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DS2480 Datasheet(PDF) 21 Page - Dallas Semiconductor

Part # DS2480
Description  Serial 1.Wire Line Driver
PDF  26 Pages
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Manufacturer  DALLAS [Dallas Semiconductor]
Direct Link  https://www.maximintegrated.com/en.html
Logo DALLAS - Dallas Semiconductor

DS2480 Datasheet(HTML) 21 Page - Dallas Semiconductor

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DS2480
042498 21/26
HARDWARE APPLICATION EXAMPLES
This section discusses five typical application scenarios
of the DS2480. When directly designed into a new prod-
uct, the device can be connected as shown in Figure
10a.
The circuit becomes more complex if a 1–Wire bus is to
be interfaced to a port that provides and expects
inverted signals, but does not necessarily meet the
RS232C (
± 12V) standard (Figure 10b).
UART DIRECT Figure 10a
START
1–WIRE BUS
RETURN
VDD
VPP
RXD
TXD
POL
1–W
GND
UART
OR
µC
SIN (RXD)
SOUT (TXD)
12V
(5V)
STOP
0
1
LM
5V
DS2480
+/(–) 5V RS232 Figure 10b
START
1–WIRE BUS
RETURN
VDD
VPP
RXD
TXD
POL
1–W
GND
UART
OR
µC
5V
(5V)
STOP
0
1
LM
DTR
VOLTAGE
REGULATOR
DS2480
12V
RTS
RXD
TXD
GND
SEE TEXT
POWER
STEALING
DRIVER/
LEVEL SHIFTER
The signals DTR and RTS provide the power to operate
the DS2480. The resistor in the TXD line and the
Schottky diode limit the negative voltage at the TXD pin
of the DS2480 to 0.3V maximum. The resistor is typi-
cally 4.7 k
Ω. If the inverting driver is current–limited to 1
mA the resistor is not required.
From the DS2480’s perspective, this circuit will work
with inverted signals of
± 5V as well as 0 to 5V. Depend-
ing on the voltage levels the host expects, it may be nec-
essary to generate a negative voltage on the RXD line.
Figure 10c shows how this can be accomplished for a
true RS232C system.



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