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MPS CAN Lab Exercise
Controller Area Network
Student's name & ID (1): ___________________________________________________
Partner's name & ID (2): ___________________________________________________
Your Section number & TA's name __________________________________________
Notes:
You must work on this assignment with your partner.
Hand in a printed copy of your software listings and a neat copy of your schematics for
the team.
These will be returned to you so that they may be used for reference.
------------------------------- do not write below this line -----------------------------
POINTS
(1) (2)
TA init.
Grade for Part 1 performance verification (10%)
Grade for Part 2 performance verification (10%)
Grade for part 3 performance verification (20%)
Grade for answers to TA's questions (20% max.)
Grade for documentation and appearance (40% max.)
TOTAL
Grader's signature: ___________________________________________
Date: ______________________________________________________
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Shrnutí obsahu

Strany 1 - MPS CAN Lab Exercise

MPS CAN Lab Exercise Controller Area Network Student's name & ID (1): ___________________________________________________ Partner's na

Strany 2 - LabVIEW Requirements

Using LabVIEW 2011 Overview LabVIEW has two main views, the block diagram and the front panel. The front panel can be thought of as the graphical

Strany 3 - Overview

that makes the most sense to display the given data must be chosen. Again, choices can be made based on the data dictionary. Figure 8 shows the block

Strany 4 - PROGRAMMING TASKS

Hardware Setup (PARTS II & III) The following is a detailed description of device hardware setup. Please follow steps in order to ensure proper de

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Figure 11: NI USB Connection with CAN MCU 4) The 8051 development boards need to be plugged into the control and meter box modules to ensure the

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speed. This example uses P3 but users may choose to use a different port. The 10 pin connector (on P3) reads in values as follows (all are active low

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1. Not Used (UART0 TX) (P0.0) 2. Not Used (UART0 RX) (P0.1) 3. Temperature (PWM signal) (P0.2) 4. Not Used (P0.3) 5. Turn left signal

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8) After All Modules have been connected properly, place the large plastic cover over the inner parts of the car. The plastic cover should ideally b

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APPENDIX A: CAN Addresses Full documentation is available on the web at: http://www.rpi.edu/dept/ecse/mps/mps_handouts.html The CAN interface on the

Strany 10 - Using LabVIEW 2011

Table 1: Car Controller Command Functions (& specifications for potentiometers outputs) Function Message ID Data Headlights 0x01 2 bytes: 0=Off 1

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APPENDIX B: Module Pin-outs & Signal Scaling The C8051F040 development boards need to be plugged into the Control and Meter Modules to correctly

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Controller Area Network This lab manual will detail the initial hardware setup for Lab 7. The following is a step by step processes needed to successf

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APPENDIX C: Pseudo-Programming Example /* * Note that these examples do not include everything necessary for fully * working CAN. It is necessary t

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APPENDIX D: RC Car CAN Arbitration IDs, Functions, and Value Ranges !"#$%"&'()"*+,%-.,/0'&1!21/&&&&

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o NI-Tutorial-9759-en.pdf, NI-Tutorial-2862-en.pdf, NI-CAN Channel and Frame API - National Instruments.pdf, Which NI-CAN Frame API Functions

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!!The final system configuration for this exercise will have two C8051F040 processor cards connected to the common CAN bus of the Car M

Strany 17 - APPENDIX A: CAN Addresses

the NI_User_Manual file on the MPS web page for details on the procedure to install LabVIEW on your laptop. The studio desktops have the software inst

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Figure 4: The CAN-viewer-MPS.vi front panel for monitoring and displaying CAN bus information. After becoming familiar with both of these VIs and th

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Figure 5: A typical student-developed front panel for monitoring and displaying all CAN bus information from the RC car. Important Notes on the RC Ca

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PART III - C Programming: Separate Control Module and Meter Module In this portion of the lab, write a simple program which will turn on

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The C8051F040 still has a UART0 serial port for printing output or debugging information on a terminal. As in all MPS labs the port must be configure

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