UM0231 STMICROELECTRONICS | Alldatasheet
Document overview
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Technical content
Datasheet sections
- 1 Delivery checklist
- 2 Configuring the ICD adapter
- 2.1 In-circuit debugging
- 2.2 Run the application in standalone mode
- 3 Connecting to the application board
- 3.1 Connection for DIP8 microcontroller package
- 3.2 Connection for SO8 microcontroller package
- 3.3 Connection for DFN8 microcontroller package
- 4 Functional limitations and discrepancies
- 4.1 PA3/RESET pin use limitation
(ICD) tool that uses the In-Circuit Communication (ICC) protocol for ST7. ST7FLiteUS (available in DIP8, SO8 and DFN8 packages). adapters are to be installed on the MCU footprint in place of the target device. Figure 1. In-Circuit Debugging Adapter for ST7LiteUS in-circuit debugging such as STVD7.
ICC connector – a 10-pin HE-10 type connector that allows the connection of your in-circuit debugging tool to the microcontroller on the ICD Adapter. Application board connector/device adapter – a package specific connector that plugs into the bottom of the ICD adapter allowing the connection to the microcontroller footprint on your application board. Connectors/device adapters are provided for all available packages for the target microcontroller. About the user manuals... This document provides information about connecting the ICD adapter and to your in-circuit debugging tool and to your application board. For further information about in-circuit debugging ST7 applications, you can refer to the user manual for your in-circuit debugging tool or your microcontroller’s datasheet.
1 Delivery checklist AD-ICD
1 Delivery checklist
delivered with the ST7MDT10-EMU3 emulator.
- ICD Adapter (MB509) with 10-pin ICC connector and ST7FLiteUS microcontroller.
- Device adapter (DB646) for target devices in DIP8 package.
- On-application connector (8-pin header) for target devices in SO8 package.
- Device adapter (DB715), on-application connector (a) and male-male connector (b) for
target devices in DFN8 package. Figure 1. ICD Adapter kit components (not to scale) Figure 2. DFN8 accessories available in ST7MDT10-8/DVP (not to scale)
2 Configuring the ICD adapter
connected to the adapter) are powered off.
2.1 In-circuit debugging
RST/PA3 On jumper (TP2) must not be fitted. Table 1. Default configuration of the AD-ICD/DS8Z-01 from factory Figure 3. ICD On jumper (TP1)
- Make sure the in-circuit debugging tool
and the application are powered off.
- Place the jumper on TP1 as shown in
- Connect to and power on the in-circuit
debugging tool and application board. microcontroller on the ICD adapter.
2 Configuring the ICD adapter AD-ICD
2.2 Run the application in standalone mode
microcontroller without being connected to an in-circuit debugging tool or the host PC. ST7FLITEUS variant in 8-pin package would. Figure 4. CLKIN solder point (G2) available for the application. Figure 5. RST/PA3 On jumper (TP2) only be used for reset. PA3 is not available.
3 Connecting to the application board
debugging tool and to your application board. delivered with the ST7MDT10-8/DVP connection kit (see Delivery checklist).
- Connection for DIP8 microcontroller package on page 8
- Connection for SO8 microcontroller package on page 9
- Connection for DFN8 microcontroller package on page 10
Figure 6. Connectors on the ICD Adapter Table 2. Target MCU packages and their application connectors
3 Connecting to the application board AD-ICD
3.1 Connection for DIP8 microcontroller package
- Solder the DIP8 Device adapter (DB646) onto your application board in place of your
- Plug the ICC cable from the in-circuit debugging tool into the 10-pin ICC connector on
the top of the ICD Adapter (MB509).
- Align the pin 1 indicator on the ICD Adapter (MB509) with the pin 1 indicator for the
connector on the bottom of the ICD Adapter. Figure 7. DIP8 connection scheme
3.2 Connection for SO8 microcontroller package
- Solder the SO8 connector (8-pin header) onto your application board in place of your
- Plug the ICC cable from the in-circuit debugging tool into the 10-pin ICC connector on
the top of the ICD Adapter (MB509).
- Align the pin 1 indicator on the ICD Adapter (MB509) with the pin 1 indicator for the
on the bottom of the ICD Adapter. Figure 8. SO8 connection scheme
3.3 Connection for DFN8 microcontroller package
- Solder the DFN8 female connector onto your application board in place of your
- Plug the ICC cable from the in-circuit debugging tool into the 10-pin ICC connector on
the top of the ICD Adapter (MB509).
- Plug the 8 pins of the DFN8 Device adapter (DB715) into the 8-pin connector on the
bottom of the ICD Adapter (MB509).
- Connect the DFN8 Device adapter (DB715) to the DFN female connector on your
Figure 9. DFN8 connection scheme
AD-ICD 4 Functional limitations and discrepancies
4 Functional limitations and discrepancies
This section provides any lists in-circuit debugging limitations and discrepancies that are specific to the ICD adapter. For information about limitations and discrepancies that are specific to the target microcontroller or the in-circuit debugging tool, refer to the release notes for your integrated development environment or debugging software.
4.1 PA3/RESET pin use limitation
When running the application in the in-circuit debugging mode or standalone mode, the RESET/PA3 pin of the target microcontroller can only be used for reset. PA3 is not available.
Table 3. Document revision history 30-Aug-2006 1 Initial release.
AD-ICD Appendix B Product support Appendix B Product support If you experience any problems with this product, or if you need spare parts or repairs, contact the distributor or the STMicroelectronics sales office where you purchased the product. Phone numbers for major sales regions are provided in the Contact list, below. In addition, at our Internet site www.st.com/mcu, you will find a complete listing of ST sales offices and distributors, as well as documentation, software downloads and user discussion groups to help you answer questions and stay up to date with our latest product developments. Software updates All our latest software and related documentation are available for download from the ST Internet site, www.st.com/mcu. For information about firmware and hardware revisions, call your distributor or ST using the Contact list provided below. If you are using software from a third-party tool provider, please refer to the third-party for software product support and downloads. Hardware spare parts Your development tool comes with the hardware you need to set it up, connect it to your PC and connect to your application. However, some components can be bought separately if you need additional ones. You can order extra components, such as sockets and adapters, from STMicroelectronics, from the component manufacturer or from a distributor. To help you find what you need, a listing of accessories for ST development tools is available on the ST internet site, www.st.com/mcu. Sockets Complete documentation and ordering information for P/TQFP sockets from Yamaichi, Ironwood, CAB and Enplas are provided at the following Internet sites: www.yamaichi.de www.ironwoodelectronics.com www.cabgmbh.com www.enplas.com Connectors Complete documentation and ordering information for SAMTEC connectors is provided at www.samtec.com.
Appendix B Product support AD-ICD Getting prepared before you call Collect the following information about the product before contacting ST or your distributor: 1. Name of the company where you purchased the product. 2. Date of purchase. 3. Target Device: The sales type of the ST microcontroller you are using in your application. Contact list North America West Coast STMicroelectronics, Inc. 1060 E. Brokaw Road San Jose, CA 95131 Phone: (408) 452-8585 Mid West STMicroelectronics
1300 East Woodfield Road,
Schaumburg, IL 60173 Phone: (847) 585-3000 Canada and East Coast STMicroelectronics Lexington Corporate Center
10 Maguire Road, Building 1,
Lexington, MA 02421 Phone: (781) 402-2650 Note: For American and Canadian customers seeking technical support the US/Canada is split in 3 territories. According to your area, contact the appropriate sales office from the list above and ask to be transferred to an 8-bit microcontroller Field Applications Engineer. Europe France Germany U.K. +33 (0)1 47 40 75 75 +49 89 46 00 60 +44 162 889 0800 Asia/Pacific Region Japan Hong-Kong Sydney Taipei +81 3 3280 4120 +85 2 2861 5700 +61 2 9580 3811 +88 6 2 2378 8088