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TI TMS320F28035PAGQ Datesheet

The TMS320F2803x family from Texas Instruments is part of the C2000™ 32‑bit real‑time microcontroller series, optimized for closed‑loop control applications including industrial motor drives, photovoltaic inverters, digital power, electric vehicles, and motor control. These devices combine a high‑efficiency 60 MHz C28x CPU with a programmable Control Law Accelerator (CLA) – a 32‑bit floating‑point math accelerator capable of independent code execution from the main CPU – to enable parallel processing and enhanced system performance. The family features highly integrated control peripherals including enhanced PWM (ePWM) with high‑resolution capability (HRPWM), enhanced capture (eCAP), high‑resolution capture (HRCAP), enhanced quadrature encoder pulse (eQEP), 12‑bit ADC with integrated temperature sensor, and analog comparators with 10‑bit internal reference that can directly control PWM outputs. The ADC supports 0V to 3.3V full‑scale range with ratiometric VREFHI/VREFLO operation. On‑ch

Description:

The C2000™ 32‑bit microcontrollers are optimized for processing, sensing, and actuation to improve closed‑loop performance in real‑time control applications such as industrial motor drives, photovoltaic inverters and digital power, electric vehicles and transportation, motor control, and sensing and signal processing. The C2000 family includes both high‑performance MCUs and entry‑performance MCUs. The F2803x series microcontrollers combine the performance of the C28x core and Control Law Accelerator (CLA) with highly integrated control peripherals in low pin‑count devices. This family is code‑compatible with previous C28x‑based devices while offering high analog integration. An internal voltage regulator enables single‑rail power supply operation. The HRPWM module has been enhanced for dual‑edge control (frequency modulation). An analog comparator with a 10‑bit internal reference has been added and can be routed directly to control the PWM outputs. The ADC converts over a full‑scale range of 0V to 3.3V and supports ratiometric operation with VREFHI/VREFLO references. The ADC interface has been optimized for low overhead and low latency. To learn more about C2000 MCUs, visit the C2000™ Real‑Time Control MCU page.


Features:


High‑efficiency 32‑bit CPU (TMS320C28x)

– 60 MHz (16.67 ns cycle time)

– 16 × 16 and 32 × 32 MAC operations

– 16 × 16 dual MAC

– Harvard bus architecture

– Atomic operations

– Fast interrupt response and processing

– Unified memory programming model

– Efficient code (using C/C++ and assembly)


Programmable Control Law Accelerator (CLA)

– 32‑bit floating‑point math accelerator

– Independent code execution from the main CPU


Endianness: Little‑endian


JTAG boundary scan support

– IEEE Standard 1149.1‑1990 Standard Test Access Port and Boundary Scan Architecture


Low‑cost device and system implementation:

– Single 3.3V supply

– No power‑sequencing requirements

– Integrated power‑on reset and brown‑out reset

– Low power consumption

– No analog support pins


Clocks:

– Two internal zero‑pin oscillators

– On‑chip crystal oscillator and external clock input

– Watchdog timer module

– Missing clock detection circuit


Up to 45 individually programmable, multiplexed GPIO pins with input filtering


Peripheral Interrupt Expansion (PIE) module supporting all peripheral interrupts


Three 32‑bit CPU timers


Independent 16‑bit timer in each enhanced PWM (ePWM)


On‑chip memory

– Flash, SARAM, OTP, and Boot ROM available


Code security module

– 128‑bit security key and lock

– Protects secure memory blocks

– Prevents firmware reverse engineering


Serial port peripherals:

– One Serial Communication Interface (SCI) Universal Asynchronous Receiver/Transmitter (UART) module

– Two Serial Peripheral Interface (SPI) modules

– One Inter‑Integrated Circuit (I2C) module

– One Local Interconnect Network (LIN) module

– One Enhanced Controller Area Network (eCAN) module


Enhanced control peripherals:

– ePWM

– High‑Resolution PWM (HRPWM)

– Enhanced Capture (eCAP) module

– High‑Resolution Capture (HRCAP) module

– Enhanced Quadrature Encoder Pulse (eQEP) module

– Analog‑to‑Digital Converter (ADC)

– On‑chip temperature sensor

– Comparators


Advanced emulation features:

– Analysis and breakpoint functions

– Real‑time debugging via hardware


Package options:

– 56‑pin RSH Very Thin Quad Flatpack (No Lead) (VQFN)

– 64‑pin PAG Thin Quad Flatpack (TQFP)

– 80‑pin PN Low‑Profile Quad Flatpack (LQFP)


Temperature options:

– T: –40°C to 105°C

– S: –40°C to 125°C

– Q: –40°C to 125°C ambient temperature range (AEC Q100 qualified for automotive applications)


Applications:


Air conditioner outdoor units


Elevator door automatic open/close drive control


DC/DC converters


Inverters and motor control


On‑board chargers (OBC) and wireless chargers


Automatic sorting equipment


Textile machinery


Welding machines


AC charging stations


DC charging stations


Electric vehicle charging station power modules


Vehicle wireless charging modules


Energy storage power conversion systems (PCS)


Micro‑inverters


Solar power optimizers


String inverters


AC drive control modules


Linear motor segment controllers


Servo drive power stage modules


AC input BLDC motor drives


DC input BLDC motor drives


Industrial AC‑DC


Three‑phase UPS


Commercial network and server PSUs


Commercial communications power rectifiers


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