Evaluation Board (EVB) for PAN1311

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Evaluation Board (EVB) for
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Evaluation Board (EVB) for PAN1311
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1. CONTENT
1. Content................................................................................................................................... 2
2. Introduction ............................................................................................................................ 3
2.1 Related documents............................................................................................................... 3
3. Installation .............................................................................................................................. 3
4. Functional overview................................................................................................................ 4
4.1 Module Section..................................................................................................................... 5
4.2 UART Section....................................................................................................................... 5
4.3 Connect Section ................................................................................................................... 5
4.4 Power Supply Section .......................................................................................................... 7
4.4.1 Direct Supply mode ........................................................................................................... 7
4.5 Jumper Settings ................................................................................................................... 8
5. Connection setup ................................................................................................................... 9
5.1 Software start and navigation ............................................................................................... 9
5.2 Port configuration ............................................................................................................... 10
5.3 Firmware handling .............................................................................................................. 11
5.4 Command tab navigation.................................................................................................... 12
5.5 Creating a connection......................................................................................................... 13
6. Schematic ............................................................................................................................ 14
7. Document Information .......................................................................................................... 15
8. General Information.............................................................................................................. 16
8.1 Waiver ................................................................................................................................ 16
9. Life Support Policy ............................................................................................................... 16
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2. INTRODUCTION
This document should provide the minimum knowledge needed to establish a simple
connection between 2 PAN1311 Evaluation Boards (EVB) using Infineon
eBMU_SPP_Toolbox software (vers. 1.60). For this limited information is granted. To learn
about all aspects of the software please refer to the related documents listed below.
2.1 RELATED DOCUMENTS
For further information on Infineon eBMU_SPP_Toolbox software and it’s implemented AT
command set please refer to:
• T8753-2-eBMU_SPP_ToolBox_Manual_A4-7600.pdf
• PMB8753-2_SPP_AT_specification_R1.pdf
3. INSTALLATION
In order to ensure power supply, connect the USB Port of the EVBs to the USB Port of the
PC. The Jumper “J1” must set to the “1-2” position. The LED will flash up.
Figure 1 : connected EVBs with flashing LED
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Communication and configuration is realized by the use of a PC serial port. Connect the
serial cable to the Evaluation Board and the PC to realize a communication possibility. The
Jumper “J2” must set to the “1-2” position. The installation of the eBMU_SPP_Toolbox
software is required to configure the PAN1311 module. Version 1.60 of the software from
Infineon Technologies AG is provided.
4. FUNCTIONAL OVERVIEW
The figure below shows an overview of the Evaluation Board PAN1311 with four different
sections: Module Section, UART Section, Connector Section and Power Supply Section.
Figure 2 : Evaluation Board PAN1311 Overview
The figure also shows the five jumpers of the Evaluation Board PAN1311. The function of
each jumper is described in the chapter Jumper Settings. The four sections from above are
described in the following:
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4.1 MODULE SECTION
In this section the Bluetooth module PAN1311 is installed. The PAN1311 is not equipped with
an internal antenna. An external antenna is part of this Evaluation Board. This antenna provides
good RF performance and range for most applications.
4.2 UART SECTION
The serial port of the PAN1311 module is directly connected to a MAX232-type level
converter. This allows a direct connection of the module`s serial port to a PC. The
eBMU_SPP_Toolbox software sets up the connection to the PAN1311 module via the serial
port of the PC.
4.3 CONNECT SECTION
The connect section provides a 40 Pin connector which offers access to the important pins of
the PAN1311 module. It is possible for own applications to interface to the module using this
connector.
Figure 3 : Module Connector
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All available pins on the module connector are listed in the following table with their names
and a short description of their functions. For further information see the datasheet of the
PAN1311 module.
Pin Name
1
UART_CTS
2
3
4
5
6
7
8
9
10
11
12
13
14
15
16
17
18
19
20
WAKEUP_HOST
RXD
WAKEUP_BT
TXD
SLEEPX
UART_RTS
PCMIN
nc
PCMOUT
nc
SDA0
nc
SCL0
nc
PCMFR1
nc
PCMCLK
RESET
TX_CONF1
21
22
nc
TX_CONF0
23
24
25
26
27
nc
nc
nc
nc
TDO
28
29
30
31
32
33
34
35
36
37
nc
TCK
nc
RTCK
nc
TRST
nc
TMS
nc
RF_ACTIVE
38
39
40
3V
GND
GND
Function
Port 0.7 or UART CTS flow control
Port 1.8 or Host wake-up signal
Port 0.5 UART receive data
Port 1.7 or Bluetooth wake-up signal
Port 0.4 or UART transmit data
Sleep indication signal
Port 0.6 or UART RTS flow control
Port 0.2 or PCM data in
Port 0.3 or PCM data out
Port 0.12 or I2C data signal
Port 0.13 or I2C clock signal
Port 0.0 or PCM frame signal
Port 0.1 or PCM Clock
Port 0.11 or WLAN coexistence
interface
Port 0.14 or WLAN coexistence
interface
Port 1.3 or JTAG interface or WLAN
coexistence interface
Port 1.1 or JTAG interface
Port 1.4 or JTAG interface
JTAG interface
Port 1.0 or JTAG interface
Port 1.2 or JTAG interface or WLAN
coexistence interface
3V
Ground
Ground
Table 1 : Module Connector Pins
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4.4 POWER SUPPLY SECTION
The power supply section provides a regulated +3V DC voltage for the PAN1311 module and
the Evaluation Board circuitry. For convenience a wider choice of input options exists. These
options have to be used alternatively. While protection mechanisms against parallel connection
of different power supplies exist, it is recommended to check thoroughly that only one supply
voltage is present. The following supply options exist:
•
•
2mm Lab-connectors: This allow a voltage range of 3.4 – 15 V DC
USB-connector: Only used for power supply! 5 V DC will be taken from the USB port
4.4.1 DIRECT SUPPLY MODE
For measurement purposes it may be helpful to directly supply the module only. This is mainly
required for tests without a regulator. To enable direct supply mode please set the “JP1” jumper
in the “2-3” position. The module is now directly connected to the 2mm Lab-connector. To
power the rest of the on-board circuitry, especially the RS232 interface driver, please note that it
is required to use one of the two options of power supply, described in the section before.
ATTENTION :
Please make sure that the voltage does not exceed 3.6 volts in this
mode. Operation above this level will result in permanent damage to
the module.
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4.5 JUMPER SETTINGS
Figure 2 in chapter Functional Overview shows the position of the five Jumpers on the
Evaluation Board PAN1311. See the following table for a description of the jumpers and
make sure that are all jumpers are set up correctly.
Jumper
description
Pos. 1-2
Pos. 2-3
JP1
Power selection external/internal
3V intern
external
JP2
ON/OFF
When the ON/OFF pin is low, the
internal regulator on the PAN1310
module is turned OFF
ON
OFF
JP5
Mode selection port 1
ON : JTAG
OFF : Port
ON (3V)
OFF(GND)
JP6
Ground
Jumper
description
Open
Closed
JP3
PCM Power Supply
OFF
3 Volt
JP4
UART Power Supply
Table 2 : Jumper settings
OFF
3 Volt
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5. CONNECTION SETUP
This chapter describes how to use the eBMU_SPP_Toolbox software in order to send simple
data packages from one EVB to the other.
5.1 SOFTWARE START AND NAVIGATION
Browse to the folder where the eBMU_SPP_Toolbox_v1.60.exe file is located and start it.
The user interface (figure 2) is shown.
Figure 4 : Toolbox start up screen
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Notice on figure 2 three tabs important to this quick start guide:
•
•
•
Settings,
Commands and
Testing.
Below the interface splits, each half represents one of the EVBs. At the bottom of the screen
are two text fields on which issued commands and received responses are displayed. Use
the clear and clear both buttons above to clear these text boxes.
5.2 PORT CONFIGURATION
On the settings tab the communication via COM port are handled. It is possible to set a
number of default parameters for both EVBs and to save/load all the changes made to this
page (saving the settings will also make the program remember the selected port numbers).
Please select the right port numbers for both EVBs (found at: control panel system hardware device manager Ports (COM & LPT)) and click the buttons open/close 1 &
open/close 2. A status message should appear below the text fields (figure 3). Leave the rest
unchanged for now.
Figure 5 : COM port setup
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5.3 FIRMWARE HANDLING
At the testing tab firmware can be downloaded (Download image) to the EVB and a number
of changes can be made to it (Change BD-data) like giving each device a unique BD address
(e.g. 0003199E8B73). Make sure that the Production mode is enabled before any of these
buttons on this tab are used. To do this mark On and confirm with a click on Production
mode. The text field should inform you about of success of this procedure. Be advised to do
a hardware reset (push button on EVB) after all changes were made.
Please note:
If you have EVBs with a software image earlier then the R1 release you will need to use the
old SPP Toolbox or issue the command by yourself to do the image update since the
download command has changed.
•
•
Old download command: AT+JDAF
New download command: AT+JDOI
Figure 6 : Testing tab
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5.4 COMMAND TAB NAVIGATION
At the Commands tab are several commands listed for easy click-and-use. Note the colour
coding identifying commands by their intended usage:
•
•
•
•
•
•
•
Yellow: Settings and informational commands.
Pink: Security related commands.
Green: Connection related.
Red: Disconnection commands.
Blue: Data transfer
Light blue: Accept connection
White: Sniff (during connection)
Figure 7 : Command tab and used commands
For simple data transfer find the needed commands marked in figure 5. The Custom
Command button can be used to issue any command of the command set (refer to
PMB8753-2_SPP_AT_specification_R1.pdf).
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5.5 CREATING A CONNECTION
To send data from one EVB to the other one of them must be prepared for connection, while
the other will request a connection. Follow these steps:
1. Click on Make Discoverable on Device A. Choose option 3: Inquiry_Page Scan
enabled. The text field should state the issued command sent ( arrow) and the OK
response ( arrow). Now device A can be found by other devices by both available
scan methods.
2. Click on Register Local Service. There are some options to change identification of
the new service but the default values are ok. Simply choose Send. This service now
can be found by other devices of the network.
3. Click the Auto Accept Connection Requests command and choose option 1. EVB A
will auto accept connection requests from now on. Device A is now ready for
connection!
4. Get the address of EVB A with the help of Read BD Address. In the text field you will
find the desired information (e.g. “[…] <-- +RRBDRES=0003199E8B73, […]”). With
this Device A can be addressed when…
5. …issuing Connection Request from Device B. Type or copy the BD address of
Device A into the BD Address 0x text field. Name the service channel under which
the service of Device A was registered in step 2. If no changes were in step 2 service
channel 01 should do. Click send. After a short while both Devices should state
connected.
6. Done! Now data strings can be sent from one EVB to the other with the Send Data
command. Data send and received will be displayed in the text fields. Another click
on Send Data will close its dialog box.
Your text fields should look like Figure 6 or alike after step 1 to 5 were made. If problems or
errors are encountered feel free to hardware reset (EVB push button) both boards and start
over with step 1.
Figure 8 : text field output from step 1 to 6
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6. SCHEMATIC
Figure 9 : EVB Schematic
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7. DOCUMENT INFORMATION
Revision
Version
Date
Datum
Modification / Remarks
Änderungen / Bemerkungen
A
09.07.2008
Initial version
B
15.07.2008
Chapter 4 added, minor corrections
C
07.08.2008
EVB Schematic added, document renamed
Table 3 : Document version
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8. GENERAL INFORMATION
© Panasonic Electronic Devices Europe GmbH 2005.
All rights reserved.
This product description does not lodge the claim to be complete and free of mistakes.
Please contact the related product manager in every case.
If we deliver samples to the customer, these samples have the status Engineering
Samples. This means, the design of this product is not yet concluded. Engineering
Samples may be partially or fully functional, and there may be differences to be published
Data Sheet.
Engineering Samples are not qualified and are not to be used for reliability testing or
series production.
8.1 WAIVER
Customer acknowledges that samples may deviate from the Data Sheet and may bear
defects due to their status of development and the lack of qualification mentioned above.
Panasonic rejects any liability or product warranty for Engineering Samples. In particular,
Panasonic waives liability for damages caused by
• the use of the Engineering Sample other than for Evaluation Purposes, particularly
the installation or integration in an other product to be sold by Customer,
• deviation or lapse in function of Engineering Sample,
• improper use of Engineering Samples.
Panasonic waives any liability for consequential and incidental damages.
In case of any questions, please contact your local sales partner or the related product
manager.
9. LIFE SUPPORT POLICY
This Panasonic product is not designed for use in life support appliances, devices, or
systems where malfunction can reasonably be expected to result in a significant personal
injury to the user, or as a critical component in any life support device or system whose
failure to perform can be reasonably expected to cause the failure of the life support
device or system, or to affect its safety or effectiveness. Panasonic customers using or
selling these products for use in such applications do so at their own risk and agree to fully
indemnify Panasonic for any damages resulting.
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