Programmable Logic Equations
else
!FETH1_ENABLED ;
"******************************************************************************
state_diagram FEthRst1_B
state FETH1_RESET_ACTIVE:
if (VGR_WRITE_BCSR_1 &
(FETH1_RESET_DATA_BIT.pin == !FETH1_RESET_ACTIVE) &
(!PON_RESET # (FETH1_RESET_PON_DEFAULT != FETH1_RESET_ACTIVE)) #
(PON_RESET & (FETH1_RESET_PON_DEFAULT == !FETH1_RESET_ACTIVE)) ) then
!FETH1_RESET_ACTIVE
else
FETH1_RESET_ACTIVE ;
state !FETH1_RESET_ACTIVE:
if (VGR_WRITE_BCSR_1 &
(FETH1_RESET_DATA_BIT.pin == FETH1_RESET_ACTIVE) &
(!PON_RESET # (FETH1_RESET_PON_DEFAULT != !FETH1_RESET_ACTIVE)) #
(PON_RESET & (FETH1_RESET_PON_DEFAULT == FETH1_RESET_ACTIVE)) ) then
FETH1_RESET_ACTIVE
else
!FETH1_RESET_ACTIVE ;
"******************************************************************************
state_diagram RS232En1_B
state RS232_1_ENABLE:
if (VGR_WRITE_BCSR_1 &
(RS232_1_ENABLE_DATA_BIT.pin == !RS232_1_ENABLE) &
(!PON_RESET # (RS232_1_ENABLE_PON_DEFAULT != RS232_1_ENABLE)) #
(PON_RESET & (RS232_1_ENABLE_PON_DEFAULT == !RS232_1_ENABLE)) ) then
!RS232_1_ENABLE
else
RS232_1_ENABLE ;
state !RS232_1_ENABLE:
if (VGR_WRITE_BCSR_1 &
(RS232_1_ENABLE_DATA_BIT.pin == RS232_1_ENABLE) &
(!PON_RESET # (RS232_1_ENABLE_PON_DEFAULT != !RS232_1_ENABLE)) #
(PON_RESET & (RS232_1_ENABLE_PON_DEFAULT == RS232_1_ENABLE)) ) then
RS232_1_ENABLE
else
!RS232_1_ENABLE ;
"******************************************************************************
state_diagram RS232En2_B
state RS232_2_ENABLE:
if (VGR_WRITE_BCSR_1 &
(RS232_2_ENABLE_DATA_BIT.pin == !RS232_2_ENABLE) &
(!PON_RESET # (RS232_2_ENABLE_PON_DEFAULT != RS232_2_ENABLE)) #
(PON_RESET & (RS232_2_ENABLE_PON_DEFAULT == !RS232_2_ENABLE)) ) then
!RS232_2_ENABLE
else
RS232_2_ENABLE ;
state !RS232_2_ENABLE:
if (VGR_WRITE_BCSR_1 &
(RS232_2_ENABLE_DATA_BIT.pin == RS232_2_ENABLE) &
(!PON_RESET # (RS232_2_ENABLE_PON_DEFAULT != !RS232_2_ENABLE)) #
(PON_RESET & (RS232_2_ENABLE_PON_DEFAULT == RS232_2_ENABLE)) ) then
RS232_2_ENABLE
else
!RS232_2_ENABLE ;
"******************************************************************************
"******************************************************************************
"* BCSR3 State Machines
MPC8272ADS User Guide
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相关代理商/技术参数
MPC8272CVR 制造商:MOTOROLA 制造商全称:Motorola, Inc 功能描述:MPC8272 PowerQUICC II Family Hardware Specifications
MPC8272CVRB 制造商:FREESCALE 制造商全称:Freescale Semiconductor, Inc 功能描述:PowerQUICC II⑩ Family Hardware Specifications
MPC8272CVRE 制造商:FREESCALE 制造商全称:Freescale Semiconductor, Inc 功能描述:PowerQUICC II⑩ Family Hardware Specifications
MPC8272CVRI 制造商:FREESCALE 制造商全称:Freescale Semiconductor, Inc 功能描述:PowerQUICC II⑩ Family Hardware Specifications
MPC8272CVRM 制造商:FREESCALE 制造商全称:Freescale Semiconductor, Inc 功能描述:PowerQUICC II⑩ Family Hardware Specifications
MPC8272CVRMIBA 功能描述:微处理器 - MPU 266 MHz 505.4 MIPS RoHS:否 制造商:Atmel 处理器系列:SAMA5D31 核心:ARM Cortex A5 数据总线宽度:32 bit 最大时钟频率:536 MHz 程序存储器大小:32 KB 数据 RAM 大小:128 KB 接口类型:CAN, Ethernet, LIN, SPI,TWI, UART, USB 工作电源电压:1.8 V to 3.3 V 最大工作温度:+ 85 C 安装风格:SMD/SMT 封装 / 箱体:FBGA-324
MPC8272CVRP 制造商:FREESCALE 制造商全称:Freescale Semiconductor, Inc 功能描述:PowerQUICC II⑩ Family Hardware Specifications
MPC8272CVRPIEA 功能描述:微处理器 - MPU 300 MHz 570 MIPS RoHS:否 制造商:Atmel 处理器系列:SAMA5D31 核心:ARM Cortex A5 数据总线宽度:32 bit 最大时钟频率:536 MHz 程序存储器大小:32 KB 数据 RAM 大小:128 KB 接口类型:CAN, Ethernet, LIN, SPI,TWI, UART, USB 工作电源电压:1.8 V to 3.3 V 最大工作温度:+ 85 C 安装风格:SMD/SMT 封装 / 箱体:FBGA-324