CC6
所属分类:单片机开发
开发工具:C/C++
文件大小:991KB
下载次数:14
上传日期:2012-04-09 12:43:36
上 传 者:
j__j
说明: 英飞凌xc836MT-2F单片机内部CCU6转换源码,keil编译环境,共享万岁!
(The Infineon xc836MT-2F microcontroller the internal CCU6 conversion source, c51 compiler environment, sharing Long live!)
文件列表:
CC6\CCU6_01\BOOTROM_ADDR.A51 (1287, 2010-08-10)
CC6\CCU6_01\BOOTROM_ADDR.LST (3212, 2010-08-10)
CC6\CCU6_01\BOOTROM_ADDR.OBJ (330, 2010-08-10)
CC6\CCU6_01\CC6.C (15070, 2010-08-10)
CC6\CCU6_01\CC6.H (3229, 2010-08-10)
CC6\CCU6_01\CC6.LST (21978, 2010-08-10)
CC6\CCU6_01\CC6.OBJ (29146, 2010-08-10)
CC6\CCU6_01\CC6_01 (55812, 2010-08-10)
CC6\CCU6_01\CC6_01.dav (55913, 2010-08-10)
CC6\CCU6_01\CC6_01.dpt (47866, 2010-08-10)
CC6\CCU6_01\CC6_01.hex (595, 2010-08-10)
CC6\CCU6_01\CC6_01.lnp (92, 2010-08-10)
CC6\CCU6_01\CC6_01.M51 (10766, 2010-08-10)
CC6\CCU6_01\CC6_01.plg (216, 2012-03-13)
CC6\CCU6_01\CC6_01.rtf (10375, 2010-08-10)
CC6\CCU6_01\CC6_01.uvgui.KBD1111002 (70506, 2012-03-13)
CC6\CCU6_01\CC6_01.uvgui_KBD1111002.bak (70512, 2012-03-13)
CC6\CCU6_01\CC6_01.uvopt (6708, 2012-03-13)
CC6\CCU6_01\CC6_01.uvproj (13977, 2012-03-13)
CC6\CCU6_01\CC6_01_uvopt.bak (56336, 2010-08-10)
CC6\CCU6_01\CC6_01_uvproj.bak (13947, 2010-08-10)
CC6\CCU6_01\MAIN.C (6563, 2010-08-10)
CC6\CCU6_01\MAIN.H (34401, 2010-08-10)
CC6\CCU6_01\MAIN.LST (11110, 2010-08-10)
CC6\CCU6_01\MAIN.OBJ (25974, 2010-08-10)
CC6\CCU6_01\START_XC.A51 (13778, 2010-08-10)
CC6\CCU6_01\START_XC.LST (28968, 2010-08-10)
CC6\CCU6_01\START_XC.OBJ (1075, 2010-08-10)
CC6\CCU6_02\BOOTROM_ADDR.A51 (1287, 2010-08-10)
CC6\CCU6_02\BOOTROM_ADDR.LST (3208, 2011-11-02)
CC6\CCU6_02\BOOTROM_ADDR.OBJ (330, 2011-11-02)
CC6\CCU6_02\CC6.C (17621, 2010-08-10)
CC6\CCU6_02\CC6.H (4526, 2010-08-10)
CC6\CCU6_02\CC6.LST (25942, 2011-11-02)
CC6\CCU6_02\CC6.OBJ (38172, 2011-11-02)
CC6\CCU6_02\CC6_02 (107117, 2011-11-02)
CC6\CCU6_02\CC6_02.dav (55954, 2010-08-10)
CC6\CCU6_02\CC6_02.dpt (47991, 2010-08-10)
CC6\CCU6_02\CC6_02.hex (1691, 2011-11-02)
CC6\CCU6_02\CC6_02.lnp (98, 2011-11-02)
... ...
Examples for EasyKit XC83x
V1.0, May 2010
(c) Infineon Technologies AG
Description of Software Examples of CC6 Module
-------------------------------------------------------------------
1. Single Channel constant PWM on T13
2. Single Channel variable PWM on T13 with CTRAP
- interrupt routine for CTRAP
- interrupt routine for T13PM with update of duty cycle
- CTRAP with POT
3. Single Shot Mode with external start of T13
- external run (T13HR) from P0.0 falling edge
- interrupt service routine for T13PM
- main routine forces T13HR by pulldown on P0.0
4. Synchronize T13 on T12
- T12 in center aligned mode, PWM on ch0, 50%
- interrupt service routine for T12PM
- single shot mode T13, synchronize and start with T12CM ch0 upcount
- duty cycle for T13 10%, output on P1.2
- interrupt service routine for T13PM
5. 3 channel PWM with deadtime on T12
- 3ch/6outputs with inverted output level and deadtime
- for driving stage with highside & lowside active high
- T12 in center aligned mode
- interrupt service routine for T12PM
6. 3 channel sinusoidal PWM on T12 with CTRAP
- update duty cycles with every T12PM interrupt
- simple sinusoidal table >> see excel sheet SineTab.xls
- CTRAP by POT
- leave trapstate synchronized to T12period
7. Hysteresis like Mode with 3 channel sinusoidal PWM on T12
- update duty cycles with every T12PM interrupt
- simple sinusoidal table >> see excel sheet SineTab.xls
- force Hysteresis Control in main.c by toggling
P0.0 channel 0 to inactive
P0.1 channel 1 to inactive
P0.2 channel 2 to inactive
P2.3 CTRAP – all channels to inactive
8. Multichannel mode T12/T13 and MCMOUTx
- T13 modulation on CC6x/Cout6x (~20kHz) with variable duty cycle
- T12 periodically switches to next multichannel state with var. period(~0.5-1kHz)
- switching transfer on T12PM
- switching synchronization on T13ZM
- CTRAP enabled for all CC6 pins
- interrupt for STR and CTRAP
9. Double register capture with T12
- capture on rising edge on pin CC60 to CC60R
- capture on falling edge on pin CC60 to CC60SR
- display result via UART
10. Trigger ADC by T13 compare match
- Analog Input Channel 0-3 are converted sequentially
- Result display via UART
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