iSystem IEA-DXCPL User manual

DAP over CAN Physical Layer
User Manual
V1.1

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www.isystem.com

Contents
DAP over CAN
Package content ...................................................................................................................................... 5
Operation ................................................................................................................................................... 6
winIDEA Configuration .................................................................................................................................................................................................... 8
Accessories ............................................................................................................................................... 9
User Notes .............................................................................................................................................. 10
User Notes .............................................................................................................................................. 11

DAP over CAN
DAP over CAN Physical Layer Converter - Enables debugging via the regular CAN pins of the
ECU connector without opening its housing. The CAN bus physical layer is a bidirectional
connection with differential encoding on a single pair of wires. iSYSTEM hardware solution
supports DXCPL on Infineon AURIX™ TC2xx and TC3xx devices.
DAP over CAN Physical Layer Converter can be used with:
·
iC5700 BlueBox via DTM or
·
iC5700 BlueBox via Infineon DAP/DAPE Active Probe or
·
iC5700 BlueBox via Infineon AGBT Active Probe and a 10-pin 1.27 mm DAP Converter
iC5700 BlueBox is a hardware platform designed for debugging and testing a wide range of
embedded microcontroller platforms that are based on a variety of processor architectures.
Infineon DAP/DAPE Active Probe enables the debugging, tracing and testing of Infineon’s
AURIX™ microcontroller family. It supports the DAP and DAPE debug interface operating at
their maximum frequency. Its small and compact hardware size allows for connecting to a
target microcontroller in a confined space as far as 5m away.
Infineon AGBT Active Probe enables the debugging, tracing and testing of Infineon’s AURIX™
microcontroller family. It supports the DAP and Aurora GigaBit Trace (AGBT) interface
operating at their maximum frequency. Its small and compact hardware size allows for
connecting to a target microcontroller in a confined space as far as 5m away. The Active
Probe supports up to 4 parallel AGBT lanes, running at a maximum bitrate of 5Gbps
Complementing the hardware is a range of software which target three key areas of embedded
development: debugging, timing-analysis and testing.
winIDEA - The winIDEA Integration Development Environment (IDE) delivers the visual insights
required to debug and trace your embedded application. More information
isystem.com/winideaide.
testIDEA - The testIDEA environment simplifies the development of unit tests for embedded
applications. More information isystem.com/testIDEA.
isystem.connect - The well-documented interface provides access to Python, Java and other
languages. More information isystem.com/sdk.

Package content
The DAP over CAN Physical Layer Converter is delivered with the following components:
DAP over CAN
Physical Layer Converter
USB-C cable
User Manual
Ordering code:
IEA-DXCPL

Operation
Device overview
Device description
A– DAP connector
Pinout valid on the DAP connector side:
Signal direction
Signal
Pin
Pin
Signal
Signal direction
O
Vref
1
2
TXD
I
GND
3
4
NC
GND
5
6
RXD
O
NC
7
8
NC
GND
9
10
NC
DAP connector pinout
Signal direction definition:
O – Output from the Active Probe to the target microcontroller
I – Input to the Active Probe from the target microcontroller
B – DB9 connector
Pinout valid on the DB9 connector side:
Pin
Signal
1
Not connected
2
CAN_L
3
CAN GND
4
NC
5
SHIELD
6
NC
7
CAN_H
8
NC
9
NC
DB9 connector pinout

C– The LED indicator provides the status of the hardware as follows:
·
Green – Powered on
·
Red – Power supply issue (e.g., burnt fuse
D– USB-C cable which is connected to the PC USB port.
CAN 120 Ohm terminating resistor is not implemented on the DAP over CAN Physical
Layer Converter.

winIDEA Configuration
After connecting the hardware follow the steps below to configure the DAP over CAN Physical
Layer Converter in winIDEA:
1. Open Hardware menu / CPU Options.
2. Navigate to the SoC page.
3. Select DXCPL from the Debug channel Mode drop-down.
4. Confirm and establish the debug connection.
Refer to isystem.com/connect for more information on how to connect and configure the
hardware.

Accessories
DAP over CAN Physical Layer Converter is used together with the following iSYSTEM
hardware:
Ordering Code
Description
IC57000
iC5700 BlueBox
IC57163
Infineon DAP/DAPE Active Probe
IC57164
Infineon AGBT Active Probe
IASAM22TRICOREPIN
10
10-pin 1.27 mm DAP Adapter (Infineon AGBT Active Probe)
BB-FNET-100
1.0m FNet Cable (Active Probe)
BB-FNET-300
2.0m FNet Cable (Active Probe)
BB-FNET-500
5.0m FNet Cable (Active Probe)
BB-FNETMICRO-100
1.0m FNet Micro Cable (Active Probe)
Please refer to the iC5700 BlueBox for all current iC5700 Accessories.
The functionality of the DAP over CAN Physical Layer Converter can be extended through the
use of various accessories.
Ordering Code
Description
IC57040-CAN-DB9
1m CAN cable DB9 plug
IC57040-CAN-PIN
CAN cable pin wires
IC57040-CAN-JACK
CAN cable banana jacks
IC57040-CAN-T
CAN BUS T adapter
Find more information on www.isystem.com or contact sales@isystem.com. To reach
for technical support please visit www.isystem.com/support.

User Notes
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User Notes
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iSYSTEM has made every effort to ensure the accuracy and reliability of the information provided in
this document at the time of publishing. Whilst iSYSTEM reserves the right to make changes to its
products and/or the specifications detailed herein, it does not make any representations or
commitments to update this document.
iSYSTEM. All rights reserved.
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