TIDM-TM4C123XSUB1GHZ

Sub-1 GHz–Enabled IoT Node on High-Performance Microcontroller Reference Design

TIDM-TM4C123XSUB1GHZ

Design files

Overview

A system example to show how to build a Sub-1 GHz node by integrating a TM4C123x MCU and a SimpleLink™ CC1310 ultra-low-power wireless MCU. It demostatrates the capability of remotely controlling MCU operation via the web.

Features
  • TM4C123 MCU with SimpleLink CC1310 wireless MCU configured as Slave Sub-1 GHz IoT node
  • TM4C1294 MCU with SimpleLink CC1310 wireless MCU configured as a Master Sub-1 GHz device for demonstration
  • Simple UART-based interface is between the TM4C MCU and SimpleLink CC1310 wireless MCU
  • AES-CCM-based encryption and authentication ensures secure data communication between IoT node and the Master
  • The LWIP-based web server runs on the Master side TM4C1294 MCU that helps control the Slave Sub-1 GHz IoT node operation from a web browser
  • TI-RTOS is used for task scheduling and peripheral access
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Design files & products

Design files

Download ready-to-use system files to speed your design process.

TIDUBK9.PDF (6954 KB)

Reference design overview and verified performance test data

TIDRM60.ZIP (151 KB)

Detailed overview of design layout for component placement

TIDRM64.PDF (329 KB)

Complete listing of design components, reference designators, and manufacturers/part numbers

TIDRM61.ZIP (914 KB)

Files used for 3D models or 2D drawings of IC components

TIDCC98.ZIP (538 KB)

Design file that contains information on physical board layer of design PCB

TIDRM62.ZIP (662 KB)

PCB layer plot file used for generating PCB design layout

TIDRM63.ZIP (669 KB)

Detailed schematic diagram for design layout and components

Products

Includes TI products in the design and potential alternatives.

Linear & low-dropout (LDO) regulators

TPS7371A ultra-low-dropout voltage regulator with reverse current protection and enable

Data sheet: PDF | HTML
General-purpose MCUs

TM4C1294NCPDT32-bit Arm Cortex-M4F based MCU with 120-MHZ, 1-MB flash, 256-KB RAM, USB, ENET MAC+PHY

Data sheet: PDF
Reset & watchdog ICs

TLV8033-pin voltage supervisor (reset IC) with active-low & open-drain reset

Data sheet: PDF | HTML
General-purpose MCUs

TM4C123GH6PM32-bit Arm Cortex-M4F based MCU with 80 -MHz, 256 -KB Flash, 32 -KB RAM, 2 CAN, RTC, USB, 64-Pin

Data sheet: PDF
Linear & low-dropout (LDO) regulators

TPS736400mA high-accuracy ultra-low-dropout voltage regulator with reverse current protection and enable

Data sheet: PDF | HTML
ESD protection diodes

TPD4S012Quad 0.8-pF, 5.5-V, ±10-kV ESD protection diode with 15-V tolerant Vbus for USB Interface<

Data sheet: PDF | HTML
Linear & low-dropout (LDO) regulators

TPS7961-A, low-dropout voltage regulator with enable

Data sheet: PDF | HTML
USB power switches & charging port controllers

TPS20522-ch, 0.5A loading, 0.9A ILIMIT, 2.7-5.5V, 80mΩ USB power switch, active-high

Data sheet: PDF
Sub-1 GHz wireless MCUs

CC1310SimpleLink™ 32-bit Arm Cortex-M3 Sub-1 GHz wireless MCU with 128kB Flash

Data sheet: PDF | HTML
General-purpose MCUs

TM4C1290NCPDT32-bit Arm Cortex-M4F based MCU with 120-MHz, 1-MB Flash, 256-kb RAM, USB

Data sheet: PDF

Start development

Hardware development

Interface adapter

BOOST-CCEMADAPTER — EM Adapter BoosterPack

A system example to show how to build a Sub-1 GHz node by integrating a TM4C123x MCU and a SimpleLink™ CC1310 ultra-low-power wireless MCU. It demostatrates the capability of remotely controlling MCU operation via the web.
Supported products & hardware

Supported products & hardware

Hardware development
Reference design
TIDC-MULTIBAND-WMBUS Multiband (169, 433 and 868MHz) wM-Bus RF sub-system with Segmented LCD Reference Design TIDM-LPBP-EMADAPTER Evaluation Module (EM) Adaptor TIDM-LPBP-SPIPOTENTIOMETER 256 Wiper Positions Linear-Taper Digital Potentiometer TIDM-TM4C123XSUB1GHZ Sub-1 GHz–Enabled IoT Node on High-Performance Microcontroller Reference Design TIDM-TM4C129XBLE BLE Enabled IoT Node With High Performance MCU Reference Design TIDM-TM4C129XGATEWAY Secure IoT Gateway Reference Design for Bluetooth® Low Energy, Wi-Fi® and Sub-1 GHz Nodes
In stock
Limit:
Out of stock on TI.com
Not available on TI.com

BOOST-CCEMADAPTER EM Adapter BoosterPack

close
Latest version
Version: null
Release date:
Hardware development
Reference design
TIDC-MULTIBAND-WMBUS Multiband (169, 433 and 868MHz) wM-Bus RF sub-system with Segmented LCD Reference Design TIDM-LPBP-EMADAPTER Evaluation Module (EM) Adaptor TIDM-LPBP-SPIPOTENTIOMETER 256 Wiper Positions Linear-Taper Digital Potentiometer TIDM-TM4C123XSUB1GHZ Sub-1 GHz–Enabled IoT Node on High-Performance Microcontroller Reference Design TIDM-TM4C129XBLE BLE Enabled IoT Node With High Performance MCU Reference Design TIDM-TM4C129XGATEWAY Secure IoT Gateway Reference Design for Bluetooth® Low Energy, Wi-Fi® and Sub-1 GHz Nodes
Evaluation board

EK-TM4C123GXL — ARM® Cortex®-M4F Based MCU TM4C123G LaunchPad™ Evaluation Kit

A system example to show how to build a Sub-1 GHz node by integrating a TM4C123x MCU and a SimpleLink™ CC1310 ultra-low-power wireless MCU. It demostatrates the capability of remotely controlling MCU operation via the web.
EVM user’s guide: PDF
Supported products & hardware

Supported products & hardware

Hardware development
Reference design
TIDM-LPBP-SENSORHUB Comprehensive Sensor Hub Solution with Seven On-Board Sensors TIDM-TM4C123IOTSTEPPERMOTOR Microstepping Stepper Motor Control With MCU and Wi-Fi for IoT Reference Design TIDM-TM4C123STEPPERMOTOR Driving a Stepper Motor Reference Design with High Performance MCU TIDM-TM4C123XSUB1GHZ Sub-1 GHz–Enabled IoT Node on High-Performance Microcontroller Reference Design TIDM-TM4C129XGATEWAY Secure IoT Gateway Reference Design for Bluetooth® Low Energy, Wi-Fi® and Sub-1 GHz Nodes
In stock
Limit:
Out of stock on TI.com
Not available on TI.com

EK-TM4C123GXL ARM® Cortex®-M4F Based MCU TM4C123G LaunchPad™ Evaluation Kit

close
Latest version
Version: null
Release date:
Hardware development
Reference design
TIDM-LPBP-SENSORHUB Comprehensive Sensor Hub Solution with Seven On-Board Sensors TIDM-TM4C123IOTSTEPPERMOTOR Microstepping Stepper Motor Control With MCU and Wi-Fi for IoT Reference Design TIDM-TM4C123STEPPERMOTOR Driving a Stepper Motor Reference Design with High Performance MCU TIDM-TM4C123XSUB1GHZ Sub-1 GHz–Enabled IoT Node on High-Performance Microcontroller Reference Design TIDM-TM4C129XGATEWAY Secure IoT Gateway Reference Design for Bluetooth® Low Energy, Wi-Fi® and Sub-1 GHz Nodes
Evaluation board

EK-TM4C1294XL — ARM® Cortex®-M4F-Based MCU TM4C1294 Connected LaunchPad™ Evaluation Kit

A system example to show how to build a Sub-1 GHz node by integrating a TM4C123x MCU and a SimpleLink™ CC1310 ultra-low-power wireless MCU. It demostatrates the capability of remotely controlling MCU operation via the web.
EVM user’s guide: PDF | HTML
Supported products & hardware

Supported products & hardware

Hardware development
Reference design
TIDM-MINI-DC Data Concentrator Reference Design for Smaller AMI Networks Reduces Infrastructure Cost TIDM-TM4C123XSUB1GHZ Sub-1 GHz–Enabled IoT Node on High-Performance Microcontroller Reference Design TIDM-TM4C129SDRAMNVM Execute from SDRAM with code storage in NVM for high performance MCU TIDM-TM4C129XBLE BLE Enabled IoT Node With High Performance MCU Reference Design TIDM-TM4C129XS2E RTOS-Based Configurable Serial-to-Ethernet Converter on High Performance MCUs Reference Design TIDM-TM4C129XWIFI Wi-Fi Enabled IoT Node with High Performance MCU Reference Design TIDM-TM4CFLASHSRAM Concurrent Parallel XIP Flash and SRAM Design for code download & execution on High Performance MCUs
Evaluation board
BOOSTXL-ADS7841-Q1 ADS7841-Q1 12-bit 4-channel serial output sampling ADC BoosterPack™ plug-in module BOOSTXL-TLC2543 TLC2543-Q1 12-Bit ADC With Serial Control and 11 Analog Inputs BoosterPack™ Plug-in Module
In stock
Limit:
Out of stock on TI.com
Not available on TI.com

EK-TM4C1294XL ARM® Cortex®-M4F-Based MCU TM4C1294 Connected LaunchPad™ Evaluation Kit

close
Latest version
Version: null
Release date:
Hardware development
Reference design
TIDM-MINI-DC Data Concentrator Reference Design for Smaller AMI Networks Reduces Infrastructure Cost TIDM-TM4C123XSUB1GHZ Sub-1 GHz–Enabled IoT Node on High-Performance Microcontroller Reference Design TIDM-TM4C129SDRAMNVM Execute from SDRAM with code storage in NVM for high performance MCU TIDM-TM4C129XBLE BLE Enabled IoT Node With High Performance MCU Reference Design TIDM-TM4C129XS2E RTOS-Based Configurable Serial-to-Ethernet Converter on High Performance MCUs Reference Design TIDM-TM4C129XWIFI Wi-Fi Enabled IoT Node with High Performance MCU Reference Design TIDM-TM4CFLASHSRAM Concurrent Parallel XIP Flash and SRAM Design for code download & execution on High Performance MCUs
Evaluation board
BOOSTXL-ADS7841-Q1 ADS7841-Q1 12-bit 4-channel serial output sampling ADC BoosterPack™ plug-in module BOOSTXL-TLC2543 TLC2543-Q1 12-Bit ADC With Serial Control and 11 Analog Inputs BoosterPack™ Plug-in Module

Software development

Support software

TIDCC99 — TIDM-TM4C123XSUB1GHZ Project Source Software

Supported products & hardware

Supported products & hardware

Products
Reset & watchdog ICs
TLV803 3-pin voltage supervisor (reset IC) with active-low & open-drain reset
Hardware development
Reference design
TIDM-TM4C123XSUB1GHZ Sub-1 GHz–Enabled IoT Node on High-Performance Microcontroller Reference Design
Download options

TIDCC99 TIDM-TM4C123XSUB1GHZ Project Source Software

close
Latest version
Version: 01.00.00.00
Release date: Jun 7, 2016
lock = Requires export approval (1 minute)
Products
Reset & watchdog ICs
TLV803 3-pin voltage supervisor (reset IC) with active-low & open-drain reset
Hardware development
Reference design
TIDM-TM4C123XSUB1GHZ Sub-1 GHz–Enabled IoT Node on High-Performance Microcontroller Reference Design

Release Information

The design resource accessed as www.ti.com/lit/zip/tidcc99 or www.ti.com/lit/xx/tidcc99/tidcc99.zip has been migrated to a new user experience at www.ti.com/tool/download/TIDCC99. Please update any bookmarks accordingly.

Technical documentation

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* Design guide Sub-1 GHz-Enabled IoT Node on High-Performance Microcontrollers Design Guide Mar 10, 2016

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