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LTC1338CS Datasheet(PDF) 4 Page - Linear Technology

Part # LTC1338CS
Description  5V Low Power RS232 5-Driver/3-Receiver Transceiver
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Manufacturer  LINER [Linear Technology]
Direct Link  http://www.linear.com
Logo LINER - Linear Technology

LTC1338CS Datasheet(HTML) 4 Page - Linear Technology

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LTC1338
TYPICAL PERFOR A CE CHARACTERISTICS
VCC Supply Current
Driver Leakage in Shutdown
Driver Short-Circuit Current
TEMPERATURE (°C)
–40
20
25
30
20
60
LTC1338 • TPC04
15
10
–20
0
40
80
100
5
0
5 DRIVERS LOADED
RL = 3k
1 DRIVER LOADED
RL = 3k
TEMPERATURE (°C)
–40
0
4
8
10
12
40
20
LTC1338 • TPC06
6
080
14
16
18
–20
60
20
100
ISC
+
ISC
TEMPERATURE (°C)
–40
0
20
50
0
40
60
LTC1338 • TPC05
10
40
30
–20
20
80
100
VOUT = –20V
VOUT = 20V
Receiver Short-Circuit Current
Driver Output Waveforms
Receiver Output Waveforms
TEMPERATURE (°C)
–40
10
30
60
0
40
60
LTC1338 • TPC07
20
50
40
–20
20
80
100
ISC
ISC
+
DRIVER
OUTPUT
RL = 3k
CL = 2500pF
DRIVER
OUTPUT
RL = 3k
INPUT
LTC1338 • TPC08
LTC1338 • TPC09
RECEIVER
OUTPUT
CL = 50pF
INPUT
PI FU CTIO S
VCC: 5V Input Supply Pin. Supply current less than 0.2µA
in the SHUTDOWN mode. This pin should be decoupled
with a 0.1
µF ceramic capacitor.
GND: Ground Pin.
RECEIVER ENABLE: TTL/CMOS Compatible Enable Pin.
Refer to Table 1 for its functional description. This pin can
not float.
DRIVER ENABLE: TTL/CMOS Compatible Enable Pin. Re-
fer to Table 1 for its functional description. This pin can not
float.
V+: Positive Supply Output (RS232 Drivers). V+
≅ 2VCC
1V. This pin requires an external capacitor C = 0.1
µF for
charge storage. The capacitor may be tied to ground or 5V.
With multiple devices, the V + and V pins may be paral-
leled into common capacitors. For large numbers of
devices, increasing the size of the shared common storage
capacitors is recommended to reduce ripple.
V: Negative Supply Output (RS232 Drivers). V
≅ 2VCC
– 1.5V. This pin requires an external capacitor C = 0.1
µFfor
charge storage.
C1+, C1, C2+, C2: Commutating Capacitor Inputs. These
pins require two external capacitors C = 0.1
µF: one from
C1+ to C1, and another from C2+ to C2. To maintain
charge pump efficiency, the capacitor’s effective series
resistance should be less than 20
Ω.


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