ADM232LANZ Analog Devices Inc, ADM232LANZ Datasheet - Page 12

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ADM232LANZ

Manufacturer Part Number
ADM232LANZ
Description
Dual Transmitter/Receiver RS-232 16-Pin PDIP
Manufacturer
Analog Devices Inc
Type
Transceiverr
Datasheet

Specifications of ADM232LANZ

Package
16PDIP
Data Transmission Topology
Point-to-Point
Interface Standards
EIA-232-E|RS-232|V.28
Data Rate
0.12 Mbps
Function
Line Transmitter/Receiver
Number Of Transmitters
2
Transmitter Signal Type
Single-Ended
Transmitter Communication Type
RS-232
Typical Single Supply Voltage
5 V
Number Of Drivers/receivers
2/2
Protocol
RS232
Voltage - Supply
4.5 V ~ 5.5 V
Mounting Type
Through Hole
Package / Case
16-DIP (0.300", 7.62mm)
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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ADM231L–ADM234L/ADM236L–ADM241L
GENERAL INFORMATION
The ADM231L–ADM234L/ADM236L–ADM241L family of
RS-232 drivers/receivers is designed to solve interface problems
by meeting the EIA-232-E specifications while using a single
digital 5 V supply. The EIA-232-E standard requires that trans-
mitters deliver ±5 V minimum on the transmission channel
and that receivers can accept signal levels down to ±3 V. The
ADM231L–ADM234L/ADM236L–ADM241L meet these
requirements by integrating step-up voltage converters and
level-shifting transmitters and receivers onto the same chip.
CMOS technology is used to keep the power dissipation to
an absolute minimum. A comprehensive range of transmitter/
receiver combinations is available for most communications needs.
The ADM236L and ADM241L are particularly useful in
battery-powered systems because they feature a low power
shutdown mode that reduces power dissipation to less than 5 µW.
The ADM233L is designed for applications in which space
saving is important because the charge pump capacitors are
molded into the package. The ADM231L and ADM239L
include only a negative charge pump converter and are intended
for applications in which +12 V is available.
To facilitate sharing a common line or for connection to a
microprocessor data bus, the ADM236L, ADM239L, and
ADM241L feature an enable (EN, EN ) function. When the
receivers are disabled, their outputs are placed in a high
impedance state.
2
1
1
CH1 5.00V
Figure 26. Charge Pump V+ and V− Exiting Shutdown
CH1
CH3
Figure 27. Transmitter Output Loaded Slew Rate
5.00V
5.00V
CH2
T
B W
T
T
CH2 5.00V M50.0 µ s CH1
5.00V M1.00 µ s CH1
V+, V– EXITING SD
T
T
800mV
3.1V
Tx INPUT
Tx OUTPUT
SD
V+
V–
Rev. C | Page 12 of 20
CIRCUIT DESCRIPTION
The internal circuitry in the ADM236L to ADM241L consists of
three main sections: a charge pump voltage converter, RS-232-to-
TTL/CMOS receivers, and TTL/CMOS-to-RS-232 transmitters.
Charge Pump DC-to-DC Voltage Converter
The charge pump voltage converter consists of an oscillator and
a switching matrix. The converter generates a 10 V supply from
the 5 V input. This is done in two stages using a switched
capacitor technique, as illustrated in Figure 29 and Figure 30.
First, the 5 V input supply is doubled to 10 V, using capacitor
C1 as the charge storage element. The 10 V level is then
inverted to generate –10 V, using C2 as the storage element.
Capacitors C3 and C4 are used to reduce the output ripple.
Their values are not critical and can be reduced if higher levels
of ripple are acceptable. The charge pump capacitors, C1 and C2,
can be reduced at the expense of higher output impedance on the
V+ and V– supplies, and the V+ and V– supplies can be used to
power external circuitry if the current requirements are small.
DOUBLER
VOLTAGE
OSCILLATOR
OSCILLATOR
GND
V
INTERNAL
INTERNAL
CC
FROM
1
2
GND
CH1 5.00V
V
+
Figure 28. Transmitter Output Unloaded Slew Rate
S1
S2
S1
S2
Figure 29. Charge Pump Voltage Doubler
Figure 30. Charge Pump Voltage Inverter
CH2
C1
C2
5.00V M1.00 µ s CH1
+
S3
S4
S3
S4
T
T
C3
C4
800mV
+
Tx INPUT
Tx OUTPUT
GND
V– = –(V+)
V+ = 2V
V
CC
CC

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