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PC87334VLJ bảng dữ liệu(PDF) 27 Page - National Semiconductor (TI) |
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PC87334VLJ bảng dữ liệu(HTML) 27 Page - National Semiconductor (TI) |
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27 / 102 page ![]() 20 Configuration Registers (Continued) Bit 1 DRV2 DR23 select 0 Pin 49 (PQFP) or pin 47 (TQFP) is DRV2 1 Pin 49 (PQFP) or pin 47 (TQFP) is DR23 DR23 is asserted when either drive 2 or drive 3 is ac- cessed (except during logical drive exchangesee bit 3 of TDR) The value of DR23 is undefined when working in four drive encoded mode (bit 4 of FER is 1) The PC87334 assumes DRV2 is 1 when bit 1 of ASC is 1 Bit 2 Enhanced TDR support 0 TDR read is a function of bit 0 of the FCR configura- tion register Pin 59 (PQFP) or pin 57 (TQFP) is IOCS16 Pin 56 (PQFP) or pin 54 (TQFP) is IDEHI VLD0 1 Pin 59 (PQFP) or pin 57 (TQFP) is DRID0 input The PC87334 assumes IOCS16 is active when bit 2 of ASC is 1 Pin 56 (PQFP) or pin 54 (TQFP) is DRID1VLD0 input Bit 2 of ASC should be set to one before the FDD is accessed thus preventing contention between IDEHI and DRID1 The PC87344 provides full TDR support Bit 3 PNF status bit This bit reflects the value of the PNF pin It is a read only bit data written to this bit is ig- nored It is undefined when the pin is configured as DRV2 or DR23 This bit is 1 when the FDC is powered down 0 Indicates floppy drive is connected 1 Indicates printer is connected Bit 4 Reserved Bit 5 The value of this bit is reflected on bit 3 of CNFGA ECP register Bits 6 7 System Operation Mode The PC87334 can be configured to either PC-AT PS2 or Model 30 modes 00 Model 30 mode 01 PS2 mode 10 Reserved and illegal 11 PC-AT mode 2510 Infrared Configuration Register (IRC Index e 0Eh) On reset this register is initialized to zero Some bits are reserved for future use The value of the reserved bits may not be altered by software a read modify write operation is required to modify this register Bit 0 UART2 Interface Mode This bit is used for run- time selection of either Normal (Modem) UART or Serial Infra Red (SIR) 0 Normal (MODEM) mode 1 SIR mode Bit 1 SIR HalfFull Duplex configuration bit 0 Full Duplex Both transmitter and receiver are enabled simultaneously 1 Half Duplex The receiver input is blocked (in- ternally forced low) when the transmitter is on (when UART2’s SOUT2 is ‘0’) In Normal (MODEM) mode this bit is ignored Bits 3 2 SIR pins allocation These bits are used to con- figure the PC87334 according to the SIR signals connection in the assembled board 00 SIR disabled and UART2 in Normal (MO- DEM) mode Bits 4 2 1 and 0 of IRC are ignored 01 SIR signals on UART2 pins IRTX on pin 63 (PQFP) or pin 61 (TQFP) and IRRX on pin 68 (PQFP) or pin 66 (TQFP) 10 Reserved 11 SIR signals on IDE pins (option 2) IRTX on pin 56 (PQFP) or pin 54 (TQFP) and IRRX on pin 59 (PQFP) or pin 57 (TQFP) IDE DMA should not be configured or used For UART2 pin functionssee the pin de- scriptions in Section 10 Bit 4 SIR transmitter drive control bit 0 When IRTX is active it is active for 16 ms 1 When IRTX is active it is active for 316 baud In Normal (MODEM) mode this bit is ignored Bits 7 6 5 Reserved for future use (implemented as read write bits) The value of the reserved bits may not be altered by software a read modify write operation is required to modify this register 26 POWER-DOWN OPTIONS The PC87334 places special emphasis on power manage- ment Power management methods can be divided into two major groups Group 1 Full device power-downthe entire PC87334 SuperIO is powered-down and thus disabled Group 2 Specific function power-downspecific SuperIO modules (FDC UART1 UART2 IDE ECP or Par- allel Port) are powered-down and thus disabled All power-down modes are enhanced by a new feature which allows the output pins associated with a specific func- tion (FDC UART1 UART2 IDE Parallel Port) to be TRI- STATE pins and reduces current leakage by blocking their inputs Four modules in the PC87334 are operated by the internal clockFDC UART1 UART2 and ECP These modules can be powered-down or disabled by stopping their associated internal clocks In addition all four modules can be powered-down or disabled by stopping the external crystal oscillator Modules which do not use a clock the IDE and Parallel Port (SPPEPP) can be powered-down or disabled by simply blocking access to them All the above power-down modes can be achieved using the power-down methods from Group 1 or Group 2 as de- scribed in the following sections 27 |
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