ADG453 LC2MOS 5Ω RON SPST Switches
The ADG453 is a monolithic CMOS device comprising four independently selectable switches. It is designed on an enhanced LC2MOS process which provides low power dissipation yet gives high switching speed and low on resistance.
The ADG453 has two switches that are turned on with a logic high on the appropriate control inputs 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. 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 and Benefits- Low On-Resistance (4 O)
- On-Resistance Flatness 0.2 O
- 44 V Supply Maximum Ratings
- ± 15 V Analog Signal Range
- Fully Specified @ ±5V, +12V, ±15V
- Ultralow Power Dissipation (18 µW)
- ESD 2 kV
- Continuous Current 100mA
- Fast Switching Times
ton < 70 ns
toff < 60 ns - TTL/CMOS-Compatible Inputs
- Pin Compatible Upgrade for ADG412
and ADG432 - 16-Lead DIP, SOIC and Cerdip Packages
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Data Sheets
Application Notes
User Guides
Order Information
Part Number | Package | Packing Qty | Temp Range | Price 100-499 | Price 1000+ | RoHS |
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ADG453BR Production | 16 ld SOIC | OTH 48 | -40 to 85C | 3.07 | 2.4 | N |
ADG453BR-REEL7 Production | 16 ld SOIC | REEL 1000 | -40 to 85C | 0 | 2.4 | N |
ADG453BRUZ Production | 16 ld TSSOP | OTH 96 | -40 to 85C | 2.53 | 1.97 | Y |
ADG453BRUZ-REEL Production | 16 ld TSSOP | REEL 2500 | -40 to 85C | 0 | 1.97 | Y |
ADG453BRUZ-REEL7 Production | 16 ld TSSOP | REEL 1000 | -40 to 85C | 0 | 1.97 | Y |
ADG453BRZ Production | 16 ld SOIC | OTH 48 | -40 to 85C | 2.53 | 1.97 | Y |
ADG453BRZ-REEL Production | 16 ld SOIC | REEL 2500 | -40 to 85C | 0 | 1.97 | Y |
ADG453BRZ-REEL7 Production | 16 ld SOIC | REEL 1000 | -40 to 85C | 0 | 1.97 | Y |
Evaluation Boards
Part Number | Description | Price | RoHS |
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EVAL-16TSSOPEBZ | Evaluation Board | 99 | Y |
Reference Materials