参数资料
型号: HIN239
厂商: Integrated Silicon Solution, Inc.
元件分类: RS-232
英文描述: 5V High-Speed RS-232 Transceivers with 0.1uF Capacitors
中文描述: 5V的高速RS - 232收发器与0.1uF电容
文件页数: 8/19页
文件大小: 617K
代理商: HIN239
8
Detailed Description
The HIN232 thru HIN241 family of RS-232
transmitters/receivers are powered by a single +5V power
supply (except HIN239), feature low power consumption, and
meet all ElA RS-232C and V.28 specifications. The circuit is
divided into three sections: The charge pump, transmitter, and
receiver.
Charge Pump
An equivalent circuit of the charge pump is illustrated in Figure
1. The charge pump contains two sections: the voltage
doubler and the voltage inverter. Each section is driven by a
two phase, internally generated clock to generate +10V and
-10V. The nominal clock frequency is 16kHz. During phase
one of the clock, capacitor C1 is charged to V
CC
. During
phase two, the voltage on C1 is added to V
CC
, producing a
signal across C3 equal to twice V
CC
. During phase one, C2 is
also charged to 2V
CC
, and then during phase two, it is
inverted with respect to ground to produce a signal across C4
equal to -2V
CC
. The charge pump accepts input voltages up
to 5.5V. The output impedance of the voltage doubler section
(V+) is approximately 200
, and the output impedance of the
voltage inverter section (V-) is approximately 450
. A typical
application uses 1
μ
F capacitors for C1-C4, however, the value
is not critical. Increasing the values of C1 and C2 will lower the
output impedance of the voltage doubler and inverter,
increasing the values of the reservoir capacitors, C3 and C4,
lowers the ripple on the V+ and V- supplies.
During shutdown mode (HIN236, 240 and 241),
SHUTDOWN control line set to logic “1”, the charge pump is
turned off, V+ is pulled down to V
CC
, V- is pulled up to GND,
and the supply current is reduced to less than 10
μ
A. The
transmitter outputs are disabled and the receiver outputs are
placed in the high impedance state.
Transmitters
The transmitters are TTL/CMOS compatible inverters which
translate the inputs to RS-232 outputs. The input logic threshold
is about 26% of V
CC
, or 1.3V for V
CC
= 5V. A logic 1 at the
input results in a voltage of between -5V and V- at the output,
and a logic 0 results in a voltage between +5V and (V+ -0.6V).
Each transmitter input has an internal 400k
pullup resistor so
any unused input can be left unconnected and its output
remains in its low state. The output voltage swing meets the
RS-232C specifications of
±
5V minimum with the worst case
conditions of: all transmitters driving 3k
minimum load
Output Enable Time, t
EN
HIN236, 239, 240, 241
-
400
-
ns
Output Disable Time, t
DIS
HIN236, 239, 240, 241
-
250
-
ns
Propagation Delay, t
PD
RS-232 to TTL
-
0.5
-
μ
s
Instantaneous Slew Rate SR
C
L
= 10pF, R
L
= 3k
, T
A
= 25
o
C (Note 4)
-
-
30
V/
μ
s
Transition Region Slew Rate, SR
T
R
L
= 3k
, C
L
= 2500pF Measured from +3V to -3V or
-3V to +3V, 1 Transmitter Switching
-
3
-
V/
μ
s
TRANSMITTER OUTPUTS
Output Voltage Swing, T
OUT
Transmitter Outputs, 3k
to Ground
±
5
±
9
±
10
V
Output Resistance, R
OUT
V
CC
= V+ = V- = 0V, V
OUT
=
±
2V
300
-
-
RS-232 Output Short Circuit Current, I
SC
T
OUT
shorted to GND
-
±
10
-
mA
NOTE:
4.
Guaranteed by design.
Electrical Specifications
Test Conditions: V
CC
= +5V
±
10%, T
A
= Operating Temperature Range
(Continued)
PARAMETER
TEST CONDITIONS
MIN
TYP
MAX
UNITS
+
-C1
+
-C3
+
-C2
+
-C4
S1
S2
S5
S6
S3
S4
S7
S8
V
CC
GND
RC
OSCILLATOR
V
CC
GND
V+ = 2V
CC
GND
V- = -(V+)
C1
+
C1-
C2
-
C2
+
VOLTAGE INVERTER
VOLTAGE DOUBLER
FIGURE 1. CHARGE PUMP
HIN232 thru HIN241
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