PLC) I/O Module | Industrial Ethernet Gateway |
|
Use Scenario: Digital I/O expansion module with analog input conditioning and local logic execution. IC Role / Device Role / Timing Role: Processes 16-channel 12-bit analog inputs, executes ladder logic in real time, and communicates via CANopen over MultiCAN. Use Value: On-chip 128 KB Flash stores multiple firmware variants and configuration profiles, eliminating external EEPROM and reducing BOM cost by $0.38/unit. |
Use Scenario: Protocol translation between Modbus RTU (RS-485) and EtherNet/IP in factory automation gateways. IC Role / Device Role / Timing Role: Four USIC channels concurrently run RS-485 UART, I²C for PHY management, and SPI for external flash, while USB handles configuration via PC tool. Use Value: Single-chip solution replaces dual-MCU designs, reducing PCB area by 35% and eliminating inter-processor synchronization overhead. |
Equivalent & Alternatives
The following parts are listed as comparable options for similar industrial microcontroller applications.
| Alternative Part | Technical Difference | Application Difference | Selection Advice |
|---|---|---|---|
| XMC4204F64K256BAXQMA1 | 256 KB Flash, 40 KB SRAM, same peripherals and package - higher memory headroom for OTA updates and dual-bank bootloading. | Better suited for applications requiring secure firmware rollback or runtime parameter logging. | Select when future firmware growth or functional safety logging exceeds 128 KB constraints. |
| STM32H743VIH6 | ARM Cortex-M7, 2 MB Flash, 1 MB RAM, no integrated CAN PHY - requires external CAN transceiver; lacks HRPWM and POSIF. | Stronger general-purpose compute but weaker motor-specific peripheral integration. | Prefer for AI-edge inference or multi-protocol gateway roles where CAN is secondary and raw CPU throughput dominates. |
Compared with XMC4204F64K256BAXQMA1, this part trades memory capacity for lower cost and footprint; versus STM32H743VIH6, it delivers superior motor control integration (HRPWM, POSIF, CCU8) with reduced external component count and deterministic latency.
Availability
XMC4104F64K128BAXQMA1 is available at Aetrix Electronics and suitable for industrial motor drives, solar inverters, PLC I/O modules, and industrial Ethernet gateways requiring stable component supply across extended temperature ranges and long production lifecycles.
Supply support for XMC4104F64K128BAXQMA1 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 leadership in silicon carbide and embedded control solutions.
The XMC4000 family targets industrial connectivity and motion control, delivering tightly integrated analog/motor/peripheral subsystems optimized for deterministic real-time performance in harsh environments.
FAQ
Does XMC4104F64K128BAXQMA1 support hardware encryption for secure boot?
No. The XMC4104F64K128BAXQMA1 does not include a dedicated cryptographic accelerator or hardware AES engine. Secure boot must be implemented using software-based SHA-256 and RSA-2048 routines in Flash, with integrity verified via the on-chip ROM bootloader's signature check capability. External secure element integration is recommended for production-grade key storage.
What is the maximum achievable PWM frequency with HRPWM in this device?
The HRPWM module supports up to 150 MHz counter clock, enabling PWM frequencies exceeding 10 MHz at 100% duty cycle resolution. At 150 ps step resolution, practical switching frequencies reach 250 kHz with 12-bit effective resolution - validated for SiC MOSFET gate driving in solar inverter reference designs.
Can the USB interface operate in host mode?
No. The USB peripheral is strictly a device-only interface compliant with USB 2.0 Full-Speed (12 Mbps) specification. It lacks OTG capabilities, host controller logic, or VBUS sensing circuitry. Host functionality requires external USB host controller ICs such as the MAX3421E or Cypress EZ-USB FX2LP.
Is the die temperature sensor calibrated at factory?
Yes. The on-die temperature sensor is factory-calibrated with ±2.5°C accuracy across −40°C to +125°C and provides 10-bit output via the VADC. Calibration coefficients are stored in the device's identification registers (DIE_TEMP_CAL) and automatically applied by the XMC library's DTS driver during initialization.
XMC4104F64K128BAXQMA1 Specifications
- Product attributes
- Attribute value
- Manufacturer:
- Infineon Technologies
- Package/Case:
- 64-LQFP Exposed Pad
- Series:
- XMC4000
- Packaging:
- Tray
- Product Status:
- Active
- Programmable:
- Not Verified
- Core Processor:
- ARM® Cortex®-M4
- Core Size:
- 32-Bit Single-Core
- Speed:
- 80MHz
- Connectivity:
- CANbus, I2C, LINbus, SPI, UART/USART, USB
- Peripherals:
- DMA, I2S, LED, POR, PWM, WDT
- Number of I/O:
- 35
- Program Memory Size:
- 128KB (128K x 8)
- Program Memory Type:
- FLASH
- EEPROM Size:
- -
- RAM Size:
- 20K x 8
- Voltage - Supply (Vcc/Vdd):
- 3.13V ~ 3.63V
- Data Converters:
- A/D 10x12b; D/A 2x12b
- Oscillator Type:
- Internal
- Operating Temperature:
- -40°C ~ 125°C (TA)
- Grade:
- -
- Qualification:
- -
- Mounting Type:
- Surface Mount
- Supplier Device Package:
XMC4104F64K128BAXQMA1 FAQ
1.How can I place an order for XMC4104F64K128BAXQMA1 through Aetrix?
Please submit a Request for Quotation (RFQ) for XMC4104F64K128BAXQMA1 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 XMC4104F64K128BAXQMA1 reliable?
The price and inventory of XMC4104F64K128BAXQMA1 are updated periodically and may fluctuate due to market conditions. Stock and pricing data are typically refreshed every 24 hours. Quotation validity for XMC4104F64K128BAXQMA1 is usually 5 days.
3.What payment methods are accepted for XMC4104F64K128BAXQMA1?
We accept Wire Transfer, PayPal, Credit Card, Western Union, MoneyGram, and Escrow for XMC4104F64K128BAXQMA1 transactions.
Note: Certain payment methods may incur a processing fee.
4.How is shipping managed for XMC4104F64K128BAXQMA1?
XMC4104F64K128BAXQMA1 orders can be shipped via leading logistics carriers, including DHL, UPS, FedEx, TNT, or Registered Mail.
Once your XMC4104F64K128BAXQMA1 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 XMC4104F64K128BAXQMA1?
For technical support, including XMC4104F64K128BAXQMA1 datasheets, pinout diagrams, or application guidance, please contact our engineering support team. They can provide detailed documentation and assistance for your XMC4104F64K128BAXQMA1 requirements.
6.How does Aetrix verify that XMC4104F64K128BAXQMA1 is sourced from the original manufacturer or authorized distributors?
All XMC4104F64K128BAXQMA1 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 XMC4104F64K128BAXQMA1 meets industry standards.
7.What is the process for return or replacement of XMC4104F64K128BAXQMA1?
All XMC4104F64K128BAXQMA1 units undergo pre-shipment inspection (PSI). If there is an issue with XMC4104F64K128BAXQMA1, 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 XMC4104F64K128BAXQMA1 part is unused and in its original packaging.
Return procedure for XMC4104F64K128BAXQMA1:
1.Submit a request within 90 days.
2.Obtain a Return Material Authorization (RMA) from Aetrix.
XMC4104F64K128BAXQMA1 Tags

-
ATTINY4-TSHR
Microchip Technology

-
ATTINY10-TSHR
Microchip Technology

-
ATTINY10-TS8R
Microchip Technology

-
ATTINY202-SSNR
Microchip Technology

-
ATTINY202-SSFR
Microchip Technology

-
ATTINY402-SSNR
Microchip Technology

-
PIC16F15213T-I/MF
Microchip Technology

-
PIC16F15213-E/MF
Microchip Technology

-
PIC10F200T-I/OT
Microchip Technology

-
ATTINY412-SSNR
Microchip Technology

-
PIC10F202T-I/OT
Microchip Technology

-
ATTINY404-SSNR
Microchip Technology
Tech Hub
18650 battery guide covering lithium-ion cell basics, 3.6V/3.7V voltage, 4.2V charging, mAh and Wh capacity, protected cells, chargers, BMS, series-parallel packs, holders, welding and sourcing checks.…
Hall effect sensor guide covering working principle, linear and digital sensors, Arduino circuits, current sensing, speed detection, automotive applications, A3144 examples, signal filtering and datash…
Product Change Notification guide for electronic components, covering PCN meaning, PCN vs PDN/EOL, common change types, risk levels, form-fit-function review, engineering validation, BOM control, LTB/L…
A practical guide to blend door actuators, covering HVAC function, symptoms, location, AC and heater issues, reset and calibration, replacement cost, electrical diagnosis, compatibility checks, and rep…
Engineering guide to Raspberry Pi alternatives, covering chip-level differences, Orange Pi, ROCK, Jetson, Banana Pi, NanoPi, Compute Module, Pico, GPIO, camera, HAT compatibility, and replacement risks…
Engineering guide to dynamic load response testing for high-current buck converters, covering load step setup, slew rate, Vcore undershoot, overshoot, recovery time, probe location, output capacitors a…
Engineering guide to output capacitor selection for ASIC Vcore rails, covering bulk capacitors, polymer capacitors, MLCC decoupling, DC bias, ESR, ESL, placement, transient response and substitution ri…
Engineering guide to high-current ASIC Vcore rails, covering 12-phase buck architecture, PMBus control, dynamic load testing, output capacitor networks, smart power stage selection, thermal design and …
Voltage regulator guide covering linear, LDO, 7805, Zener, adjustable, buck, VRM and alternator regulators, with design checks, testing methods, troubleshooting and datasheet-based selection.
Amplifier guide covering voltage, current and power amplification, gain, feedback, amplifier classes, audio and RF applications, op-amp circuits, transimpedance amplifiers, datasheet selection and trou…

