Supports tri-state mode to show “accurate” EnergyTrace power numbers Includes Backchannel UART for bi-directional communication between the MSP430 and a PC. This could enable simulation of inputs from sensors as well as logging of debug data while an application is. OPA604AP, datasheet for OPA604AP - FET-Input, Low Distortion OPERATIONAL AMPLIFIER provided by Texas Instruments. OPA604AP pdf documentation and OPA604AP application notes, selection guide.
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Features for the MSP-FET
- USB debugging interface to connect any MSP430 MCU to a computer for real-time, in-system programming and debugging
- Enables EnergyTrace™ technology for energy measurement and debugging on all MSP430 and MSP432 devices in the Code Composer Studio and IAR Embedded Workbench development environments
- Supports tri-state mode to show “accurate” EnergyTrace power numbers
- Includes Backchannel UART for bi-directional communication between the MSP430 and a PC.
- This could enable simulation of inputs from sensors as well as logging of debug data while an application is running
- MSP BootStrapLoader (BSL) interface
- Up to 4x faster read/write speeds than the previous version of the FET programmer, MSP-FET430UIF
Description for the MSP-FET
The MSP-FET is a powerful emulation development tool – often called a debug probe – which allows users to quickly begin development on MSP low-power microcontrollers (MCU).
It supports programming and real-time debugging over both JTAG and SBW interfaces. Furthermore, the MSP-FET also provides a Backchannel UART connection between the computer’s USB interface and the MSP UART. This affords the MSP programmer a convenient method for communicating serially between the MSP and a terminal running on the computer. It also supports loading programs (often called firmware) to the MSP target using the BSL (bootstrap loader) via UART and I2C communication protocols.
The USB interface connects the MSP-FET to the computer, while the 14-pin connector provides access to the MSP debug emulation port – which consists of either a standard JTAG interface or by using the pin-saving Spy-Bi-Wire (2-wire JTAG) protocol.
Connection between the 14-pin cable and the MSP debug port is commonly handled by placing a standardized 14-pin header connector on the target board and routing the necessary emulation signals to their respective debug pins. This method provides software developers with a simple, in-system debug model.
For convenience early in the software development cycle, the MSP-FET can be used in conjunction with the MSP Target Socket boards. Along with the 14-pin debug connector, these kits provide access to pins on your MSP device, making it easy to begin software development right away, even before designing and building your own target board.
For MSP432 devices it is possible to connect to the MSP-FET via the MSP432 Adapter for MSP-FET to boards with ARM 20pin and ARM 10pin connector. You can use either the standard ARM JTAG interface or by using ARM SWD (2-wire JTAG) protocol.
**The second generation of the MSP-FET is supported in the IDEs since Code Composer Studio™ v7.0, IAR EW430 v7.1 and IAR EWAR v8.10. For use with an older IDE release please refer to this E2E post. Information on how to distinguish a MSP-FET of the second generation from a MSP-FET of the first generation can be found in the MSP debugger’s guide (section 5.6.1 – general features).**
Technical Specifications
- Software configurable supply voltage between 1.8 V and 3.6 V at 100 mA
- Supports JTAG Security Fuse blown to protect code
- Supports JTAG and SWD lock on MSP432 devices to protect code
- Supports all MSP430 boards with JTAG header
- Supports JTAG and Spy-Bi-Wire (2-wire JTAG) debug protocols
- Supports ARM JTAG and ARM SWD debug protocols
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MSP-FET430 FLASH Emulation Tool (FET)
(For use with IAR Workbench Version 3.x)
Us e r 's G u i d e
User's Guide
2004 SLAU138A
Mixed Signal
Products
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IMPORTANT NOTICE Texas Instruments and its subsidiaries (TI) reserve the right to make changes to their products or to discontinue any product or service without notice, and advise customers to obtain the latest version of relevant information to verify, before placing orders, that information being relied on is current and complete. All products are sold subject to the terms and conditions of sale supplied at the time of order acknowledgment, including those pertaining to warranty, pate
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Us e r 's G u i d e July 2004
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Preface Read This First About This Manual This manual documents the Texas Instruments MSP-FET430 Flash Emulation Tool (FET). The FET is the program development tool for the MSP430 ultra low power microcontroller. Both available interfaces, the Parallel-Port-Interface and the USB-Interface, are described here. How to Use This Manual Read and follow the Get Started Now! chapter. This chapter will enable you to inventory your FET, and then it will instruct you to install the software
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Information About Cautions and Warnings This book may contain cautions and warnings. This is an example of a caution statement. A caution statement describes a situation that could potentially damage your software or equipment. CAUTION This is an example of a warning statement. A warning statement describes a situation that could potentially cause harm to you. WARNING The information in a caution or a warning is provided for your protection. Read each caution and warning
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If You Need Assistance Support for the MSP430 device and the FET is provided by the Texas Instruments Product Information Center (PIC). Contact information for the PIC can be found on the TI web site at www.ti.com. Additional device- specific information can be found on the MSP430 web site at www.ti.com/sc/msp430. Note: Kickstart is supported by Texas Instruments Although Kickstart is a product of IAR, Texas Instruments provides the support for it. Therefore, please do not request suppo
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Contents Read This First................................................................................................................iii About This Manual .....................................................................................................iii How to Use This Manual ............................................................................................iii Information About Cautions and Warnings ................................................................ iv R
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Frequently Asked Questions....................................................................................... A-1 A.1 Hardware........................................................................................................ A-2 A.2 Program Development (Assembler, C-Compiler, Linker)................................. A-3 A.3 Debugging (C-SPY) ........................................................................................ A-5 Hardware.....................................
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Figures Figure 3-1. Signal connections for MSP-FET430X110. ...............................................3-5 Figure 3-2. JTAG Signal Connections .........................................................................3-7 Figure A-1. Modification to FET Interface module ..................................................... A-7 Figure B-1. MSP-FET430X110, Schematic.................................................................. B-2 Figure B-2. MSP-FET430X110, PCB Pictorials ..........
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Chapter 1 Get Started Now! This chapter will enable you to inventory your FET, and then it will instruct you to install the software and hardware, and then run the demonstration programs. Topic Page 1.1 Kit Contents, MSP-FET430X110 1-2 1.2 Kit Contents, MSP-FET430Pxx0 (‘P120, ‘P140, ‘P410, ‘P430, 1-2 ‘P440) 1.3 Kit Contents, MSP-FET430UIF 1-3 1.4 Software Installation 1-3 1.5 Hardware Installation, MSP-FET430X110 1-3 1.6 Hardware Installation, MSP-FET430Pxx0 (‘P120, ‘P140, ‘P410,
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Get Started Now! 1.1 Kit Contents, MSP-FET430X110 One READ ME FIRST document. One MSP430 CD-ROM. One MSP-FET430X110 Flash Emulation Tool. This is the PCB on which is mounted a 20-pin ZIF socket for the MSP430F11xIDW, MSP430F11x1AIDW, or MSP430F11x2IDW device. A 25-conductor cable originates from the FET. One small box containing two MSP430F1121AIDW device samples. 1.2 Kit Contents, MSP-FET430Pxx0 (‘P120, ‘P140, ‘P410, ‘P430, ‘P440) One READ ME FIRST document. One MSP430 CD-ROM. On
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Get Started Now! MSP-FET430P430: Eight PCB 1x20 pin headers (Four male and four female). MSP-FET430P440: Eight PCB 1x25 pin headers (Four male and four female). One small box containing two or four MSP430 device samples. MSP-FET430P120: MSP430F123IDW and/or MSP430F1232IDW MSP-FET430P140: MSP430F149IPM and/or MSP430F169IPM MSP-FET430P410: MSP430F413IPM MSP-FET430P430: MSP430F437IPN and/or MSP430FG439 MSP-FET430P440: MSP430F449IPZ Consult the device data sheets for device specifica
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Get Started Now! 1.6 Hardware Installation, MSP-FET430Pxx0 (‘P120, ‘P140, ‘P410, ‘P430, ‘P440) 1) Use the 25-conductor cable to connect the FET Interface module to the parallel port of your PC. 2) Use the 14-conductor cable to connect the FET Interface module to the supplied Target Socket module. 3) Ensure that the MSP430 device is securely seated in the socket, and that its pin 1 (indicated with a circular indentation on the top surface) aligns with the “1” mark on the PCB. 4) Ensur
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Get Started Now! 3) Click on the tab at the bottom of the workspace window that corresponds to your tool (FETxxx) and desired language (assembler or C). 4) Use PROJECT->OPTIONS->FET Debugger->Setup->Connection to select the appropriate port: LPTx for the parallel FET Interface or TI USB FET for the USB Interface. 5) Use PROJECT->REBUILD ALL to build and link the source code. You can view the source code by double-clicking on the project, and then double- clicking on the displayed so
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Get Started Now! 1.9 Important MSP430 Documents on the CD-ROM and WEB The primary sources of MSP430 information are the device specific data sheet and User’s Guide. The most up to date versions of these documents available at the time of production have been provided on the CD-ROM included with this tool. The MSP430 web site (www.ti.com/sc/msp430) will contain the latest version of these documents. From the MSP430 main page on the CD-ROM, navigate to: Literature->MSP430 Literature->Da
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Chapter 2 Development Flow This chapter discusses how to use Kickstart to develop your application software, and how to use C-SPY to debug it. Topic Page 2.1 Overview 2-2 2.2 Using Kickstart 2-2 2.2.1 Project Settings 2-3 2.2.2 Creating a Project from Scratch 2-5 2.2.3 Using an Existing IAR V1.x/V2.x Project 2-6 2.2.4 Stack Management within the .xcl Files 2-6 2.2.5 How to Generate Texas Instrument .TXT (and other format) 2-7 Files 2.2.6 Overview of Example Programs 2-7 2.3 Usi
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Development Flow 2.1 Overview Applications are developed in assembler and/or C using the Workbench, and they are debugged using C-SPY. C-SPY is seamlessly integrated into the Workbench. However, it is more convenient to make the distinction between the code development environment (Workbench) and the debugger (C-SPY). C- SPY can be configured to operate with the FET (i.e., an actual MSP430 device), or with a software simulation of the device. Kickstart is used to refer to the Workbench