参数资料
型号: MAX14830ETM+T
厂商: Maxim Integrated Products
文件页数: 16/68页
文件大小: 0K
描述: IC UART
产品培训模块: Obsolescence Mitigation Program
标准包装: 2,500
系列: *
23
Maxim Integrated
Quad Serial UART with 128-Word FIFOs
MAX14830
This occurs as soon as data is present in the Transmit
FIFO. Auto transceiver direction control is enabled
through MODE1[4]: TrnscvCtrl. Figure 10 shows a typical
MAX14830 connection in a RS-485 application.
The RTS_ output can be set high in advance of TX_
transmission by a programmable time period called the
setup time (Figure 11). The setup time is programmed
through HDplxDelay[7:4]. Similarly, the RTS_ signal
can be held high for a programmable period after the
transmitter has completed transmission. The hold time is
programmed through HDplxDelay[3:0].
Transmitter Triggering and Synchronization
The MAX14830 allows synchronization of transmitters
so that selected UARTs start transmitting data when a
trigger command is received. Optional delays can also
be programmed, which delay the start of transmission
after a trigger command is received. A UART’s transmit-
ter can be assigned one of 16 possible SPI/I2C trigger
commands. A trigger command is defined as any of 16
special values written into the GloblComnd register (see
the GloblComnd section for more information). When a
byte is written into the GloblComnd register, UART select
bits (U0 and U1) are ignored by the MAX14830, and the
GloblComnd applies to all four UARTs. Transmission is
initiated when the MAX14830 receives the assigned SPI/
I2C trigger command if the selected transmitter is initially
disabled and data has been loaded into its TxFIFO.
Enable and configure transmitter synchronization in
the TxSynch register. Triggering and synchronization
requires that the TxFIFOs are disabled before the trigger
is received. This can be done by setting the MODE1[1]
bit to 1 or by utilizing the auto transmitter disable function
(TxSynch[4] is 1).
Transmitter Synchronization
Synchronize multiple UARTs so their transmitters start
transmission simultaneously by assigning a common
trigger command to the UARTs that should be synchro-
nized.
Intrachip and Interchip Synchronization
Intrachip transmitter triggering occurs when any of the
four UARTs in a MAX14830 are triggered by one trigger
command. This type of synchronization is supported in
both SPI and I2C modes, as the trigger commands are
global commands that are received by all four UARTs
simultaneously.
Interchip transmitter triggering occurs when the UARTs
in different MAX14830 devices are synchronized. This
type of synchronization is achievable in SPI mode only.
Pull the CS of all the MAX14830 devices on the bus low
during the SPI master’s write trigger command so that
the commands are received by all UARTs on the shared
SPI bus.
I2C protocol does not allow simultaneous addressing of
multiple devices.
Delayed Triggering
A delay can be programmed for delaying the start of
transmission after the reception of an assigned trig-
ger command. Set the delay by programming the
SynchDelay1 and SynchDelay2 registers.
Figure 11. Setup and Hold times in Auto Transceiver Direction Control
Figure 10. Auto Transceiver Direction Control
TX_
DI
D
B
A
R
DE
RE
RO
RTS_
RX_
Tx FIFO
Rx FIFO
MAX14830
TRANSMITTER
AUTO
TRANSCEIVER
CONTROL
RECEIVER
MAX14840E
TX_
FIRST CHARACTER
LAST CHARACTER
RTS_
SETUP
HOLD
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MAX1483C/D+ 功能描述:RS-485接口IC low-power transceivers for RS-485 and RS-422 communication RoHS:否 制造商:Texas Instruments 数据速率:250 Kbps 工作电源电压:3.3 V 电源电流:750 uA 工作温度范围:- 40 C to + 125 C 安装风格:SMD/SMT 封装 / 箱体:SOIC-8 封装:Tube
MAX1483CPA 功能描述:RS-485接口IC RoHS:否 制造商:Texas Instruments 数据速率:250 Kbps 工作电源电压:3.3 V 电源电流:750 uA 工作温度范围:- 40 C to + 125 C 安装风格:SMD/SMT 封装 / 箱体:SOIC-8 封装:Tube
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