EXB-V4V913JV Allicdata Electronics
Allicdata Part #:

EXB-V4V913JV-ND

Manufacturer Part#:

EXB-V4V913JV

Price: $ 0.01
Product Category:

Resistors

Manufacturer: Panasonic Electronic Components
Short Description: RES ARRAY 2 RES 91K OHM 0606
More Detail: 91k Ohm ±5% 62.5mW Power Per Element Isolated 2 Re...
DataSheet: EXB-V4V913JV datasheetEXB-V4V913JV Datasheet/PDF
Quantity: 1000
20000 +: $ 0.00371
Stock 1000Can Ship Immediately
$ 0.01
Specifications
Number of Pins: 4
Height - Seated (Max): 0.028" (0.70mm)
Size / Dimension: 0.063" L x 0.063" W (1.60mm x 1.60mm)
Supplier Device Package: 0606
Package / Case: 0606, Concave
Mounting Type: Surface Mount
Applications: --
Operating Temperature: -55°C ~ 125°C
Temperature Coefficient: ±200ppm/°C
Power Per Element: 62.5mW
Series: EXB
Resistor-Ratio-Drift: --
Resistor Matching Ratio: --
Number of Resistors: 2
Tolerance: ±5%
Resistance (Ohms): 91k
Circuit Type: Isolated
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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EXB-V4V913JV Resistor Networks and Arrays Working Principle and Application Field

The EXB-V4V913JV Resistor Networks are a type of resistor arrays in use today. These networks provide many operational benefits that make them a popular choice for a variety of applications. From black box electronics to military and other specialist applications, the EXB-V4V913JV is an incredibly versatile component.

The main function of resistor networks and arrays is to provide a way of quickly connecting a variety of components together without the need for long lengths of wire. Resistor networks consist of multiple resistors joined together in series and/or parallel, making them increasingly popular in areas where a lot of parameters can be varied quickly. They also help to minimize the amount of wiring needed in comparison to hardwiring all components.

Basic Working Principle

The basic working principle of a resistor network is to connect several electrical components, such as transistors, in parallel or series in order to provide a precise resistance value. When an electrical signal passes through the network, a given level of voltage is divided over the different components, allowing the user to accurately control the desired output voltage. The abilities of the network also depend upon the specific type of resistor used – for example, high quality resistors with an intended high power dissipation will provide better performance but with more cost.

Common Uses

Resistor networks and arrays are ubiquitous in today’s electronic devices and are used in a diverse range of applications. From high-precision audio systems and industrial control systems to automotive equipment and consumer electronics, EXB-V4V913JV networks are present across many industries. They can be used to deliver precision voltages, provide filtering capabilities, and provide accurate attenuations.

Advantages

EXB-V4V913JVs are attractive to engineers for their numerous benefits – here are the main advantages of using resistor networks:

  • Accurate and repeatable results: A properly designed resistor network can be extremely precise when voltage or resistance needs to be controlled.
  • High compatibility: The ease of use and compatibility of resistor networks means that they can be used in a variety of different applications.
  • Time efficiency: Due to their design, resistor networks are extremely simple to connect and require minimal setup time.
  • Protection: In addition to providing resistive values, resistor networks can provide additional protection for the main circuitry by reducing the risk of over-current conditions.

Conclusion

EXB-V4V913JVs are an incredibly useful component for a variety of applications, from consumer electronics to industrial and military applications. By offering the ability to quickly connect various components in a single package, they save time and increase efficiency for designers. Additionally, they improve accuracy levels by reducing the risk of errors caused by long wiring runs.

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

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