DS70005282B-page 2 2017 Microchip Technology Inc.
Information contained in this publication regarding deviceapplications and the like is provided only for your convenienceand may be superseded by updates. It is your responsibility toensure that your application meets with your specifications.MICROCHIP MAKES NO REPRESENTATIONS ORWARRANTIES OF ANY KIND WHETHER EXPRESS ORIMPLIED, WRITTEN OR ORAL, STATUTORY OROTHERWISE, RELATED TO THE INFORMATION,INCLUDING BUT NOT LIMITED TO ITS CONDITION,QUALITY, PERFORMANCE, MERCHANTABILITY ORFITNESS FOR PURPOSE. Microchip disclaims all liabilityarising from this information and its use. Use of Microchipdevices in life support and/or safety applications is entirely atthe buyer’s risk, and the buyer agrees to defend, indemnify andhold harmless Microchip from any and all damages, claims,suits, or expenses resulting from such use. No licenses areconveyed, implicitly or otherwise, under any Microchipintellectual property rights unless otherwise stated.
Note the following details of the code protection feature on Microchip devices:
• Microchip products meet the specification contained in their particular Microchip Data Sheet.
• Microchip believes that its family of products is one of the most secure families of its kind on the market today, when used in the intended manner and under normal conditions.
• There are dishonest and possibly illegal methods used to breach the code protection feature. All of these methods, to our knowledge, require using the Microchip products in a manner outside the operating specifications contained in Microchip’s Data Sheets. Most likely, the person doing so is engaged in theft of intellectual property.
• Microchip is willing to work with the customer who is concerned about the integrity of their code.
• Neither Microchip nor any other semiconductor manufacturer can guarantee the security of their code. Code protection does not mean that we are guaranteeing the product as “unbreakable.”
Code protection is constantly evolving. We at Microchip are committed to continuously improving the code protection features of ourproducts. Attempts to break Microchip’s code protection feature may be a violation of the Digital Millennium Copyright Act. If such actsallow unauthorized access to your software or other copyrighted work, you may have a right to sue for relief under that Act.
Microchip received ISO/TS-16949:2009 certification for its worldwide headquarters, design and wafer fabrication facilities in Chandler and Tempe, Arizona; Gresham, Oregon and design centers in California and India. The Company’s quality system processes and procedures are for its PIC® MCUs and dsPIC® DSCs, KEELOQ® code hopping devices, Serial EEPROMs, microperipherals, nonvolatile memory and analog products. In addition, Microchip’s quality system for the design and manufacture of development systems is ISO 9001:2000 certified.
QUALITY MANAGEMENT SYSTEM CERTIFIED BY DNV
== ISO/TS 16949 ==
Trademarks
The Microchip name and logo, the Microchip logo, AnyRate, AVR, AVR logo, AVR Freaks, BeaconThings, BitCloud, CryptoMemory, CryptoRF, dsPIC, FlashFlex, flexPWR, Heldo, JukeBlox, KEELOQ, KEELOQ logo, Kleer, LANCheck, LINK MD, maXStylus, maXTouch, MediaLB, megaAVR, MOST, MOST logo, MPLAB, OptoLyzer, PIC, picoPower, PICSTART, PIC32 logo, Prochip Designer, QTouch, RightTouch, SAM-BA, SpyNIC, SST, SST Logo, SuperFlash, tinyAVR, UNI/O, and XMEGA are registered trademarks of Microchip Technology Incorporated in the U.S.A. and other countries.
ClockWorks, The Embedded Control Solutions Company, EtherSynch, Hyper Speed Control, HyperLight Load, IntelliMOS, mTouch, Precision Edge, and Quiet-Wire are registered trademarks of Microchip Technology Incorporated in the U.S.A.
Adjacent Key Suppression, AKS, Analog-for-the-Digital Age, Any Capacitor, AnyIn, AnyOut, BodyCom, chipKIT, chipKIT logo, CodeGuard, CryptoAuthentication, CryptoCompanion, CryptoController, dsPICDEM, dsPICDEM.net, Dynamic Average Matching, DAM, ECAN, EtherGREEN, In-Circuit Serial Programming, ICSP, Inter-Chip Connectivity, JitterBlocker, KleerNet, KleerNet logo, Mindi, MiWi, motorBench, MPASM, MPF, MPLAB Certified logo, MPLIB, MPLINK, MultiTRAK, NetDetach, Omniscient Code Generation, PICDEM, PICDEM.net, PICkit, PICtail, PureSilicon, QMatrix, RightTouch logo, REAL ICE, Ripple Blocker, SAM-ICE, Serial Quad I/O, SMART-I.S., SQI, SuperSwitcher, SuperSwitcher II, Total Endurance, TSHARC, USBCheck, VariSense, ViewSpan, WiperLock, Wireless DNA, and ZENA are trademarks of Microchip Technology Incorporated in the U.S.A. and other countries.
SQTP is a service mark of Microchip Technology Incorporated in the U.S.A.
Silicon Storage Technology is a registered trademark of Microchip Technology Inc. in other countries.
GestIC is a registered trademark of Microchip Technology Germany II GmbH & Co. KG, a subsidiary of Microchip Technology Inc., in other countries.
All other trademarks mentioned herein are property of their respective companies.
© 2017, Microchip Technology Incorporated, All Rights Reserved.
ISBN: 978-1-5224-1440-7
Object of Declaration:
PIC32MZ EF Curiosity Development Board (DM320104)
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PIC32MZ EF CURIOSITYDEVELOPMENT BOARD
USER’S GUIDE
Table of Contents
Preface ........................................................................................................................... 7
Chapter 1. Introduction1.1 Kit Contents .................................................................................................. 131.2 Development Board Functionality and Features .......................................... 14
Chapter 2. Hardware2.1 Hardware Features ....................................................................................... 17
Appendix A. SchematicsA.1 Block Diagram .............................................................................................. 23A.2 Schematics .................................................................................................. 24
Appendix B. Bill of MaterialsB.1 PIC32MZ EF Curiosity Development Board Bill of Materials ....................... 27
Worldwide Sales and Service .................................................................................... 30
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PIC32MZ EF CURIOSITYDEVELOPMENT BOARD
USER’S GUIDE
Preface
INTRODUCTION
This chapter contains general information that will be useful to know before using the PIC32MZ EF Curiosity Development Board. Items discussed in this chapter include:
• Document Layout• Conventions Used in this Guide• Recommended Reading• The Microchip Web Site• Development Systems Customer Change Notification Service• Customer Support• Document Revision History
DOCUMENT LAYOUT
This document describes how to use the PIC32MZ EF Curiosity Development Board as a development tool to emulate and debug firmware on a target board. This user’s guide is composed of the following chapters:
• Chapter 1. “Introduction” provides a brief overview of the development board, highlighting its features and uses.
• Chapter 2. “Hardware” provides the hardware descriptions of the development board.
• Appendix A. “Schematics” provides a block diagram, board layouts, and detailed schematics of the development board.
• Appendix B. “Bill of Materials” provides the bill of materials for the components used in the design and manufacture of the development board.
NOTICE TO CUSTOMERS
All documentation becomes dated, and this manual is no exception. Microchip tools and documentation are constantly evolving to meet customer needs, so some actual dialogs and/or tool descriptions may differ from those in this document. Please refer to our web site (www.microchip.com) to obtain the latest documentation available.
Documents are identified with a “DS” number. This number is located on the bottom of each page, in front of the page number. The numbering convention for the DS number is “DSXXXXXXXXA”, where “XXXXXXXX” is the document number and “A” is the revision level of the document.
For the most up-to-date information on development tools, see the MPLAB® X IDE online help. Select the Help menu, and then Topics to open a list of available online help files.
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PIC32MZ EF Curiosity Development Board User’s Guide
CONVENTIONS USED IN THIS GUIDE
This manual uses the following documentation conventions:
DOCUMENTATION CONVENTIONS
Description Represents Examples
Italic characters Referenced books MPLAB X IDE User’s Guide
Emphasized text ...is the only compiler...
Initial caps A window the Output window
A dialog the Settings dialog
A menu selection select Enable Programmer
Quotes A field name in a window or dialog
“Save project before build”
Underlined, italic text with right angle bracket
A menu path File > Save
Bold characters A dialog button Click OK
A tab Click the Power tab
Text in angle brackets < > A key on the keyboard Press <Enter>, <F1>
Plain Courier New Sample source code #define START
Filenames autoexec.bat
File paths c:\mcc18\h
Keywords _asm, _endasm, static
Command-line options -Opa+, -Opa-
Bit values 0, 1
Constants 0xFF, ‘A’
Italic Courier New A variable argument file.o, where file can be any valid filename
Square brackets [ ] Optional arguments mcc18 [options] file [options]
Curly brackets and pipe character: { | }
Choice of mutually exclusive arguments; an OR selection
errorlevel {0|1}
Ellipses... Replaces repeated text var_name [, var_name...]
Represents code supplied by user
void main (void){ ...}
Notes A Note presents information that we want to re-emphasize, either to help you avoid a common pitfall or to make you aware of operating differences between some device family members. A Note can be in a box, or when used in a table or figure, it is located at the bottom of the table or figure. Note 1: This is a note used in a
table.
Note: This is a standard note box.
CAUTION
This is a caution note.
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Preface
RECOMMENDED READING
This user’s guide describes how to use the starter kit. The following Microchip documents are available and recommended as supplemental reference resources.
PIC32MZ Embedded Connectivity with Floating Point Unit (EF) Family Data Sheet (DS60001320)
Refer to this document for detailed information on PIC32MZ EF family devices. Reference information found in this data sheet includes:
• Device memory maps
• Device pinout and packaging details
• Device electrical specifications
• List of peripherals included on the devices
MPLAB® XC32 C/C++ Compiler User’s Guide (DS50001686)
This document details the use of Microchip’s MPLAB XC32 C/C++ Compiler to develop an application.
MPLAB® X IDE User’s Guide (DS50002027)
Refer to this document for more information pertaining to the installation and implementation of the MPLAB X IDE software, as well as the MPLAB SIM Simulator software that is included with it.
Universal Serial Bus Specification and Associated Documents
The Universal Serial Bus is defined by the USB 2.0 specification and its associated supplements and class-specific documents. These documents are available from the USB Implementers Forum. See their web site at: http://www.usb.org.
mikroBUS™ Specification
The purpose of mikroBUS™ is to enable easy hardware expandability with a large number of standardized compact add-on boards. See their web site at: http://www.mikroe.com/mikrobus/.
THE MICROCHIP WEB SITE
Microchip provides online support via our web site at http://www.microchip.com. This web site makes files and information easily available to customers. Accessible by most Internet browsers, the web site contains the following information:
• Product Support – Data sheets and errata, application notes and sample programs, design resources, user’s guides and hardware support documents, latest software releases and archived software
• General Technical Support – Frequently Asked Questions (FAQs), technical support requests, online discussion groups, Microchip consultant program member listings
• Business of Microchip – Product selector and ordering guides, latest Microchip press releases, listings of seminars and events; and listings of Microchip sales offices, distributors and factory representatives
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PIC32MZ EF Curiosity Development Board User’s Guide
DEVELOPMENT SYSTEMS CUSTOMER CHANGE NOTIFICATION SERVICE
Microchip’s customer notification service helps keep customers current on Microchip products. Subscribers will receive e-mail notification whenever there are changes, updates, revisions or errata related to a specified product family or development tool of interest.
To register, access the Microchip web site at www.microchip.com, click on Customer Change Notification and follow the registration instructions.
The Development Systems product group categories are:
• Compilers – The latest information on Microchip C compilers and other language tools
• Emulators – The latest information on the Microchip in-circuit emulator, MPLAB REAL ICE™
• In-Circuit Debuggers – The latest information on the Microchip in-circuit debugger, MPLAB ICD 3
• MPLAB X IDE – The latest information on Microchip MPLAB X IDE, the Windows® Integrated Development Environment for development systems tools
• Programmers – The latest information on Microchip programmers including the PICkit™ 3 development programmer
CUSTOMER SUPPORT
Users of Microchip products can receive assistance through several channels:
• Distributor or Representative
• Local Sales Office
• Field Application Engineer (FAE)
• Technical Support
Customers should contact their distributor, representative or field application engineer (FAE) for support. Local sales offices are also available to help customers. A listing of sales offices and locations is included in the back of this document.
Technical support is available through the web site at: http://support.microchip.com
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Preface
DOCUMENT REVISION HISTORY
Revision A (August 2016)
This is the initial released version of this user’s guide.
Revision B (March 2017)
Updated section 2.1.2 “Power Supply” and Table B-1.
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PIC32MZ EF CURIOSITYDEVELOPMENT BOARD
USER’S GUIDE
Chapter 1. Introduction
Thank you for purchasing a Microchip Technology PIC32MZ EF Curiosity Development Board.
The PIC32MZ EF Curiosity Development Board includes an integrated programmer/debugger and requires no additional hardware to get started. Users can expand functionality through MikroElectronika mikroBUS™ Click™ adapter boards, add Ethernet connectivity with the Microchip LAN8720A PHY Daughter Board, add Wi-Fi™ connectivity using the Microchip MRF24WN0MA on-board Wi-Fi module, and add audio input/output capability with Microchip audio daughter boards.
With or without expansion boards, the PIC32MZ EF Curiosity Development Board provides the freedom to develop for a variety of applications, including Internet of Things (IoT), robotics development, and proof-of-concept designs.
This chapter includes the following topics:
• Kit Contents• Development Board Functionality and Features
1.1 KIT CONTENTS
The PIC32MZ EF Family Starter Kit contains the following items:
• One PIC32MZ EF Curiosity Development Board
• One on-board PIC32MZ2048EFM100 microcontroller
Note: If you are missing any part of a kit, contact a Microchip sales office for assistance. A list of Microchip offices for sales and service is provided on the last page of this document.
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PIC32MZ EF Curiosity Development Board User’s Guide
1.2 DEVELOPMENT BOARD FUNCTIONALITY AND FEATURES
1.2.1 Development Board
The major features and top assembly of the PIC32MZ EF Curiosity Development Board are shown in Figure 1-1:
1. PIC32MZ2048EFM100 32-bit microcontroller (U9).
2. Two mikroBUS sockets to expand functionality using MikroElectronika Click adapter boards (J5, J10).
3. X32 header for audio I/O using Microchip audio daughter boards (J14, J15).
4. MRF24WN0MA, 2.4 GHz IEEE 802.11n compliant wireless module (U10).
5. Header for flexible Ethernet PHY options using Microchip PHY daughter boards (J18).
6. GPIO expansion header (J17).
7. Debug USB connector for programming/debugging (J3).
8. Target USB connector for PIC32 USB connectivity (Device/Host mode) (J12).
9. Header for external 5V input (J7).
10. Jumper to select power source: Debug USB connector, target USB connector and external +5V input (J8).
11. Jumper to drive VBUS in Host mode (J13).
12. Three user LEDs (LED1, LED2, and LED3).
13. RGB LED (LED4).
14. User button (S1).
15. Reset Button (MCLR).
16. ICSP header for external debugger, such as MPLAB® REAL ICE™ or MPLAB ICD 3 (J16).
17. Jumper to select on-board debugger or external debugger (J2).
18. 24 MHz crystal oscillator (X2).
For details on these features, refer to Chapter 2. “Hardware”.
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PIC32MZ EF CURIOSITYDEVELOPMENT BOARD
USER’S GUIDE
Chapter 2. Hardware
This chapter describes the hardware features of the PIC32MZ EF Curiosity Development Board.
2.1 HARDWARE FEATURES
Only certain features of the development board are discussed in this section. Refer to Figure 1-1 in Section 1.2 “Development Board Functionality and Features” for their locations.
2.1.1 Processor
The PIC32MZ EF Curiosity Development Board is designed with a permanently mounted (i.e., soldered) PIC32MZ2048EFM100 microcontroller (U9).
2.1.2 Power Supply
Power can be supplied to the development board from the host PC using a Type A male-to-micro-B USB cable or by using an external +5V supply. Jumper J8 is used to select the voltage source for the development board. Table 2-1 provides the details of the power supply sources available for the development board.
The +3.3V power supply for the microcontroller is generated by the MPC1727 voltage regulator.
TABLE 2-1: DEVELOPMENT BOARD POWER SUPPLY SOURCES
If the PICkit™ On-board (PKOB) debugger is connected to a host PC, it enumerates with the host computer and once it has successfully been enumerated, it turns on the main board power supply (+3.3V and +5V) using the high side power switch (MIC2005A) by driving the ENABLE signal high. Figure 2-1 shows the power topology for the development board.
Power Input ConnectionJumper Position
(J8)
USB micro-B (J3) Using a Type A male-to-micro-B USB cable (not provided with the kit)
VIN-PKOB (4-3)
USB micro-B (J12) Using a Type A male-to-micro B USB cable (not provided with the kit)
VIN-VBUS(1-3)
External 5V (J7) Connect the development board to an external 5V power supply.
VIN-P/S(5-3)
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D3
D2
+5 V
+3.3 V
BLE
U5
MIC2005A
MIC2005A
U6
FIGURE 2-1: POWER TOPOLOGY
+5V Header
USBMicro B
USBMicro B
3.3 V REGULATOR PKOB
J7
J3
J12J13
U8 U4
D1
VIN3
5
1
4VBUS_DBG
VBUS_TGT
+3.3V_PKOB
ENA
J8MIC2005A
U1
MCP1727
VBUSON
Hardware
2.1.3 Programming and Debug
The PIC32MZ EF Curiosity Development Board includes the PICkit On-board (PKOB) debugger based on the PIC24FJ256GB106 USB Microcontroller. In addition, it pro-vides the option to use external debuggers, such as MPLAB REAL ICE or MPLAB ICD 3 by connecting to the In-Circuit Serial Programming™ (ICSP™) header, J16.
By default, the on-board debugger is connected to the programming pins (PGEC and PGED) of the PIC32 device. To use an external debugger, remove Jumper J2 to disconnect the on-board debugger from driving the programming pins.
TABLE 2-2: DEBUGGER SELECTION
2.1.4 USB Connectivity
The PIC32MZ2048EFM100 microcontroller has an integrated Hi-Speed USB module that enables the user to implement the USB functionality through the micro-AB USB connector (J12). Users can connect the development board for USB functionality using any one of these modes:
• Device Mode: Connect the host PC to the target USB connector (J12) using the USB Type A male to micro-B male cable. Use Jumper J8 to select the required power source for the board.
• Host Mode: Connect the USB device to the target USB connector (J12) using a USB Type A Female to micro-B male cable (this cable is not included in the kit). Install a jumper in the J13 header to drive the VBUS line in Host mode. Use jumper J8 to select the power source from either the Debug USB connector or the exter-nal 5V input.
2.1.5 Switches
The PIC32MZ EF Curiosity Development Board contains two push buttons: Reset but-ton (MCLR) and user-configurable button (S1). The Reset button is connected to the PIC32 Master Clear reset line and the other is a generic user-configurable button. When a button is pressed, it will drive the I/O line to GND.
TABLE 2-3: PUSH BUTTONS
J2 Jumper Positions
On-board Debugger External Debugger
Pins 1-2 shorted Pins 1-2 Open
Pins 3-4 shorted Pins 3-4 Open
Push Button Name Microcontroller Pin
MCLR MCLR
S1 RG12
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PIC32MZ EF Curiosity Development Board User’s Guide
2.1.6 LEDs
Four user-programmable LEDs are available on the PIC32MZ EF Curiosity Development Board, and these LEDs can be turned ON/OFF using the connected GPIO pins. Table 2-4 provides the details of the LEDs and related GPIO pins.
The RGB LEDs (LED4) are connected to the re-mappable pins with an output compare functionality to control the color and brightness with PWM output. In the RGB LED, blue is the component of the GPIO pin RB0, green is the component of the GPIO pin RB1, and red is the component of the GPIO pin RB5.
TABLE 2-4: LEDS
2.1.7 Oscillator Options
A 24 MHz crystal oscillator (X2) is connected to the on-board microcontroller for preci-sion clocking. Depending on which is populated on the board, a 12 MHz crystal (Y2) may be used instead of external oscillator (X2).
The 480 Mbps USB High-Speed signal rate specification requires ±0.05% or 500 ppm clock accuracy. Therefore, an external crystal is required to meet the clock accuracy requirement for USB. Non-USB applications can use the internal RC oscillators.
The PIC32MZ EF Curiosity Development Board also has provision for an external sec-ondary 32 kHz oscillator (X3); however, this component is not populated.
2.1.8 mikroBUS™ Sockets
Two mikroBUS sockets (J5 and J10) are available on the development board and these sockets can be used to expand the functionality using the MikroElectronika Click adapter boards. The mikroBUS connector consists of two 1x8 female headers with SPI, I2C, UART, RST, PWM, analog, and interrupt lines as well as 3.3V, 5V, and GND power lines.
The GPIO pins for the mikroBUS sockets are assigned to route, as follows:
• UART1, I2C1, SPI1, and OC1 peripheral instances to mikroBUS socket J5
• UART2, I2C2, SPI2, and OC2 peripheral instances to mikroBUS socket J10. Note that UART2, I2C2, and SPI2 peripherals are also routed to the X32 audio header.
LED Name Microcontroller Pin
LED1 RE3
LED2 RE4
LED3 RE6
LED4 (RGB LEDs - blue, green, red) RB0, RB1, RB5
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Hardware
2.1.9 X32 Audio Header
The PIC32MZ EF Curiosity Development Board includes two X32 headers (J14, J15) to enable a connection to the Microchip Audio Codec Daughter Board. Table 2-5 provides the details of the available Audio Codec Daughter Board, and for additional information, contact your local Microchip sales office.
For a complete list of currently available Audio Codec Daughter Boards, visit the microchipDIRECT web site (www.microchipdirect.com).
TABLE 2-5: AUDIO DAUGHTER BOARD
2.1.10 Ethernet PHY
The PIC32MZ EF Curiosity Development Board includes headers to mount different Ethernet PHY daughter boards to implement a complete Ethernet node for networking. Table 2-6 provides the details of the available daughter board. For a complete list of currently available audio daughter boards, visit the microchipDIRECT web site (www.microchipdirect.com).
TABLE 2-6: ETHERNET PHY DAUGHTER BOARD
The Microchip LAN8720A PHY Daughter Board is populated with a small footprint RMII 10/100 Ethernet transceiver (LAN8720A). This daughter board enables Ethernet communication with variety of Microchip development boards.
2.1.11 MRF24WN0MA Wi-Fi Module
The PIC32MZ EF Curiosity Development Board provides wireless connectivity with an on-board MRF24WN0MA 2.4 GHz, IEEE 802.11n-compliant wireless module. The PIC32 microcontroller uses the Serial Peripheral Interface (SPI) to communicate with the MRF24WN0MA module.
2.1.12 PIC32 I/O Header
The PIC32MZ EF Curiosity Development Board provides a header (J17) to access unused microcontroller GPIO pins.
Daughter Board Name Microchip Part Number
PIC32 Audio Codec Daughter Board - AK4642EN AC320100
Daughter Board Name Microchip Part Number
LAN8720A PHY Daughter Board AC320004-3
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2.1.13 Peripheral Resource Assignment
The MCU peripheral instances, assigned for different hardware interfaces, are pro-vided in Table 2-7. The correct peripheral instance must be used in the application to use the respective hardware interface.
TABLE 2-7: RESOURCE ASSIGNMENT
Resource Assignment
PeripheralReference
ClockI2C SPI UARTOutput
CompareInterrupt
MikroBus1 (J5) I2C1 SPI1 UART1 OC1 INT1 —
MikroBus2 (J10) I2C2 SPI2 UART2 OC2 INT2 —
X32 (J14, J15) I2C2 SPI2 UART2 — — REFCLK01
Wi-Fi (U10) — SPI3 — — INT3 —
RGB LED (LED4)
— — — OC3, OC4, OC5
— —
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Appendix A. Schematics
A.1 BLOCK DIAGRAM
FIGURE A-1: HIGH-LEVEL BLOCK DIAGRAM OF THE PIC32MZ EF CURIOSITY DEVELOPMENT BOARD
Power
VBUS_DBG
VBUS_TGT
+5V_EXT
+5V
+3.3V
+3.3V_PKOB
VBUS_TGT
Target USB
USB micro-B
Debug USB
USB micro-B PKOB
VBUS_DBG ICSP
+3.3V_PKOB
USB GPIO
PIC32MZ2048EFM100
PGEC/PGED
GPIO GPIO
GPIO
LED
Switch
+3.3V +5V +3.3V+5V
+3.3V +5V
mikroBUSSocket 1
mikroBUSSocket 2
X32 Header
+3.3V
System
Ethernet
GPIO
+3.3V
MRF24WN0MAWi-Fi™ Module
MCLR Switch
MCLR
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0.1uFC30
0.1uFC31
0.1uFC32
0.1uFC33
0.1uFC34
0.1uFC35
+3.3V
USB_NUSB_P
F3/USBID
RPF0/ETXD1
RPF1/ETXD0
D15/U1TXD14/SDI1
D11/EMDCD10/U1RX
PD5/SS2PD4/SS1D3/SDO1
RPD2/ETXEND1/SCK1
D0/EMDIO
13/ERXD112/ERXD0B11/ERXERR
PGED2PGEC2
PB4/AN4RB3RB2
VSS 13
VDD14
AVDD30 AVSS 31
VSS 36
VDD37 VSS 45
VDD46
VBUS51 VUSB3V352
VSS 53
VDD62 VSS 63
VDD74 VSS 75
VDD83 VSS 84
VSS 92VDD93
PIC32MZ1024ECH100
U9B+3.3V
+3.3V
VBUS_TARGET
0.1uFC36
0.1uFC37
Holes
1/LED_G
PI_MISOPI_MOSIPI_CS/MODE1
SPI_CK
0/LED_B
RB15
RD9
RD12RD13
F2/PWM
RF8
F13/INT1
RF5F4/WIFI_INT
5/LED_R
F12/INT2
33RR91
33RR92
33RR93
A.2 SCHEMATICS
FIGURE A-2: PIC32MZ EF CURIOSITY DEVELOPMENT BOARD SCHEMATICS (SHEET 1 OF 3)
AN23/AERXERR/RG151
EBIA5/AN34/PMA5/RA52
EBID5/AN17/RPE5/PMD5/RE53
EBID6/AN16/PMD6/RE64
EBID7/AN15/PMD7/RE75
EBIA6/AN22/RPC1/PMA6/RC16
EBIA12/AN21/RPC2/PMA12/RC27
EBIWE/AN20/RPC3/PMWR/RC38
EBIOE/AN19/RPC4/PMRD/RC49
AN14/C1IND/ECOL/RPG6/SCK2/RG610
EBIA4/AN13/C1INC/ECRS/RPG7/SDA4/PMA4/RG711
EBIA3/AN12/C2IND/ERXDV/ECRSDV/AERXDV/AECRSDV/RPG8/SCL4/PMA3/RG812
EBIA2/AN11/C2INC/ERXCLK/EREFCLK/AERXCLK/AEREFCLK/RPG9/PMA2/RG916
TMS/EBIA16/AN24/RA017
AN25/AERXD0/RPE8/RE818
AN26/AERXD1/RPE9/RE919
AN45/C1INA/RPB5/RB5 20AN4/C1INB/RB4 21AN3/C2INA/RPB3/RB3 22AN2/C2INB/RPB2/RB2 23PGEC1/AN1/RPB1/RB1 24PGED1/AN0/RPB0/RB0 25
PGEC2/AN46/RPB6/RB6 26
PGED2/AN47/RPB7/RB7 27
VREF-/CVREF-/AN27/AERXD2/RA928
VREF+/CVREF+/AN28/AERXD3/RA1029 EBIA10/AN48/RPB8/PMA10/RB8 32
EBIA7/AN49/RPB9/PMA7/RB9 33
EBIA13/CVREFOUT/AN5/RPB10/PMA13/RB10 34
AN6/ERXERR/AETXERR/RB11 35
TCK/EBIA19/AN29/RA138
TDI/EBIA18/AN30/RPF13/SCK5/RF13 39TDO/EBIA17/AN31/RPF12/RF12 40
EBIA11/AN7/ERXD0/AECRS/PMA11/RB12 41
AN8/ERXD1/AECOL/RB13 42
EBIA1/AN9/ERXD2/AETXD3/RPB14/SCK3/PMA1/RB14 43
EBIA0/AN10/ERXD3/AETXD2/RPB15/OCFB/PMA0/RB15 44
AN32/AETXD0/RPD14/RD14 47
AN33/AETXD1/RPD15/SCK6/RD15 48
OSCI/CLKI/RC1249
OSCO/CLKO/RC1550
USBID/RPF3/RF3 56EBIRDY3/RPF2/SDA3/RF2 57
EBIRDY2/RPF8/SCL3/RF8 58
EBICS0/SCL2/RA259
EBIRDY1/SDA2/RA360
EBIA14/PMCS1/PMA14/RA461
EBIA9/RPF4/SDA5/PMA9/RF4 64
EBIA8/RPF5/SCL5/PMA8/RF5 65
AETXCLK/RPA14/SCL1/RA1466
AETXEN/RPA15/SDA1/RA1567
EBIA15/RPD9/PMCS2/PMA15/RD9 68
RPD10/SCK4/RD10 69
EMDC/AEMDC/RPD11/RD11 70
EMDIO/AEMDIO/RPD0/RTCC/INT0/RD0 71
SOSCI/RPC13/RC1372
SOSCO/RPC14/T1CK/RC1473 RPD1/SCK1/RD1 76
EBID14/ETXEN/RPD2/PMD14/RD2 77
EBID15/ETXCLK/RPD3/PMD15/RD3 78
EBID12/ETXD2/RPD12/PMD12/RD12 79
EBID13/ETXD3/PMD13/RD13 80
SQICS0/RPD4/RD4 81
SQICS1/RPD5/RD5 82
EBID11/ETXD1/RPF0/PMD11/RF0 85
EBID10/ETXD0/RPF1/PMD10/RF1 86
EBID9/ETXERR/RPG1/PMD9/RG187 EBID8/RPG0/PMD8/RG088
TRCLK/SQICLK/RA689
TRD3/SQID3/RA790
EBID0/PMD0/RE091
EBID1/PMD1/RE194
TRD2/SQID2/RG1495
TRD1/SQID1/RG1296
TRD0/SQID0/RG1397
EBID2/PMD2/RE298
EBID3/RPE3/PMD3/RE399
EBID4/AN18/PMD4/RE4100
MCLR15 D- 54D+ 55
PIC32MZ2048EFM100-I/PF
U9A
TC25L5I32K7680
EN1
GND2 OUT 3
VDD 4X3
32.768 kHz
123456
ICSP
MCLRVDDGNDPGDPGCAUX
HDR-2.54 Male 1x6
J16+3.3VMCLR
ICSP HDRPIC32 I/Os HDRs
RA0/WIFI_SLEEPAN29/RA1
SCL2SDA2
RA9/RSTRA10SCL1SDA1
RPC2/U2TXRPC3/U2RX
RE0RE1RE2
RE3/LED1RE4/LED2
RPE5/REFCLKO1RPE6/LED3
RPE8/PWM
RPG0/SDI2RG1
RG6/SCK2
RG9/EREF_CLKRG12/SW1
RG13/VBUSONRG14/nINTRG15/nRST
MCLR
RP
RPRP
RPRP
RR
RP
RPRP
RBRB
R
R
RA10
PGED2PGEC2
Gnd2
Vdd 4nc1
Out 3Gnd
Vddnc
Out
24MHz
X2
RE9
RC13
2.2MR82
+3.3V
+3.3V
0.1uFC38
0.1uF
C39
RG8/ECRSDVRG7/SDO2
RB15
RA7/VBUS_FAULT
RD9
RD12
Mounting
RB
RD13
RF8
SSS
RF5
RB
RA5/RST
RB2
RE9
RC13
R
R
R
RC1/U2CTS
RC4/U2RTS
RB3
RB
RG1
12
34
56
78
910
1112
1314
1516
1718
HD
R-2
.54
MA
LE1x
18
J17
RE0
RE1RE2
1.8kR83
1.8kR84
+5V
0R
R87
0805
R88
DNPDEFAULT
+3.3V
SCL2
SDA2
12MHz
Y28pF
C43
8pF
C44
DNP
DNP
RE7
RA4
RA6
RA4RA6
RE7
R
1.8kR85
1.8kR86
+3.3V
0R
R89
0805
R90
DNP
+5V
DEFAULT
SCL1
SDA1
DNP
DNP
Sch
ematics
2
01
7 M
icroch
ip T
ech
no
log
y Inc.
DS
70
00
52
82
B-p
ag
e 2
5
F
12
34
56
78 H
DR
-2.5
4M
ale
1x8
J6
12
34
56
78 H
DR
-2.5
4M
ale
1x8
J11
MikroBUS HDRs
"X32" HDR
SCL2SDA2
SCL1SDA1
RPC2/U2TXRPC3/U2RX
RST2
CS3
SCK4
MISO5
MOSI6
+3.3V7
GND8
PWM 16
INT 15
RX 14
TX 13
SCL 12
SDA 11
+5V 10
GND 9
AN1
mikroBUS
J10
RST2
CS3
SCK4
MISO5
MOSI6
+3.3V7
GND8
PWM 16
INT 15
RX 14
TX 13
SCL 12
SDA 11
+5V 10
GND 9
AN1
mikroBUS
J5
RPE5/REFCLKO1
RPE8/PWM
RPD15/U1TXRPD10/U1RX
.1uF28
2.2uFC41
10kR80
+3.3V
10kR81
+3.3V
+5V
+5V
+3.3V
+5V
2
4
6
8
10
12
14
16
18
20
MAle 2X10
1 2
3 4
5 6
7
9
8
10
11 12
J15
RG6/SCK2
RA5/RST
RPD5/SS2
RF2/PWM
RC1/U2CTS
RC4/U2RTS
0RR380RR400RR420RR440RR460RR48
0RR510RR530RR550RR590RR610RR63
RF13/INT1
RF12/INT2
IGURE A-3: PIC32MZ EF CURIOSITY DEVELOPMENT BOARD SCHEMATICS (SHEET 2 OF 3)
12
34
56
78H
DR
-2.5
4M
ale
1x8
J4
12
34
56
78H
DR
-2.5
4M
ale
1x8
J9
PHY Daughter Board HDRs
CLK_IN
CLK_IN
SLM-112-01-G-S + SLM-103-01-G-S
1
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25 25
J18
2 HDR/MB
RPG0/SDI2RG6/SCK2
RG14/nINT
RG15/nRST
RPF0/ETXD1
RPF1/ETXD0
RPD14/SDI1
RPD4/SS1
RPD3/SDO1
RPD1/SCK1
RPD2/ETXEN
RPD0/EMDIO
RPD11/EMDC
RB13/ERXD1
RB12/ERXD0
RB11/ERXERR
RPB4/AN4
+3.3V33R
R74
33R
R75
0.1uFC25
0RR76DNP
0RR77DNP
0RR78DNP
+3.3V
Gnd 2
Vdd4 Stby 1
Out3 Gnd
Vdd Stby
Out
50.000MHz
X1
VBUS_DBG
ID 4
VBUS 1
GND 5
D- 2
D+ 3
0
USB
2.0
MIC
RO
-BFE
MA
LE
J12
31
2
IRLML6402
Q4
1123456
HDR-2.54 Male 2x3
J8
VBUS_TARGET
0.1uFC23
10k
R65
USB_N
USB_P
USB_N
USB_P
2 PIN PWR
PKOB PWR
uUSB PWR
POWER IN
S1
S2
10kR66
10kR67
+3.3V
MCLR
0.1uFC24
SW
RG12/SW1
Wi-FiRA0/WIFI_SLEEP
+3.3V
+3.3V
0.1uFC27
0.1uFC29
+3.3V
0C
TP5
+5V
TP6
GND
RPF3/USBIDRG13/VBUSON
RG9/EREF_CLK
RPD5/SS2
2.2uFC40
2.2uFC42
10kR79
GN
D3
IO22
IO11
IO34
VC
C5
GN
D3
IO2
IO1
IO3
VC
C5
U7
TPD3E001DRLRMIC2005A-1YM5-TR
VIN 1
GND
2
EN 3FAULT4
VOUT5 VIN
GND
ENFAULT
VOUT
U8
11 2HDR-2.54 Male 1x2
J13
10kR64
+3.3V
+3.3V
MIC2005A-1YM5-TR
VIN1
GND
2
EN3 FAULT 4
VOUT 5VIN
GND
EN FAULT
VOUT
U6
VIN +5V
GR
EEN D3
330RR57 0.1uF
C19
TARGET_POWER_ENABLE
10kR56
VIN
+3.3V
DNP 0402
R49
RG7/SDO2
RG8/ECRSDV
AN29/RA1RA5/RST
RA7/VBUS_FAULT
RA9/RST
VBUS_DEVICE_SWITCHED_SENSE
1
2
34
5
6Blue
Green
Red
LED4
CLX6A-FKB
+3.3V
510R
R68
510R
R69
1k
R70
CREE LED
Green
D5
LED2
Red
D4
LED1
Yellow
D6
LED3
330R
R72
USER LEDs
330R
R73
330R
R71RE3/LED1
RE4/LED2
RPE6/LED3
GND1
TEST2
GND3
VDD4
NC5
NC6
NC7
NC8
NC9
NC10
NC11
NC12
SPI_CLK13
SPI_MISO14
VD
D15
GN
D16
TEST
17
TEST
18
HIB
ERN
ATE
19
SPI_
INT
20
MO
DE0
21
SPI_
MO
SI22
SPI_
CS/
MO
DE1
23
GND 24NC 25NC 26GND 27NC 28NC 29NC 30NC 31NC 32NC 33GND 34VDD 35GND 36GNDTESTGNDVDDNCNCNCNCNCNCNCNCSPI_CLKSPI_MISO
VD
DG
ND
TEST
TEST
HIB
ERN
RRA
TESP
I_IN
TM
OD
E0SP
I_M
OSI
SPI_
CS/
MO
DE1
GNDNCNC
GNDNCNCNCNCNCNC
GNDVDDGNDGND 37
U10MRF24WN0MA-I/RM100
1
3
5
7
9
11
13
15
17
19
J14
HDR-2.54
0.1uFC26
SCL2
SDA2
RPC2/U2TX
RPC3/U2RX
RPG0/SDI2
RG7/SDO2
SPI_MOSI
SPI_MISO
SPI_CS/MODE1
SPI_CK
GREEN
D1
330RR33
TP1VIN
RB1/LED_G
RB0/LED_B
RB5/LED_R
1uFC20
0RR370RR390RR410RR430RR450RR47
0RR500RR520RR540RR580RR600RR62
112
HDR-2.54 Male 1x2
J7
RF4/WIFI_INT
4.7uF
C22
(DNP)100uF
1210
C21
PIC
32MZ
EF
Cu
riosity D
evelo
pm
ent B
oard
Use
r’s Gu
ide
DS
70
00
52
82
B-p
ag
e 2
6
20
17
Micro
chip
Te
chn
olo
gy In
c.
VBUS_DEVICE_SWITCHED_SENSE
+3.3V
GREEND2
(Local Vdd/Vss bypass/decoupling.)
+3.3V_PKOB
SCK
SDI
SDO
VDD_SENSE
VPP_GND
VPP_ON
VPP_SENSE
+3.3V_PKOB
100R1206
R2413
2MMBT3904Q2
12
3MMBT3906Q1
13
2MMBT3904Q3
DNPR28
DNPR26
0.1uFC4
0.1uFC5
0.1uFC6
0.1uFC7
0.1uFC8
DNP
R29
330RR36
330R
R2
330R
R4
330R
R6
10k
R23
10k
R27
10kR17
10kR19
100kR18
0R
0402
R22
4.7kR3
4.7kR7
2.21kR20
2.21kR21
3.92kR16
PKOB Mode REAL ICE Mode
pins 1-2: Shorted pins 1-2: Open
pins 3-4: Shorted pins 3-4: Open
J2 Jumper Positions
1 2
3 4
J2
MCLR
TP3GND
TP2+3.3V
MIC2005A-1YM5-TR
VIN1
GND
2
EN3 FAULT 4
VOUT 5VIN
GND
EN FAULT
VOUT
U5
GND
10k
R30
PGED2
PGEC2
FIGURE A-4: PIC32MZ EF CURIOSITY DEVELOPMENT BOARD SCHEMATICS (SHEET 3 OF 3)
SERIAL EEPROM (25LC256)
123456
J1
PGC_PKOBPGD_PKOB
+3.3V_PKOB
ICSP_MCLR_VPP_PICKIT3
UTIL_SDIUTIL_SDOUTIL_SCK
+3.3V_PKOB
UTIL_CS
UTIL_WP
USB_D-
USB_D+
+3.3V_PKOB
POWER_GOOD_PICKIT3
POWER DISTRIBUTION/SWITCHING
USB INTERFACE(BUS POWERED)
ID 4
VBUS 1
GND 5
D- 2
D+ 3
0
USB MINI-B Female
J3
TARGET_POWER_ENABLE
EGND
+3.3V_PKOB
2.2uFC14
2.2uFC17
4.7uF
C15
VIN1
VIN2
SHDN3
GND4 PWRGD 5
CDELAY 6SENSE 7
VOUT 8
EP9 MCP1727 3.3V
U4
+3.3V_PKOB
+3.3V_PKOB
+3.3V_PKOB
+3.3V_PKOB
+3.3V_PKOB
+3.3V_PKOB
+3.3V_PKOB
+3.3V_PKOB
ASSEMBLY_ID_0
ASSEMBLY_ID_1
ICSP_MCLR_VPP_PICKIT3
POWER_GOOD_PICKIT3
SCK
SDI
SDO
USB_D-
USB_D+
UTIL_SCK
UTIL_SDI
UTIL_SDO
VDD_SENSE
VPP_GND
VPP_ON
VPP_SENSE
VREF_2.5V
PGC_PKOB
PGD_PKOB
VBUS_DEVICE_SWITCHED_SENSE
TARGET_POWER_ENABLE
UTIL_CS
UTIL_WP
12MHzY1
10uF
C1
0.1uFC10
0.1uFC16
0.1uFC18
0.1uFC12
0RR34DNPR32
330R
R12
10kR25
10kR9
10kR1
10k
R8
10kR10
200K
R5
1kR13
100R
R14
200KR31
2.21kR11
3.16kR15
8pF
C3
8pF
C9
1uFC2
1uFC11
D_N
D_P
CS1
SO 2
WP3
VSS 4
SI5 SCK6
HOLD7
VCC 8
25LC256
U2
VBUS_DBG
VBUS_DBG
TP4
GND
GN
D3
IO22
IO11
IO34
VC
C5
GN
D3
IO2
IO1
IO3
VC
C5
U3
TPD3E001DRLR 10kR35
AN
6/R
B6
17PM
PD4/
RE4
64
AV
SS20
PMPD
1/R
E161
PMA
13/A
N10
/RB
1023
RF0
58
VD
D26
RD
755
PMA
1/A
N14
/RB
1429
PMW
R/R
D4
52
PMA
8/SC
L2/R
F532
VC
PCO
N/R
D1
49
AN0/RB016
AN3/RB313
VDD10
MCLR7
PMA5/RG64
PMD5/RE51
USBID/RF3 33
D-/RG3 36
OSC1/CLKIN/RC12 39
RTCC/RD8 42
PMCS1/RD11 45
SOSCO/RC14 48
AN2/RB214
AN1/RB115
PMA2/RG98
VSS9
AN5/RB511
PMD6/SCL3/RE62
PMD7/SDA3/RE73
PMA4/RG75
AN
7/R
B7
18
AV
DD
19
AN
8/R
B8
21
PMPD
3/R
E363
PMPD
2/R
E262
PMPD
0/R
E060
PMA
12/A
N11
/RB
1124
VSS
25
PMA
11/A
N12
/RB
1227
ENV
REG
57
Vca
p/V
DD
CO
RE
56
RD
654
PMA
0/A
N15
/RB
1530
PMA
9/SD
A2/
RF4
31
PMB
E/R
D3
51
DH
P/R
D2
50
Vusb 35
Vbus 34
VSS 41
OSC2/CLKO/RC15 40
VDD 38
SOSCI/RC13 47
INT0/RD0 46
SCL1/PMCS2/RD10 44
USBOENAN4/RB412
PMA3/RG86
D+/RG2 37
SDA1/RD9 43
PMA
7/A
N9/
RB
922
RF1
59
PMA
10/A
N13
/RB
1328
PMR
D/R
D5
53
AN
AA6/
RB
6PM
PD4/
RE4
AV
SSPM
PD1/
RE1
PMA
13/A
NAA
10/R
B10
RF0
VD
DR
D7
PMA
1/A
NAA
14/R
B14
PMW
R/R
D4
PMA
8/SC
L2/R
F5V
CPC
ON
/RD
1
AN0/RB0
AN3/RB3
VDD
MCLR
PMA5/RG6
PMD5/RE5
USBID/RF3
D-/RG3
OSC1/CLKIN/RC12
RTCC/RD8
PMCS1/RD11
SOSCO/RC14VV
AN2/RB2
AN1/RB1
PMA2/RG9
VSS
AN5/RB5
PMD6/SCL3/RE6
PMD7/SDA3/RE7
PMA4/RG7
AN
AA7/
RB
7
AV
DD
AN
AA8/
RB
8
PMPD
3/R
E3
PMPD
2/R
E2
PMPD
0/R
E0
PMA
12/A
NAA
11/R
B11
VSS
PMA
11/A
NAA
12/R
B12
ENV
REG
Vca
pa/V
DD
CO
RE
RD
6
PMA
0/A
NAA
15/R
B15
PMA
9/SD
A2/
RF4
PMB
E/R
D3
DH
P/R
D2
Vusb
Vbus
VSS
OSC2/CLKO/RC15
VDD
SOSCI/RC13
INT0/RD0
SCL1/PMCS2/RD10
USBOENAN4/RB4
PMA3/RG8
D+/RG2
SDA1/RD9
PMA
7/A
NAA
9/R
B9
RF1
PMA
10/A
NAA
13/R
B13
PMR
D/R
D5U1
VIN
1uFC13
PIC32MZ EF CURIOSITYDEVELOPMENT BOARD
USER’S GUIDE
Appendix B. Bill of Materials
B.1 PIC32MZ EF CURIOSITY DEVELOPMENT BOARD BILL OF MATERIALS
TABLE B-1: BILL OF MATERIALS
Reference Description Manufacturer Part No.
C4, C5, C6, C7, C8, C10, C12, C13, C16, C18, C19, C20, C23, C24, C25, C26, C27, C28, C29, C30, C31, C32, C33, C34, C35, C36, C37, C38, C39
CAP CER .10 µF 50V X7R 0402 Samsung CL05B104KO5NNNC
C1 CAP CER 10 µF 10V 10% X7R SMD 0805 Murata GRM21BR71A106KE51L
C2, C11 CAP CER 1 µF 10V 10% X5R SMD 0402 Murata GRM155R61A105KE15D
C3, C9 CAP CER 8 pF 50V C0G 0402 Murata GRM1555C1H8R0DA01D
C14, C17, C40, C41, C42
CAP CER 2.2 µF 16V X5R 0603 TDK Corporation C1608X5R1C225K
C15 CAP CER 4.7 µF 10V X5R 0603 Taiyo LMK107BJ475KA-T
C22 CAP CER 4.7 µF 10V 10% X7R SMD 0805 TDK Corporation C2012X7R1A475K125AC
R70 RES TKF 1k 1% 1/10W SMD 0603 Panasonic ERJ-3EKF1001V
R13, R37, R38, R39, R40, R41, R42, R43, R44, R45, R46, R47, R48, R50, R51, R52, R53, R54, R55, R58, R59, R60, R61, R62, R63
RES TKF 1k 1% 1/10W SMD 0402 Panasonic ERJ-2RKF1001X
R14 RES TKF 100R 5% 1/16W SMD 0402 Yageo RC0402JR-07100RL
R16 RES TKF 3.92K 1% 1/16W SMD 0402 Yageo RC0402FR-073K92L
R24 RES TKF 100R 1% 1/4W SMD 1206 Yageo RC1206FR-07100RL
R1, R8, R9, R10, R17, R19, R23, R25, R27, R30, R35, R56, R64, R65, R66, R67, R79, R80, R81
RES TKF 10k 1% 1/10W SMD 0402 Panasonic ERJ-2RKF1002X
R74, R75 RES TKF 33R 1% 1/10W SMD 0402 Panasonic ERJ-2RKF33R0X
R68, R69 RES TKF 510R 1% 1/10W SMD 0603 Yageo RC0603FR-07510RL
R3, R7 RES TKF 4.7k 5% 1/10W SMD 0402 Panasonic ERJ-2GEJ472X
R5, R31 RES TKF 200k 1% 1/10W SMD 0402 Panasonic ERJ-2RKF2003X
R11, R20, R21 RES TKF 2.21k 1% 1/10W SMD 0402 Panasonic ERJ-2RKF2211X
R18 RES TKF 100k 1% 1/10W SMD 0402 Panasonic ERJ-2RKF1003X
2017 Microchip Technology Inc. DS70005282B-page 27
PIC32MZ EF Curiosity Development Board User’s Guide
R22, R34, RES TKF 0R 1/16W SMD 0402 Yageo RC0402JR-070RL
R2, R4, R6, R12, R33, R36, R57, R71, R72, R73
RES TKF 330R 5% 1/10W SMD 0402 Panasonic ERJ-2GEJ331X
R15 RES SMD 3.16K OHM 1% 1/10W 0402 Panasonic ERJ-2RKF3161X
R83, R84, R85, R86
RES SMD 1.8K OHM 1% 1/10W 0402 Panasonic ERJ-2RKF1801X
R87, R89 RES TKF 0R 1/8W SMD 0805 Panasonic ERJ-6GEY0R00V
LED4 LED RGB CLX6A-FKB Cree CLX6A-FKB-CK1P1G1BB7R3R3
LED3 LED, SMD, YEL, 0603 package Kingbright APT1608YC
LED1 LED, SMD, RED, 0603 package Kingbright APT1608EC
D1, D2, D3, LED2
LED, SMD, GRN, 0603 package Kingbright APT1608SGC
S1, S2 SWITCH TACTILE SPST-NO 0.05A 12V APEM INC ADTSM32RVTR
Q4 TRANS FET P-CH IRLML6402 -20V -3.7A 1.3W SOT-23-3
International Rectifier IRLML6402TRPBF
Q1 TRANS BJT PNP MMBT3906 -40V -200mA 300mW SOT-23-3
NXP Semiconductors PMBT3906,215
Q2, Q3 TRANS BJT NPN MMBT3904 40V 200mA 310mW SOT-23-3
Diodes Incorporated MMBT3904-7-F
J7 CON HDR-2.54 Male 1x2 RA Samtec TSW-102-08-F-S-RA
J13 CON HDR-2.54 Male 1x2 Samtec TSW-102-07-F-S
J8 CON HDR-2.54 Male 2x3 Samtec TSW-103-07-F-D
J12 USB - micro B USB 2.0 Receptacle Connector 5 Position SM RA
Amphenol 10118194-0001LF
J5, J10 mikroBUS HOST Sullins SSW-108-01-F-S
J14 CON HDR-0.1” Male 2x10 Samtec TSW-110-07-F-D
J15 CON HDR-0.1” Male 2x6 Samtec TSW-106-07-F-D
J18 TWO CONN HEADER .050" 12POS PCB GOLD Samtec SLM-112-01-F-S
@J18 TWO CONN HEADER .050" 3POS PCB GOLD Samtec SLM-103-01-F-S
J2 HDR_JMPR_2X2_TH_0.05” Samtec FTS-102-01-F-D
@J2 CONN JUMPER SHORTING 1.27MM GOLD Sullins NPB02DVFN-RC
J3 USB - micro B USB 2.0 Receptacle Connector 5 Position SM RA
Amphenol 10118194-0001LF
X2 OSC MEMS 24.000MHZ CMOS SMD Abracon LLC ASDMB-24.000MHZ-LC-T
Y1 CRYSTAL 12MHz 8 pF SMD NX3225SA AVX NX3225SA-12.000000MHZ
U3, U7 ESD Protection -TPD3E001DRLR TI TPD3E001DRLR
RUBBER FEET BUMPER CYLIN 0.312" DIA BLK 3M SJ61A1
U10 MOD ON BOARD WIFI RADIO PCB ANT Microchip Technology Inc. MRF24WN0MA-I/RM100
U9 MCHP MCU 32-BIT 200MHz 2048kB 512kB PIC32MZ1024EFM100-I/ pF TQFP-100
Microchip Technology Inc. PIC32MZ2048EFM100-I/PT
U1 IC PIC MCU FLASH 256K 64-TQFP Microchip Technology Inc. PIC24FJ256GB106-I/PT
U2 MCHP MEMORY SERIAL EEPROM 256k SPI 25LC256-E/SN SOIC-8
Microchip Technology Inc. 25LC256T-E/SN
U4 MCHP ANALOG LDO 3.3V MCP1727-3302E/MF Microchip Technology Inc. MCP1727-3302E/MF
U5, U6, U8 IC SWITCH LOAD FULL FUNC SOT23-5 Microchip Technology Inc. MIC2005A-1YM5-TR
X1 OSC MEMS 50.000 MHz_1.8V~3.3V SMD Microchip Technology Inc. DSC1001CI1-050.0000
TABLE B-1: BILL OF MATERIALS (CONTINUED)
Reference Description Manufacturer Part No.
DS70005282B-page 28 2017 Microchip Technology Inc.
DS70005282B-page 30 2017 Microchip Technology Inc.
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11/07/16