
Allicdata Part #: | MAX307EWI+T-ND |
Manufacturer Part#: |
MAX307EWI+T |
Price: | $ 8.50 |
Product Category: | Integrated Circuits (ICs) |
Manufacturer: | Maxim Integrated |
Short Description: | IC MULTIPLEXER DUAL 8X1 28SOIC |
More Detail: | 2 Circuit IC Switch 8:1 100 Ohm 28-SOIC |
DataSheet: | ![]() |
Quantity: | 1000 |
1000 +: | $ 7.72219 |
Switch Time (Ton, Toff) (Max): | 200ns, 150ns |
Base Part Number: | MAX307 |
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, 65pF |
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: | 2 |
Multiplexer/Demultiplexer Circuit: | 8:1 |
Switch Circuit: | -- |
Part Status: | Active |
Packaging: | Tape & Reel (TR) |
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The MAX307EWI+T is a high performance integrated switch multiplexer with typical break-before-make switching. It is a great fit for multiplexer applications, including low voltage and low power requirements. As a part of the MAX307EWI family, this part is specifically higher in performance than its sibling, the MAX307E. The MAX307EWI+T produces advanced switching performance with its low Vσ, low Vτ, low Cσ and low Cτ, making it ideal for mixed-signal applications such as communication interface and general purpose multiplexer designs.
As a monolithic, Analog Switch for the 1-of-2 multiplexer function, MAX307EWI+T has a reduced pin count, making it a great fit for space-constrained and portable/miniature applications. It features an individual control pin that directly controls two on-chip switches: one switch is signed and the other is operable to the analogue signal path. The device also supports the use of short kicker pulses on the control pin to reduce the charge injection when switching.
MAX307EWI+T has two separate individual switches that make use of the flow-through architecture. This reduces the on-resistance variation over the full temperature range and improves the switching time. It is able to support both logic and power switches, making it a great device for any application that involves both high-speed and low-power switching. The low current draw of this device makes it great for battery powered applications.
The MAX307EWI+T is an ideal choice for switching applications with both low power and high-speed switching. It offers low total harmonic distortion, low off-isolation and high bandwidth making it a great choice for communication interface applications, audio and video designs, as well as general purpose multiplexer applications. It allows for wide range of signal types and input and output configurations, ensuring that this device can be used in a variety of applications. The low supply voltage makes it ideal for small, low-power applications.
In terms of its working principle, the MAX307EWI+T can be easily understood by first introducing the concept of an Analogue Multiplexer. Analogue multiplexers are devices that enable the user to switch between multiple input signals and connect a single output signal. As its name suggests, an analogue multiplexer operates in the analogue domain, not the digital domain. It works by selecting one of the available multiplexer inputs, depending on the voltage applied to the control pin, to connect it to the output. The on-chip switches in the device then provide a direct connection between the selected input and the output, allowing for rapid switching with minimal signal distortion.
The MAX307EWI+T is a versatile Analogue Multiplexer that enables rapid switching between multiple input signals. It features a fast switching time, low off-isolation and wide bandwidth making it suitable for high-speed analogue switches, low power multiplexers, and communication interface designs. This makes it an ideal choice for applications such as industrial and automotive audio/video, sensor, and communications.
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