参数资料
型号: LTC1482CS8#PBF
厂商: Linear Technology
文件页数: 4/16页
文件大小: 0K
描述: IC TXRX RS485 LOWPWR 8-SOIC
标准包装: 100
类型: 收发器
驱动器/接收器数: 1/1
规程: RS422,RS485
电源电压: 4.75 V ~ 5.25 V
安装类型: 表面贴装
封装/外壳: 8-SOIC(0.154",3.90mm 宽)
供应商设备封装: 8-SOIC
包装: 管件
产品目录页面: 1354 (CN2011-ZH PDF)
12
LTC1482
When VCC is applied, some time is needed for CD and RO
to become valid. The time needed depends on the capaci-
tance at the CD pin, the VCC rise time and the loads
connected to the A and B pins. For a load capacitance of
15pF and a 1
s VCC rise time, a wait time of 10s is
recommended.
Receiver Output and Fail-Safe
If CD is low, the receiver output, RO, responds to the input
differential voltage and is guaranteed (by testing) to go
high if (A – B)
≥VTHRO(MAX) andlowif(A–B)≤VTHCD(MIN).
Some data encoding schemes require that the output of
the receiver maintain a known state (usually logic 1) when
data transmission ends and all drivers on the line are
forced into three-state. The carrier detect mechanism
ensures that RO will be high regardless of whether the line
is open, floating or shorted together, or whether the line is
terminated or not. This removes external components
required with earlier RS485 devices for the case where the
required known state is a logic 1. External components are
needed if the required state is a logic 0.
Fail-safe operates over the – 7V to 12V common mode
range and fast common mode steps do not affect the
receiver output.
Note that the CD output only goes high after all the drivers
are three-stated due to built-in delays (tCDH) in the CD
signal path (see Carrier Detect Operation). During the time
interval (see Figure 11) beginning at driver three-state and
ending at CD going high, the receiver output stays at the
last state just prior to the driver three-stating.
ICC Shutdown Mode
The supply current of the LTC1482 is reduced to 20
Amax
by taking both the DE and DI/SHDN pins low. In shutdown,
all internal circuits are powered down and the driver and
receiver outputs are three-stated. The CD output is taken
high by the weak internal pull-up.
Logic within the LTC1482 prevents slow DE and DI/SHDN
transitions from generating internal shutdown pulses by
rejecting “shutdown pulses” of less than 50ns (typ) in
duration. Without this logic, the driver outputs will glitch
when three-stated momentarily.
Carrier Detect Operation
The carrier detect or CD pin is an open-drain output with
a weak internal pull-up (30
A typical). This allows several
LTC1482s to share the same carrier detect line. The
internal pull-up has a series diode, permitting users to tie
the CD output to a voltage higher than VCC (8V max). When
driving low, the CD output can sink up to 4mA while
maintaining the output below a TTL VOL of 0.4V. An
external pull-up resistor is recommended if fast rise times
are important.
The LTC1482 defines the presence of a carrier as
VTHCD(MIN) ≥ (A – B) ≥ VTHCD(MAX). CD pulls low when a
carrier is present. When the carrier is absent, the weak
internal pull-up pulls CD high. For slow moving input
signals (below about 32kHz for signals conforming to
RS485 specifications), the CD output will go high when the
(A – B) signal is within the VTHCD(MIN) to VTHCD(MAX) range.
For faster input signals, the CD output does not glitch high
when the (A – B) signal is traversing the transition region.
This is achieved through internal delays in the CD signal
path. It takes tCDH (≤ 5s) for CD to go high after the carrier
signal is removed. There are no additional built-in delays
for CD going low so that tCDL is only 300ns max.
When the LTC1482 is not in shutdown mode, CD = 1
always forces the receiver output (RO) high. If the driver
is enabled (DE = 1), CD = 0 as long as VTHCD min ≥ (A – B)
≥ VTHCD max. Shorting the A and B pins together or
excessive loading between these pins will cause this
condition to be violated and the CD pin will pull high. If the
driver is disabled, CD is guaranteed to go high when:
a) A is shorted to B,
b) A and B are open (with or without termination) or
c) VTHCD min ≤ A – B ≤ VTHCD max
The last condition occurs if the external driver is loaded
excessively.
In shutdown mode, RO is three-stated and CD is taken high
by the weak internal pull-up. On exiting shutdown, it takes
longer (tCDL(SHDN) = 5s max) for CD to pull low when a
carrier is present.
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