SP310A Sipex, SP310A Datasheet - Page 5

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SP310A

Manufacturer Part Number
SP310A
Description
Enhanced RS-232 Line Drivers/Receivers
Manufacturer
Sipex
Datasheet

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Receivers
The receivers convert RS-232 input signals to
inverted TTL signals. Since the input is usually
from a transmission line, where long cable lengths
and system interference can degrade the signal, the
inputs have a typical hysteresis margin of 500mV.
This ensures that the receiver is virtually immune
to noisy transmission lines.
The input thresholds are 0.8V minimum and
2.4V maximum, again well within the 3V
RS-232 requirements. The receiver inputs are also
protected against voltages up to 30V. Should an
input be left unconnected, a 5kOhm pulldown
resistor to ground will commit the output of the
receiver to a high state.
In actual system applications, it is quite possible
for signals to be applied to the receiver inputs
before power is applied to the receiver circuitry.
This occurs, for example, when a PC user attempts
to print, only to realize the printer wasn’t turned on.
In this case an RS-232 signal from the PC will
appear on the receiver input at the printer. When
the printer power is turned on, the receiver will
operate normally. All of these enhanced devices
are fully protected.
Charge Pump
The charge pump section of the these devices
allows the circuit to operate from a single +5V
operating voltages internal to the devices. The
charge pump consists of two sections — 1) a
voltage doubler and 2) a voltage inverter.
Figure 3. Typical Circuits using the SP231A and 232A.
SP231ADS/01
10% power supply by generating the required
R OUT
R OUT
1
2
T IN
T IN
0.1 F
1
2
6.3V
+
1
2
8
7
9
6
C +
C -
SP231A
1
1
400k
400k
Voltage Inverter
+12V to -12V
+5V INPUT
GND
R
R
1
2
V
CC
12
13
T
T
1
2
5k
5k
V+ (+8.5V to +13.2V)
V+
V-
14
11
10
3
4
5
0.1 F
16V
+
R IN
R IN
T OUT
T OUT
1
2
1
2
SP231A Enhanced RS-232 Line Drivers/Receivers
5
As shown in Figure 1, an internal oscillator trig-
gers the charge accumulation and voltage inver-
sion. The voltage doubler momentarily stores a
charge on capacitor C
ground. During the next transition of the oscillator
this charge is boot-strapped to transfer charge to
capacitor C
V
In the inverter section (Figure 2), the voltage
across C
to V
transfer charge to C
One of the significant enhancements over
previous products of this type is that the values of
the capacitors are no longer critical and have been
decreased in size considerably to 0.1 F. Because
the charge pump runs at a much higher frequency,
the 0.1 F capacitors are sufficient to transfer and
sustain charges to the two transmitters.
APPLICATION HINTS
Protection From Shorts to 15V
The driver outputs are protected against shorts
to ground, other driver outputs, and V
If the possibility exists that the outputs could be
inadvertently connected to voltages higher than
protection be provided. For protection against
voltages exceeding 15V, two back-to-back zener
diodes connected from each output to ground will
clamp the outputs to an acceptable voltage level.
15V, then it is recommended that external
cc
to V
+
across C
+
3
.
*The negative terminal of the V+ storage capacitor can be tied
is transferred to C
R OUT
R OUT
to either V
is recommended.
1
2
T IN
T IN
0.1 F
0.1 F
3
1
2
6.3V
16V
. The voltage across C
+
+
CC
2
11
10
12
1
3
4
5
9
or GND. Connecting the capacitor to V
. Boot-strapping of C
C +
C -
C +
C -
SP232A
1
1
2
2
10 F 6.3V
4
400k
400k
Voltage Doubler
Voltage Inverter
to genrate V
+10V to -10V
+5V INPUT
+5V to +10V
GND
1
R
R
+
2
1
equal to V
V
CC
15
© Copyright 2000 Sipex Corporation
16
T
T
1
2
5k
5k
2
forcing a range of 0V
V+
V-
14
13
2
6
7
8
0.1 F 6.3V
+
cc
CC
-
+
.
, referenced to
(+5V)
0.1 F
3
16V
R IN
R IN
T OUT
T OUT
1
2
1
2
is now from
*
2
will then
+
or V
-
.

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