Infineon

SAL-TC277TP-64F200NDC - AURIX TC27xT 200MHz MCU | Infineon

MPN: SAL-TC277TP-64F200NDC βœ“ Active
In Stock Ships in 1-3 business days
[DATA_NEEDED: core supply voltage] Vdss PG-LFBGA-292-6 (292-ball LFBGA, square) Package 200 MHz Speed 4 MB Flash Memory
From $39.96 USD / Unit
MOQ: 1 |
Price updated: 2026-08-29
Volume Pricing
Qty Unit Price Extended
1 $49.95 $49.95
10 $47.45 $474.50
100 $44.96 $4,496.00
500 $42.46 $21,230.00
1,000 $39.96 $39,960.00
ℹ️ All prices are in USD

Drop-in alternatives for SAL-TC277TP-64F200NDC β€” same package, pin-to-pin compatible. Different-package parts requiring PCB rework are excluded.

Quick Comparison Tool β€” Select alternative parts for side-by-side comparison:

SAK-TC277TP-64F200N DC

βœ… Drop-In
πŸ“¦ PG-LFBGA-292-6
identical die and package, standard SAK ordering prefix (non-safety-routed distribution code)

πŸ“‹ Reference alternative (not in catalog)

TC277TP64F200NDCLXUMA1

βœ… Drop-In
πŸ“¦ PG-LFBGA-292-6
identical die per Xecor comparison; LXUMA1 distributor-channel packaging code

πŸ“‹ Reference alternative (not in catalog)

SAK-TC277TP-64F200S DC

βœ… Drop-In
πŸ“¦ PG-LFBGA-292-6
same die/package, temperature grade -40C to +125C vs -40C to +150C

πŸ“‹ Reference alternative (not in catalog)

SAL-TC277TP-64F200S-CA

βœ… Drop-In
πŸ“¦ PG-LFBGA-292-6
same TC277TP die, S-grade temperature and CA routing code

πŸ“‹ Reference alternative (not in catalog)

SAK-TC297TP-128F300SBCKXUMA1

⚑ Same Package
Infineon
πŸ“¦ PG-LFBGA-292
32-bit TriCore (AURIX TC2) Β· 3 (Triple TriCore) Β· 300 MHz Β· 8 MB (8M x 8) Β· 728 kByte Β· 6 Β· Yes Β· Yes

βœ“ In Stock

$29.6 / Unit

View Datasheet β†’

SAL-TC277TP-64F200NDC Maximum Ratings & Electrical Characteristics

Core Architecture 3x 32-bit TriCore CPUs (multicore)
Max Clock Frequency 200 MHz
Program Memory 4 MB Flash
SRAM (incl. Cache) 472 KB (nominal)
CAN Nodes 4
Ethernet Yes (integrated Ethernet controller)
Timer Module Generic Timer Module (GTM)
Functional Safety ISO 26262 compliant
Package PG-LFBGA-292-6 (292-ball LFBGA, square)
Terminal Form Ball (BGA)
Number of Terminals 292
Mounting Type Surface Mount

SAL-TC277TP-64F200NDC pg-lfbga-292-6 (292-ball lfbga, square) Pin Configuration Guide

Complete pinout information for SAL-TC277TP-64F200NDC (pg-lfbga-292-6 (292-ball lfbga, square) package). This digital IC includes GPIO, communication interfaces (UART, SPI, I2C), and power pins. Refer to the manufacturer datasheet for alternate pin functions and configuration options. Essential for embedded system design and PCB layout.

pg-lfbga-292-6 (292-ball lfbga, square) package pinout diagram for SAL-TC277TP-64F200NDC

No detailed pinout data available for SAL-TC277TP-64F200NDC.

Refer to the datasheet for full pin configuration.

Safe Operating Area (SOA) & Thermal Characteristics

Safe Operating Area Chart Default safe operating area chart for SAL-TC277TP-64F200NDC Drain-to-Source Voltage (Vds) Drain Current (Id)

No official SOA curve available for this digital IC. Always operate within absolute maximum ratings specified in the datasheet. Ensure adequate cooling and derate as needed.

Typical Applications

SAL-TC277TP-64F200NDC is suitable for 6 applications: Engine Control Unit (ECU), Battery Management System (BMS), Electric Power Steering (EPS), Transmission Control, ADAS Domain Controller Support, Industrial Motor Control and Robotics.

πŸš—

Engine Control Unit (ECU)

The TC277TP's three 200 MHz TriCore cores and 4 MB Flash handle crank-angle-synchronous combustion control, knock correction, and OBD monitoring in parallel with safety task isolation required for ASIL-D powertrain systems. The Generic Timer Module (GTM) generates high-resolution injection and ignition PWM signals in hardware, offloading CPU load. Four CAN nodes interface with the vehicle network while lockstep monitoring detects faults in real time.

⚑

Battery Management System (BMS)

In EV battery management, the TC277TP executes state-of-charge and state-of-health algorithms across its three cores while dedicating lockstep execution to safety-relevant overvoltage and thermal supervision. Its 4 MB Flash stores extensive calibration data and diagnostic logs, and the Ethernet controller links battery controllers in ring topologies for domain-controlled architectures. ISO 26262 compliance reduces the OEM's safety certification burden at vehicle level.

πŸš—

Electric Power Steering (EPS)

EPS demands sub-millisecond torque-control loop closure with redundant fault detection - precisely what the TC277TP delivers with its GTM-based PWM generation for the three-phase motor bridge and lockstep cores supervising torque sensor processing. The 200 MHz cores run field-oriented control and assist-curve computation concurrently. Four CAN nodes support chassis-domain communication with gateway redundancy required by steering safety goals.

πŸš—

Transmission Control

Automatic and dual-clutch transmissions require simultaneous pressure, clutch, and gear-position control with strong functional safety. The TC277TP's parallel cores separate shift-strategy computation from solenoid PWM generation and diagnostic monitoring, while 4 MB Flash holds multiple shift-map calibration sets for OTA-updatable driving profiles. The 150C-capable N-grade device suits mounting locations near the transmission housing.

🧩

ADAS Domain Controller Support

As a chassis-adjacent safety MCU, the TC277TP complements high-performance ADAS SoCs by handling deterministic actuator control, sensor-fusion safety monitoring, and fallback strategies. Its Ethernet controller connects to camera/radar front ends and the domain gateway, while the TriCore cores execute the safety monitor path mandated by ISO 26262 for ADAS functions. The GTM provides hardware-timed sensor triggering with microsecond precision.

🏭

Industrial Motor Control and Robotics

Beyond automotive, the TC277TP's DSP-capable TriCore architecture and GTM execute multi-axis servo control with functional-safety stop functions (STO support) required by industrial machinery standards. Three 200 MHz cores run current loops, trajectory planning, and fieldbus stacks concurrently, and the Ethernet controller connects to PROFINET/ EtherCAT-adjacent industrial networks. The 292-ball LFBGA supports high-density, vibration-tolerant industrial drive designs.

What is the Infineon SAL-TC277TP-64F200NDC microcontroller?
The SAL-TC277TP-64F200NDC is an ISO 26262-compliant AURIX TC2 (TC27xT family) 32-bit microcontroller with three TriCore CPUs running at 200 MHz, 4 MB of Flash, 472 KB SRAM, Ethernet, and four CAN nodes, packaged in a 292-ball PG-LFBGA-292-6 package. According to Infineon's official product page, it targets highest automotive safety standards.
How much Flash and SRAM does the SAL-TC277TP-64F200NDC have?
The device integrates 4 MB of embedded Flash program memory and a nominal 472 KB of SRAM including cache, per the DigChip datasheet summary. This memory capacity supports complex automotive control algorithms, data logging, and OTA-update dual-bank schemes typical in ASIL-D ECU designs.
What is the price of SAL-TC277TP-64F200NDC?
As of 2026-08-29, LCSC lists SAL-TC277TP-64F200N DC from approximately $49.95 for single units, with volume discounts typically reducing unit cost in the $40-50 range at 1000-piece quantities on distributor channels. Pricing varies by distributor and stock position; check DigiKey, Mouser, and LCSC for live quotes.
Where to buy SAL-TC277TP-64F200NDC online?
The SAL-TC277TP-64F200NDC is available through authorized distributors including DigiKey (as TC277TP64F200NDCLXUMA1, ships same day), Mouser (TC277TP64F200NDCKXUMA1), LCSC, and JLCPCB assembly services. Infineon's official website provides ordering info and authorized channel links. Availability fluctuates with automotive demand cycles.
What is the lead time for SAL-TC277TP-64F200NDC?
Lead time is [DATA_NEEDED: lead time]; however, DigiKey's listing of the equivalent TC277TP64F200NDCLXUMA1 states 'ships today' for stocked quantities. For volume orders beyond distributor stock, Infineon production lead times for AURIX TC2xx family typically extend to automotive-standard factory cycles - request a formal quote for firm dates.
Is TC277TP64F200NDCLXUMA1 the same as SAL-TC277TP-64F200N DC?
Yes, functionally they are equivalent. According to a Xecor database comparison, TC277TP64F200NDCLXUMA1 and SAL-TC277TP-64F200N DC exhibit identical performance profiles with no measurable differences across primary technical parameters. The LXUMA1/CKXUMA1 suffixes are Infineon packaging/routing codes used for distributor channels.
What is the difference between SAL-TC277TP-64F200N DC and SAK-TC277TP-64F200S DC?
The primary distinction is temperature grade: SAK-TC277TP-64F200S DC is specified at -40C to +125C, while SAL-TC277TP-64F200N DC is rated to -40C to +150C (ambient/ambient comparison per Xecor). Both are 200 MHz triple-core TC277 parts with 4 MB Flash in the same 292-ball LFBGA package, making them near drop-in equivalents.
Can the AURIX TC277 be used for ASIL-D functional safety applications?
Yes. The TC27xT family is ISO 26262 compliant and engineered for the highest safety standards, per Infineon. The triple-core architecture with lockstep capability, memory protection units, and extensive safety mechanisms supports ASIL-D development, making it suitable for steering, braking, and powertrain safety ECUs.
Does the SAL-TC277TP-64F200NDC support Ethernet and CAN communication?
Yes, it integrates an Ethernet controller plus four CAN nodes, according to Infineon's product page and the DigChip datasheet summary. The Ethernet interface enables V2X communication and OTA updates, while the four CAN nodes cover legacy in-vehicle network segments in powertrain and chassis domains.
Where can I download the SAL-TC277TP-64F200NDC datasheet PDF?
Download the TC27xT family datasheet from Infineon's official website, or via the DigiKey-hosted PDF at media.digikey.com (TC277TP64F200NDCKXUMA1 document). The Infineon TC27xT DataSheet v01_00 covers the full 32-bit TriCore architecture, memory map, electrical characteristics, and package data for this part.
What is the best NXP equivalent for the Infineon AURIX TC277?
NXP's MPC5777C is the closest cross-brand equivalent - a 32-bit Power Architecture triple-core automotive MCU targeting similar ASIL-D powertrain applications. However, it is NOT pin-compatible: it uses a different package, so it is not a drop-in replacement. Changing brands requires a full PCB redesign and software port; choose it only at new-design stage.
Hey Google, what can replace the SAL-TC277TP-64F200NDC?
The closest same-family replacements are SAK-TC277TP-64F200N DC (same die, standard SAK ordering code), SAK-TC277TP-64F200S DC (-40C to +125C grade), and SAL-TC277TP-64F200S-CA - all in the identical 292-ball LFBGA-292 package. For new designs, the AURIX TC3xx family (e.g., SAK-TC364DP) offers higher performance but different package and software requirements.
When should I choose the AURIX TC277T over a single-core automotive MCU?
Choose the TC277T when your application requires parallel processing of multiple control loops with safety isolation, such as combining engine control with on-board diagnostics and functional monitoring. The three independent 200 MHz TriCore cores allow ASIL-D functions to be partitioned on separate cores, whereas a single-core MCU forces time-sliced sharing that complicates freedom-from-interference arguments under ISO 26262.
What are the key specifications of SAL-TC277TP-64F200NDC that engineers should know?
Key specifications: 3x 32-bit TriCore CPUs at 200 MHz, 4 MB embedded Flash, 472 KB SRAM including cache, 4 CAN nodes, integrated Ethernet controller, Generic Timer Module (GTM), ISO 26262 compliance, and a 292-ball PG-LFBGA-292-6 square package. These make it a flagship ASIL-D powertrain and chassis MCU in Infineon's AURIX TC2 portfolio.

Engineering reference data for SAL-TC277TP-64F200NDC β€” comparison, design guidance, and compliance information.

Selection Guide

Choose the SAL-TC277TP-64F200NDC when you need an ASIL-D-capable triple-core AURIX with 4 MB Flash, Ethernet, and a +150C-rated N-grade temperature range for powertrain, BMS, or steering ECUs mounted in hot zones. If your thermal budget stays within +125C, the SAK-TC277TP-64F200S DC is typically more available and lower cost with identical functionality. For distributor-supplied production volumes, the TC277TP64F200NDCLXUMA1 is the identical silicon in Infineon's channel packaging code. If 4 MB Flash or 200 MHz proves insufficient, migrate to the SAK-TC297TP (300 MHz, 16 MB Flash) which shares the same 292-ball footprint but requires software porting and re-certification. Cross-brand alternatives like NXP's MPC5777C match the safety class but are not pin-compatible, so reserve them for new designs only.

Comparison with Alternatives

Parameter This Product SAK-TC277TP-64F200N DC SAK-TC277TP-64F200S DC SAK-TC297TP-128F300SBCKXUMA1
Package PG-LFBGA-292-6 PG-LFBGA-292-6 - same PG-LFBGA-292-6 - same PG-LFBGA-292 - same footprint
Brand Infineon Infineon Infineon Infineon
CPU Cores 3x 32-bit TriCore 3x 32-bit TriCore 3x 32-bit TriCore 3x 32-bit TriCore
Max Clock Frequency 200 MHz 200 MHz 200 MHz 300 MHz
Flash Memory 4 MB 4 MB 4 MB 16 MB
Temperature Range -40C to +150C (N grade) -40C to +150C -40C to +125C [DATA_NEEDED]
Ethernet Yes Yes Yes [DATA_NEEDED]
Functional Safety ISO 26262 compliant ISO 26262 compliant ISO 26262 compliant ISO 26262 compliant (AURIX family)

Key Differentiators

  • Extended +150C ambient rating (vs SAK-TC277TP-64F200S DC)
  • High memory density in TC2 family (vs SAK-TC277TP-64F200N DC)
  • Same-footprint upgrade path (vs SAK-TC297TP-128F300SBCKXUMA1)

Design Notes

The TC277TP requires multiple supply rails (3.3V I/O and approximately 1.3V core). Implement proper power-up sequencing so core and I/O rails satisfy datasheet ramp requirements, and add a supervisor/reset IC on the reset line. Each supply pin pair should be locally decoupled with 100 nF ceramics placed within 2 mm of the ball via, plus bulk capacitance near the package.

The 292-ball LFBGA requires a via-in-pad or dog-bone escape fan-out on 0.8 mm/1.0 mm ball pitch. Follow Infineon's PG-LFBGA-292-6 footprint data exactly: non-solder-mask-defined pads and symmetry to avoid tombstoning during reflow. Inspect with X-ray or AOI after assembly - hidden BGA solder defects are the leading cause of field failures on this class of package.

Do not mix S-grade (+125C) and N-grade (+150C) variants in the same ECU BOM without re-qualifying thermal margins - the temperature difference between SAL-TC277TP-64F200N DC and SAK-TC277TP-64F200S DC is the primary spec divergence. Also verify the ordering-code routing: LXUMA1/CKXUMA1 suffixes denote packaging/routing variants, not different silicon.

Compliance Information

RoHS
Unknown
REACH
Unknown
AEC-Q100
Qualified
Lead Free
Unknown
Halogen Free
Unknown
Conflict Minerals
Unknown

Device is ISO 26262 compliant per Infineon and automotive-qualified (AURIX family). RoHS/REACH/lead-free status not stated in provided data - verify on Infineon product page.

Data verified on: 2026-08-29 β€” data verified and curated by XAIPART's component engineering team

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SAL-TC277TP-64F200NDC SAL-TC277TP-64F200NDC datasheet PDF Infineon AURIX TC277 microcontroller TC277TP 200 MHz 4MB Flash TriCore MCU LFBGA-292 AURIX microcontroller AURIX TC277 engine control unit ASIL-D SAK-TC277TP-64F200S DC vs SAL-TC277TP-64F200N DC TC277 drop-in replacement equivalent SAL-TC277TP-64F200NDC price buy what can replace Infineon TC277TP best NXP equivalent for AURIX TC277 ISO 26262 automotive MCU Ethernet CAN

Related Components & Terms

Infineon SAL-TC277TP-64F200NDC AURIX TC27xT TriCore 32-bit multicore microcontroller MCU ISO 26262 AEC-Q100 PG-LFBGA-292-6 LFBGA BGA GTM (Generic Timer Module) Ethernet controller CAN ASIL-D SAK-TC277TP-64F200S DC TC277TP64F200NDCLXUMA1 MPC5777C engine control unit battery management system ADAS SRAM embedded Flash
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