Freescale Semiconductor Network Card iMX31 PDK 14 User Manual |
i.MX31 PDK 1.4
Windows Embedded CE 6.0/
Windows CE 5.0
Quick Start Guide
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1 About the Boards
3
Debug Board. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 8
2 Getting Started
Connect CPU Board to Debug Board . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 19
Touch Pad Calibration Tool . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 25
Using a USB Memory Stick . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 34
Running the Demo Applications. . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 34
Running the TV-Out Application . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 35
Running the Rotate Application . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 43
Changing the Windows CE 5.0 or Windows Embedded CE 6.0 Demo Image
Version . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 45
Ready to Begin Your Development? . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . 46
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1
About the Boards
This chapter provides detailed information about the three boards (CPU, Debug,
Personality) and the locations of the connectors and switches for each.
CAUTION
Your PDK arrives housed in a plastic device enclosure, which under
normal circumstances you should not remove. However, the PDK
documentation set includes information for board-level components, and
also explains in some documents how to assemble the boards into the
enclosure. Should you need to work directly with the boards, please use
great caution in handling the components:
–
–
To remove or work with the boards, use static precautions.
To remove or add the enclosure, first read the enclosure assembly instructions
carefully and note which areas are delicate, such as the speakers.
About the 3-Stack Platform System
Freescale introduces the 3-Stack Platform System, which you use to develop multimedia
and connectivity applications using the i.MX31 Applications Processor and the MC13783
Audio and Power Management device.
The 3-Stack Platform System decreases the time between first development and final
product release by providing you (as the system designer) with a near-to-final product
design, which you can use as a development platform for software and hardware.
There are two Board Support Packages (BSP) for the 3-Stack Platform System, with one
BSP for Microsoft® Windows CE™ 5.0/Windows Embedded CE™ 6.0, and one BSP for
Linux operating systems. These BSPs contain drivers optimized for multimedia operations
using the i.MX31 and MC13783 devices.
Freescale's 3-Stack Platform System consists of three small boards: CPU, Debug, and
Personality.
• A CPU board contains the i.MX31 CPU, memories, and the MC13783 Power
Management IC (PMIC).
• A Debug board provides the debug interfaces (such as JTAG), and also has a CPLD
that implements an external Ethernet and serial controller for debug purposes.
• The Personality board implements the functionality of the 3-Stack board, and
contains hardware for Wi-Fi connectivity, FM receiver, and so on. The Personality
board can be modified to meet your specific requirements without the need to modify
the other two boards (CPU, Debug). The Personality board was designed to support
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About the Boards
About the 3-Stack Platform System
common multimedia applications, and has a 2.8-inch VGA display, image sensor
camera, Wi-Fi CERTIFIED™ IEEE 802.11™ b/g standards, FM receiver, SD Card
connector, USB OTG, USB Host, 2.4 QVGA smart display panel connector, ATA
connector and TV-Out connector. As the 3-Stack platform continues to evolve, more
Personality boards will be created to meet new multimedia requirements. Table 1.2
lists 3-Stack platform features in more detail.
Table 1.1 3-Stack Platform Features
Details
All boards
•
•
Near to final product form-factor demonstration
modules and working platforms.
Solid reference schematics that closely resemble
final products to aid customers' designs.
CPU board
•
i.MX31 ARM11™ Applications Processor
•
•
•
•
MC13783 Atlas power management chip
256 MB of NAND Flash Memory
128 MB of 32 bit DDR SDRAM memory
37.914 mm x 67.517 mm
Personality board
Debug board
•
•
•
Peripheral components
Interface connectors
71.428 mm x 129.462 mm
•
•
•
•
Two RS-232 interfaces
10/100 Base-T Ethernet connector
Current measure connectors
71.400 mm x 174.900 mm
Expansion Headers
•
Utilizing reliable high density connector to interface
between boards, 3 board assembly for software
development and 2-board assembly (without debug
board) for demonstration
Battery Support
LCD Display
•
•
+4.2 V 2400mAh Battery power supply and Battery
Charging Function
2.8 inch TFTLCD display panel with touch panel and
LED backlight
Smart LCD Connector
Camera Interface
•
•
•
2.4 inch QVGA smart display panel connector
Image sensor camera connector
Selectable Clock
Sources
Two selectable system clock sources: 32.768 KHz
and 26 Mhz
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About the 3-Stack Platform System
Table 1.1 3-Stack Platform Features
Details
Debug Port
•
•
RealView®-ICE debug support
Video and Audio
Stereo
Stereo microphone jack, headphone and video jack,
stereo and mono (ear piece) speaker terminals
GPS Connector
FM Receiver
TV Out
•
•
One connector to outboard GPS module
TV decoder that supports 8-bit color, NTSC and PAL
formats
PC Card Expansion
Keypad
•
•
•
SD card connectors, with card sense
Onboard keypad and keypad connector
Network Support
Onboard Wi-Fi CERTIFIEDFter IEEE 802.11 b/g
standards and Bluetooth(r) Core Specification
Version 2.0 + EDR (enhanced data rate)
combination module
•
•
One Ethernet jack connector (for application/debug)
USB
One USB OTG high-speed transceiver with mini-
USB connector
•
One USB high-speed host transceiver, with
standard USB host connector
ATA Support
ATA5 controller with
•
One 44-position dual row 2 mm header for small
form-factor disk drivers
•
•
One 40-pin ZIF connector for Toshiba HDD
Accelerometer
Serial Port
Onboard accelerometer with sensitivity in three
separate axes (X, Y, Z)
Two RS-232 interfaces with DB-9 connectors
•
One RS-232 interface is driven by a UART channel
internal to the MX31, and it supports DCE with
optional full modem controls
•
The other RS-232 interface is DTE with optional full
modem controls
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About the Boards
About the 3-Stack Platform System
Table 1.1 3-Stack Platform Features
Details
Cables
•
•
•
5.0V/2.4A universal power supply kit
RS-232 standard serial cable
High Speed USB cables with mini-AB connectors for
OTG
•
High speed cable with standard A-to-mini-B
connectors
•
•
•
Mini-USB adaptor
Jack to RCA audio/video cable
Ethernet cables (2) with RJ45-8 connectors
Software
•
•
Sample Windows® embedded CE binary image
from Freescale
Windows embedded CE BSP available from
Freescale
Application
Development Tools
•
•
•
ATK software
Platform Builder 5.0/6.0
Visual Studio 2005
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About the Boards
CPU Board
CPU Board
CPU
Board
Top
Bottom
J1 Board-to-Board Connector
Figure 1.1 CPU Board
You use the J1 board-to-board connector (500 pins) to connect the CPU board to either of
the other two boards:
• Connect the CPU board to a Personality board, for running demos (no Debug board
is needed).
• Connect the CPU board to a Debug board, (and connect the Personality board to the
Debug board) for developing software. The Personality board plugs into the other
side of the Debug board.
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About the Boards
Debug Board
Debug Board
Debug
Board
TOP
DC Power J2
Ethernet J1
P1
P2
UART CON4
female
Personality
CPLD JTAG
CN3
Device MAC
Address
UART CON3
male
Bottom
Device
MAC
Address
Figure 1.2 Debug Board
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About the Boards
Debug Board
Table 1.2 Debug Board Physical Features
Type
Physical Feature
Switches
• S1: Power button
• S2: Debug board reset button
• S3: System reset switch
• S4: Power-on switch
•
SW4: Enable switch
• J1:10/100 Base-T Ethernet RJ45 connector
J2: 5.0V DC power connector
• J3: Current measure connector
Connectors
•
•
•
•
J4: 500-pin connector to CPU board
P1: WEIM Address measure connector
P2: WEIM Data measure connector
• CN1: i.MX31 JTAG connector
CN2: Debug board CPLD JTAG connector
• CN3: Personality board CPLD JTAG connector (Reserved)
CN74: 500-pin connector to Personality board
• CON4: UART (DCE) DB9 female connector
D1–D8: LEDs for CPLD debug
• D9: LED for Debug board 3.3V power
D11:LED for DC power supply
•
•
LEDs
•
•
Buttons
Fuse
• BT1, BT2: Test buttons for CPLD
• F1: Resettable Fuse
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About the Boards
Debug Board
Table 1.3 Debug Board SW4 Switch
Switch
Setting
ON
Effect
SW4-1 UART Port Select
SW4-8 Power Enable
Selects serial port UART (DCE) CON4
Power is supplied to all three boards.
ON
OFF
Power is only supplied to the Debug
board.
Table 1.4 Boot Mode Setting (SW5–SW10)
Boot Mode
Device
SW5 Boot4
SW6
Boot3
SW7
SW8 SW9
SW10
UART/USB
bootloader
X
0
0
0
0
0
0
0
0
8-bit NAND Flash
(2KB page) Ext
X
1
0
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Personality Board
Personality Board
Personality
Board
On-Board
Keypad S1–S7
GiantPlus QVGA Smart
Display J15
TOP
GPS CN13
Audio/Video
J19
WiFi Antenna
E1
USB OTG
J10
Camera
CMSO Sensor
CN14(underneath
LCD)
USB Host
J18
Epson VGADisplay
Connector
(underneath LCD)
Bluetooth
Antenna
E2
Coin Cell Battery
B1
Board-to-Board
Connector CN73
Battery Connector
Bottom
Fast
Ethernet
J16
SD Card
Socket
CN31
DC
Power
J12
HDD Connector CN12
Figure 1.3 Personality Board
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Personality Board
Table 1.5 Personality Board Physical Features
Physical Feature
Type
Connectors
• CN12: 44-position dual row, 2 mm header for HDD
• CN13: GPS module connector
• CN14: 2.0 M pixel CMOS sensor connector
•
•
CN16: Debug port for WiFi and Bluetooth module
CN31: SD card socket
• CN70: 40-pin ZIF connector for HDD
•
CN73: 500-pin connector to CPU Engine board (in demo
configuration) or Debug board (in development configuration)
•
•
•
•
•
J10: Mini-USBOTG high speed connector
J12: 5.0 VDC power connector
J14: Epson VGA display connector
J15: Giantplus QVGA smart display connector
J16: 10/100 BT Fast Ethernet Connector
• J18: Standard USB host high speed connector
• J19: Audio and video connector
Battery
Buttons
Fuse
• B1: Coin cell battery
• S7–S17: Onboard keypad
• F1: Resetable fuse
• E1: WiFi Antenna
Antennas
•
E2: Bluetooth antenna
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2
Getting Started
Unpack the Kit
The 3-Stack Platform System is shipped with the items listed in Table 2.1.
Table 2.1 Contents
Type
Items
• CPU board
Boards
•
•
Debug board
Personality board
Cables
• RS-232 serial cable
•
•
Ethernet straight cable
High-speed USB cables with mini AB
connectors for OTG
• High-speed cable with standard A to
mini B connectors
•
•
Mini-USB adaptor
Jack to RCA audio/video cable
Power Supply
•
5.0V/2.4A universal power supply kit
• CD-ROMs: Content CD, Platform
Builder Trail CD, and Visual Studio
2005 Trial CD
• End-User License Agreement
•
Quick Start Guide (this document)
• Warranty card
• Freescale Support card
Verify that all the items are contained in the package. See Figure 2.1.
Take out the three boards from their anti-static bags and check the boards for any visible
damage.
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Getting Started
Unpack the Kit
Figure 2.1 PDK Kit Contents
A to Mini-B
USB Cable
Ethernet
Straight Cable
Mini-AB
USB OTG
CD-ROM
RS-232
Universal
Power
Supply
CPU
Board
Personality
Board
Jack to RCA
Debug
Board
Audio/Video Cable
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Getting Started
CD-ROM Contents
CD-ROM Contents
Table 2.3.identifies the items on the CD-ROM set.
Table 2.2 Development PC Requirements
Type
Requirement
Product
Documentation
•
•
i.MX31 PDK Product Brief
Bill of Materials, Schematics, and Gerber files for
CPU Board, Personality Board, and Debug Board
• i.MX31 Demo Image Readme for Windows CE 5.0
and Windows Embedded CE 6.0
• i.MX Platform Hardware User’s Guide
•
i.MX31 PDK Quick Start Guides for Windows CE
5.0/Windows Embedded CE 6.0 (this document)
• i.MX31 PDK Release Notes for Windows CE 5.0
and Windows Embedded CE 6.0
•
•
•
i.MX31 PDK User’s Guides for Windows CE 5.0
and Windows Embedded CE 6.0
i.MX31 PDK Reference Manuals for Windows CE
5.0 and Windows Embedded CE 6.0
i.MX31 PDK Hello World Application Notes for
Windows CE 5.0 and Windows Embedded CE 6.0
• Data sheets for the i.MX31 PDK Platform’s non-
Freescale components
•
i.MX Platform Advanced ToolKit (ATK) User’s
Guide
Software
•
Microsoft Platform Builder, versions 5.0/6.0
Development Tools
• Visual Studio 2005
• Windows CE 6.0/Windows Embedded CE 6.0 SDK
installation file
• Advanced ToolKit (ATK) software
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Provide a Development PC
Provide a Development PC
To develop applications using the 3-Stack development kit, get a PC with the
requirements listed in Table 2.3.
Table 2.3 Development PC Requirements
Type
Requirement
Operating System
•
Windows XP Professional with Service Pack 1
or
Windows 2000 Professional with Service Pack 4
Network
•
•
•
Internet access
Software Tools
PC HW
Microsoft .NET Framework, version 1.1
933 MHz Pentium II or later processor;
2 GHz processor recommended
•
512 MB of RAM;
1 GB recommended
•
•
•
1 GB of available space required on system drive
18 GB of available hard-disk space
DVD ROM drive
• 1024x768 or higher resolution display with 256
colors
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3
Build the Platform
This chapter explains how to connect the three types of 3-Stack boards (Debug,
Personality, CPU) together, to make either a development platform (Personality board +
CPU board + Debug board), or a demonstration platform (Personality board + CPU
board); and how to connect the 3-Stack platform to your PC. See Figure 3.1.
Personality Board
Personality Board
CPU Board
Debug Board
CPU Board
Development
Configuration
Demo
Configuration
3 Board Stack
2 Board Stack
The three 3-Stack boards in your development kit may already be assembled. If the three
boards are already assembled, review the procedures in the following sections, and be sure
to configure the Debug board appropriately.
• To build a development platform, follow the procedures in “Build a Development
Platform: Assemble Three Boards” on page 17.
• To build a demonstration platform, follow the procedures in “Build a Demo
Platform: Assemble Two Boards” on page 21.
Build a Development Platform: Assemble
Three Boards
This section explains how to connect the Personality, Debug, and CPU boards.
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Build the Platform
Build a Development Platform: Assemble Three Boards
Connect Personality Board to Debug
Board
The Personality board connects to the Debug board using a 500-pin connector. The
connector is keyed to avoid misconnection, so there is only one way to connect these
boards. Connect the Personality board to the Debug board. The maximum allowable angle
for mating and unmating boards is 10 degrees. See Figure 3.2. For additional information,
Personality
Board
Debug
Board
Align boards
1
Debug
Board
PersonalityBoard
Connect boards
2
Personality
Board
Debug
Board
Figure 3.2 Install Personality Board onto Debug Board
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Build a Development Platform: Assemble Three Boards
Connect CPU Board to Debug Board
After connecting the Personality board to the Debug board, now connect the CPU board to
the underside of the Debug board.
Personality Board
Debug Board
CPU
Board
Flip over Personality/
Debug assembly
1
2
Align boards
CPU Board
Connect CPU board to
underside of Debug
board
3
Personality Board
CPU Board
Debug Board
Figure 3.3 Align CPU board and Debug/Personality board
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Build the Platform
Build a Development Platform: Assemble Three Boards
Connect Development Platform to PC; Run
Preloaded Image
2
Set Bootstrap switches
(SW5–SW10) to NAND boot
Regulated +5V
DC Supply
DC
power
5
S4
3
Configure serial
console application.
J2
4
RS-232
cable
Female
6
COM port
1
Set SW4
Figure 3.4 Connecting the Platform to your PC
To connect the 3-Stack platform to your host PC:
1. Connect one end of an RS-232 serial cable (included in the kit) to a serial port
connector (CON4) on the Debug board and connect the other end to a COM port on the
• Configure SW4-1 to ON.
• Make sure that SW4-8 is ON, to supply power to all three boards.
• Configure SW4-2 to OFF.
2. Confirm that the Bootstrap switches (SW5–SW10) are set for NAND boot. See Table
3.1.
Table 3.1 Boot Mode Setting (SW5–SW10)
Boot Mode
Device
SW5 SW6
(Boot4)
SW7
(Boot3)
SW8 SW9
SW10
UART/USB
bootloader
X
0
0
0
0
0
0
0
0
0
8-bit NAND Flash
(2KB page) Ext
X
1
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Build the Platform
Build a Demo Platform: Assemble Two Boards
3. Connect the regulated 5V power supply to the appropriate power adapter. Plug the
power adapter into an electrical outlet and the 5V line connector into the J2 (5V
POWER JACK) connector on the Debug board. See Figure 3-5.
4. Start a serial console application on your host PC with the following configuration
Table 3.2 Serial Console Configuration
Baud Rate
Data Bits
Parity
115200
8
None
1
Stop Bits
Flow Control
None
5. On the Debug board, switch the power switch (S4) to 1.
6. The OS image pre-loaded in the 3-Stack board will boot and the debug messages from
the bootloader should now appear on the serial console application on your PC.
Build a Demo Platform: Assemble Two
Boards
This section explains how to make a demonstration platform using the Personality and
CPU boards.
To make a demonstration platform, the CPU board is directly connected to the Personality
board using the 500-pin connector; the Debug board is not used.
NOTE
If your system is already configured as a development platform (using all three
boards), disconnect all boards from each other.
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Build the Platform
Build a Demo Platform: Assemble Two Boards
Connect CPU Board to Personality Board
Connect the CPU board to the Personality board. The connector is keyed to avoid
misconnections, so that there is only one way to connect the CPU board to the Personality
board.
CPU Board
Personality
Board
Personality Board
1
Flip over Personality/
Align boards
2
3
Personality
Board
CPU Board
Install CPU board onto
underside of Personality
board
Personality/CPU
Assembly
CPU Board
Personality Board
Figure 3.5 Install CPU Board onto Personality Board
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Build the Platform
Build a Demo Platform: Assemble Two Boards
Connect Power Supply; Run Preloaded
Demo
CPU/Personality Board
Regulated +5V
DC Supply
1
DC
power
J12 power jack is on the underside
of the Personality board
2
Figure 3.6 Connect Personality Board to Power Supply
1. Connect the regulated 5V power supply to the appropriate power adapter. Plug the 5V
line into the J12 (5V POWER JACK) connector on the Personality board. See Figure
3.6. Turn the 5V power supply ON.
2. The OS image pre-loaded in the 3-Stack should boot and the Windows CE 5.0 or
Windows Embedded CE 6.0 operating system should appear at the Personality board’s
LCD display.
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Build the Platform
Build a Demo Platform: Assemble Two Boards
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4
Using the Demo Image
This chapter explains how to use the touch panel and stylus to load the multimedia content
to the 3-Stack board, using the provided demo image.
Multimedia Codecs Content
The Windows CE 5.0 and Windows Embedded CE 6.0 Demo Images contain a set of
multimedia codecs that support various use cases. These codecs are optimized to run on
the i.MX31 platform.
See the Demo Image Readme document, provided with the demo image, for a full list of
the codecs provided.
These codecs are provided for demonstration purposes; therefore, they will only playback
the content for 30 seconds.
For more information about the multimedia codecs, or to obtain evaluation copies, please
contact a Freescale sales representative or distributor.
Touch Pad Calibration Tool
After you have assembled the 3-Stack board and powered it up, the Windows CE 5.0 or
Windows Embedded CE 6.0 image that was loaded to the board will boot up. The first
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Using the Demo Image
Touch Pad Calibration Tool
image you will see is the touch pad calibration tool, which displays a cross in the center,
as shown in the partial screen image in Figure 4.1.
Figure 4.1 Touch Pad Calibration Tool
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Using the Demo Image
Touch Pad Calibration Tool
To calibrate the Touch Panel, follow these steps:
1. Using the stylus pen, click on the cross.
The cross will move to the four corners of the screen. If the calibration error is too
large, the program will reset and the process will have to be repeated. When the touch
panel calibration is successful, the following message is displayed:
2. Tap with the stylus pen in any part of the screen.
The Windows CE desktop is displayed (see Figure 4.2.).
Figure 4.2 Windows CE Desktop
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Using the Demo Image
Downloading Multimedia to the 3-Stack Board
Downloading Multimedia to the 3-Stack
Board
There are three ways to load multimedia content to the 3-Stack board using the Windows
CE 5.0 or Windows Embedded CE 6.0 image provided:
• Using Active Sync
• Using an SD Card
• Using a USB Card
Using Active Sync
Active Sync is a very useful tool to use with a Windows CE 5.0 or Windows Embedded
CE 6.0 device. To obtain the Active Sync download and instructions, go to:
Once Active Sync is installed, you can set up communication between your host PC and
the 3-Stack board.
To establish a communication between the Host PC and the 3-Stack board, follow these
steps:
1. Make sure that the 3-Stack board is ON and running the Windows CE 5.0 or Windows
Embedded CE 6.0 image.
2. Make sure that Active Sync is running on your host PC (the Active Sync icon should
appear gray on the Windows task bar).
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Using the Demo Image
Downloading Multimedia to the 3-Stack Board
3. Use the A to mini AB USB cable provided in your i.MX31 MAX WPDK kit and
connect the mini AB end to the J10 USB OTG connector on the Personality board,
then connect the other end to the any available USB port on your Host PC.
Windows will recognize the 3-Stack board as a Windows CE 5.0 or Windows
Embedded CE 6.0 Device and the Active Sync wizard will appear on the Host PC
(Figure 4.3).
Figure 4.3 Setting up a Partnership
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Using the Demo Image
Downloading Multimedia to the 3-Stack Board
4. Select Yes, and then click Next.
The Select Synchronization Settings options are displayed (Figure 4.4).
Figure 4.4 Selecting Synchronization Settings
Active Sync establishes communications with the 3-Stack board, and the Active Sync
screen displays the connection status (Figure 4.5).
Figure 4.5 Viewing the Connection Status
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Using the Demo Image
Downloading Multimedia to the 3-Stack Board
5. To browse the Mobile Device (3-Stack) folders, click on the Explore icon of the
Active Sync window
A new Windows Explorer window for your Mobile Device opens on the Host PC
(Figure 4-6).
Figure 4.6 Windows Explorer for Mobile Device
6. To download a multimedia file, drag the file to the Mobile Device window.
The Active Sync will transfer the file to the board, display a message indicating that
the file will be converted.
7. Click OK.
8. The download begins.
NOTE
For more information about the multimedia files supported by the Windows
CE 5.0 or Windows Embedded CE 6.0 image pre-loaded in the board, see the
Demo Image Readme file included in the PDK documentation.
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Downloading Multimedia to the 3-Stack Board
9. To access the files, double-click on the "My Device" icon in the Windows CE 5.0 or
Windows Embedded CE 6.0 desktop (on the 3-Stack board).
A Windows Explorer window will open, displaying the content you downloaded with
Active Sync (Figure 4-7).
Figure 4.7 Downloaded Content
DFownloaded Content
10. Plug the headphones to the J19 Audio/Video jack connector in the Personality board.
11. Double-click on your multimedia file.
The Media Player opens and plays the file.
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Using the Demo Image
Downloading Multimedia to the 3-Stack Board
Using an SD Card
If you have an SD Card with pictures or other multimedia content, you can use the 3-Stack
Board to view its content.
To use access the SD Card, follow these steps:
1. Make sure the 3-Stack is powered and running the Windows CE 5.0 or Windows
Embedded CE 6.0 demo image.
2. Insert the SD Card in the SD Card slot, which is located in the lower part of the
personality board, just below the USB connectors.
3. Click on "My Device" icon located in the Windows CE 5.0 or Windows Embedded CE
6.0 desktop.
A Windows Explorer window opens, displaying the SD Memory icon (Figure 4-8).
Figure 4.8 Viewing the SD Memory Icon
4. To access the SD Card content, double click-on the SD Memory icon.
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Using the Demo Image
Running the Demo Applications
Using a USB Memory Stick
You must have a USB mini AB-to-A female connector, for connecting the USB memory
stick to the 3-Stack board.
To use the USB memory stick with the 3-Stack board, follow these steps:
1. Make sure the 3-Stack is powered and running the Windows CE 5.0 or Windows
Embedded CE 6.0 demo image.
2. Connect the adapter to J18 USB Host connector on the Personality board, and connect
the USB memory stick to the adapter.
3. Click on the "My Device" icon in the Windows CE 5.0 or Windows Embedded CE 6.0
desktop.
A Windows Explorer window opens, displaying the Hard Disk icon (Figure 4.9).
Figure 4.9 Viewing the Hard Disk Icon
4. Double-click the "Hard Disk" icon.
Running the Demo Applications
The Windows CE 5.0 or Windows Embedded CE 6.0 image pre-loaded in the 3-Stack
board has two applications:
• The TV-Out application allows you to use a TV as a display
• The Rotate application to switch the display from portrait to landscape
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Running the Demo Applications
Running the TV-Out Application
The TV Out application has two output formats: PAL and NTSC. You will need a special
cable.
To use the TV-Out application, follow these steps:
1. Plug the RCA Video/Audio cable jack to the J19 Video/Audio jack on the Personality
board.
2. Connect the RCA end to the TV.
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Using the Demo Image
Running the Demo Applications
3. Before running the application, you must disable the power-saving features of the
Windows CE 5.0 or Windows Embedded CE 6.0 image, because the TV Out signal
will be dropped if the power-saving state starts. To disable the backlight savings, tap
and hold the stylus for one or two seconds at the center of the Windows CE 5.0 or
Windows Embedded CE 6.0 desktop.
The Properties menu option is displayed ( Figure 4.10).
Figure 4.10 Properties Menu Option
F
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Using the Demo Image
Running the Demo Applications
4. Select the Backlight tab, clear the two options on the tab, and then click OK at the top
right corner of the window (Figure 4.11).
Figure 4.11 Selecting the Background Tab
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Running the Demo Applications
5. The power settings on the Control Panel must be modified. To access the Control
Panel window, click the Windows logo at the lower left corner and go to Settings
Control Panel (Figure 4-12).
Figure 4.12 Selecting the Control Panel
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Running the Demo Applications
6. Double-click the Power icon (Figure 4.13).
Figure 4.13 Selecting the Power Settings Icon
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Using the Demo Image
Running the Demo Applications
7. Select the Schemes tab (Figure 4.14).
Figure 4.14 Selecting the Schemes Tab
8. Change all the drop-down menu options to Never.
9. Click OK.
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Using the Demo Image
Running the Demo Applications
10. Now that the Power saving options are disabled, you may use the TV-Out program
without a problem. To run the program, click on the Windows logo at the lower left
corner of the display, and then click Run (Figure 4.15).
The Run field is displayed.
Figure 4.15 Selecting Run
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Using the Demo Image
Running the Demo Applications
11. Type "tvout.exe 0" for TVs using PAL format or "tvout.exe 1" for TVs using NTSC
format, and then click OK. Figure 4.16 shows an example for a NTSC TV.
Once the program runs, the image should appear at the TV.
Figure 4.16 Example of an NTSC TV Usage
12. To navigate the desktop, use the keypad located below the display on the Personality
board, or you can connect a USB mouse or keyboard to the Personality board using the
J18 USB Host connector of the Personality board (a Mini AB to A female adaptor may
be required for this option).
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Using the Demo Image
Running the Demo Applications
Running the Rotate Application
The Rotate application enables you to switch the display from portrait to landscape.
To use the Rotate application, follow these steps:
1. At the Windows CE 5.0 or Windows Embedded CE 6.0 desktop, double-click on "My
Device" icon at the top left corner.
A Windows Explorer window opens.
Figure 4.17 Opening the Windows Explorer Window
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Running the Demo Applications
2. Locate the Rotate icon and double-click on it (Figure 4.18).
A Windows Explorer window opens.
Figure 4.18 Viewing the Icons in the Rotate Folder
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Using the Demo Image
Running the Demo Applications
3. Clicking on the Rotate program toggles the display. Double-click Rotate to switch to
landscape (Figure 4.19).
Figure 4.19 Using the Rotate Application
4. To restore the portrait view, double-click the Rotate icon again.
Changing the Windows CE 5.0 or Windows
Embedded CE 6.0 Demo Image Version
The PDK system provides two demo images: Windows CE 5.0 and Windows Embedded
CE 6.0.
To obtain instructions for switching images and running the selected version of the
Windows CE 5.0 or Windows Embedded CE 6.0 Demo Image on the PDK system, see
your Windows CE 5.0 or Windows Embedded CE 6.0 package, Chapter 5, Preparing for
Download and Debugging.
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Ready to Begin Your Development?
If you are ready to develop new applications using the i.MX31 PDK, use the following
documents to locate the information required for your development:
• i.MX31 PDK 1.4 Hardware User's Guide provides all of the hardware information
for the 3-Stack board, including the connectors, switches, options, and pins.
• i.MX31 PDK 1.4 Release Notes for Windows CE 5.0 or Windows Embedded CE
6.0, provides the tools needed to use the PDK, including the driver availability and
known errors.
• i.MX31 PDK 1.4 User’s Guide for Windows CE 5.0 or Windows Embedded CE 6.0
explains how to build and modify a Windows CE 5.0 or Windows Embedded CE 6.0
image and deploy the image to the 3-Stack board.
• i.MX31 PDK 1.4 Reference Manual for Windows CE 5.0 or Windows Embedded
CE 6.0 provides detailed information about the Windows BSP drivers, including
functional information, dependencies, and building options for each driver.
• i.MX31 PDK 1.4 Hello World Application Note for Windows CE 5.0 or Windows
Embedded CE 6.0 explains how to create a simple Hello World application using the
Microsoft Platform Builder 5.0/6.0.
For additional information, see the support information in your i.MX31 PDK 1.4 package.
i.MX31 PDK 1.4 Quick Start Guide
PN 926-23574 Rev. D
10/2008
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