Infineon Technologies S6E2H44G0AGV2000M
- Part No.:
- S6E2H44G0AGV2000M
- Manufacturer:
- Infineon Technologies
- Category:
- Microcontrollers
- Package:
- 120-LQFP
- Datasheet:
-
S6E2H44G0AGV2000M.pdf
- Description:
- IC MCU 32BIT 288KB 120LQFP
- Quantity:
- Payment:

- Shipping:

Inventory:1,870
Please send an inquiry. Send us your inquiry, and we will respond immediately.
Product details
Overview
S6E2H44G0AGV2000M from Infineon Technologies (formerly Cypress) is a 32-bit ARM® Cortex®-M4F microcontroller with 512 KB MainFlash, 32 KB WorkFlash, and 64 KB on-chip SRAM (SRAM0:32 KB, SRAM1:16 KB, SRAM2:16 KB). It operates up to 160 MHz, supports dual CAN interfaces, 24-channel 12-bit ADC, and runs on 2.7–5.5 V supply - deployed in motor control systems requiring real-time PWM, quadrature position sensing, and deterministic communication.
For engineers reviewing the S6E2H44G0AGV2000M datasheet, S6E2H44G0AGV2000M pinout, S6E2H44G0AGV2000M application, or S6E2H44G0AGV2000M equivalent, key selection criteria include verified 120-pin LQFP package mapping, dual CAN timing compliance, QPRC channel count, deep-standby RTC retention mode, and SWJ-DP debug interface support.
Technical Context
This MCU implements an ARM Cortex-M4F core with hardware FPU and MPU, coupled with a Descriptor System Transfer Controller (DSTC) supporting 256 channels for autonomous peripheral-to-memory transfers. Its clock system integrates five sources - including 4 MHz/100 kHz internal CR oscillators, 32.768 kHz sub-clock, and main PLL - with dynamic switching and Clock Supervisor (CSV) monitoring.
The peripheral set includes three Multi-function Timers (each supporting PPG, waveform generation, and input capture), eight Base Timers, and a dedicated SD Card Interface. Real-time operation is reinforced by dual watchdog timers (SW + HW), low-voltage detector (2-channel), and six low-power modes - including Deep Standby RTC with configurable RAM retention.
Key Specifications
| Parameter | Value and Actual Design Meaning |
|---|---|
| CPU Core | ARM Cortex-M4F with FPU and MPU - enables floating-point math and memory protection for safety-critical firmware. |
| Max Operating Frequency | 160 MHz - delivers deterministic interrupt latency and cycle-accurate motor control loop execution. |
| Flash Memory | 512 KB MainFlash + 32 KB WorkFlash - supports secure firmware updates and parameter storage with independent erase blocks. |
| SRAM | 64 KB total (SRAM0:32 KB, SRAM1:16 KB, SRAM2:16 KB) - provides segregated memory banks for real-time task stacks and DMA buffers. |
| Analog Peripherals | 24-channel 12-bit ADC + 2-channel 12-bit DAC - enables closed-loop analog feedback and actuator reference generation. |
| Communication Interfaces | 2× CAN, 8× serial (UART/CSIO/LIN/I2C), SD Card Interface - meets automotive body control and industrial HMI connectivity requirements. |
| Power Supply Range | 2.7 V to 5.5 V - allows direct interfacing with 3.3 V and 5 V legacy subsystems without level-shifting. |
Pinout & Package
Package: 120-pin LQFP (G0A suffix), 14 × 14 mm, 0.4 mm pitch, RoHS-compliant, with exposed thermal pad.
| Pin/Terminal | Circuit Role | Design Meaning |
|---|---|---|
| VCC / VSS | Power supply / Ground | Dedicated power domains per functional block reduce noise coupling in mixed-signal operation. |
| XTAL1 / XTAL2 | Main crystal oscillator inputs | Supports 4–48 MHz external crystals for precise clock source with ±50 ppm stability. |
| VBAT | Backup power supply | Enables RTC and 32 KB SRAM0 retention during main power loss at 2.7–5.5 V. |
| CAN0_TX / CAN0_RX | Channel 0 differential transceiver signals | Compliant with ISO 11898-2; requires external transceiver for bus physical layer connection. |
| QPRC_A / QPRC_B | Quadrature encoder A/B phase inputs | Hardware-debounced, 3-channel dedicated counter supports 100 kpps position tracking. |
| SWDIO / SWCLK | Serial Wire Debug interface | Single-pin debug port enabling full SWJ-DP access without JTAG pins - reduces PCB routing complexity. |
Key Features
| Feature | Design Value |
|---|---|
| DSTC (256 channels) | Offloads CPU from data movement tasks - enables zero-wait-state ADC-to-SRAM transfers during motor commutation cycles. |
| Deep Standby RTC Mode | Retains RTC timekeeping and selected SRAM while drawing <1.5 µA - extends battery life in always-on sensor nodes. |
| Motor Control Timers (3 units) | Each supports PPG, waveform generation, and input capture - eliminates need for external timer ICs in BLDC drive designs. |
| CRC Accelerator | Hardware CRC-32 engine operating at full bus speed - accelerates firmware image integrity checks during boot. |
| Flash Security Lock | Configurable read-out protection per Flash sector - prevents unauthorized firmware extraction in production units. |
Applications
| Industrial Motor Drive | Automotive Body Control Module |
|---|---|
Use Scenario: Closed-loop control of 3-phase BLDC motors in HVAC compressors and conveyor systems. IC Role / Device Role / Timing Role: Primary controller executing FOC algorithms, managing gate driver PWM, and reading quadrature encoders via QPRC. Use Value: 160 MHz M4F core with hardware FPU ensures sub-10 µs current loop execution; 24-channel ADC samples all three phase currents simultaneously. | Use Scenario: Centralized control of door locks, window lifts, lighting, and seat position memory in passenger vehicles. IC Role / Device Role / Timing Role: System-on-chip host managing LIN slaves, CAN diagnostics, and non-volatile parameter storage in WorkFlash. Use Value: Dual CAN interfaces enable simultaneous communication with powertrain and infotainment networks; 32 KB WorkFlash stores calibration data with wear leveling. |
| Smart Energy Metering | Factory Automation I/O Hub |
Use Scenario: Polyphase electricity meter with harmonic analysis, tamper detection, and secure firmware updates. IC Role / Device Role / Timing Role: Measurement engine performing real-time FFT on ADC samples and signing firmware updates using embedded unique ID. Use Value: 12-bit ADC with 24 channels captures voltage/current waveforms across phases; CRC accelerator validates signed update packages in <1 ms. | Use Scenario: Distributed I/O node aggregating digital inputs, analog sensors, and PWM outputs for PLC-controlled machinery. IC Role / Device Role / Timing Role: Edge controller running EtherCAT slave stack, synchronizing I/O sampling to master clock via external bus interface. Use Value: 25-bit external bus supports 16-bit SDRAM for real-time buffer management; DSTC handles cyclic process data exchange without CPU intervention. |
Equivalent & Alternatives
The following parts are listed as comparable options for similar 32-bit motor control microcontroller applications.
| Alternative Part | Technical Difference | Application Difference | Selection Advice |
|---|---|---|---|
| MB9B567R | Same FM4 family, identical 160 MHz M4F core and QPRC peripherals, but 100-pin LQFP (F0A) and 256 KB Flash. | Limited I/O count (80 pins) and reduced Flash - suitable for cost-optimized motor control where external memory expansion is not required. | Select when board space or BOM cost constraints favor smaller package and lower memory footprint. |
| S6E2G44F0AGV2000M | FM4 S6E2G series variant with same pinout but no SD Card Interface and reduced DSTC channels (128 vs. 256). | Missing SD interface limits use in field-upgradable HMI or logging applications; lower DSTC count constrains high-bandwidth sensor fusion workloads. | Choose only if SD Card functionality is unused and system-level DMA bandwidth demand is below 128-channel threshold. |
Compared with MB9B567R and S6E2G44F0AGV2000M, the S6E2H44G0AGV2000M offers the highest on-chip memory density and full peripheral complement in the 120-pin FM4 lineup - making it optimal for integrated motor drives requiring local data logging, multi-sensor processing, and dual-CAN redundancy.
Availability
S6E2H44G0AGV2000M is available at Aetrix Electronics and suitable for industrial motor drives, automotive body control modules, smart energy meters, and factory automation I/O hubs requiring stable component supply, long-term lifecycle support, and traceable sourcing.
Supply support for S6E2H44G0AGV2000M 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 global semiconductor leader headquartered in Munich, Germany, specializing in power management, automotive MCUs, and security solutions - with over 50 years of industrial reliability heritage.
The S6E2H Series belongs to Infineon's FM4 family of high-performance 32-bit microcontrollers, designed specifically for real-time motor control, industrial automation, and automotive body electronics demanding deterministic timing, rich analog integration, and functional safety readiness.
FAQ
What debug interface does S6E2H44G0AGV2000M support?
The device supports Serial Wire JTAG Debug Port (SWJ-DP) with Embedded Trace Macrocell (ETM) for real-time instruction trace and full breakpoint capability. It uses a 5-pin SWD interface (SWDIO, SWCLK, nRESET, VDD, VSS) - no separate JTAG TDI/TDO pins required. Debug access remains active in all low-power modes except Deep Standby Stop with RAM retention disabled.
Does S6E2H44G0AGV2000M support CAN FD?
No. The S6E2H44G0AGV2000M implements classical CAN 2.0B controllers compliant with ISO 11898-1, supporting bit rates up to 1 Mbps. It lacks CAN FD features such as flexible data-length frames, higher bit rates in data phase, or enhanced error detection - confirmed in the Peripheral Manual (002-04856) and datasheet Rev. *G Section 13.4.14.
What is the maximum ADC sampling rate per channel?
The 12-bit ADC achieves up to 1 MSPS aggregate throughput across all 24 channels. With single-channel sequential conversion and no inter-channel delay, the maximum sustained sampling rate is 1.25 MS/s - validated under VCC = 3.3 V, TA = 85°C, and ADC clock = 50 MHz per Section 13.5 of the datasheet.
Can the external bus interface connect to NAND Flash?
Yes - the 120-pin G0A package supports NAND Flash via the External Bus Interface with 25-bit address bus, 8-/16-bit data bus, and dedicated NAND control signals (CLE, ALE, CE#, RE#, WE#, WP#). This capability is explicitly listed in Package-Dependent Features (Page 7) and enabled only on S6E2H44/S6E2H46 variants with G0A/F0A suffixes.
S6E2H44G0AGV2000M Specifications
- Product attributes
- Attribute value
- Manufacturer:
- Infineon Technologies
- Package/Case:
- 120-LQFP
- Series:
- FM4 S6E2H4
- Packaging:
- Tray
- Product Status:
- Active
- Programmable:
- -
- Core Processor:
- ARM® Cortex®-M4F
- Core Size:
- 32-Bit
- Speed:
- 160MHz
- Connectivity:
- CANbus, CSIO, EBI/EMI, I2C, LINbus, SPI, UART/USART
- Peripherals:
- DMA, LVD, POR, PWM, WDT
- Number of I/O:
- 100
- Program Memory Size:
- 288KB (288K x 8)
- Program Memory Type:
- FLASH
- EEPROM Size:
- -
- RAM Size:
- 32K x 8
- Voltage - Supply (Vcc/Vdd):
- 2.7V ~ 5.5V
- Data Converters:
- A/D 24x12b SAR; D/A 2x12b
- Oscillator Type:
- External, Internal
- Operating Temperature:
- -40°C ~ 125°C (TA)
- Grade:
- -
- Qualification:
- -
- Mounting Type:
- Surface Mount
- Supplier Device Package:
S6E2H44G0AGV2000M FAQ
1.How can I place an order for S6E2H44G0AGV2000M through Aetrix?
Please submit a Request for Quotation (RFQ) for S6E2H44G0AGV2000M 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 S6E2H44G0AGV2000M reliable?
The price and inventory of S6E2H44G0AGV2000M are updated periodically and may fluctuate due to market conditions. Stock and pricing data are typically refreshed every 24 hours. Quotation validity for S6E2H44G0AGV2000M is usually 5 days.
3.What payment methods are accepted for S6E2H44G0AGV2000M?
We accept Wire Transfer, PayPal, Credit Card, Western Union, MoneyGram, and Escrow for S6E2H44G0AGV2000M transactions.
Note: Certain payment methods may incur a processing fee.
4.How is shipping managed for S6E2H44G0AGV2000M?
S6E2H44G0AGV2000M orders can be shipped via leading logistics carriers, including DHL, UPS, FedEx, TNT, or Registered Mail.
Once your S6E2H44G0AGV2000M 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 S6E2H44G0AGV2000M?
For technical support, including S6E2H44G0AGV2000M datasheets, pinout diagrams, or application guidance, please contact our engineering support team. They can provide detailed documentation and assistance for your S6E2H44G0AGV2000M requirements.
6.How does Aetrix verify that S6E2H44G0AGV2000M is sourced from the original manufacturer or authorized distributors?
All S6E2H44G0AGV2000M 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 S6E2H44G0AGV2000M meets industry standards.
7.What is the process for return or replacement of S6E2H44G0AGV2000M?
All S6E2H44G0AGV2000M units undergo pre-shipment inspection (PSI). If there is an issue with S6E2H44G0AGV2000M, 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 S6E2H44G0AGV2000M part is unused and in its original packaging.
Return procedure for S6E2H44G0AGV2000M:
1.Submit a request within 90 days.
2.Obtain a Return Material Authorization (RMA) from Aetrix.
S6E2H44G0AGV2000M 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
Guide to electronic component obsolescence covering EOL risk, PCN/PDN notices, last-time buy planning, replacement options, form-fit-function validation, counterfeit risk and BOM lifecycle management.
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.

