REV. 1.0.2 1.6.6 SLEEP [31:24] (default 0x00) SLEEP Register Individual UART" />
參數(shù)資料
型號(hào): XR17V258IV-0A-EVB
廠商: Exar Corporation
文件頁(yè)數(shù): 17/69頁(yè)
文件大?。?/td> 0K
描述: EVAL BOARD FOR XR17V258 144LQFP
標(biāo)準(zhǔn)包裝: 1
系列: *
XR17V258
24
66MHZ PCI BUS OCTAL UART WITH POWER MANAGEMENT SUPPORT
REV. 1.0.2
1.6.6
SLEEP [31:24] (default 0x00)
SLEEP Register
Individual UART Channel Sleep Enable
Ch-6
Ch-7
Ch-5 Ch-4 Ch-3 Ch-2 Ch-1 Ch-0
Bit-7 Bit-6 Bit-5 Bit-4 Bit-3 Bit-2 Bit-1 Bit-0
The 8-bit Sleep register enables each UART separately to enter Sleep mode. Sleep mode reduces power
consumption when the system needs to put the UART(s) to idle. The UART enters sleep mode when the
following conditions are satisfied after the sleep mode is enabled (Logic 0 (default) is to disable and logic 1 is to
enable sleep mode):
There is no pending interrupt
RX pin is idling at a HIGH in normal mode or a LOW in infrared mode
The modem inputs (CTS#, DSR#, CD# and RI#) are steady at either HIGH or LOW (MSR bits [3:0] =
0x0)
When all 8 UART channels are put to sleep, the on-chip oscillator shuts off to further conserve power. In this
case, the V258 is awakened by any of the following events occurring at any of the 8 UART channels:
A receive data start bit transition (HIGH to LOW in normal mode or from LOW to HIGH in infrared mode)
A data byte is loaded into the transmitter
A change of logic state on any of the modem inputs, i.e. any of the delta bits (MSR bits[7:4]) is set
The V258 is ready after 32 crystal clocks to ensure full functionality. Therefore, if the V258 is awakened by a
receive data start bit transition, that character (and the subsequent few characters) may not be received
correctly. Also, a special interrupt is generated with an indication of no pending interrupt. The V258 will return
to sleep mode automatically after all interrupting conditions have been serviced and cleared. It will stay in the
sleep mode of operation until it is disabled by resetting the SLEEP register bits.
1.6.7
Device Identification and Revision
There are two internal registers that provide device identification and revision, DVID and DREV registers. The
8-bit content in the DVID register provides device identification. A return value of 0x48 from this register
indicates the device is a XR17V258. The DREV register returns an 8-bit value of 0x01 for revision A with 0x02
equals to revision B and so on. This information is very useful to the software driver for identifying which device
it is communicating with and to keep up with revision changes.
DVID [15:8]
Device identification for the type of UART. The Device ID of the XR17V258 is 0x48.
DREV [7:0]
Revision number of the XR17V258. A 0x01 represents "revision-A" with 0x02 for rev-B and so on.
REGB [23:16] (default 0x00)
REGB register provides a control for simultaneous write to all 8 UARTs configuration register or individually.
This is very useful for device initialization in the power up and reset routines. Also, the register provides a
facility to interface to the non-volatile memory device such as a 93C46 EEPROM. In embedded applications,
the user can use this facility to store proprietary data in an external EEPROM.
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