768143333G Allicdata Electronics
Allicdata Part #:

768-143-R33K-ND

Manufacturer Part#:

768143333G

Price: $ 0.00
Product Category:

Resistors

Manufacturer: CTS Resistor Products
Short Description: RES ARRAY 7 RES 33K OHM 14SOIC
More Detail: 33k Ohm ±2% 200mW Power Per Element Isolated 7 Res...
DataSheet: 768143333G datasheet768143333G Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Number of Pins: 14
Height - Seated (Max): 0.071" (1.80mm)
Size / Dimension: 0.390" L x 0.220" W (9.91mm x 5.59mm)
Supplier Device Package: --
Package / Case: 14-SOIC (0.220", 5.59mm Width)
Mounting Type: Surface Mount
Applications: --
Operating Temperature: -55°C ~ 125°C
Temperature Coefficient: ±100ppm/°C
Power Per Element: 200mW
Series: 768
Resistor-Ratio-Drift: --
Resistor Matching Ratio: --
Number of Resistors: 7
Tolerance: ±2%
Resistance (Ohms): 33k
Circuit Type: Isolated
Part Status: Obsolete
Packaging: Tube 
Description

Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us:   sales@allicdata.com

Resistor networks, arrays and the 768143333G are an important part of the electronic landscape. In order to truly understand the application and principles that govern these components, it\'s important to have an understanding of the technology that they are based on.

Background of Resistor Networks

Resistor networks, as the name implies, involve multiple resistors placed in an ordered pattern or array. This allows for the manipulation of electricity in various ways to facilitate specific tasks. Resistor networks are composed of multiple resistors connected in series and/or parallel to form a chain of small resistors. Resistor networks are widely used in order to control the flow of electricity through circuits in order to achieve desired results. Typical examples of resistor networks are voltage dividers, current dividers, delay lines, and bridge networks.

768143333G & Resistor Networks

The 768143333G is a low-power resistor network that is used in a wide array of applications. The basic premise of this type of resistor network is to provide a standard resistance value, allowing for easy integration of components across multiple boards or systems. This uniformity is of critical importance in today\'s highly integrated electronics systems, where components must be interoperable and consistent in order to ensure the performance desired.

The 768143333G is a unique resistor network that has been specifically designed to provide a reliable connection for both low and high power applications. The network is designed with two basic features: one is the actual resistance value, designed for optimal performance in its given application, and the second is a thermal-resistant element, designed to protect components from overloading under high power conditions. The 768143333G is available in a wide range of resistance values, from 1K to 1M, allowing for maximum flexibility in system design.

Working Principles of Resistor Networks

The basic working principle of resistor networks is based on Ohm\'s Law, which states that the current through a conductor is proportional to the potential difference (voltage) and inversely proportional to the resistance. This means that the voltage produced across the resistor depends on the amount of current flowing through it, and the resistance value of the resistor. The relationship between the voltage and current in a resistor network can be found by multiplying the current by the resistance of the resistor. This is used to calculate the voltage produced across the resistor.

Resistor networks can also be used to control the ratio of two or more voltage signals. This is known as impedance matching and is used to ensure that signals do not clash or degrade when mixed together. Impedance matching can be achieved by using resistor networks to create a bridge or ladder between the signals, which can effectively control the ratio of the signals.

Conclusion

The 768143333G is an innovative resistor network that offers reliable performance across a wide range of applications. By leveraging the basic principles of Ohm\'s law and impedance matching, the 768143333G can provide flexibility and reliability in its given application. Ultimately, this is a great example of how technology can be adapted to achieve desired results, and should serve as an inspiration for future electronic components.

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

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