Datasheet Texas Instruments LM3S5747-IQC50-A0
Stellaris LM3S Microcontroller 100-LQFP -40 to 85
- Download » Datasheet, PDF, 5.5 Mb, Revision: H, 07-18-2014
Stellaris LM3S5747 Microcontroller Data Sheet (Rev. H)
|Lifecycle Status||NRND (Not recommended for new designs)|
|Manufacture's Sample Availability||No|
|Industry STD Term||LQFP||LQFP|
|Max Height (mm)||1.6||1.6|
|Mechanical Data||Download »||Download »|
- Download » Application Notes, PDF, 1.7 Mb, Revision: A, 08-15-2012
Using Execute, Write/Erase Flash Protection on Stellaris MCUs Using CCS (Rev. A)
Protection of code and IP in a microcontroller's Flash memory has always been an important consideration for the system designers. StellarisÂ® microcontrollers feature a code protection mechanism that enables developers to protect their code and IP in the end application, while providing the flexibility to upgrade the firmware using a boot loader. This application report describes using Flash p
- Download » Application Notes, PDF, 116 Kb, Revision: A, 07-08-2013
Stellaris Application Update Using Stellaris USB DFU Class (AN01273) (Rev. A)
This application report provides a brief overview of the Device Firmware Upgrade (DFU) class, describes the Stellaris implementation in the USB boot loader (boot_usb) application, and also describes the hostside lmdfu dynamic link library for Windows. Use of the standard USB DFU class on Stellaris USBenabled microcontrollers offers a convenient and fast method of replacing main application image
- Download » Application Notes, PDF, 95 Kb, 07-07-2009
Programming the On-Chip Flash Memory in a Stellaris Microcontroller (AN01237)
This application note provides three methods for erasing and programming Flash memory: the StellarisWare Peripheral DriverLib, software polling for completed updates, and interrupt-driven updates.
- Download » Application Notes, PDF, 278 Kb, Revision: B, 02-04-2013
System Design Guidelines for StellarisÂ® Microcontrollers Â (Rev. B)
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Using the Stellaris Microcontroller Analog-to-Digital Converter (AN01247)
This application note describes ADC sampling and configuring Stellaris microcontrollers through the StellarisWare Peripheral Driver Library or through direct writes to the device's control registers.
- Download » Application Notes, PDF, 162 Kb, Revision: E, 09-24-2013
Differences Among StellarisÂ® LM3S and Tivaâ„¢ C Series TM4C123x MCUs (Rev. E)
is document addresses design items to be aware of when migrating working designs among Fury-, DustDevil-, Tempest-, and Firestorm-StellarisÂ® microcontrollers (MCUs) and Tivaâ„¢ C Series TM4C123x-class MCUs. Topics covered include both software and hardware issues as well as feature changes and enhancements. All software issues are comprehended in the Driver Library APIs. As a result, syste
- Download » Application Notes, PDF, 120 Kb, 07-07-2009
Using the Stellaris Serial Flash Loader (AN01242)
This application note describes how to communicate with the Stellaris serial flash loader application.
- Download » Application Notes, PDF, 3.9 Mb, 07-07-2009
USB Certification for Stellaris-Based USB Peripherals and Embedded Host Systems
This application note describes the USB-IF certification process for a USB full-speed device and a USB full-speed embedded host system using the a Stellaris LM3S5732 microcontroller as the example.
- Download » Application Notes, PDF, 301 Kb, 07-07-2009
Using a 9-bit Software UART with Stellaris (AN01280)
This application note describes how to extend the functionality of the standard hardware UART available on StellarisÂ® microcontrollers by using the 9-bit UART add-on.
- Download » Application Notes, PDF, 161 Kb, 07-07-2009
Optimizing Code Performance and Size for Stellaris Microcontrollers (AN01265)
This application note provides a summary of factors that affect code performance and size for StellarisÂ® microcontrollers and suggestions to improve code performance and size including example code.
- Download » Application Notes, PDF, 127 Kb, Revision: C, 11-01-2012
StellarisÂ® LM3S ADC Calibration (AN01282) (Rev. C)
This application report describes a method for improving the absolute accuracy of the analog-to-digital converters (ADCs) found on StellarisÂ® LM3S microcontrollers. Due to inherent gain and offset errors, the absolute accuracy of the ADC is affected. The methods described in this application report can improve the absolute accuracy of the ADC results.
- Download » Application Notes, PDF, 91 Kb, 07-07-2009
Using Stellaris MCUs Internal Flash Memory to Emulate EEPROM (AN01267)
This application note describes how to emulate EEPROM using the internal Flash memory and provides an example application that uses EEPROM emulation drivers.
- Download » Application Notes, PDF, 77 Kb, 07-07-2009
Software UART for Stellaris Microcontrollers (AN01270)
This application note looks at implementing a software-based UART which, using general-purpose input/outputs (GPIO), allows the user to overcome hardware limitations or lack of dedicated peripherals.
- Download » Application Notes, PDF, 95 Kb, Revision: A, 01-08-2013
ADC Oversampling Techniques for Stellaris Microcontrollers (AN01239) (Rev. A)
Some members of the Stellaris microcontroller family have an analog-to-digital converter (ADC) module. The hardware resolution of the ADC is 10 bits; however, due to noise and other accuracy diminishing factors, the true accuracy is less than 10 bits. This application report provides a software-based oversampling technique, resulting in an improved effective number of bits (ENOB) in the conversion
- Download » Application Notes, PDF, 74 Kb, 07-07-2009
Implementing RS-232 Flow Control on a Stellaris Microcontroller (AN01255)
This application note describes how to implement flow control by using the Stellaris GPIO module with its interrupt support.
- Semiconductors > Microcontrollers (MCU) > Performance MCUs > Control + Automation > LM3S Cortex-M3 Series
LM3S5747IQC50A0, LM3S5747 IQC50 A0