• API
  • 中文

(Standard Leadtime :) 7884

Quantity Price

1 10 100 1000 2500 Updated
* DG387AAK/883 4800 USD
* DG387AAA/883 7488 USD
* DG387BDJ 4864 USD
* DG387ACJ 12744 USD
* DG387BDJ-E3 7248 USD
* DG387AAK/883B 5552 USD
* DG387BDJ-E3 0 CNY
* DG387ACJ 3454 USD
* DG387BDJ-E3 0 USD
* DG387AAA/883 0 USD
* DG387AAK/883 0 USD
* DG387BDJ 0 USD
* DG387AAK/883B 0 USD
* DG387ACJ 1324 USD 5.349153 5.046371 4.760727
* DG387ACJ 1324 USD 5.349153 5.046371 4.760727
* DG387BDJ-E3 0 USD
* DG387AAK/883B 0 USD
* DG387BDJ 1 USD
* DG387AAK/883 1 USD
* DG387AAA/883 1 USD
* DG387AAK/883B Please Inquiry USD
* DG387AAK/883 1 USD
* DG387AAA/883 16204 USD
* DG387BDJ-E3 1 USD

Maxim Integrated
300ns, 250ns SPDT 50Ohm Analog Switches BREAK-BEFORE-MAKE DG387A 14 Pins 5nA 15V 14-DIP (0.300, 7.62mm)
The electronic part can be shipped overseas conveniently because it is packaged in 14-DIP (0.300, 7.62mm). In order to provide high reliability, an advanced packaging method Tube is used. There is an analog multiplexer mounted in position Through Hole. There is 2:1 ratio between the number of multiplexers and demultiplexers. Around 0°C~70°C TA is the extended operating temperature. In total, there are 14 terminations. This electronic part offers high-quality output due to its 1 channels. In the case of a voltage supply of 15V volts, the electrical part can be powered up and run. There are 14 pins injected into the electronic part body. The analog switch ics are built using SPDT switching circuits. A total of 1 circuits make up this switch device. Search with DG387A if you are looking for analog multiplexer variants. It has an internal resistance of 50Ohm. In normalcircumstances, users should not exceed 25V volts for the multiplexer. Dual supply type digital switch with a low cost. In order to operate this switch device, it would need a current of 230μA. There's no problem with dual supply voltage for this switch device. However, it shouldn't exceed 18V. In the case of dual power supplies, you should connect at least 5V. The switch device is capable of conducting in a 4-bit mode.