ADG633
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ADG633

CMOS, ±5 V/+5 V/+3 V, Triple SPDT Switch

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Info: : PRODUCTION tooltip
Part Models 4
1ku List Price Starting From $1.16
Features
  • ±2 V to ±6 V dual-supply operation
  • 2 V to 12 V single-supply operation
  • Temperature range: −40°C to +125°C 
  • <0.2 nA leakage currents 
  • 52 Ω on resistance over full signal range 
  • Rail-to-rail switching operation 
  • 16-lead LFCSP and TSSOP packages 
  • Typical power consumption: <0.1 μW 
  • TTL-/CMOS-compatible inputs 
  • Package upgrades to 74HC4053 and MAX4053/MAX4583
Additional Details
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The ADG633 is a low voltage CMOS device comprising three independently selectable single-pole, double-throw (SPDT) switches. The device is fully specified for ±5 V, +5 V, and +3 V supplies. The ADG633 switches are turned on with a logic low (or high) on the appropriate control input. Each switch conducts equally well in both directions when on and has an input signal range that extends to the supplies. An EN input is used to enable or disable the device. When the device is disabled, all channels are switched off.

The ADG633 is designed on an enhanced process that provides lower power dissipation, yet is capable of high switching speeds. Low power consumption and an operating supply range of 2 V to 12 V make the ADG633 ideal for battery-powered, portable instruments. All channels exhibit break-before-make switching action, preventing momentary shorting when switching channels. 

All digital inputs have 0.8 V to 2.4 V logic thresholds, ensuring TTL/CMOS logic compatibility when using single +5 V or dual ±5 V supplies.

The ADG633 is available in a small, 16-lead TSSOP package and a 16-lead, 4 mm × 4 mm LFCSP package.

Product Highlights

  1. Single- and dual-supply operation. The ADG633 offers high performance and is fully specified and guaranteed with ±5 V, +5 V, and +3 V supply rails.
  2. Temperature range: −40°C to +125°C.
  3. Guaranteed break-before-make switching action.
  4. Low power consumption, typically <0.1 μW.
  5. Small, 16-lead TSSOP and 16-lead, 4 mm × 4 mm LFCSP packages.

Applications

  • Automatic test equipment
  • Data acquisition systems
  • Battery-powered systems
  • Communications systems
  • Audio and video signal routing
  • Relay replacement
  • Sample-and-hold systems
  • Industrial control systems
Part Models 4
1ku List Price Starting From $1.16

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Documentation

Part Model Pin/Package Drawing Documentation CAD Symbols, Footprints, and 3D Models
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ADG633YCPZ-REEL7
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ADG633YRUZ
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Product Lifecycle

PCN

Feb 3, 2009

- 08_0001

Qualification of 8" 3um BiCMOS wafer fab process at Analog Devices, Limerick, Ireland.

ADG633YCPZ

PRODUCTION

ADG633YCPZ-REEL7

PRODUCTION

ADG633YRUZ

PRODUCTION

ADG633YRUZ-REEL7

PRODUCTION

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Feb 3, 2009

- 08_0001

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Qualification of 8" 3um BiCMOS wafer fab process at Analog Devices, Limerick, Ireland.

ADG633YCPZ

PRODUCTION

ADG633YCPZ-REEL7

PRODUCTION

ADG633YRUZ

PRODUCTION

ADG633YRUZ-REEL7

PRODUCTION

Software & Part Ecosystem

Evaluation Kits 2

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EVAL-16LFCSP

Evaluation Board for the 16-Lead LFCSP Devices in the Switches and Multiplexers Portfolio

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EVAL-16LFCSP

Evaluation Board for the 16-Lead LFCSP Devices in the Switches and Multiplexers Portfolio

Evaluation Board for the 16-Lead LFCSP Devices in the Switches and Multiplexers Portfolio

Features and Benefits

  • 16-lead, 4 mm × 4 mm LFCSP evaluation board
  • Easily changeable clamshell socket for the main device
  • Gold pin connectors for the addition of passive components
  • SMB connectors for the input and output of signals
  • Additional space on board for prototyping

Product Detail

The EVAL-16LFCSPEBZ enables easy evaluation of the 16-lead lead frame chip scale package (LFCSP) devices in the Switches and Multiplexers Portfolio that are purchased separately. The EVAL-16LFCSPEBZ is supplied with a clamshell socket to secure a 16-lead LFCSP device to the evaluation board without the need for soldering. In addition, there are three sets of gold pin connectors in each trace, for board flexibility and reusability for multiple evaluations.

Figure 1 in the user guide shows the EVAL-16LFCSPEBZ. A 16-lead LFCSP device can be inserted into the socket in the center of the evaluation board. Each device pin has a corresponding three-pin header link, from K1 to K16. This can either be connected to an external signal source by removing the corresponding link or use the link to choose between VDD or GND. A wire screw terminal, J5, supplies the VDD and GND. The Subminiature Version B (SMB) connectors on the EVAL-16LFCSPEBZ allow additional external signals to be supplied to the device. In addition, there is a perfboard space and two 16-lead LFCSP pads (3 mm x 3 mm and 2.1 mm x 2.1 mm) available on top of the EVAL-16LFCSPEBZ for prototyping.

The full specifications of the device under test (DUT) are available in the corresponding product data sheet, which must be consulted with the EVAL-16LFCSPEBZ user guide when using the EVAL-16LFCSPEBZ.

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EVAL-16TSSOP

Evaluation Board for 16 lead TSSOP Devices in the Switch/Mux Portfolio

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EVAL-16TSSOP

Evaluation Board for 16 lead TSSOP Devices in the Switch/Mux Portfolio

Evaluation Board for 16 lead TSSOP Devices in the Switch/Mux Portfolio

Features and Benefits

  • 16 lead TSSOP evaluation board
  • Clamp to allow the main device to be changed easily
  • Gold pin connectors to allow the addition of passive components
  • SMB connectors for the input/output of signals
  • Additional space on board to allow for prototyping

Product Detail

The EVAL-16TSSOPEBZ evaluation board evaluates 16-lead TSSOP devices in the Switches and Multiplexers Portfolio that are purchased separately. A clamp is supplied with the EVAL-16TSSOPEBZ to secure a 16-lead TSSOP device to the evaluation board without the need for soldering, making the board reusable for multiple devices.

A 16-lead TSSOP device can be clamped or soldered to the center of the evaluation board. Each pin of the device has a corresponding link from K1 to K16 that can be set to either VDD or GND. A wire screw terminal supplies VDD and GND. SMB connectors on the board allow additional external signals to be supplied to the device. In addition, there is space available at the top of the board for prototyping.

Full specifications of the device under test (DUT) are available in the corresponding product data sheet, which should be consulted in conjunction with this user guide when using the evaluation board.

Tools & Simulations 1

LTspice® is a powerful, fast and free simulation software, schematic capture and waveform viewer with enhancements and models for improving the simulation of analog circuits.

To launch ready-to-run LTspice demonstration circuits for this part:

Step 1: Download and install LTspice on your computer.

Step 2: Click on the link in the section below to download a demonstration circuit.

Step 3: If LTspice does not automatically open after clicking the link below, you can instead run the simulation by right clicking on the link and selecting “Save Target As.” After saving the file to your computer, start LTspice and open the demonstration circuit by selecting ‘Open’ from the ‘File’ menu.

Reference Designs 2

Dual-Channel Colorimeter

Dual-Channel Colorimeter with Programmable Gain Transimpedance Amplifiers and Synchronous Detectors

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CN0312

Dual-Channel Colorimeter with Programmable Gain Transimpedance Amplifiers and Synchronous Detectors

CN0312

Circuits from the lab

tooltip Info:Circuits from the lab
Dual-Channel Colorimeter with Programmable Gain Transimpedance Amplifiers and Synchronous Detectors

Features and Benefits

  • Dual channel RGB colorimeter
  • High sensitivity low noise transimpedance amplifier
  • Programmable gain TIA
View Detailed Reference Design external link
Dual-Channel Colorimeter with Programmable Gain Transimpedance Amplifiers and Lock-In Amplifiers

Dual-Channel Colorimeter with Programmable Gain Transimpedance Amplifiers and Digital Synchronous Detection

zoomopens a dialog

CN0363

Dual-Channel Colorimeter with Programmable Gain Transimpedance Amplifiers and Digital Synchronous Detection

CN0363

Circuits from the lab

tooltip Info:Circuits from the lab
Dual-Channel Colorimeter with Programmable Gain Transimpedance Amplifiers and Digital Synchronous Detection

Features and Benefits

  • Dual channel RGB colorimeter 
  • High sensitivity low noise transimpedance amplifier 
  • Programmable gain TIA 
  • Digital synchronous detection
View Detailed Reference Design external link

Design & Integration Tools

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