MSPM0 SDK Examples Guide

1. Introduction

The MSPM0 SDK is packaged with a wide selection of code examples to enable engineers to develop applications on Texas Instruments’ MSPM0 family of microcontrollers.

The examples folder is divided into RTOS and non-RTOS subfolders (currently only non-RTOS is supported). These folders contain examples for each LaunchPad and are organized based on function with lower-level Driverlib examples, higher-level TI Drivers examples, and examples for middleware such as GUI Composer, LIN, IQMath, and others.

Some examples support SysConfig to simplify the device configuration and accelerate software development. Refer to the SDK QuickStart guide for more details on how to get started using SysConfig, and look for the SysConfig symbol image0 in the sections below.

2. MSPM0 SDK Examples

2.1 Demos

The MSPM0 SDK includes several demos to showcase the functionalities of various devices.

Each demo is packaged with its own documentation, full source code, and project files for different supported IDEs and compilers, making the demos easy to use.

Stay tuned for more examples and functionality.

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

TPS929xxx_control_uart_over_can

This example shows the implementation of using MSPM0 to control BQ79616 to detect the battery status.

image1

N

N

N

N

N

N

blood_pressure_monitor

Blood Pressure Monitor demos

N

Y

N

N

N

N

N

bq7690x_control_i2c

Demonstrate BQ7690x control through I2C

N

image2

N

N

N

N

N

bq769x2_TIDA010247

Demonstrate using MSPM0 to control BQ76972 for reference design TIDA-010247

N

N

N

N

image3

N

N

bq769x2_control_i2c

Demonstrate BQ769x2 control through I2C

image4

image5

N

N

N

N

N

bq79616_uart_to_can

This example shows the implementation of using MSPM0 to control BQ79616 to detect the battery status.

image6

N

N

N

N

N

N

dualray_smoke_detector

Dualray smoke detector demo

N

image7

N

N

N

N

N

lcd_multi_port

1-wire target emulating a EEPROM interface

image8

N

N

N

N

N

N

lcd_single_port

1-wire target emulating a EEPROM interface

image9

image10

N

N

N

N

N

motor_control_bdc_sensor

This example shows a closed-loop control method for BDC motor.

N

N

image11

N

N

N

N

one_wire

1-wire target emulating a EEPROM interface

N

image12

N

N

N

N

N

out_of_box

Out of Box experience for MSPM0 LaunchPads

Y

Y

Y

Y

Y

N

N

pga460_control_spi

This example shows the driver program for the PGA460

N

N

image13

N

N

N

N

pir_motion_detection

PIR Motion Detection using integrated OPA for the signal chain

N

image14

N

N

N

N

N

pulse_oximeter

Pulse oximeter demos

N

image15

N

N

N

N

N

2.2 DriverLib

DriverLib is a set of low level drivers providing an API for accessing MSPM0 registers and full device functionality.

The examples below use the Driverlib API to demonstrate the device functionality and range from simple use cases such as toggling a GPIO output pin to more complex use cases where multiple device peripherals are used.

Each example is packaged with its own documentation, full source code, and project files for different supported IDEs and compilers, making the examples easy to use.

2.2.1 AES Accelerator (AES)

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

aes_cbc_256_enc_dec

AES256 CBC encryption and decryption example

image16

N

N

N

N

N

N

aes_cfb_256_decrypt

AES CFB 256 bit decryption example

image17

N

N

N

N

N

N

aes_ofb_128_encrypt

AES OFB 128 bit encryption example

image18

N

N

N

N

N

N

2.2.2 AESADV

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

aesadv_cbc_128_enc_dec

AES128 CBC encryption and decryption example

N

N

N

image19

image20

image21

N

aesadv_cmac_256_enc_dec

AES256 CMAC tag generation example

N

N

N

image22

image23

N

N

aesadv_ctr_128_enc_dec

AES128 CTR encryption and decryption example

N

N

N

image24

image25

image26

N

aesadv_ecb_128_enc_dec

AES128 ECB encryption and decryption example

N

N

N

image27

image28

image29

N

aesadv_ecb_256_encrypt

Performs 256-bit AES ECB encryption using the on-board AESADV engine with a software wrapper

N

N

N

image30

image31

image32

N

aesadv_gcm_128_enc_dec

AES128 GCM encryption and decryption example

N

N

N

image33

image34

N

N

2.2.3 Analog-to-Digital Converter (ADC)

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

adc12_14bit_resolution

ADC12 conversion at maximum frequency using DMA with hardware averaging enabled

image35

image36

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image38

image39

image40

image41

adc12_internal_temp_sensor_mathacl

ADC12 samples internal temperature sensor and converts reading to Celsius and Fahrenheit degrees

image42

N

N

N

image43

N

N

adc12_max_freq_dma

ADC12 conversion at maximum frequency using DMA

image44

image45

image46

image47

image48

image49

image50

adc12_max_freq_dma_8bit

ADC12 conversion at maximum frequency using DMA in 8 bit resolution

image51

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image57

adc12_monitor_supply

ADC12 monitors voltage supply channel

image58

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image64

adc12_sequence_conversion

Demonstrate configuring ADC to trigger sequence of conversions on 4 different channels

image65

image66

N

image67

image68

image69

image70

adc12_simultaneous_trigger_event

Dual ADC12 conversion triggered by a Timer event

image71

N

N

N

image72

N

N

adc12_simultaneous_trigger_event_stop

Dual ADC12 conversion triggered by a Timer event while in STOP mode

image73

N

N

N

image74

N

N

adc12_single_conversion

ADC12 simple single conversion triggered by software

image75

image76

image77

image78

image79

image80

image81

adc12_single_conversion_vref_external

ADC12 single conversion triggered by software using external reference

image82

image83

N

image84

image85

image86

image87

adc12_single_conversion_vref_internal

ADC12 single conversion triggered by software using internal VREF

image88

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adc12_triggered_by_timer_event

ADC12 conversion triggered by a Timer event

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adc12_triggered_by_timer_event_stop

ADC12 conversion triggered by a Timer event while in STOP mode

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image108

adc12_window_comparator

ADC12 single conversion in repeat mode using window comparator feature

image109

image110

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image114

image115

2.2.4 Beeper

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

beeper_output

Configure the BEEPER to output a square wave at 1 kHz

N

N

image116

N

N

N

image117

2.2.5 CRCP

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

crcp_calculate_checksum

CRCP16 checksum calculation of a memory block

N

N

N

image118

image119

image120

N

crcp_calculate_checksum_dma

CRCP16 checksum calculation of a memory block using DMA block transfer

N

N

N

image121

image122

image123

N

2.2.6 Comparator (COMP)

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

comp_analog_filter

Comparator using external inputs with hysteresis and output analog filter

image124

image125

N

image126

image127

N

N

comp_dac_to_timer_event

Comparator output using 8-bit DAC triggers a timer event to measure timing

image128

image129

N

image130

image131

N

N

comp_hs_dac_vref_external

Comparator in high-speed mode using 8-bit DAC with external VREF

image132

image133

N

image134

image135

N

N

comp_hs_tima_pwm_fault

Comparator in high-speed mode triggers a TIMA fault

image136

N

N

N

image137

N

N

comp_lp_dac_vref_internal

Comparator in low-power mode using 8-bit DAC with internal VREF

image138

N

N

N

image139

N

N

2.2.7 Controller Area Network (CAN)

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

mcan_loopback

MCAN transmits and receives messages using loopback mode

image140

N

N

N

image141

N

N

mcan_message_rx

Example configured to receive CAN and CAN-FD frames

image142

N

N

N

image143

N

N

mcan_message_rx_tcan114x

Example configured to receive CAN and CAN-FD frames using BOOSTXL-TCAN1145 boosterpack.

image144

N

N

N

image145

N

N

mcan_multi_message_tx

CAN-FD transmits two messages with unique ID on GPIO interrupt

image146

N

N

N

image147

N

N

mcan_multi_message_tx_tcan114x

CAN-FD transmits two messages with unique ID on GPIO interrupt using BOOSTXL-TCAN1145 boosterpack.

image148

N

N

N

image149

N

N

mcan_single_message_tx

CAN-FD transmits a single message on GPIO interrupt

image150

N

N

N

image151

N

N

2.2.8 Cyclic Redundancy Check (CRC)

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

crc_calculate_checksum

CRC checksum calculation of a memory block

image152

image153

image154

N

N

N

image155

crc_calculate_checksum_dma

CRC32 checksum calculation of a memory block using DMA block transfer

image156

image157

image158

N

N

N

image159

2.2.9 Digital-to-Analog Converter (DAC)

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

dac12_dma_sampletimegen

DAC12 using DMA with sample time generator to generate sine wave

image160

N

N

N

image161

N

N

dac12_fifo_sampletimegen

DAC12 sending repetitive signal using FIFO and sample timer generator

image162

N

N

N

image163

N

N

dac12_fifo_timer_event

DAC12 sending a sawtooth signal using FIFO and triggered by a Timer event

image164

N

N

N

image165

N

N

dac12_fixed_voltage_vref_internal

DAC12 setting a fixed voltage output

image166

N

N

N

image167

N

N

2.2.10 Direct Memory Access (DMA)

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

dma_block_transfer

DMA copies from Flash main memory to SRAM memory

image168

image169

image170

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image172

image173

image174

dma_fill_data

DMA memory fill of SRAM using DMA

image175

image176

N

image177

image178

image179

image180

dma_table_transfer

DMA using Table mode with DMA

image181

image182

N

image183

image184

image185

image186

2.2.11 Events Manager

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

event_input_triggers_output

Event configuration to toggle LED when switch is pressed

image187

image188

image189

image190

image191

image192

image193

2.2.12 GPIO

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

gpio_input_capture

GPIO triggers interrupt by input capture pin

image194

image195

image196

image197

image198

image199

image200

gpio_simultaneous_interrupts

Demonstrates how to simultaneously service three GPIO interrupts

image201

N

N

N

image202

N

N

gpio_software_poll

GPIO output is set based on polled input

image203

image204

image205

image206

image207

image208

image209

gpio_toggle_output

GPIO toggling an output pin

image210

image211

image212

image213

image214

image215

image216

gpio_toggle_output_cpp

GPIO toggling output pins using C++

image217

image218

N

image219

image220

image221

image222

gpio_toggle_output_hiz

GPIO toggling an ouputput pin configured as Hi-Z

image223

image224

image225

image226

image227

image228

image229

2.2.13 General-Purpose Amplifier (GPAMP)

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

gpamp_buffer_to_adc

GPAmp configured in buffer mode with output to ADC

image230

image231

N

N

N

N

N

gpamp_general_purpose_rri

GPAmp configured in general purpose Rail-to-Rail mode

image232

image233

N

N

N

N

N

2.2.14 IWDT

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

iwdt_periodic_reset

Periodic reset of the indepedent watchdog timer in LFSS.

N

N

N

image234

image235

image236

image237

2.2.15 Inter-Integrated Circuit (I2C)

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

i2c_controller_rw_multibyte_fifo_interrupts

I2C Controller reading and writing multiple bytes using interrupts with FIFO

image238

image239

image240

image241

image242

image243

image244

i2c_controller_rw_multibyte_fifo_poll

I2C Controller reading and writing multiple bytes polling FIFO

image245

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image247

image248

image249

image250

image251

i2c_controller_target_dynamic_switching

I2C dynamic switching between Controller and Target modes

image252

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image254

image255

image256

image257

image258

i2c_multicontroller_arbitration

I2C Controller detecting arbitration error

image259

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image261

image262

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image265

i2c_target_rw_multibyte_fifo_interrupts

I2C Target reading and writing multiple bytes using interrupts

image266

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image272

i2c_target_rw_multibyte_fifo_interrupts_stop

I2C Target reading and writing multiple bytes using interrupts while in STOP mode

image273

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image279

i2c_target_rw_multibyte_fifo_poll

I2C Target reading and writing multiple bytes polling FIFO

image280

image281

image282

image283

image284

image285

image286

2.2.16 LCD

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

lcd_write_memory

Write characters to onboard LCD.

N

N

N

image287

N

N

N

2.2.17 Math Accelerator (MATHACL)

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

mathacl_mpy_div_op

MATHACL implementation of trigonometric functions

image288

N

N

N

image289

N

N

mathacl_trig_op

MATHACL implementation of trigonometric functions

image290

N

N

N

image291

N

N

2.2.18 Non-Volatile Memory (FLASHCTL)

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

flashctl_blank_verify

Implementation of Flash Blank Verify command

image292

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image295

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image297

image298

flashctl_dynamic_memory_protection

Flash configured with dynamic protection

image299

image300

image301

image302

image303

image304

image305

flashctl_ecc_error_injection

Flash ECC testing and SEC and DED error detection

image306

N

N

image307

image308

N

N

flashctl_multiple_size_read_verify

Implementation of Flash read verify commands on multiple data sizes, with and without ECC

image309

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image311

image312

image313

image314

image315

flashctl_multiple_size_write

Flash writing of different size data

image316

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image319

image320

image321

image322

flashctl_nonmain_memory_write

Read-write of Non-Main Flash memory

image323

image324

image325

image326

N

image327

image328

flashctl_program_with_ecc

Flash writing of different size data

image329

N

N

image330

image331

N

N

2.2.19 Operational Amplifier (OPA)

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

opa_burnout_current_source_to_adc

OPA in buffer mode enabling burnout current source to ADC

image332

image333

N

N

N

N

N

opa_dac8_output_buffer

OPA in output buffer mode using 8-bit DAC

image334

image335

N

N

N

N

N

opa_general_purpose_rri

OPA in general purpose mode with Rail-to-Rail configuration

image336

image337

N

N

N

N

N

opa_inverting_pga_with_dac

OPA in inverting PGA configuration using DAC12 as bias

image338

N

N

N

N

N

N

opa_non_inverting_pga

OPA in non-inverting PGA configuration

image339

image340

N

N

N

N

N

opa_signal_chain_to_adc

Two OPAs configured in TIA and PGA, connected to ADC

image341

N

N

N

N

N

N

2.2.20 Other

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

cinit_bypass

Bypass CINIT skipping variable initialization

image342

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image344

image345

image346

image347

image348

empty

Empty example to be used as a starting point for new development

image349

image350

image351

image352

image353

image354

image355

empty_cpp

Empty start-up project in C++

image356

image357

N

image358

image359

image360

image361

empty_driverlib_library

Empty start-up project that generates a static library for DriverLib

Y

Y

Y

Y

Y

Y

Y

empty_driverlib_src

Empty start-up project that includes a copy of the DriverLib source code

image362

image363

image364

image365

image366

image367

image368

empty_non_sysconfig

Empty start-up project that does not use SysConfig

Y

Y

Y

Y

Y

Y

Y

nvic_interrupt_disable

NVIC used to demonstrate best approach to disable interrupts

image369

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image371

image372

image373

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image375

nvic_interrupt_grouping

NVIC configuration and use of interrupt grouping

image376

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image381

N

sram_parity

Initializes and uses Parity SRAM

image382

N

N

image383

image384

image385

image386

systick_periodic_timer

SysTick generates periodic interrupt

image387

image388

N

image389

image390

image391

image392

2.2.21 Real-Time Clock (RTC)

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

rtc_a_tamper_timestamp_event

Generates a time stamp event on RTC_A upon tamper detection

N

N

N

image393

N

N

N

rtc_b_calendar_alarm_standby

RTC sets calendar alarm and toggles GPIO when alarm is triggered

N

N

N

N

image394

image395

image396

rtc_b_offset_calibration_lfxt

RTC offset correction of crystal

N

N

N

N

image397

image398

image399

rtc_calendar_alarm_standby

RTC sets calendar alarm and toggles GPIO when alarm is triggered

image400

N

N

N

N

N

N

rtc_offset_calibration_lfxt

RTC offset correction of crystal

image401

N

N

N

image402

N

N

rtc_periodic_alarm_lfosc_standby

RTC implementation of periodic alarm in STANDBY using LFOSC

image403

N

N

N

image404

N

N

rtc_periodic_alarm_lfxt_standby

RTC implementation of periodic alarm in STANDBY using LFXT

image405

N

N

N

N

N

N

2.2.22 Scratchpad

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

scratchpad_erase_on_tamper

Erases scratchpad data upon detection of tamper

N

N

N

image406

N

N

N

scratchpad_retain_on_vdd_loss

Retains scratchpad data on loss of VDD power.

N

N

N

image407

N

N

N

2.2.23 Serial Peripheral Interface (SPI)

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

spi_controller_command_data_control

SPI Controller transmit using command data (CD) control

image408

image409

image410

image411

image412

image413

image414

spi_controller_echo_interrupts

SPI Controller transmits data using Motorola format

image415

image416

N

image417

image418

image419

image420

spi_controller_fifo_dma_interrupts

SPI Controller reading and writing multiple bytes using FIFO and DMA

image421

image422

N

N

image423

N

image424

spi_controller_internal_loopback_poll

SPI Controller with internal loopback using polling

image425

image426

image427

image428

image429

image430

image431

spi_controller_multibyte_fifo_poll

SPI Controller reading and writing multiple bytes polling FIFO

image432

image433

image434

image435

image436

image437

image438

spi_controller_register_format

SPI Controller transmit and read data using register format

image439

image440

image441

image442

image443

image444

image445

spi_controller_repeated_fifo_dma_interrupts

SPI Controller reading and writing multiple bytes using FIFO and DMA every second

image446

image447

N

image448

image449

image450

image451

spi_peripheral_echo_interrupts

SPI Peripheral echoes data using Motorola format

image452

image453

image454

image455

image456

image457

image458

spi_peripheral_fifo_dma_interrupts

SPI Peripheral reading and writing multiple bytes using FIFO and DMA

image459

image460

N

N

image461

N

image462

spi_peripheral_multibyte_fifo_poll

SPI Peripheral reading and writing multiple bytes polling FIFO

image463

image464

image465

image466

image467

image468

image469

spi_peripheral_register_format

SPI Peripheral transmit and read data using register format

image470

image471

image472

image473

image474

image475

image476

spi_peripheral_repeated_fifo_dma_interrupts

SPI Peripheral reading and writing multiple bytes using FIFO and DMA

image477

image478

N

image479

image480

image481

image482

2.2.24 System Controller (SYSCTL)

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

sysctl_frequency_clock_counter

Monitor SYSOSC via Frequency Clock Counter (FCC)

image483

image484

image485

image486

image487

image488

image489

sysctl_hfxt_run

Sets external HFXT as source to HSCLK and MCLK (48MHz)

image490

N

N

image491

image492

N

image493

sysctl_lfxt_standby

Sets LFXT as source to LFCLK (32kHz) and power policy in STANDBY0

image494

N

N

image495

image496

image497

image498

sysctl_mclk_syspll

Sets MCLK to run from SYSPLL (80MHz)

image499

N

N

N

image500

N

N

sysctl_power_policy_sleep_to_standby

SYSCTL switches between SLEEP mode and STANDBY modes

image501

image502

image503

image504

image505

image506

image507

sysctl_power_policy_sleep_to_stop

SYSCTL switches between SLEEP mode and STOP modes

image508

image509

image510

image511

image512

image513

image514

sysctl_shutdown

Show correct wake-up mechanism after SHUTDOWN vs STOP, STANDBY and SLEEP

image515

image516

image517

image518

image519

image520

image521

2.2.25 Tamper IO

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

tamperio_heartbeat

Configures a TamperIO pin to continuously output a heartbeat

N

N

N

image522

N

N

N

2.2.26 Timer - Advanced (TIMA)

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

tima_timer_mode_periodic_repeat_count

TimerA in periodic mode using repeat-count feature

image523

N

image524

image525

image526

image527

image528

tima_timer_mode_pwm_dead_band

TimerA outputs PWM signals with dead band insertion

image529

N

image530

image531

image532

image533

image534

tima_trigger_fail_mechanism

TimerA demonstrating fault detection

image535

N

image536

image537

image538

image539

image540

2.2.27 Timer - General Purpose (TIMG)

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

timg_32bit_timer_mode_periodic_sleep

32-bit timer in periodic mode while device is in SLEEP mode

image541

N

N

N

image542

N

N

timg_32bit_timer_mode_pwm_edge_sleep

32-bit timer in PWM edge aligned mode while device is in SLEEP mode

image543

N

N

N

image544

N

N

timg_qei_mode

TimerG uses QEI to decode relative position output of a quadrature encoder

image545

N

image546

N

image547

N

N

2.2.28 Timer - Generic (TIMx)

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

timx_timer_mode_capture_duty_and_period

Timer calculates period and duty cycle

image548

image549

image550

image551

image552

image553

image554

timx_timer_mode_capture_edge_capture

Timer edge time detection using Timer capture mode

image555

image556

image557

image558

image559

image560

image561

timx_timer_mode_compare_edge_count

Timer edge counting capability using compare mode

image562

image563

image564

image565

image566

image567

image568

timx_timer_mode_one_shot_standby

Timer in one-shot mode while device is in STANDBY mode

image569

image570

image571

image572

image573

image574

image575

timx_timer_mode_periodic_sleep

Timer in periodic mode while device is in SLEEP mode

image576

image577

image578

image579

image580

image581

image582

timx_timer_mode_periodic_standby

Timer in periodic mode while device is in STANDBY mode

image583

image584

image585

image586

image587

image588

image589

timx_timer_mode_periodic_stop

Timer in periodic mode while device is in STOP mode

image590

image591

image592

image593

image594

image595

image596

timx_timer_mode_pwm_center_stop

Timer in PWM center aligned mode while device is in STOP mode

image597

image598

image599

image600

image601

image602

image603

timx_timer_mode_pwm_edge_sleep

Timer in PWM edge aligned mode while device is in SLEEP mode

image604

image605

image606

image607

image608

image609

image610

timx_timer_mode_pwm_edge_sleep_shadow

Timer updating PWM duty cycle using shadow load feature

image611

image612

image613

image614

image615

image616

image617

timx_timer_mode_pwm_x_trig_stop_restore

Timer in PWM mode after coming out of STOP with retention in SW

image618

N

N

N

image619

N

N

2.2.29 True Random Number Generator (TRNG)

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

trng_sample

TRNG sampling to fill a buffer with random data

image620

N

N

N

image621

N

N

trng_sample_stop_restore

TRNG sample random data after coming out of STOP with retention in SW

image622

N

N

N

image623

N

N

2.2.30 Universal Asynchronous Receiver-Transmitter (UART)

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

uart_echo_interrupts_standby

UART RX/TX echo using interrupts while device is in STANDBY mode

image624

image625

image626

image627

image628

image629

image630

uart_extend_irda_receive_packet

UART Extend using IrDA encoding, send packet via UART

image631

N

N

N

image632

N

N

uart_extend_irda_send_packet

UART Extend using IrDA encoding, send packet via UART

image633

N

N

N

image634

N

N

uart_extend_manchester_echo

UART Extend using Manchester encoding, echo received packet

image635

image636

image637

image638

image639

image640

image641

uart_extend_manchester_send_packet

UART Extend using Manchester encoding and decoding, send a packet

image642

image643

image644

image645

image646

image647

image648

uart_external_loopback_interrupt

UART RX/TX external loopback using interrupts

image649

image650

image651

image652

image653

image654

image655

uart_internal_loopback_standby_restore

UART internal loopback after coming out of STANDBY with retention in SW

image656

N

N

N

image657

N

N

uart_rs485_receive_packet

Demonstrate UART in RS485 mode, receive a packet

image658

N

N

N

image659

N

N

uart_rs485_send_packet

Demonstrate UART in RS485 mode, send a packet

image660

N

N

N

image661

N

N

uart_rw_multibyte_fifo_poll

UART RX/TX using FIFOs with polling

image662

image663

image664

image665

image666

image667

image668

uart_rx_hw_flow_control

UART RX using HW flow control

image669

image670

image671

image672

image673

image674

image675

uart_rx_multibyte_fifo_dma_interrupts

UART RX using a DMA trigger

image676

image677

N

image678

image679

image680

image681

uart_tx_console_multibyte_repeated_fifo_dma

UART TX to a console using a continous DMA trigger

image682

image683

N

image684

image685

image686

image687

uart_tx_hw_flow_control

UART TX using hardware flow control

image688

image689

image690

image691

image692

image693

image694

uart_tx_multibyte_fifo_dma_interrupts

UART TX using a DMA trigger

image695

image696

N

image697

image698

image699

image700

2.2.31 Window Watchdog Timer (WWDT)

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

wwdt_interval_timer_lfosc_standby

WWDT interval timer mode using LFOSC while device is in STANDBY mode

image701

image702

image703

image704

image705

image706

image707

wwdt_interval_timer_lfxt_standby

WWDT interval timer mode using LFXT while device is in STANDBY mode

image708

N

N

image709

image710

image711

image712

wwdt_window_mode_periodic_reset

WWDT Window watchdog mode with periodic reset

image713

image714

image715

image716

image717

image718

image719

2.3 TI-Drivers

TI Drivers provide a robust set of intuitive, functional APIs that offer portable, feature-rich access to peripherals.

TI-Drivers for MSPM0 are under development, but the examples below provide a glimpse of expected functionality.

2.3.1 FreeRTOS

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

adc_singlechannel/freertos

Get the samples from the configured ADC channel and print them on the console using UART

Y

N

N

Y

Y

Y

N

empty_freertos/freertos

Empty example to be used as a starting point for new development using FreeRTOS

Y

N

N

Y

Y

Y

N

gpiointerrupt/freertos

Toggles the LED(s) using a GPIO pin interrupt

Y

N

N

Y

Y

Y

N

i2c_controller/freertos

Implements I2C controller sending commands to another device running i2c_target example

Y

N

N

Y

Y

Y

N

i2c_target/freertos

Responds to the i2c_controller example commands using the i2c target driver

Y

N

N

Y

Y

Y

N

i2c_tmp/freertos

Read temperature from Tmp117 Sensor using I2C

Y

N

N

Y

Y

Y

N

spi_controller/freertos

Demonstrates the SPI driver in controller mode to communicate with another LP_MSPM0G3507 running the spi_peripheral example

Y

N

N

Y

Y

Y

N

spi_peripheral/freertos

Demonstrates the SPI driver in peripheral mode to communicate with another LP_MSPM0G3507 running the spi_controller example

Y

N

N

Y

Y

Y

N

uart_callback/freertos

UART simple echo using callback

Y

N

N

Y

Y

Y

N

uart_echo/freertos

UART simple echo

Y

N

N

Y

Y

Y

N

2.3.2 No RTOS

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

uart_echo/nortos

UART simple echo

Y

N

N

Y

Y

Y

N

2.4 Battery Gauge

The MSPM0 SDK includes source code and examples showing the implementation of different battery gauge solutions. Documentation includes links to companion application reports describing the solutions in more detail.

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

gauge_level1

The level1 gauge approach utilizes the ADC to implement a low-cost voltage detection solution

N

Y

N

N

N

N

N

gauge_level2_bq76952

This example implements a Level2 gauge solution using BQ76952

image720

N

N

N

N

N

N

gauge_level2_standalone

The level2 gauge solution utilizes the ADC and OPAs on MSPM0 for high precision voltage and current detection

N

image721

N

N

N

N

N

self_calibrate_current_detection

This example demonstrates a self-calibratable, high precision and low-cost current detection solution based on MSPM0 internal OPAs

N

Y

N

N

N

N

N

2.5 Boot Image Manager (BIM)

The MSPM0 SDK includes a boot image manager implementation to demonstrate how a user can verify integrity and authenticity of images loaded onto their device.

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

bim_sample_image

Sample GPIO toggle image for BIM

image722

image723

N

N

N

N

N

boot_application

Boot Image Manager Using MCUBoot

image724

image725

N

N

N

N

N

customer_secure_code

Customer Secure Code based off MCUBoot

N

N

N

image726

image727

N

N

customer_secure_image_with_bootloader

Sample GPIO toggle image for Customer Secure Code

N

N

N

image728

image729

N

N

customer_secure_sample_image

Sample GPIO toggle image for Customer Secure Code

N

N

N

image730

image731

N

N

sha256_rom

Demonstartion of using SHA api exposed from ROM open section

N

N

N

N

Y

N

N

2.6 Bootstrap Loader (BSL)

The bootstrap loader (BSL) provides a method to program and/or verify the device memory through a standard UART or I2C serial interface. Among its features, the BSL supports MAIN flash plugins to enable additional interfaces and functionality.

The MSPM0 SDK includes examples showing how to implement plugins and other BSL functionality in MAIN Flash.

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

bsl_can_flash_interface

Shows an implementation of a BSL CAN Flash interface

image732

N

N

N

image733

N

N

bsl_host_mcu_to_mspm0c110x_target_i2c

Demonstrate how to program a MSPM0C110x MCU using a LP-MSPM0C1104 as host by BSL I2C interface.

N

N

image734

N

N

N

N

bsl_host_mcu_to_mspm0c110x_target_uart

Demonstrate how to program a MSPM0C110x MCU using a LP-MSPM0C1104 as host by BSL UART interface.

N

N

image735

N

N

N

N

bsl_host_mcu_to_mspm0g1x0x_g3x0x_target_can

Demonstrate how to program a MSPM0 MCU using a LP-MSPM0G3507 as host by BSL CAN interface.

image736

N

N

N

N

N

N

bsl_host_mcu_to_mspm0g1x0x_g3x0x_target_i2c

Demonstrate how to program a MSPM0 MCU using a LP-MSPM0G3507 as host by BSL I2C interface.

image737

N

N

N

N

N

N

bsl_host_mcu_to_mspm0g1x0x_g3x0x_target_spi

Demonstrate how to program a MSPM0 MCU using a LP-MSPM0G3507 as host by BSL SPI interface.

image738

N

N

N

N

N

N

bsl_host_mcu_to_mspm0g1x0x_g3x0x_target_uart

Demonstrate how to program a MSPM0 MCU using a LP-MSPM0G3507 as host by BSL UART interface.

image739

N

N

N

N

N

N

bsl_host_mcu_to_mspm0l11xx_l13xx_target_i2c

Demonstrate how to program a MSPM0L11xx_L13xx MCU using a LP-MSPM0L1306 as host by BSL I2C interface.

N

image740

N

N

N

N

N

bsl_host_mcu_to_mspm0l11xx_l13xx_target_spi

Demonstrate how to program a MSPM0L11xx_L13xx MCU using a LP-MSPM0L1306 as host by BSL SPI interface.

N

image741

N

N

N

N

N

bsl_host_mcu_to_mspm0l11xx_l13xx_target_uart

Demonstrate how to program a MSPM0L11xx_L13xx MCU using a LP-MSPM0L1306 as host by BSL UART interface.

N

image742

N

N

N

N

N

bsl_host_mcu_to_mspm0l122x_l222x_target_i2c

Demonstrate how to program a MSPM0L122x_L222x MCU using a LP-MSPM0L2228 as host by BSL I2C interface.

N

N

N

image743

N

N

N

bsl_host_mcu_to_mspm0l122x_l222x_target_spi

Demonstrate how to program a MSPM0L122x_L222x MCU using a LP-MSPM0L2228 as host by BSL SPI interface.

N

N

N

image744

N

N

N

bsl_host_mcu_to_mspm0l122x_l222x_target_uart

Demonstrate how to program a MSPM0L122x_L222x MCU using a LP-MSPM0L2228 as host by BSL UART interface.

N

N

N

image745

N

N

N

bsl_i2c_flash_interface

Shows an implementation of BSL I2C Flash interface

image746

image747

N

image748

image749

image750

N

bsl_software_invoke_app_demo_can

Demonstrates an application request to reset the device and jump to the ROM bootloader (BSL).

image751

N

N

N

N

N

N

bsl_software_invoke_app_demo_i2c

Demonstrates an application request to reset the device and jump to the ROM bootloader (BSL).

image752

image753

image754

image755

N

N

N

bsl_software_invoke_app_demo_spi

Demonstrates an application request to reset the device and jump to the ROM bootloader (BSL).

image756

image757

N

image758

N

N

N

bsl_software_invoke_app_demo_uart

Demonstrates an application request to reset the device and jump to the ROM bootloader (BSL).

image759

image760

image761

image762

N

N

N

bsl_spi_flash_interface

Shows an implementation of a BSL SPI Flash interface

image763

image764

N

image765

image766

image767

N

bsl_uart_flash_interface

Shows an implementation of a BSL UART Flash interface

image768

image769

N

image770

image771

image772

N

flash_bsl

Provides BSL suport from flash memory

N

N

image773

N

N

N

image774

secondary_bsl_can

Implements a secondary bootloader in Main overriding the ROM BSL

image775

N

N

N

N

N

N

secondary_bsl_i2c

Implements a secondary bootloader in Main overriding the ROM BSL

image776

image777

N

image778

image779

image780

N

secondary_bsl_spi

Implements a secondary bootloader in Main overriding the ROM BSL

image781

image782

N

image783

image784

image785

N

secondary_bsl_uart

Implements a secondary bootloader in Main overriding the ROM BSL

image786

image787

N

image788

image789

image790

N

2.7 CMSIS-DSP

The CMSIS DSP software library includes a comprehensive set of signal processing functions for use on Cortex-M MCUs.

The MSPM0 SDK includes examples showing how to get started using CMSIS DSP.

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

cmsis_dsp_empty

Empty example using CMSIS-DSP

image791

image792

N

N

image793

image794

image795

cmsis_dsp_fft_q15

FFT of fixed point array using CMSIS-DSP

image796

image797

N

N

image798

image799

image800

2.8 UART COMMUNICATION MODULE

MSPM0 Communication Modules - UART module provides a simple way for the application developer to integrate UART based communication module for communication.

The MSPM0 SDK includes easy-to-use examples for Controller and Target.

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

i2c_controller

Generic I2C Communication Module - Controller code

image801

N

N

N

image802

N

N

i2c_target

Generic I2C Communication Module - Target code

image803

N

N

N

image804

N

N

uart_controller

Generic UART Communication Module - Controller code

image805

N

N

N

image806

N

N

uart_target

Generic UART Communication Module - Target code

image807

N

N

N

image808

N

N

2.9 DALI

MSPM0 supports the DALI Protocol via the UART module. DALI (Digitally Addressable Lighting Interface) is a serial protocol for digital lighting control that allows for simple and efficient communication between various lighting application gear and controllers.

The MSPM0 SDK includes the source code and examples showing the implementation of supported solutions.

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

dali_led_demo

Demonstrates usage of DALI protocol with an LED control demo

N

image809

N

image810

N

N

N

2.10 EEPROM

MSPM0 supports EEPROM emulation through its internal Flash. Compared to using an external serial EEPROM, EEPROM emulation using the internal Flash saves pin usage and cost.

The MSPM0 SDK includes a library and examples showing the implementation of supported solutions.

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

eeprom_emulation_type_a

Demonstrates Type A EEPROM emulation to store non-volatile data

Y

Y

Y

Y

Y

Y

Y

eeprom_emulation_type_a_test

Demonstrates a more detailed use case of Type A EEPROM emulation to store blocks of non-volatile data

Y

Y

Y

Y

Y

Y

Y

eeprom_emulation_type_b

Demonstrates Type B EEPROM emulation to store user data

Y

Y

Y

Y

Y

Y

Y

eeprom_emulation_type_b_test

Demonstrates a more detailed use case of Type B EEPROM emulation to store user data

Y

Y

Y

Y

Y

Y

Y

2.11 Energy Library

The MSPM0 SDK includes a collection of energy measurement examples designed to get you started quickly in testing and developing energy measurement applications.

Stay tuned for more examples and functionality coming soon.

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

single_phase_TIDA_010940_SW

Firmware for single phase measurement using MSPM0L2228, AMC131M03 and ADS131M02

N

N

N

image811

N

N

N

split_phase_TIDA_010944_SW

Firmware for Split phase measurement using MSPM0G3507, ADS131M02 and AMC131M03

image812

N

N

N

N

N

N

three_phase_TIDA_010243_SW

Firmware for 3 phase measurement using MSPM0G3507 and ADS131M08

image813

N

N

N

N

N

N

three_phase_TIDA_010244_SW

Firmware for 3 phase measurement using MSPM0G3507 and 4xAMC131M03

image814

N

N

N

N

N

N

2.12 GUI Composer

GUI Composer is a browser-based tool for developing PC-side HTML-based GUIs that can complement your embedded project or application.

The MSPM0 SDK includes a library and various examples showing the implementation of supported protocols.

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

gc_simple_json

Demonstrates basic usage of GUI Composer communication using JSON-formatted strings

image815

image816

N

N

image817

image818

image819

gc_simple_messagepack

Demonstrates basic usage of GUI Composer communication using MessagePack protocol

image820

image821

N

N

image822

image823

image824

2.13 IQMath

IQMath is a collection of highly optimized and high-precision fixed-point mathematical functions.

The MSPM0 SDK includes IQMath support using simple C runtime-system (RTS) functions, and leveraging the MathAcl hardware accelerator.

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

iqmath_mathacl_ops_test

Implements various fixed-point operations leveraging the MathACL implementation of IQMath

image825

N

N

N

image826

N

N

iqmath_rts_ops_test

Implements various fixed-point operations leveraging the RTS implementation of IQMath

image827

image828

N

image829

image830

image831

image832

2.14 RTOS Kernel

The MSPM0 SDK includes a collection of examples to test kernel functionality.

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

blink_led

Simple FreeRTOS LED blinky demo using two tasks

image833

N

N

image834

image835

image836

N

posix_demo

Simple Posix FreeRTOS blinky LED demo

image837

N

N

image838

image839

image840

N

2.15 LIN

The Local Interconnect Network (LIN) is a multipoint, low-cost, easily-implemented communication bus commonly used in automobiles.

The MSPM0 SDK includes easy-to-use examples for Commander and Responder.

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

lin_commander

Demonstrates basic implementation of LIN commander to transmit and receive LIN 2.0 packets using UART

image841

image842

image843

N

image844

image845

image846

lin_responder

Demonstrates basic implementation of LIN responder to transmit and receive LIN 2.0 packets using UART

image847

image848

image849

N

image850

image851

image852

2.16 Sensored Trap Hall Motor Control

The MSPM0 SDK includes examples to evaluate the sensored trap hall motor control library with the DRV8300DRGEEVM, DRV8311HEVM, DRV8316REVM, DRV8317HEVM, DRV8323RHEVM, DRV8328AEVM, DRV8329AEVM and DRV8353RHEVM. These firmware are designed for a GUI to make testing and evaluation quick for the user.

Stay tuned for more examples and functionality coming soon.

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

drv8300drgeevm-gui-firmware

Firmware for LP_MSPM0G3507 and drv8300drge EVM GUI

image853

N

N

N

N

N

N

drv8311hevm-gui-firmware

Firmware for LP_MSPM0G3507 and drv8311h EVM GUI

image854

N

N

N

N

N

N

drv8316revm-gui-firmware

Firmware for LP_MSPM0G3507 and DRV8316R EVM GUI

image855

N

N

N

N

N

N

drv8317hevm-gui-firmware

Firmware for LP_MSPM0G3507 and drv8317h EVM GUI

image856

N

N

N

N

N

N

drv8323rhevm-gui-firmware

Firmware for LP_MSPM0G3507 and drv8323rh EVM GUI

image857

N

N

N

N

N

N

drv8328aevm-gui-firmware

Firmware for LP_MSPM0G3507 and DRV8328A EVM GUI

image858

N

N

N

N

N

N

drv8329aevm-gui-firmware

Firmware for DRV8329A EVM GUI

image859

image860

N

N

N

N

N

drv8353rhevm-gui-firmware

Firmware for LP_MSPM0G3507 and drv8353rh EVM GUI

image861

N

N

N

N

N

N

tida-010251-gui-firmware

Firmware for LP_MSPM0G1507 and DRV8328 motor driver

image862

N

N

N

N

N

N

2.17 Brushed Motor Control

The MSPM0 SDK includes an example to evaluate the brushed motor control library with the DRV8706-Q1 EVM. This firmware was designed for a GUI to make testing and evaluation quick for the user.

Stay tuned for more examples and functionality coming soon.

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

drv8706s-q1-evm-gui-firmware

Firmware for LP_MSPM0L1306 and DRV8706S-Q1 EVM GUI

N

image863

N

N

N

N

N

2.18 Sensorless FOC Motor Control

The MSPM0 SDK includes examples to evaluate the sensorless FOC motor control library with the DRV8323RS EVM. These firmware are designed for a GUI to make testing and evaluation quick for the user.

Stay tuned for more examples and functionality coming soon.

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

hall_sensored-foc_DRV8316

Sensorless FOC code for MSPM0Gx5xx and DRV8316REVM

image864

N

N

N

image865

N

N

hall_sensored-foc_TIDA010251

Sensorless FOC code for TIDA010251 reference design

image866

N

N

N

N

N

N

2.19 Sensorless FOC Motor Control

The MSPM0 SDK includes examples to evaluate the sensorless FOC motor control library with the DRV8323RS EVM. These firmware are designed for a GUI to make testing and evaluation quick for the user.

Stay tuned for more examples and functionality coming soon.

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

sensorless-foc_DRV8316

Sensorless FOC code for LP_MSPM0G35xx and DRV8316REVM

image867

N

N

N

image868

N

N

sensorless-foc_DRV8323RS

image869

N

N

N

image870

N

N

sensorless-foc_DRV8329

Sensorless FOC code for LP_MSPM0G35xx and DRV8329AEVM

image871

N

N

N

image872

N

N

sensorless-foc_TIDA010250

Sensorless FOC code for TIDA010250 reference design

image873

N

N

N

N

N

N

2.20 Stepper Motor Control

The MSPM0 SDK includes examples to evaluate the stepper motor control library with the DRV8411A and DRV8889-q1 EVM. These firmwares were designed for a GUI to make testing and evaluation quick for the user.

Stay tuned for more examples and functionality coming soon.

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

drv8411aevm-gui-firmware

Firmware for LP_MSPM0L1306 and DRV8411AEVM GUI

N

image874

N

N

N

N

N

drv8889-q1evm-gui-firmware

Firmware for LP_MSPM0L1306 and DRV8889-Q1 EVM GUI

N

image875

N

N

N

N

N

2.21 Sensorless FOC Motor Control

The MSPM0 SDK includes examples to evaluate the sensorless FOC motor control library with the DRV8323RS EVM. These firmware are designed for a GUI to make testing and evaluation quick for the user.

Stay tuned for more examples and functionality coming soon.

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

universal-foc_DRV8316

image876

N

N

N

image877

N

N

universal-foc_DRV8323RS

Sensorless FOC code for LP_MSPM0G35xx and BOOSTXL-DRV8323RS

image878

N

N

N

image879

N

N

universal-foc_DRV8329

Sensorless FOC code for LP_MSPM0G35xx and DRV8329AEVM

image880

N

N

N

image881

N

N

universal-foc_TIDA010250

Sensorless FOC code for TIDA010250 reference design

image882

N

N

N

N

N

N

2.22 MSP Subsystems

Accelerate your development with our broad selection of MSPM0 subsystems, integrating our application building blocks to simplify your software efforts. You can easily adapt each subsystem to meet your specific end-equipment needs using our step-by-step instructions, design insights, software, and suggestions for feature enhancements.

Each subsystem contains a subsystem design and software example.

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

adc_dma_ping_pong

Capture ADC data into 2 (ping-pong) buffers

image883

image884

N

image885

N

N

N

adc_to_i2c_target

Sample ADC and respond to I2C commands sent by a controller

image886

image887

N

N

N

N

N

adc_to_pwm

Convert analog voltage to PWM

image888

image889

N

image890

N

N

N

adc_to_spi_peripheral

Sample ADC and respond to SPI commands sent by a controller

image891

image892

N

N

N

N

N

adc_to_uart

Configures the ADC0 to trigger single conversion and send the ADC data through UART

image893

image894

N

image895

N

N

N

can_to_i2c_controller_bridge

Bridge between CAN interface and I2C controller interface

image896

N

N

N

N

N

N

can_to_i2c_target_bridge

Bridge between CAN interface and I2C target interface

image897

N

N

N

N

N

N

can_to_spi_bridge

Bridge between CAN interface and SPI interface

image898

N

N

N

N

N

N

can_to_uart_bridge

Bridge between CAN interface and UART interface

image899

N

N

N

N

N

N

dac8_dma_function_generator

Generates waveform using DAC8 with the DMA

image900

image901

N

N

N

N

N

data_sensor_aggregator

This example reads all the sensors on the BP-BASSENSORSMKI using I2C then transmits all of the data through UART to the MSPM0.

image902

N

N

N

N

N

N

digital_mux

Emulate a digital mux with GPIO

N

image903

N

N

N

N

N

diode_matrix

Drive LEDs with fewer pins using diode matrix

N

image904

N

N

N

N

N

fir_low_pass_filter

Applies digital FIR low-pass filter to sampled ADC signals

image905

N

N

N

N

N

N

frequency_counter_tone_detection

LED/Pin is toggled when analog input frequency is within desired range

N

image906

N

N

N

N

N

i2c_expander

I2C Target receives I2C transmissions and sends them on requested I2C interface

N

N

N

image907

N

N

N

i2c_expander_uart_to_i2c_bridge

Target receives UART transmission and sends an I2C transmission on the requested I2C interface, returning the data back via UART

N

image908

N

N

N

N

N

i2c_host_controller

Example I2C IO expander and I2C host controller

image909

image910

N

N

N

N

N

i2c_target_io_expander

Example I2C IO expander and I2C host controller

image911

image912

N

N

N

N

N

i2c_to_uart_bridge

I2C Target receives I2C transmissions and passes them on via UART

image913

N

N

image914

N

N

N

iir_low_pass_filter

Applies digital IIR filter to sampled ADC signals

image915

N

N

N

N

N

N

io_expander_i2c_host

Example I2C host controller

image916

image917

N

image918

N

N

N

io_expander_i2c_target

Example I2C IO expander target

image919

image920

N

image921

N

N

N

io_expander_uart

Capture several GPIOs’ status, update and send the status to host through UART

N

image922

N

N

N

N

N

io_expander_uart_i2c_spi

Capture several GPIOs’ status, update and send the status to host through UART

N

image923

image924

N

N

N

N

power_sequencing

This sub system allows for different pins/applications be turned on/off in a sequence as to not over load the device from simultaneous power consumption.

image925

image926

N

N

N

N

N

programmable_gain_amplifier_1

Use programmable gain amplifier to dynamically adjust gain

N

image927

N

N

N

N

N

programmable_gain_amplifier_2

Use programmable gain amplifier to dynamically adjust gain and capture values with integrated ADC

N

image928

N

N

N

N

N

pushbutton_change_pwm

This example demonstrates using the two switches on the MSPM0 Launchpad to change the period and duty cycle on TIMA1 PWM output channels CC0 and CC1.

image929

N

N

image930

N

N

N

pwm_dac

Use a timer to create a PWM DAC

N

image931

N

N

N

N

N

pwm_led_driver

Create a pulsating LED effect using timers

image932

image933

N

image934

N

N

N

scanning_comparator

Use a single comparator and IO mux to emulated 3-4 comparator channels simultaneously.

N

image935

N

N

N

N

N

signal_acquisition

OPA supports two different sensor input voltages and uses common ADC channel

image936

N

N

N

N

N

N

spi_to_can_bridge

Demonstrate SPI to CAN bridge

image937

N

N

N

N

N

N

task_scheduler

A simple run to completion task scheduler

image938

image939

N

N

N

N

N

temp_sense_thermistor

Sample LaunchPad thermistor using integrated Op-Amp and ADC

N

image940

N

N

N

N

N

transimpedance_amplifier

Configure Op-amp in transimpedance amplifier topology

N

image941

N

N

N

N

N

two_opa_instrumentation_amplifier

Along with an external circuit this code amplifies the difference between two voltage inputs and outputs a single ended signal while rejecting the common-mode voltage.

image942

image943

N

N

N

N

N

uart_to_i2c_bridge

Translates UART packets to multiple I2C devices

image944

image945

N

image946

N

N

N

uart_to_spi_bridge

UART device receives packets and passes them on or executes reads in SPI format

image947

N

N

image948

N

N

N

watchdog

Implementation of a stand alone system WDT.

N

N

image949

N

N

N

N

2.23 PMBUS

PMBus is a protocol design to interface with power management devices. It uses the SMBus protocol as a base.

The MSPM0 SDK includes a ready-to-go example for using an MSPM0 devices as a PMBus controller for a TPS544B20 device.

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

pmbus_controller

PMBus controller example

image950

N

N

N

image951

N

N

pmbus_controller_groupCmd

PMBus controller example with group command

image952

N

N

N

image953

N

N

pmbus_target

PMBus target example

image954

N

N

N

image955

N

N

2.24 SASI_SMOKE_DETECTOR

MSPM0 supports analog front ends for chambered or chamberless smoke detectors and air quality sensing solutions.

The MSPM0 SDK includes a software library and reference examples for smoke detection and air quality sensing.

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

air_quality_sensing

Implements an analog front end for air quality sensing

N

Y

N

N

N

N

N

sasi_smoke_detector

Implements an analog front end for smoke detectors

N

Y

N

N

N

N

N

2.25 SENT

The Single Edge Nibble Transmission (SENT) is a unidirectional communication standard used in automotive networks.

The MSPM0 SDK includes easy-to-use examples for transmitting a SENT frame.

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

sent_transmit

Demonstrates basic implementation of SENT protocol

N

image956

N

N

N

N

N

2.26 SMBus

The System Management Bus (SMBus) is a single-ended simple two-wire bus for lightweight communication.

The MSPM0 SDK includes easy-to-use examples for Controller and Target.

Project Name

Description

EVM

LP_MSPM0G3507

LP_MSPM0L1306

LP_MSPM0C1104

LP_MSPM0L2228

LP_MSPM0G3519

LP_MSPM0L1117

LP_MSPM0H3216

smbus_controller00_all_protocols

Demonstrates basic implementation of SMBus Controller testing all SMBus 2.0 protocols using I2C

image957

image958

N

N

image959

N

N

smbus_controller_ARP

Demonstrates basic implementation of SMBus Controller testing ARP commands as per SMBus 3.2 Specification

image960

image961

N

N

image962

N

N

smbus_controller_host_notify

Demonstrates implementation of SMBus Host Notify function on a Controller

image963

image964

N

N

image965

N

N

smbus_target00_all_protocols

Demonstrates basic implementation of SMBus Target testing all SMBus 2.0 protocols using I2C

image966

image967

N

N

image968

N

N

smbus_target_ARP

Demonstrates basic implementation of SMBus Target with ARP Support according SMBus 3.2 Specification

image969

image970

N

N

image971

N

N

smbus_target_host_notify

Demonstrates implementation of SMBus Host Notify function on a Target

image972

image973

N

N

image974

N

N