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HIN241CA 参数 Datasheet PDF下载

HIN241CA图片预览
型号: HIN241CA
PDF下载: 下载PDF文件 查看货源
内容描述: + 5V供电的RS - 232发射器/接收器 [+5V Powered RS-232 Transmitters/Receivers]
分类和应用: 驱动器接口集成电路光电二极管
文件页数/大小: 20 页 / 697 K
品牌: ISSI [ INTEGRATED SILICON SOLUTION, INC ]
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HIN232, HIN236, HIN237, HIN238, HIN239, HIN240, HIN241  
Transmitters  
Receivers  
The transmitters are TTL/CMOS compatible inverters which  
translate the inputs to RS-232 outputs. The input logic threshold  
The receiver inputs accept up to ±30V while presenting the  
required 3kto 7kinput impedance even if the power is off  
is about 26% of V , or 1.3V for V  
= 5V. A logic 1 at the  
(V = 0V). The receivers have a typical input threshold of  
CC CC  
CC  
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 400kpullup 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 3kminimum load  
1.3V which is within the ±3V limits, known as the transition  
region, of the RS-232 specifications. The receiver output is  
0V to V . The output will be low whenever the input is  
CC  
greater than 2.4V and high whenever the input is floating or  
driven between +0.8V and -30V. The receivers feature 0.5V  
hysteresis to improve noise rejection. The receiver Enable  
line EN, when set to logic “1”, (HIN236, 239, 240, and 241)  
disables the receiver outputs, placing them in the high  
impedance mode. The receiver outputs are also placed in  
the high impedance state when in shutdown mode.  
impedance, V  
= 4.5V, and maximum allowable operating  
CC  
temperature. The transmitters have an internally limited output  
slew rate which is less than 30V/µs. The outputs are short  
circuit protected and can be shorted to ground indefinitely. The  
powered down output impedance is a minimum of 300with  
V
CC  
±2V applied to the outputs and V  
= 0V.  
CC  
R
XIN  
R
OUT  
-30V < R  
< +30V  
XIN  
GND < V  
< V  
CC  
5kΩ  
ROUT  
V+  
GND  
V
T
CC  
400kΩ  
300Ω  
FIGURE 3. RECEIVER  
XIN  
XIN  
T
OUT  
GND < T  
< V  
CC  
V- < V  
TOUT  
< V+  
V-  
FIGURE 2. TRANSMITTER  
T
IN  
OR  
R
IN  
T
OUT  
OR  
V
OL  
V
OL  
R
OUT  
t
t
PLH  
PHL  
t
t
PHL + PLH  
2
Average Propagation Delay =  
FIGURE 4. PROPAGATION DELAY DEFINITION  
10