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Texas Instruments TMS320F28069PZT

C2000™ 32-bit microcontrollers are optimized for processing, sensing, and actuation to improve closed-loopperformance in real-time control applications such as industrial motor drives; solar inverters and digital power;electrical vehicles and transportation; motor control; and sensing and signal processing. The C2000 line includesthe Premium performance MCUs and the Entry performance MCUs.The F2806x family of microcontrollers (MCUs) provides the power of the C28x core and CLA coupled with highlyintegrated control peripherals in low pin-count devices. This family is code-compatible with previous C28x-basedcode, and also provides a high level of analog integration.An internal voltage regulator allows for single-rail operation. Enhancements have been made to the HRPWMmodule to allow for dual-edge control (frequency modulation). Analog comparators with internal 10-bit referenceshave been added and can be routed directly to control the ePWM outputs. The ADC converts from 0 to3.3-V fixed ful

Description:

C2000™ 32-bit microcontrollers are optimized for processing, sensing, and actuation to improve closed-loopperformance in real-time control applications such as industrial motor drives; solar inverters and digital power;electrical vehicles and transportation; motor control; and sensing and signal processing. The C2000 line includesthe Premium performance MCUs and the Entry performance MCUs.The F2806x family of microcontrollers (MCUs) provides the power of the C28x core and CLA coupled with highlyintegrated control peripherals in low pin-count devices. This family is code-compatible with previous C28x-basedcode, and also provides a high level of analog integration.An internal voltage regulator allows for single-rail operation. Enhancements have been made to the HRPWMmodule to allow for dual-edge control (frequency modulation). Analog comparators with internal 10-bit referenceshave been added and can be routed directly to control the ePWM outputs. The ADC converts from 0 to3.3-V fixed full-scale range and supports ratio-metric VREFHI/VREFLO references. The ADC interface has beenoptimized for low overhead and latency.

 Features:

• High-efficiency 32-bit CPU (TMS320C28x)

– 90 MHz (11.11-ns cycle time)

– 16 × 16 and 32 × 32 Multiply and Accumulate(MAC) operations

– 16 × 16 dual MAC

– Harvard bus architecture

– Atomic operations

– Fast interrupt response and processing

– Unified memory programming model

– Code-efficient (in C/C++ and Assembly)

• Floating-Point Unit (FPU)

– Native single-precision floating-point operations

• Programmable Control Law Accelerator (CLA)

– 32-bit floating-point math accelerator

– Executes code independently of the main CPU

• Viterbi, Complex Math, CRC Unit (VCU)

– Extends C28x instruction set to supportcomplex multiply, Viterbi operations, and CyclicRedundency Check (CRC)

• Embedded memory

– Up to 256KB of flash

– Up to 100KB of RAM

– 2KB of One-Time Programmable (OTP) ROM

• 6-channel Direct Memory Access (DMA)

• Low device and system cost

– Single 3.3-V supply

– No power sequencing requirement

– Integrated power-on reset and brownout reset

– Low-power operating modes

– No analog support pin

• Endianness: Little endian

• JTAG boundary scan support

– IEEE Standard 1149.1-1990 Standard TestAccess Port and Boundary Scan Architecture

• Clocking

– Two internal zero-pin oscillators

– On-chip crystal oscillator/external clock input

– Watchdog timer module

– Missing clock detection circuitry

• Peripheral Interrupt Expansion (PIE) block thatsupports all peripheral interrupts

• Three 32-bit CPU timers

• Advanced control peripherals

• Up to 8 Enhanced Pulse-Width Modulator (ePWM)modules

– 16 PWM channels total (8 HRPWM-capable)

– Independent 16-bit timer in each module

• Three input Enhanced Capture (eCAP) modules

• Up to 4 High-Resolution Capture (HRCAP)modules

• Up to 2 Enhanced Quadrature Encoder Pulse(eQEP) modules

• 12-bit Analog-to-Digital Converter (ADC), dualSample-and-Hold (S/H)

– Up to 3.46 MSPS

– Up to 16 channels

• On-chip temperature sensor

• 128-bit security key and lock

– Protects secure memory blocks

– Prevents reverse-engineering of firmware

• Serial port peripherals

– Two Serial Communications Interface (SCI)[UART] modules

– Two Serial Peripheral Interface (SPI) modules

– One Inter-Integrated-Circuit (I2C) bus

– One Multichannel Buffered Serial Port (McBSP)bus

– One Enhanced Controller Area Network(eCAN)

– Universal Serial Bus (USB) 2.0(see Device Comparison for availability)

• Full-speed device mode

• Full-speed or low-speed host mode

• Up to 54 individually programmable, multiplexedGeneral-Purpose Input/Output (GPIO) pins withinput filtering

• Advanced debug features

– Analysis and breakpoint functions

– Real-time debug through hardware

• Package options

– 80-pin PFP and 100-pin PZP PowerPAD™Thermally Enhanced Thin Quad Flatpacks(HTQFPs)

– 80-pin PN and 100-pin PZ Low-Profile QuadFlatpacks (LQFPs)

• Temperature options

– T: –40°C to 105°C

– S: –40°C to 125°C– 

Q: –40°C to 125°C (AEC Q100 qualification forautomotive applications)

 Applications:

• Air conditioner outdoor unit

• Door operator drive control

• Inverter & motor control

• On-board (OBC) & wireless charger

• Automated sorting equipment

• CNC control

• Textile machine

• Welding machine

• EV charging station power module

• Wireless vehicle charging module

• Energy storage power conversion system (PCS)

• Central inverter

• Micro inverter

• Solar power optimizer

• String inverter

• AC drive control module

• AC drive power stage module

• Linear motor power stage

• Servo drive control module

• Servo drive power stage module

• AC-input BLDC motor drive

• DC-input BLDC motor drive

• Industrial AC-DC

• Three phase UPS


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