Y5076V0030BQ9L Allicdata Electronics
Allicdata Part #:

Y5076V0030BQ9L-ND

Manufacturer Part#:

Y5076V0030BQ9L

Price: $ 9.30
Product Category:

Resistors

Manufacturer: Vishay Foil Resistors (Division of Vishay Precision Group)
Short Description: RES NTWRK 2 RES MULT OHM RADIAL
More Detail: 2k, 18k Ohm ±0.1% 50mW Power Per Element Voltage D...
DataSheet: Y5076V0030BQ9L datasheetY5076V0030BQ9L Datasheet/PDF
Quantity: 1000
500 +: $ 8.44875
Stock 1000Can Ship Immediately
$ 9.3
Specifications
Number of Pins: 3
Height - Seated (Max): 0.525" (13.33mm)
Size / Dimension: 0.398" L x 0.185" W (10.11mm x 4.70mm)
Supplier Device Package: --
Package / Case: Radial - 3 Leads
Mounting Type: Through Hole
Applications: Voltage Divider (TCR Matched)
Operating Temperature: -55°C ~ 125°C
Temperature Coefficient: ±2ppm/°C
Power Per Element: 50mW
Series: VHD200
Resistor-Ratio-Drift: ±0.1 ppm/°C
Resistor Matching Ratio: ±0.02%
Number of Resistors: 2
Tolerance: ±0.1%
Resistance (Ohms): 2k, 18k
Circuit Type: Voltage Divider
Part Status: Active
Packaging: Bulk 
Description

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Y5076V0030BQ9L resistor networks, also known as chip arrays, are made up of multiple resistors packaged together in a way to provide three or more of the same value. These components are used where multiple resistors are needed and where space is a restricting factor. They can offer solutions for many different applications including impedence matching, power distribution, biasing circuits, voltage dividing, signal attenuation, filtering, as well as noise/signal interfacing.

The Y5076V0030BQ9L incorporates four resistors of identical ohmic values that are connected each other in parallel. The characteristics of the device are realized by incorporating resistors-in-series multiple resistor divider networks. The device provides a very low level of parasitic resistance and is capable of providing a wide range of output impedance matching. It is available in a wide range of ohmic values from 0.01 ohms to 0.90 ohms, and its operating temperature ranges from -55°C to +125°C.

The inner metalization of the chip works as a series pattern of four resistors in which two adjacent resistors of same value are connected one to the next in series circuit. In this way, every two adjacent chips are connected to form a single, two-element parallel combination. The external connections of the device are the equalizing resistors, and the actual combination of resistors in series is known as the negative differential resistance (NDR).

The working principle of the Y5076V0030BQ9L resistor networks is very simple. The resistance of each resistor is the same, so the resistance of the whole device is equal to a single resistor. This is because all the resistors in the chip are in parallel and are of the same value. When a voltage is applied across the resistor network, the voltage drops are equal on each resistor and the same current passes through all of them. This means the voltage across each individual resistor can be calculated by multiplying the voltage over the resistor by the number of resistors in series. As a result, the output current is equal to the sum of the currents through each resistor.

Y5076V0030BQ9L are often used in high power applications where a high number of resistors are needed but space is an issue. In addition, in some audio filter applications, this device can be used to attenuate very high frequency signals. By using this resistor network, larger resistances can be obtained than would be possible with one resistor. In addition, because these types of resistors are available in very low ohmic values, they can form a wide range of output impedance matchings. This makes them very attractive for use in impedance matching circuits where designers need high power applications.

In conclusion, Y5076V0030BQ9L resistor networks are a powerful solution for any application where multiple resistors are needed and where space is limited. They offer a range of ohmic values, allowing them to be used for impedance matching, power distribution, biasing circuits, voltage dividing, signal attenuation, filtering, noise/signal interfacing, and many other applications. Thanks to their low parasitic resistance and compact design, they can be used in very high power applications while still providing the required impedance matching.

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

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