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STG3684_05 PDF预览

STG3684_05

更新时间: 2024-11-29 06:14:39
品牌 Logo 应用领域
意法半导体 - STMICROELECTRONICS 开关光电二极管
页数 文件大小 规格书
11页 559K
描述
LOW VOLTAGE 0.5Ω MAX DUAL SPDT SWITCH WITH BREAK BEFORE MAKE FEATURE

STG3684_05 数据手册

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STG3684  
LOW VOLTAGE 0.5MAX DUAL SPDT SWITCH  
WITH BREAK BEFORE MAKE FEATURE  
I
HIGH SPEED:  
t
t
= 0.3ns (TYP.) at V = 3.0V  
PD  
PD  
CC  
= 0.4ns (TYP.) at V = 2.3V  
CC  
I
I
ULTRA LOW POWER DISSIPATION:  
= 0.2µA (MAX.) at T = 85°C  
I
CC  
A
LOW "ON" RESISTANCE V = 0V:  
IN  
QFN  
R
R
R
= 0.5(MAX. T = 25°C) at V = 2.7  
ON  
ON  
ON  
A CC  
= 0.8(MAX. T = 25°C) at V = 2.3V  
A
CC  
= 3.0(MAX. T = 25°C) at V = 1.8V  
Table 1: Order Codes  
A
CC  
I
I
WIDE OPERATING VOLTAGE RANGE:  
(OPR) = 1.65V to 4.3V SINGLE SUPPLY  
4.3V TOLERANT AND 1.8V COMPATIBLE  
THRESHOLD ON DIGITAL CONTROL INPUT  
V
PACKAGE  
T & R  
CC  
QFN  
STG3684QTR  
at V = 2.3 to 3.0V  
LATCH-UP PERFORMANCE EXCEEDS  
300mA (JESD 17)  
ESD PERFORM. (ANALOG CHAN. vs GND):  
HBM > 7KV (MIL STD 883 method 3015)  
CC  
the switches. The switches 1 are ON (they are  
connected to common Pts Dn) when the nIN  
input is held high aOFF (high impedance state  
exists between the two ports) when nIN is held  
low; the switches nS2 are ON (they are connected  
to commoPorts Dn) when the nIN input is held  
low ad OFF (high impedance state exists  
between the two ports) when IN is held high.  
ditional key features are fast switching speed,  
Break Before Make Delay Time and Ultra Low  
Power Consumption. All inputs and outputs are  
equipped with protection circuits against static  
discharge, giving them ESD immunity and  
transient excess voltage. It’s available in the  
commercial temperature range in the QFN  
package.  
I
I
DESCRIPTION  
The STG3684 is an high-speed CMOS DUAL  
ANALOG S.P.D.T. (Single Pole Dual Throw)  
SWITCH or DUAL 2:1 Multiplexer/Demultiplexer  
2
Bus Switch fabricated in silicon gate C MOS  
technology. It is designed to operate from 1.65V to  
4.3V, making this device ideal for portable  
applications.  
It offers very low ON-Resistance (<0.5) at  
V
=3.0V. The nIN inputs aprovided to control  
CC  
Figure 1: Pin Conction  
Rev. 4  
1/11  
July 2005  

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