欢迎访问ic37.com |
会员登录 免费注册
发布采购

HT46R065D 参数 Datasheet PDF下载

HT46R065D图片预览
型号: HT46R065D
PDF下载: 下载PDF文件 查看货源
内容描述: 增强A / D型MCU,具有高电流LED驱动器 [Enhanced A/D Type MCU with High Current LED Driver]
分类和应用: 驱动器
文件页数/大小: 114 页 / 744 K
品牌: HOLTEK [ HOLTEK SEMICONDUCTOR INC ]
 浏览型号HT46R065D的Datasheet PDF文件第14页浏览型号HT46R065D的Datasheet PDF文件第15页浏览型号HT46R065D的Datasheet PDF文件第16页浏览型号HT46R065D的Datasheet PDF文件第17页浏览型号HT46R065D的Datasheet PDF文件第19页浏览型号HT46R065D的Datasheet PDF文件第20页浏览型号HT46R065D的Datasheet PDF文件第21页浏览型号HT46R065D的Datasheet PDF文件第22页  
HT46R064D/065D/066D  
Enhanced A/D Type 8-Bit OTP MCU with LED Driver  
System Architecture  
A key factor in the high-performance features of the Holtek range of microcontrollers is attributed to  
the internal system architecture. The range of devices take advantage of the usual features found  
within RISC microcontrollers providing increased speed of operation and enhanced performance. The  
pipelining scheme is implemented in such a way that instruction fetching and instruction execution are  
overlapped, hence instructions are effectively executed in one cycle, with the exception of branch or  
call instructions. An 8-bit wide ALU is used in practically all operations of the instruction set. It carries  
out arithmetic operations, logic operations, rotation, increment, decrement, branch decisions, etc. The  
internal data path is simplified by moving data through the Accumulator and the ALU. Certain internal  
registers are implemented in the Data Memory and can be directly or indirectly addressed. The simple  
addressing methods of these registers along with additional architectural features ensure that a  
minimum of external components is required to provide a functional I/O and A/D control system with  
maximum reliability and flexibility.  
Clocking and Pipelining  
The main system clock, derived from either a Crystal/Resonator or RC oscillator is subdivided into  
four internally generated non-overlapping clocks, T1~T4. The Program Counter is incremented at the  
beginning of the T1 clock during which time a new instruction is fetched. The remaining T2~T4  
clocks carry out the decoding and execution functions. In this way, one T1~T4 clock cycle forms one  
instruction cycle. Although the fetching and execution of instructions takes place in consecutive  
instruction cycles, the pipelining structure of the microcontroller ensures that instructions are  
effectively executed in one instruction cycle. The exception to this are instructions where the contents  
of the Program Counter are changed, such as subroutine calls or jumps, in which case the instruction  
will take one more instruction cycle to execute.  
System Clocking and Pipelining  
Rev. 1.00  
13  
January 12, 2011  
 复制成功!