| Allicdata Part #: | DG406EWI-ND |
| Manufacturer Part#: |
DG406EWI |
| Price: | $ 0.00 |
| Product Category: | Integrated Circuits (ICs) |
| Manufacturer: | Maxim Integrated |
| Short Description: | IC MULTIPLEXER 16X1 28SOIC |
| More Detail: | 1 Circuit IC Switch 16:1 100 Ohm 28-SOIC |
| DataSheet: | DG406EWI Datasheet/PDF |
| Quantity: | 1000 |
| 1 +: | 0.00000 |
| Switch Time (Ton, Toff) (Max): | 200ns, 150ns |
| Base Part Number: | DG406 |
| Supplier Device Package: | 28-SOIC |
| Package / Case: | 28-SOIC (0.295", 7.50mm Width) |
| Operating Temperature: | -40°C ~ 85°C (TA) |
| Crosstalk: | -92dB @ 100kHz |
| Current - Leakage (IS(off)) (Max): | 500pA |
| Channel Capacitance (CS(off), CD(off)): | 8pF, 130pF |
| Charge Injection: | 2pC |
| -3db Bandwidth: | -- |
| Series: | -- |
| Voltage - Supply, Dual (V±): | ±4.5 V ~ 20 V |
| Voltage - Supply, Single (V+): | 5 V ~ 30 V |
| Channel-to-Channel Matching (ΔRon): | 1.5 Ohm |
| On-State Resistance (Max): | 100 Ohm |
| Number of Circuits: | 1 |
| Multiplexer/Demultiplexer Circuit: | 16:1 |
| Switch Circuit: | -- |
| Part Status: | Obsolete |
| Packaging: | Tube |
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The DG406EWI is a high performance analog switch, demultiplexer, and multiplexer integrated circuit (IC) suitable for a wide range of applications. It is a part of the extensive range of differential and low-power analog switches from Maxim Integrated. The DG406EWI analog switch supports both unipolar (single supply) and differential (split-supply) modes of operation and is capable of driving loads up to ±10 ma. It is a low-power device with a maximum operating temperature of +85°C.
The DG406EWI is available in both surface mount and leaded packages providing flexibility for application in a wide range of applications. The part can be used in automotive, military, medical, and industrial applications due to its robustness and support of various operating temperatures. The device can also be used in audio and data routing applications due to its low-distortion performance and low power consumption characteristics.
The DG406EWI has two input ports and four output ports providing 4:2 multiplexing and demultiplexing in one integrated circuit (IC). The device uses the charge pump technique to switch between the ports, which eliminates the need for external power supplies or inductors. The device also features output stages optimized for short on and off times, providing fast switching and coding speed. The DG406EWI also includes integrated pull-down resistors which reduce switching errors and reduce system noise.
The DG406EWI analog switch has a maximum on-state resistance of 1.5Ω and a maximum off-state resistance of 5Ω. It also has two input ports which are interfaced through high-impedance buffers, allowing for easy integration into complex analog and digital systems. The device can be operated in a high-voltage (Versa Mode), low-voltage (Quiet Mode), or disabled mode. The device is designed to reject interference in the presence of electro-magnetic fields and supports ESD protection.
Despite its small size and low power consumption, the DG406EWI analog switch is capable of operating accurately in harsh environments and with low noise levels. Its robust design is even suitable for military and automotive applications. This makes it ideal for driving loads up to ±10ma with minimal added complexity and power consumption. Its dual-mode operation also provides flexible operation in both unipolar (single supply) and differential (split-supply) environments, allowing for versatile implementation.
In summary, the DG406EWI is a small, low-power analog switch, demultiplexer, and multiplexer integrated circuit (IC) suited for several applications including automotive, military, medical, and industrial. Its robust design and fast switching capabilities make it ideal for audio and data applications, and its dual-mode operation allows for flexible implementation in several environments. The device is a useful resource when needing to drive loads up to ±10ma with minimal added complexity and power consumption.
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DG406EWI Datasheet/PDF