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chipkit_max32:refmanual [2015/04/30 17:58] – [Appendix B: Pinout Tables] Martha | chipkit_max32:refmanual [2022/09/08 20:26] (current) – changed forum.digilentinc.com to forum.digilent.com Jeffrey | ||
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In addition to being used with the MPIDE, the Max32 board can be used as a more traditional microcontroller | In addition to being used with the MPIDE, the Max32 board can be used as a more traditional microcontroller | ||
- | Unloaded connector J11 on the left side of the board is used to connect to a licensed Microchip development tool, such as the chipKIT PGM or the PICkit™3. The holes for JP3 are staggered so that a standard 100-mil-spaced 6-pin header can be press fit to the board without the need to solder it in place. Any Microchip development tool that supports the PIC32 microcontroller family, and can be connected via the same 6-pin interface as the PICkit3, can be used. [[http:// | + | Unloaded connector J11 on the left side of the board is used to connect to a licensed Microchip development tool, such as the chipKIT PGM or the PICkit™3. The holes for JP3 are staggered so that a standard 100-mil-spaced 6-pin header can be press fit to the board without the need to solder it in place. Any Microchip development tool that supports the PIC32 microcontroller family, and can be connected via the same 6-pin interface as the PICkit3, can be used. [[http:// |
{{ : | {{ : | ||
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====== 4 Reloading the MPIDE bootloader ====== | ====== 4 Reloading the MPIDE bootloader ====== | ||
- | Using the Microchip development tools to program the Max32 board will cause the boot loader to be erased. To use the board with the MPIDE again, it is necessary to program the boot loader back onto the board. The boot loader source code and compiled image can be found in the MPIDE software download. You may also download it from the Max32 product page [[http:// | + | Using the Microchip development tools to program the Max32 board will cause the boot loader to be erased. To use the board with the MPIDE again, it is necessary to program the boot loader back onto the board. The boot loader source code and compiled image can be found in the MPIDE software download. Once you have the boot loader .hex file, complete the following steps to reload the boot loader to the PIC32 microcontroller using MPLAB® X. |
- Open MPLAB X. Click on " | - Open MPLAB X. Click on " | ||
- Click on " | - Click on " | ||
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---- | ---- | ||
- | ====== Appendix A: Pinout Table by Logical Pin Number ====== | + | ====== Appendix A: Pinout Tables ====== |
+ | ===== Pinout Table by Logical Pin Number ====== | ||
^ chipKIT Pin # ^ Connector Pin # ^ PIC32 Pin # ^ PIC32 Signal | ^ chipKIT Pin # ^ Connector Pin # ^ PIC32 Pin # ^ PIC32 Signal | ||
| 0 | J14-01 | | 0 | J14-01 | ||
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---- | ---- | ||
- | ====== Pinout Table by Microcontroller Pin ====== | + | ===== Pinout Table by Microcontroller Pin ===== |
^ PIC32 Pin # ^ Connector Pin# ^ chipKIT Pin # ^ PIC32 Signal | ^ PIC32 Pin # ^ Connector Pin# ^ chipKIT Pin # ^ PIC32 Signal | ||
| 1 | J9-10 | 28 | AERXERR/ | | 1 | J9-10 | 28 | AERXERR/ | ||
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=== Is there anything that needs to be considered when using the delay function the chipKIT Max32?=== | === Is there anything that needs to be considered when using the delay function the chipKIT Max32?=== | ||
- | Please see an interesting post from Digilent forum member EigenFunctions on the delay funtion: [[https:// | + | Please see an interesting post from Digilent forum member EigenFunctions on the delay funtion: [[https:// |