DG419BDY Allicdata Electronics
Allicdata Part #:

DG419BDY-ND

Manufacturer Part#:

DG419BDY

Price: $ 0.00
Product Category:

Integrated Circuits (ICs)

Manufacturer: Vishay Siliconix
Short Description: IC ANALOG SWITCH CMOS 8SOIC
More Detail: 1 Circuit IC Switch 2:1 25 Ohm 8-SOIC
DataSheet: DG419BDY datasheetDG419BDY Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Series: --
Packaging: Tube 
Part Status: Obsolete
Switch Circuit: SPDT
Multiplexer/Demultiplexer Circuit: 2:1
Number of Circuits: 1
On-State Resistance (Max): 25 Ohm
Channel-to-Channel Matching (ΔRon): --
Voltage - Supply, Single (V+): 12V
Voltage - Supply, Dual (V±): ±15V
Switch Time (Ton, Toff) (Max): 89ns, 80ns
-3db Bandwidth: --
Charge Injection: 38pC
Channel Capacitance (CS(off), CD(off)): 12pF, 12pF
Current - Leakage (IS(off)) (Max): 250pA
Crosstalk: -88dB @ 1MHz
Operating Temperature: -40°C ~ 85°C (TA)
Package / Case: 8-SOIC (0.154", 3.90mm Width)
Supplier Device Package: 8-SOIC
Description

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DG419BDY is a highly advanced interface device capable of switching, multiplexing, and demultiplexing analog signals. It is a high-speed, low-power single-chip, CMOS solution for analog signal switching. This device utilizes proprietary design techniques that result in low power consumption and excellent noise immunity. The DG419BDY is ideal for applications that require high-precision switching and multiplexing of analog signals.

Most analog switches have a limited bandwidth, which can be a limiting factor when dealing with high-frequency signals, such as those found in video or telecommunication applications. The DG419BDY, however, operates up to 105MHz, reducing the limitation of other analog switches. Furthermore, due to its high switching speed and low charge injection, the DG419BDY is capable of handling very large signals without introducing significant distortion or noise.

DG419BDY’s multiplexing and demultiplexing capabilities allow users to route multiple analog signals to one location or to split up a single analog signal into multiple paths. This is made possible through two independent input channels and four independent output channels, with each channel able to handle up to 3.2A. This versatile routing capability makes the DG419BDY ideal for many applications, such as video processing and telecommunications.

The DG419BDY also features a variety of features to maximize its performance. It includes protection against electrostatic discharge, a p-channel booster, and low on-resistance. This enables the DG419BDY to switch with improved linearity, higher speed, and lower power consumption. In addition, it includes a power-on reset which ensures the outputs are in a known state when the device is powered up.

The working principle of the DG419BDY is the same as that of any other analog switch. It consists of two inputs, four outputs, and a set of control pins. When the control pins are activated, the DG419BDY switches from one input to the other, or from one output to another. It can also multiplex or demultiplex the analog signals, depending on the programmed state of the control pins.

The DG419BDY is widely used in many different applications, such as video processing and telecom systems. In video applications, the DG419BDY can switch and multiplex high-speed analog signals with a low power consumption and high immunity to noise, thus providing excellent picture quality. In telecom systems, the DG419BDY can switch and multiplex multiple voice channels with complete control, leading to better system flexibility.

The DG419BDY is an excellent option for applications that require accurate and reliable analog signal switching, multiplexing, and demultiplexing. Its wide range of features, including low power consumption and ESD protection, make it perfect for any task. Combined with its high switching speed and low charge injection, the DG419BDY is ideal for any application that requires precise switching and multiplexing of analog signals.

The specific data is subject to PDF, and the above content is for reference

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