ADG411 – LC2MOS Precision Quad SPST Switches IC SMD
The ADG411, ADG412, and ADG413 are monolithic CMOS devices comprising four independently selectable switches. They are designed on an enhanced LC2MOS process which provides low power dissipation yet gives high switching speed and low on resistance.
The on resistance profile is very flat over the full analog input range ensuring excellent linearity and low distortion when switching audio signals. Fast switching speed coupled with high signal bandwidth also make the parts suitable for video signal switching. CMOS construction ensures ultralow power dissipation, making the parts ideally suited for portable and battery-powered instruments.
The ADG411, ADG412, and ADG413 contain four independent SPST switches. The ADG411 and ADG412 differ only in that the digital control logic is inverted. The ADG411 switches are turned on with a logic low on the appropriate control input, while a logic high is required for the ADG412. The ADG413 has two switches with digital control logic similar to that of the ADG411 while the logic is inverted on the other two switches.
Each switch conducts equally well in both directions when on, and each has an input signal range that extends to the supplies. In the off condition, signal levels up to the supplies are blocked. All switches exhibit break-before-make switching action for use in multiplexer applications. Inherent in the design is low charge injection for minimum transients when switching the digital inputs.
Features/Specs:
- 44 V supply maximum ratings
- ±15 V analog signal range
- Low on resistance (< 35 Ω)
- Ultralow power dissipation (35 μW)
- Fast switching times
tON < 175 ns tOFF < 145 ns - TTL-/CMOS-compatible
- Max VDD to VSS: 44V
- Max VDD to GND: −0.3 V to +25 V
- Max VSS to GND: +0.3 V to −25 V
- Max VL to GND: −0.3 V to VDD + 0.3 V
Application:
- Audio and video switching
- Automatic test equipment
- Precision data acquisition
- Battery-powered systems
- Sample-and-hold systems
- Communication systems
Datasheet: ADG411_DS
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