ADG836L
0.5 Ω CMOS 1.65 V to 3.6 V, Dual SPDT/2:1 MUX w/Guaranteed Leakage Performance
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- 0.5 Ω typical on resistance
- 0.8 Ω maximum on resistance at 125°C
- 1.65 V to 3.6 V operation
- Operating temperature range: −40°C to +125°C
- Guaranteed leakage specifications up to 125°C
- High current carrying capability: 300 mA continuous
- Rail-to-rail switching operation
- Fast switching times: <20 ns
- Typical power consumption: <0.1 µW
The ADG836L is a low voltage CMOS device containing two independently selectable single-pole, double-throw (SPDT) switches. This device offers ultralow on resistance of less than 0.8 Ω over the full temperature range. The ADG836L is fully specified for 3.3 V, 2.5 V, and 1.8 V supply operation.
Each switch conducts equally well in both directions when on and has an input signal range that extends to the supplies. The ADG836L exhibits break-before-make switching action.
The ADG836L is available in a 10-lead package.
Product Highlights
- Less than 0.8 Ω over full temperature range of −40°C to +125°C.
- Single 1.65 V to 3.6 V operation.
- Compatible with 1.8 V CMOS logic.
- High current handling capability (300 mA continuous current at 3.3 V).
- Low THD + N (0.02% typical).
- Small 10-lead MSOP package.
Applications
- Cellular phones
- PDAs
- MP3 players
- Power routing
- Battery-powered systems
- PCMCIA cards
- Modems
- Audio and video signal routing
- Communication systems
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ADG836L
Documentation
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User Guide
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Documentation
Product Selection Guide 1
ADI has always placed the highest emphasis on delivering products that meet the maximum levels of quality and reliability. We achieve this by incorporating quality and reliability checks in every scope of product and process design, and in the manufacturing process as well. "Zero defects" for shipped products is always our goal. View our quality and reliability program and certifications for more information.
Part Model | Pin/Package Drawing | Documentation | CAD Symbols, Footprints, and 3D Models |
---|---|---|---|
ADG836LYRMZ | 10-Lead MSOP |
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- ADG836LYRMZ
- Pin/Package Drawing
- 10-Lead MSOP
- Documentation
- HTML Material Declaration
- HTML Reliablity Data
- CAD Symbols, Footprints, and 3D Models
- Ultra Librarian
- SamacSys
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Part Models
Product Lifecycle
PCN
Mar 22, 2021
- 21_0001
Addition of Amkor Philippines as an Alternate Site for Singulated MSOP and MSOP_EP
ADG836LYRMZ
PRODUCTION
Aug 19, 2020
- 20_0174
ADG811, ADG812, ADG836, ADG836L, ADG804 Ron specification changes
ADG836LYRMZ
PRODUCTION
Oct 30, 2017
- 15_0176
Assembly Transfer of Select 8/10L MSOP Products to Amkor Philippines
Nov 2, 2015
- 15_0163
ADG836L Wafer Fabrication Change from TSMC Fab 7A to TSMC Fab 11
ADG836LYRMZ
PRODUCTION
May 15, 2012
- 10_0006
Halogen Free Material Change for mini SOIC Products
ADG836LYRMZ
PRODUCTION
Filter by Model
Part Models
Product Lifecycle
PCN
Mar 22, 2021
- 21_0001
Addition of Amkor Philippines as an Alternate Site for Singulated MSOP and MSOP_EP
ADG836LYRMZ
PRODUCTION
Aug 19, 2020
- 20_0174
ADG811, ADG812, ADG836, ADG836L, ADG804 Ron specification changes
ADG836LYRMZ
PRODUCTION
Oct 30, 2017
- 15_0176
Assembly Transfer of Select 8/10L MSOP Products to Amkor Philippines
Nov 2, 2015
- 15_0163
ADG836L Wafer Fabrication Change from TSMC Fab 7A to TSMC Fab 11
May 15, 2012
- 10_0006
Halogen Free Material Change for mini SOIC Products
ADG836LYRMZ
PRODUCTION
Software & Part Ecosystem
Evaluation Kits 1
EVAL-10MSOP
Evaluation Board for 10-Lead MSOP Devices in the Switches and Multiplexers Portfolio
Product Detail
The EVAL-10MSOPEBZ evaluation board evaluates 10-lead MSOP devices in the Switches and Multiplexers Portfolio that are purchased separately. A clamp is supplied with the EVAL-10MSOPEBZ to secure a 10-lead MSOP device to the evaluation board without the need for soldering, making the board reusable for multiple devices.
A 10-lead MSOP 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 K10 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.