A compact starter kit with your favorite microcontroller and two mikrobus sockets
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1 A compact starter kit with your favorite microcontroller and two mikrobus sockets
2 To our valued customers I want to express my thanks to you for being interested in our products and for having confidence in MikroElektronika. The primary aim of our company is to design and produce high quality electronic products and to constantly improve the performance thereof in order to better suit your needs. Nebojsa Matic General Manager
3 Table of Contents Introduction to Clicker for PIC3MZ 4 Key features 5. PIC3MZ microcontroller 7 3. Programming the microcontroller 8 3. Programming with mikrobootloader 9 step Connecting Clicker 9 step Browsing for.hex file 0 step 3 Selecting.HEX file 0 step 4 Uploading.HEX file step 5 Finish upload 3. Programming with mikroprog programmer 3 mikroprog Suite software 4 4. Buttons and LEDs 5 5. Power management and battery charger 6 6. Oscillators 7 7. USB connection 8 8. Pinout 9 9. click boards are plug and play! 0 0. Dimensions Page 3
4 Introduction to Clicker for PIC3MZ Clicker for PIC3MZ is a compact development kit with two mikrobus TM sockets for click board TM connectivity. You can use it to quickly build your own gadgets with unique functionalities and features. It carries the PIC3MZ 3-bit microcontroller, two indication LEDs, two general purpose buttons, a reset button, an ON/OFF switch, a li-polymer battery connector, a micro USB connector and two mikrobus TM sockets. A mikroprog connector and a x6 pinout for interfacing with external electronics are also provided. The mikrobus TM connector consists of two x8 female headers with SPI, I C, UART, RST, PWM, Analog and Interrupt lines as well as 3.3V, 5V and power lines. clicker for PIC3MZ board can be powered over a USB cable. power supply via USB cable (5V DC) board dimensions 60.4 x 8 mm (.4 x 3. inch) weight 48 g (0.05 lbs) Page 4
5 Key Features 8 ON/OFF switch Reset button 3 PIC3MZ MCU 4 mikrobus sockets and 5 Pushbuttons 6 Additional LEDs 7 Indication LEDs 8 Micro USB connector KHz Crystal 0 Battery connector mikroprog connector LTC3568 USB power manager IC 3 4MHz Crystal Oscillator Page 5
6 Page 6 AN RST CS SCK MISO MOSI 3.3V PWM INT RX TX SCL SDA 5V MIKROBUS MIKROBUS HOST CONN AN RST CS SCK MISO MOSI 3.3V PWM INT RX TX SCL SDA 5V MIKROBUS MIKROBUS HOST CONN VCC-BAT VCC-BAT VCC-BAT VCC-BAT R5 0k R6 0k R0 M R 00k R3 00k R4 00k C33 0.µF R k R8 470 LD LD C36 0µF 3 M DMP305U-7 R k R k HDR HDR AN INT SPI PWM SCL RX GPIO GPIO VCC-USB VCC-USB VCC-5V VCC-5V VCC-5V VCC-5V LDO3V3 LDO3V3 VCC-BAT VCC-5V VCC-5V LDO3V3 LDO3V3 VCC-USB VSYS VSYS VSYS VSYS LDO3V3 PWR-EN LDO3V3 R5.k R6 0k R8 3.3k R0 0k R7 k C8 0.µF R7 6.9k R3.69k R6 88.7k R 5k R 05k R9 34k C5 0.µF ILIM0 ILIM LDO3V3 3 CLPROG 4 NTC 5 VOUT4 6 VOUT4 7 SW4 8 MODE 9 FB4 0 FB3 VC3 SWAB3 3 VIN3 4 VIN3 5 VOUT3 6 VOUT3 7 EN3 8 SWCD3 9 EN 0 EN VIN4 FB 3 VIN 4 SW 5 SW 6 VIN 7 FB 8 PROG 9 CHRG# 30 GATE 3 BAT 3 EN4 33 VOUT 34 VBUS 35 VBUS 36 SW 37 FAULT# 38 LTC3586 U LTC3586EUFE C5 µf C7 µf C6 0000pF C4 µf C3 µf C30 µf C7 µf C8 0000pF C3 0µF C9 0pF C9.µF C0.µF 3 M DMP305U-7 L3.µH L.µH L 3.3µH C4 300pF C 33pF C3 0pF C 47µF D_N D_P R35 7 R ID D+ D- VBUS CN uusb FP C6 0000pF USBD_N USBD_P R30 0k C4 0.µF VSYS TX SDA T T3 VSYS J SHMx SW T J MX5 #MCLR RG5 RA5 RE5 3 RE6 4 RE7 5 RC 6 RC 7 RC3 8 RC4 9 RG6 0 RG7 RG8 VSS 3 VDD 4 MCLR 5 RG9 6 RA0 7 RE8 8 RE9 9 RB5 0 RB4 RB3 RB 3 RB 4 RB0 5 RB6 6 RB7 7 RA9 8 RA0 9 AVDD 30 AVSS 3 RB8 3 RB9 33 RB0 34 RB 35 VSS 36 VDD 37 RA 38 RF3 39 RF 40 RB 4 RB3 4 RB4 43 RB5 44 VSS 45 VDD 46 RD4 47 RD5 48 RC 49 RC5 50 VBUS 5 VUSB3V3 5 VSS 53 D- 54 D+ 55 RF3 56 RF 57 RF8 58 RA 59 RA3 60 RA4 6 VDD 6 VSS 63 RF4 64 RF5 65 RA4 66 RA5 67 RD9 68 RD0 69 RD 70 RD0 7 RC3 7 RC4 73 VDD 74 VSS 75 RD 76 RD 77 RD3 78 RD 79 RD3 80 RD4 8 RD5 8 VDD 83 VSS 84 RF0 85 RF 86 RG 87 RG0 88 RA6 89 RA7 90 RE0 9 VSS 9 VDD 93 RE 94 RG4 95 RG 96 RG3 97 RE 98 RE3 99 RE4 00 U PIC3MZ048EFH00-50I/PF FB FERRITE STANDBY OUT 3 VCC 4 Y 4MHz CLK_IN STAND-BY OUT 3 VCC 4 Y 3.768kHz SCLK_IN USBD_N USBD_P R4 k VCC-USB VBUS VBUS #MCLR #MCLR RB6/PGEC RB7/PGED R3 k PWR-EN R7 M TVS TVS RF/SDA3 RF8/SCL3 RA/SCL RA3/SDA RG7/SDA4 RG8/SCL4 RG6/SCK RD0/SCK4 RD/SCK RD/SDI RC4/SDI RD/SDI4 RD3/SDO RC/SDO RA5/SDO4 RD9/SS4 RD/SS RC/SS RA4/U3TX RF5/U3RX RE8/UTX RE9/URX RD4/URX RD5/UTX RF/OC3 RG/OC6 RG0/OC7 RF0/OC4 RD5/OC RD4/OC5 RE3/OC8 RB/OC RB4/OC9 RB/INT4 RB5/INT RF4/INT3 RF3/INT #MCLR RB/INT4 RB5/INT RB/OC RB4/OC9 RE8/UTX RE9/URX RA4/U3TX RF5/U3RX RA/SCL RA3/SDA RG6/SCK RC4/SDI RC/SDO RC/SS RD0/SCK4 RD/SDI4 RA5/SDO4 RD9/SS4 RB3/AN8 RB/AN7 RF/AN3 RF3/AN30 RA/AN9 RB/AN6 RB0/AN5 RB9/AN49 RB3/AN8 RB4/AN4 RB4/AN4 RB8/AN48 RB3/GPIO RB3/GPIO RG7/SDA4 RG8/SCL4 RF/OC3 RG/OC6 RG0/OC7 RF0/OC4 RD5/OC RD4/OC5 RE3/OC8 RB/AN7 RF/AN3 RF3/AN30 RA/AN9 RB/AN6 RB0/AN5 RB9/AN49 RF4/INT3 RF3/INT RB5/INT RB/INT4 RD/SCK RD/SDI RD3/SDO RD/SS RF/SDA3 RF8/SCL3 RD4/URX RD5/UTX RG5/GPIO RA5/GPIO RE5/GPIO RE6/GPIO RE7/GPIO RG9/GPIO RC3/GPIO RA0/GPIO RA9/GPIO RA0/GPIO RB0/GPIO RA4/GPIO RD0/GPIO RA6/GPIO RA7/GPIO RE0/GPIO RE/GPIO RG4/GPIO RG/GPIO RG3/GPIO RE/GPIO RA0/GPIO RB8/AN48 PWR-EN RE/GPIO RG4/GPIO RG/GPIO RE/GPIO RG5/GPIO RA5/GPIO RE5/GPIO RE6/GPIO RA6/GPIO RA7/GPIO RE0/GPIO RD0/GPIO RA4/GPIO RE4/GPIO RE4/GPIO RA9/GPIO RB0/GPIO RA0/GPIO RG9/GPIO RC3/GPIO RE7/GPIO C3 0.0µF C5 0.0µF C6 0.0µF C 0.0µF C 0.0µF C7 0.0µF C8 0.0µF C9 0.0µF C0 0.0µF C 0.0µF C 0µF RD3/GPIO RD3/GPIO VCC-5V VCC-5V RB6/PGEC RB7/PGED RG3/GPIO Clicker for PIC3MZ schematic
7 . PIC3MZ microcontroller The Clicker for PIC3MZ development tool comes with the PIC3MZ microcontroller. This 3-bit (up to MB Live- Update Flash and 5 KB SRAM) microcontroller with FPU is rich with on-chip peripherals. Key microcontroller features MB of Live-Update flash Core: 00MHz Nine 6-bit or up to four 3-bit timers/counters 5V-tolerant pins with up to 3 ma source/sink CAN 0/ Timers/ One-Wire UART 0/ SD Host Watchdog Debug I/F 0-bit DAC 0/ System 3-Bit I/O Bus SPI 0/ Slave(s) 0-bit ADC /7 SPI Master Ethernet USB Host IS Master /Slave USB peripheral EFUSE BCD BCD PWM/PCM RTC 3-bit MCUs up to MB Live-Update Flash 5kB Program SRAM FPU Audio and Graphics Interfaces HS USB and Ethernet Advanced Analog IC Master /Slave(s) Camera Interrupt Page 7
8 3. Programming the microcontroller Figure 3-: PIC3MZ microcontroller The microcontroller can be programmed in three ways: Using USB HID mikrobootloader, Using Using external mikroprog for PIC, dspic, PIC3 Page 8
9 3. Programming with mikrobootloader You can program the microcontroller with a bootloader which is preprogrammed by default. To transfer.hex file from a PC to MCU you need bootloader software (mikrobootloader USB HID) which can be downloaded from: step Connecting clicker for PIC3MZ download.mikroe.com/examples/starter-boards/clicker-/ pic3mz/clicker--pic3mz-mikrobootloader-usb-hid-v00.zip After the mikrobootloader software is downloaded, unzip it to desired location and start it. clicker pic3mz_bootloader.zip WinRAR ZIP archive clicker pic3mz_bootloader File folder Software File folder mikrobootloader USB HID.exe Bootloader tool for mikroelektron... mikroelektronika Firmware File folder Clicker PIC3MZ USB HID Bootloader v.300.hex HEX File Figure 3-: USB HID mikrobootloader window To start, connect the USB cable, or if already connected press the Reset button on your Clicker for PIC3MZ. Click the Connect button within 5s to enter the bootloader mode, otherwise existing microcontroller program will execute. Page 9
10 step Browsing for.hex file step 3 Selecting.HEX file clicker for PIC3MZ PIC3MZ clicker for PIC3.hex HEX.file Figure 3-3: Browse for HEX Figure 3-4: Selecting HEX Select.HEX file using open dialog window. Click the Open button. Page 0
11 step 4 Uploading.HEX file clicker for PIC3MZ clicker for PIC3MZ PIC3MZ PIC3MZ Begin uploading PIC3MZ Figure 3-5: Begin uploading Figure 3-6: Progress bar To start.hex file bootloading click the Begin uploading button. Progress bar enables you to monitor.hex file uploading. Page
12 step 5 Finish upload PIC3MZ.hex PIC3MZ.hex Figure 3-7: Restarting MCU Figure 3-8: mikrobootloader ready for next job Click OK button after the uploading process is finished. Press Reset button on Clicker for PIC3MZ board and wait for 5 seconds. Your program will run automatically. Page
13 3. Programming with mikroprog programmer The microcontroller can be programmed with external mikroprog for PIC, dspic, and PIC3 programmer and mikroprog Suite for PIC3MZ software. The external programmer is connected to the development system via x5 connector Figure 3-9. mikroprog is a fast USB.0 programmer with hardware debugger support. It supports all PIC, dspic, and PIC3 devices in a single programmer. Outstanding performance, easy operation and elegant design are its key features. Figure 3-8: mikroprog connector Page 3
14 mikroprog Suite for PIC3MZ software PIC3 mikroprog programmer requires special programming software called mikroprog Suite for PIC3. This software is used for programming of ALL Microchip microcontroller families, including PIC0, PIC, PIC6, PIC8, dspic30/33, PIC4 and PIC3. Software has intuitive interface and SingleClick programming technology. Just by downloading the latest version of mikroprog Suite your programmer is ready to program new devices. mikroprog Suite is updated regularly, at least four times a year, so your programmer will be more and more powerful with each new release. Figure 3-0: mikroprog Suite for PIC3 window Page 4
15 4. Buttons and LEDs The board also contains a reset button and a pair of buttons and 3 LEDs, as well as an ON/OFF switch. The Reset button is used to manually reset the microcontroller it generates a low voltage level on the microcontroller s reset pin. LEDs can be used for visual indication of the logic state on two pins (P34 and P8). An active LED indicates that a logic high () is present on the pin. Pressing any of the two buttons can change the logic state of the microcontroller pins (P35 and P) from logic high () to logic low (0). In addition to the onboard ON/OFF switch, two pins allow you to connect your own external switch (located beneath the switch). 3 Figure 4-: Two LEDs, two buttons and a reset button Page 5
16 5. Power management and battery charger Clicker for PIC3MZ features LTC 3586, a highly integrated power management and battery charger IC that includes a current limited switching PowerPath manager. LTC 3586 also enables battery charging over a USB connection. Figure 5-: power management and battery charger IC Page 6
17 6. Oscillators Two onboard oscillators act as external sources for PIC3MZ s two system clocks. A 4 MHz oscillator provides a reference frequency output to the clock multiplier PLL. A a 3.768kHz oscillator provides a clock for the internal RTCC. Figure 6-: khz crystal oscillator module (Y) Figure 6-: 4MHz crystal oscillator module (Y) Page 7
18 7. USB connection PIC3MZ microcontrollers has an integrated USB module, which enables you to implement USB communication functionality to your Clicker board. Connection with target USB host is done over a micro USB connector which is positioned next to the battery connector. Figure 7-: Connecting USB cable to Clicker Page 8
19 9. Pinout Reset pin Reference Ground PWM lines Digital I/O lines RX UART3 Lines TX SCL I C Lines SDA 3.3V power supply Reference Ground RST RE3 RG0 RG RF RF0 RD5 RD4 RG4 RG RG9 RE RE4 RG5 RA5 RE5 RE6 RD4 RD5 RF8 RF 3.3V VSYS RB9 RB0 RB RA RF3 RF RB RF4 RF3 RB5 RB RE RE0 RA7 RA6 RD3 RD0 RA4 RD RD RD RD3 3.3V System power supply Reference Ground Analog Lines Interrupt Lines Digital I/O lines SCK SDI SPI3 Lines SDO 3.3V power supply Reference Ground Pin functions Pin functions Digital lines Analog Lines Interrupt Lines SPI Lines IC Lines UART lines PWM lines Page 9
20 0. click boards are plug and play! Up to now, MikroElektronika has released more than a 350 mikrobus TM compatible click boards TM. On the average, three click boards are released per week. It is our intention to provide you with as many add-on boards as possible, so you will be able to expand your development board with additional functionality. Each board comes with a set of working example code. Please visit the click boards webpage for the complete list of currently available boards: Figure 0-: Clicker for PIC3MZ driving click boards Page 0
21 . Dimensions Page
22 DISCLAIMER All the products owned by MikroElektronika are protected by copyright law and international copyright treaty. Therefore, this manual is to be treated as any other copyright material. No part of this manual, including product and software described herein, may be reproduced, stored in a retrieval system, translated or transmitted in any form or by any means, without the prior written permission of MikroElektronika. The manual PDF edition can be printed for private or local use, but not for distribution. Any modification of this manual is prohibited. MikroElektronika provides this manual as is without warranty of any kind, either expressed or implied, including, but not limited to, the implied warranties or conditions of merchantability or fitness for a particular purpose. MikroElektronika shall assume no responsibility or liability for any errors, omissions and inaccuracies that may appear in this manual. In no event shall MikroElektronika, its directors, officers, employees or distributors be liable for any indirect, specific, incidental or consequential damages (including damages for loss of business profits and business information, business interruption or any other pecuniary loss) arising out of the use of this manual or product, even if MikroElektronika has been advised of the possibility of such damages. MikroElektronika reserves the right to change information contained in this manual at any time without prior notice, if necessary. HIGH RISK ACTIVITIES The products of MikroElektronika are not fault tolerant nor designed, manufactured or intended for use or resale as on line control equipment in hazardous environments requiring fail safe performance, such as in the operation of nuclear facilities, aircraft navigation or communication systems, air traffic control, direct life support machines or weapons systems in which the failure of Software could lead directly to death, personal injury or severe physical or environmental damage ( High Risk Activities ). MikroElektronika and its suppliers specifically disclaim any expressed or implied warranty of fitness for High Risk Activities. TRADEMARKS The MikroElektronika name and logo, mikroc, mikrobasic, mikropascal, Visual TFT, Visual GLCD, mikroprog, Ready, MINI, mikrobus, EasyPIC, EasyAVR, Easy805, click boards and mikromedia are trademarks of MikroElektronika. All other trademarks mentioned herein are property of their respective companies.all other product and corporate names appearing in this manual may or may not be registered trademarks or copyrights of their respective companies, and are only used for identification or explanation and to the owners benefit, with no intent to infringe. The FTDI Chip and Windows logos and product names are trademarks of FTDI Chip and Microsoft in the U.S.A. and other countries. Copyright 07 MikroElektronika. All Rights Reserved. Page
23 If you want to learn more about our products, please visit our website at If you are experiencing some problems with any of our products or just need additional information, please place your ticket at helpdesk.mikroe.com If you have any questions, comments or business proposals, do not hesitate to contact us at Designed by MikroElektronika Ltd.
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