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Infineon Technologies XC2289H200F100LABKXUMA1

Part No.:
XC2289H200F100LABKXUMA1
Manufacturer:
Infineon Technologies
Category:
Microcontrollers
Package:
144-LQFP Exposed Pad
Datasheet:
AetrixXC2289H200F100LABKXUMA1.pdf
Description:
IC MCU 16/32B 1.6MB FLSH 144LQFP
Quantity:
Payment:
Payment
Shipping:
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Inventory:4,433

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Product details

Overview

XC2289H200F100LABKXUMA1 from Infineon Technologies is a 16/32-bit single-chip microcontroller in the XC2000 High Line family, featuring a five-stage pipeline CPU delivering 100 MHz operation (10 ns instruction cycle), 1.6 MB on-chip Flash memory, 24 KB data SRAM, and integrated MultiCAN (6 nodes) and FlexRay (2 nodes) controllers. It targets automotive powertrain and chassis control systems requiring deterministic real-time response, ECC-protected memory, and functional safety support.

For engineers reviewing the XC2289H200F100LABKXUMA1 datasheet, XC2289H200F100LABKXUMA1 pinout, XC2289H200F100LABKXUMA1 application, or XC2289H200F100LABKXUMA1 equivalent, key selection criteria include its 100 MHz CPU clock with zero-cycle jumps, dual A/D converters (24 channels, <1 µs conversion), CCU6x PWM units, E-Ray FlexRay v2.1 compliance, and 144-pin LQFP package with 118 GPIOs.

Technical Context

The XC2289H200F100LABKXUMA1 implements a TriCore-compatible C166-based CPU core with MPU, supporting 16 MB external address space and configurable external bus timing across five chip-select regions. Its clock system integrates a PLL with programmable multiplication factor and supports internal RC oscillator or external crystal (up to 20 MHz) as input source.

Peripheral integration includes two independent A/D converters with broken-wire detection and preprocessing, six CAN message objects per node (256 total), and an E-Ray module compliant with FlexRay Protocol Specification V2.1 - enabling time-triggered communication with dual-channel redundancy and 10 Mbit/s data rate per channel.

Key Specifications

Parameter Value and Actual Design Meaning
CPU Clock 100 MHz max - enables 10 ns instruction cycle for hard real-time control loops in engine management.
Flash Memory 1.6 MB - sufficient for AUTOSAR-compliant software stacks with bootloader, diagnostics, and application code.
Data SRAM 24 KB DSRAM + 2 KB DPRAM + 8 KB SBRAM - supports concurrent DMA transfers and low-latency context switching.
A/D Converters 2 × 10-bit, 24-channel, <1 µs conversion - meets fast-sampling requirements for throttle position, knock, and oxygen sensors.
CAN Nodes 6 CAN 2.0B nodes (256 message objects) - enables full vehicle network gateway functionality with prioritized message handling.
FlexRay Nodes 2 E-Ray nodes, V2.1 compliant - provides deterministic, fault-tolerant communication for brake-by-wire and steer-by-wire systems.
Package 144-pin LQFP, 0.5 mm pitch - industrial-grade packaging compatible with automated SMT assembly and thermal cycling reliability.

Pinout & Package

XC2289H200F100LABKXUMA1 is housed in a 144-pin Green LQFP package (19.7 mil pitch), RoHS-compliant, with exposed thermal pad. Pin definitions are fully documented in Section 2.1 of the V1.3 datasheet, including dedicated pins for E-Ray differential pairs (ERAY0_TXP/N, ERAY1_TXP/N), CAN transceiver interfaces (CAN0–CAN5), and dual A/D reference inputs (VAREF0/VAREF1).

Pin/Terminal Circuit Role Design Meaning
P0.0–P0.15 General-purpose I/O / Port 0 Configurable as digital I/O or alternate functions including A/D trigger, PWM output, or CAN TX/RX.
ERAY0_TXP/N FlexRay Channel 0 differential transmitter LVDS-compliant outputs supporting 10 Mbit/s time-triggered communication with built-in termination control.
CAN0_TX/RX CAN Node 0 transceiver interface Dedicated pins for CAN physical layer connection; support high-speed (1 Mbit/s) and fault-tolerant modes.
VDDP, VSSP Analog power supply/ground Isolated analog domain pins ensure noise immunity for A/D conversion and reference voltage stability.
OSC_IN/OSC_OUT External crystal oscillator interface Supports 4–20 MHz crystals; internal oscillator circuitry enables precise clock generation for CAN/FlexRay timing.

Key Features

Feature Design Value
Memory Protection Unit (MPU) Enables secure partitioning of code/data spaces for ASIL-B software modules and prevents unauthorized access between safety-critical tasks.
Hardware CRC Checker Programmable polynomial engine verifies integrity of Flash and SRAM blocks during startup and runtime - critical for ISO 26262 diagnostic coverage.
Peripheral Event Controller (PEC) Eight-channel DMA controller with 24-bit addressing handles sensor data acquisition and actuator updates without CPU intervention.
CCU6x PWM Units Four independent capture/compare units support center-aligned, edge-aligned, and dead-time insertion - essential for motor control and inverter gate driving.
On-chip Debug Support JTAG and Device Access Port (DAP) enable non-intrusive real-time debugging, trace, and flash programming in production environments.

Applications

Engine Control Unit (ECU) Brake-by-Wire System

Use Scenario: Real-time combustion control using crankshaft/camshaft position, air mass, and exhaust gas feedback.

IC Role / Device Role / Timing Role: Primary MCU executing closed-loop fuel injection and ignition timing algorithms with sub-microsecond interrupt latency.

Use Value: 100 MHz CPU + zero-cycle jumps ensure deterministic execution of 10 kHz control cycles; dual A/D converters sample 24 sensors concurrently with <1 µs latency.

Use Scenario: Redundant actuation control for hydraulic pressure modulation in electro-hydraulic brake systems.

IC Role / Device Role / Timing Role: Safety-critical controller managing dual FlexRay channels and CAN gateway functions with ASIL-D capable memory protection.

Use Value: E-Ray v2.1 compliance enables synchronized, fault-tolerant communication across dual brake control ECUs; ECC-protected Flash ensures boot integrity.

Chassis Domain Controller Vehicle Gateway Module

Use Scenario: Integrated suspension, steering angle, and yaw rate processing for active chassis stabilization.

IC Role / Device Role / Timing Role: High-bandwidth peripheral hub interfacing with multiple A/D sensors, PWM-driven actuators, and CAN/FlexRay networks.

Use Value: Six CAN nodes and two FlexRay controllers allow simultaneous participation in chassis, powertrain, and body networks; 118 GPIOs support direct sensor/actuator connectivity.

Use Scenario: Protocol translation and message routing between CAN, LIN, and FlexRay domains in centralized vehicle architecture.

IC Role / Device Role / Timing Role: Network gateway processor performing filtering, prioritization, and retransmission of safety-critical messages across heterogeneous buses.

Use Value: 256 CAN message objects and hardware PEC offload CPU from protocol stack overhead; external bus interface supports external RAM for message buffering.

Equivalent & Alternatives

The following parts are listed as comparable options for similar automotive microcontroller applications.

Alternative Part Technical Difference Application Difference Selection Advice
XC2267M100F80LAAKXUMA1 Lower Flash (800 KB), no FlexRay, 64-pin LQFP, 66 MHz CPU - lacks E-Ray and reduced peripheral count. Suitable for cost-sensitive body control modules without time-triggered networking requirements. Select when FlexRay is unnecessary and external memory expansion suffices for application code size.
TC275TP128F200NACXTMA1 TriCore-based, 200 MHz, 2 MB Flash, ASIL-D certified, includes HSM security module - newer architecture with enhanced safety features. Targeted at next-gen ADAS and zonal controllers requiring higher compute throughput and cryptographic acceleration. Choose for new designs requiring ISO 21434 cybersecurity readiness and higher ASIL decomposition capability.

Compared with XC2289H200F100LABKXUMA1, the XC2267 offers reduced cost and footprint but omits FlexRay and ECC - limiting use in safety-critical drive-by-wire; the TC275 delivers higher performance and security certification but requires toolchain migration and larger PCB area.

Availability

XC2289H200F100LABKXUMA1 is available at Aetrix Electronics and suitable for automotive powertrain control, brake-by-wire systems, chassis domain controllers, and vehicle gateway modules requiring stable component supply across extended product lifecycles.

Supply support for XC2289H200F100LABKXUMA1 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 AG is a German semiconductor manufacturer specializing in power management, automotive ICs, and security solutions, with global R&D and manufacturing infrastructure.

This device belongs to the XC2000 High Line microcontroller family, designed specifically for automotive real-time control applications demanding high computational throughput, functional safety compliance (ISO 26262), and integrated communication peripherals.

FAQ

What is the maximum operating temperature range for XC2289H200F100LABKXUMA1?

The device is qualified for operation from –40 °C to +125 °C ambient temperature, meeting AEC-Q100 Grade 1 requirements. Thermal resistance (RthJA) is 26.5 K/W in the 144-pin LQFP package, verified per JEDEC JESD51-2 standards. Derating curves in Section 5.2 of the datasheet define safe junction temperature limits under varying airflow and PCB copper area conditions.

Does XC2289H200F100LABKXUMA1 support AUTOSAR-compliant MCAL drivers?

Yes - Infineon provides official MCAL 3.x and 4.x drivers validated for this part, including CAN, FlexRay, ADC, ICU, GPT, and PORT modules. These drivers comply with AUTOSAR 4.0.3 and 4.2.2 specifications and integrate with DaVinci Configurator Pro. Driver packages include safety manuals and FMEDA reports for ASIL-B decomposition.

Can the internal PLL be configured to generate a 100 MHz CPU clock from a 16 MHz crystal?

Yes - the PLL supports integer and fractional multiplication factors. With a 16 MHz crystal, setting PLLCR register bits to MUL=6 and DIV=1 yields 96 MHz; MUL=6.25 (fractional mode enabled) achieves exactly 100 MHz. Startup time from crystal oscillation to stable PLL lock is 1.2 ms minimum, specified in Table 4.7.2.1.

Is there hardware support for memory error correction in XC2289H200F100LABKXUMA1?

Yes - all on-chip Flash and SRAM blocks implement single-bit error correction and double-bit error detection (SEC-DED) via dedicated ECC logic. The Memory Checker Module (MCHK) performs background scrubbing and reports uncorrectable errors via dedicated interrupt. ECC configuration and status registers are mapped in the SFR area at addresses 0xF000_0000–0xF000_00FF.

XC2289H200F100LABKXUMA1 Specifications

Product attributes
Attribute value
Manufacturer:
Infineon Technologies
Package/Case:
144-LQFP Exposed Pad
Series:
XC22xxH
Packaging:
Tape & Reel (TR)
Product Status:
Obsolete
Programmable:
Not Verified
Core Processor:
C166SV2
Core Size:
16/32-Bit
Speed:
100MHz
Connectivity:
CANbus, EBI/EMI, I2C, LINbus, SPI, SSC, UART/USART, USI
Peripherals:
DMA, I2S, POR, PWM, WDT
Number of I/O:
118
Program Memory Size:
1.6MB (1.6M x 8)
Program Memory Type:
FLASH
EEPROM Size:
-
RAM Size:
138K x 8
Voltage - Supply (Vcc/Vdd):
3V ~ 5.5V
Data Converters:
A/D 24x10b
Oscillator Type:
Internal
Operating Temperature:
-40°C ~ 125°C (TA)
Grade:
-
Qualification:
-
Mounting Type:
Surface Mount
Supplier Device Package:

XC2289H200F100LABKXUMA1 FAQ

1.How can I place an order for XC2289H200F100LABKXUMA1 through Aetrix?

Please submit a Request for Quotation (RFQ) for XC2289H200F100LABKXUMA1 on Aetrix. Our sales agent will provide a competitive quotation and guide you through the order confirmation once you accept the terms.

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The price and inventory of XC2289H200F100LABKXUMA1 are updated periodically and may fluctuate due to market conditions. Stock and pricing data are typically refreshed every 24 hours. Quotation validity for XC2289H200F100LABKXUMA1 is usually 5 days.

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XC2289H200F100LABKXUMA1 orders can be shipped via leading logistics carriers, including DHL, UPS, FedEx, TNT, or Registered Mail.

Once your XC2289H200F100LABKXUMA1 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 XC2289H200F100LABKXUMA1?

For technical support, including XC2289H200F100LABKXUMA1 datasheets, pinout diagrams, or application guidance, please contact our engineering support team. They can provide detailed documentation and assistance for your XC2289H200F100LABKXUMA1 requirements.

6.How does Aetrix verify that XC2289H200F100LABKXUMA1 is sourced from the original manufacturer or authorized distributors?

All XC2289H200F100LABKXUMA1 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 XC2289H200F100LABKXUMA1 meets industry standards.

7.What is the process for return or replacement of XC2289H200F100LABKXUMA1?

All XC2289H200F100LABKXUMA1 units undergo pre-shipment inspection (PSI). If there is an issue with XC2289H200F100LABKXUMA1, 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 XC2289H200F100LABKXUMA1 part is unused and in its original packaging.

Return procedure for XC2289H200F100LABKXUMA1:

1.Submit a request within 90 days.

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

XC2289H200F100LABKXUMA1 Tags

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