参数资料
型号: DEMOACKIT
厂商: Freescale Semiconductor
文件页数: 1/2页
文件大小: 0K
描述: KIT DEMO KIT FOR DC9S08A
标准包装: 1
系列: Flexis™
类型: MCU
适用于相关产品: MC9S08AC128,MCF51AC256
所含物品: 板,2 子卡,线缆
产品目录页面: 730 (CN2011-ZH PDF)
配用: DEMOACEX-ND - BOARD EXPANSION FOR DEMO KIT
相关产品: MC9S08AC128CLKE-ND - MCU 128K FLASH 8K RAM 80-LQFP
MC9S08AC128CFUE-ND - MCU 128K FLASH 8K RAM 64-QFP
MC9S08AC128CFGE-ND - MCU 128K FLASH 8K RAM 44-LQFP
DEMOACKIT—Lab Tutorial
DEMOACKIT—Lab Tutorial
Embedded Microcontrollers
Run demo on 8-bit S08:
1. Compile and program the 8-bit AC128 microcontroller with
Accelerometer Application by clicking on “Debug” button,
launching Debugger.
2. From Connection Manager menu, select “DEMOAC on USB1
(Name=Pennnnnnn)” port and click on “Connect (Reset).”
3. From Loader Warning menu, click on “OK” to allow the debugger to
mass erase the microcontroller’s on-chip flash memory and program
it with the new application.
4. Click on “Start/Continue (F5)” button in debugger to run
application.
5. Bring Accelerometer Demo utility to front, click “Open Serial Port and
Start Demo” button.
6. Move board around to demonstrate 3-axis accelerometer.
7. Observe output in Accelerometer Demo utility.
8. Click button labeled “SW1” on board to enable data averaging.
Move board.
9. Click button labeled “SW2” on board to enable data filtering.
Move board.
The accelerometer demo clearly shows the CPU
performance gains of the 32-bit ColdFire V1 CPU over the
8-bit S08 CPU. In the data averaging and data filtering
modes, a considerable amount of 16-bit and 32-bit math
is required. The S08 CPU is capable of performing these
tasks, but it requires a substantial portion of its bandwidth.
The ColdFire V1 CPU performs the same tasks with only a
very small portion of its bandwidth. Overall, the lab shows
that with Flexis AC microcontrollers, you can pick and
choose the CPU for your performance needs.
Flexis ? AC DEMOACKIT
Lab tutorial
Learn More: For more information about Freescale products,
please visit www.freescale.com/flexis
Freescale and the Freescale logo are trademarks or registered trademarks of Freescale Semiconductor, Inc.
in the U.S. and other countries. All other product or service names are the property of their respective owners.
? Freescale Semiconductor, Inc. 2008.
Agile Number: 926-77696
Doc Number: DEMOACLAB / REV 0
DEMOACKIT—Lab Tutorial
Setup demo:
1. Open CodeWarrior for Microcontrollers. From Windows start menu,
you can locate it using the “Programs>Freescale CodeWarrior>CW
for Microcontroller V6.1>CodeWarrior IDE.exe” path.
2. Click on “Load Example Project” from CodeWarrior startup dialog.
3. From example projects menu, open tree to select: “ColdFire
V1>Evaluation Board Examples>DEMOAC>DEMO51AC256_
Accelerometer_test.”
4. Create a new project name (ex. Lab3), set desired location, and click
“Create Project.” This will open the project for the Accelerometer
Application for the 32-bit AC256 microcontroller.
5. Launch Accelerometer Demo utility from Windows start menu:
Programs>P&E Embedded Multilink Toolkit>Utilities>Accelerometer
Demo. *See DEMOAC User Manual for details on the Accelerometer
Demo utility.
6. Set port to USB COM.
7. Set Baud rate to 115200.
8. Turn board power switch to OFF position.
9. Make sure the red 32-bit ColdFire V1 ? MCF51AC256 daughter card
is plugged in to board. Board jumpers should all be set to the default
settings shown in Quick Start Guide.
10. Turn board power switch to ON position and close debugger window.
Accelerometer Demo running on 32-bit AC256 in data
averaging mode. The orange bar graph labeled “C” highlights
the bus cycles required to average the last 16 readings of
the 3 axes. The values shown in fourth column of text are the
number of bus cycles in hex.
Run demo on the 32-bit ColdFire V1:
1. Compile and program the 32-bit AC256 microcontroller
with Accelerometer Application by clicking on “Debug”
button, launching Debugger.
2. From Connection Manager menu, select “USB1:DEMOAC
(PEnnnnnnn)” port and click on “Connect (Reset).”
3. From Erase and Program Flash menu, click on “Yes” to allow
the debugger to mass erase the microcontroller’s on-chip flash
memory and program it with the new application.
4. Click on the “Start/Continue (F5)” button in debugger to run
application.
5. Bring Accelerometer Demo utility to front and click the “Open Serial
Port and Start Demo” button.
6. Move board around to demonstrate 3-axis accelerometer.
7. Observe output in Accelerometer Demo utility.
8. Click button labeled “SW1” on board to enable data averaging. Move
board.
9. Click button labeled “SW2” on board to enable data filtering. Move
board.
Change device to 8-bit S08:
1. Click “Close Port” in Accelerometer Demo utility.
2. Close the “True-Time Simulator & Real-Time Debugger” window.
3. Bring CodeWarrior IDE window to front with Accelerometer Application
project for 8-bit microcontroller.
4. Click the “MCU Change Wizard” button to switch project to
8-bit microcontroller.
5. From Wizard, change microcontroller selection from 32-bit
“MCF51AC256” to 8-bit “MC9S08AC128” in the “Flexis>AC Family”
tree. Make sure ‘P&E Multilink/Cyclone Pro’ is selected as the default
connection.
6. Click “Finish.” In the background, CodeWarrior will transform your
project to the 32-bit microcontroller with no software changes
needed.
7. Turn board power switch to OFF.
8. Replace the 80-Pin LQFP 32-bit ColdFire ? V1 AC256 microcontroller
with an 80-Pin LQFP 8-bit S08 AC128 microcontroller in the
daughter card.
9. Turn board power switch to ON.
Accelerometer Demo running on 8-bit S08 AC128 in data
averaging mode. The orange bar graph labeled “C” highlights
the bus cycles required to average the last 16 readings of the 3
axes. The values shown in fourth column of text are the number
of bus cycles in hex.
相关PDF资料
PDF描述
DEMOEM BOARD DEMO HARDWARE ONLY
DEMOQE128 DEMO BOARD FOR QE128 FLEXIS
DFN2.86BK DURA-FLEX 2.86" BLACK 100'
DG-ACC-JADP-1 JTAG ADAPTER FOR CC 9C W-9C
DG-ACC-JBST JTAG-BOOSTER FOR NETSILICON 3.3V
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