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MOV-10D201K Datasheet(PDF) 11 Page - Texas Instruments

Part # MOV-10D201K
Description  Bus-Polarity Correcting RS-485 Transceiver for E-Meters
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Manufacturer  TI1 [Texas Instruments]
Direct Link  http://www.ti.com
Logo TI1 - Texas Instruments

MOV-10D201K Datasheet(HTML) 11 Page - Texas Instruments

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Vcc
GND
B
A
D
DE
R
RE
a) Independent driver and
receiver enable signals
b) Combined enable signals for
use as directional control pin
c) Receiver always on
R
D
Vcc
GND
B
A
D
DE
R
RE
R
D
Vcc
GND
B
A
D
DE
R
RE
R
D
SN888C
www.ti.com
SLLSEI4 – SEPTEMBER 2013
APPLICATION INFORMATION
Device Configuration
The SN888C device is a half-duplex RS-485 transceiver operating from a single 5-V ±10% supply. The driver
and receiver enable pins that allow for the configuration of different operating modes.
Figure 13. Transceiver Configurations
Using independent enable lines provides the most flexible control as the lines allow for the driver and the
receiver to be turned on and off individually. While this configuration requires two control lines, it allows for
selective listening to the bus traffic, whether the driver is transmitting data or not. Only this configuration allows
the SN888C device to enter low-power standby mode because it allows both the driver and receiver to be
disabled simultaneously.
Combining the enable signals simplifies the interface to the controller by forming a single direction-control signal.
Thus, when the direction-control line is high, the transceiver is configured as a driver, while when low, the device
operates as a receiver.
Tying the receiver enable to ground and controlling only the driver-enable input also uses only one control line. In
this configuration, a node not only receives the data on the bus sent by other nodes, but also receives the data
sent on the bus, enabling the node to verify the correct data has been transmitted.
Bus Design
An RS-485 bus consists of multiple transceivers connected in parallel to a bus cable. To eliminate line
reflections, each cable end is terminated with a termination resistor, RT, whose value matches the characteristic
impedance, Z0, of the cable. This method, known as parallel termination, allows for relatively high data rates over
long cable length.
Common cables used are unshielded twisted pair (UTP), such as low-cost CAT-5 cable with Z0 = 100
Ω, and
RS-485 cable with Z0 = 120
Ω. Typical cable sizes are AWG 22 and AWG 24.
The maximum bus length is typically given as 4000 ft or 1200 m, and represents the length of an AWG 24 cable
whose cable resistance approaches the value of the termination resistance, thus reducing the bus signal by half
or 6 dB. Actual maximum usable cable length depends on the signaling rate, cable characteristics, and
environmental conditions.
Table 1. VID With a Failsafe Network and Bus Termination
VCC
RL Differential
RFS Pull-Up
RFS Pull-Down
VID
Termination
560
Ω
560
Ω
230 mV
1 K
Ω
1 K
Ω
131 mV
5 V
54
Ω
4.7 K
Ω
4.7 K
Ω
29 mV
10 K
Ω
10 K
Ω
13 mV
An external failsafe-resistor network must be used to ensure failsafe operation during an idle bus state. When the
bus is not actively driven, the differential receiver inputs could float allowing the receiver output to assume a
random output. A proper failsafe network forces the receiver inputs to exceed the VIT threshold, thus forcing the
SN888C receiver output into the failsafe (high) state. Table 1 shows the differential input voltage (VID) for various
failsafe networks with a 54-
Ω differential bus termination.
Copyright © 2013, Texas Instruments Incorporated
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Product Folder Links: SN888C


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