RNA4A8E822JT Allicdata Electronics
Allicdata Part #:

RNA4A8E822JT-ND

Manufacturer Part#:

RNA4A8E822JT

Price: $ 0.00
Product Category:

Resistors

Manufacturer: Kyocera International Inc. Electronic Components
Short Description: RES ARRAY 8 RES 8.2K OHM 1608
More Detail: 8.2k Ohm ±5% 62.5mW Power Per Element Bussed 8 Res...
DataSheet: RNA4A8E822JT datasheetRNA4A8E822JT Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Number of Pins: 10
Height - Seated (Max): 0.028" (0.70mm)
Size / Dimension: 0.157" L x 0.083" W (4.00mm x 2.10mm)
Supplier Device Package: 1608
Package / Case: 1608, Concave, Long Side Terminals
Mounting Type: Surface Mount
Applications: --
Operating Temperature: -55°C ~ 125°C
Temperature Coefficient: --
Power Per Element: 62.5mW
Series: RNA4A, Kyocera
Resistor-Ratio-Drift: --
Resistor Matching Ratio: --
Number of Resistors: 8
Tolerance: ±5%
Resistance (Ohms): 8.2k
Circuit Type: Bussed
Part Status: Obsolete
Packaging: Tape & Reel (TR) 
Description

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Resistor Networks, Arrays, and the RNA4A8E822JT model in particular, have wide applications and practical uses in electrical engineering. In this section, we will discuss the different uses and working principles behind the model.

Uses of Resistor Networks and Arrays

Resistor networks are commonly used in a wide variety of applications such as electronic circuit design, motor control, power electronics, signal processing, and aerospace technology. They are also used in numerous applications ranging from medical device circuitry to automotive power-train systems. In general, they are used to limit current, control voltage, adjust gains, provide feedback, and protect valuable components from damage. The most common type of resistor network is the array, which is a group of resistors connected in an orderly fashion. Resistor networks are often used to provide a specific resistance\'s when building circuits. This allows the designer to use the same circuit topology for a different application without having to make major modifications to the design. The resistors in the network can be arranged in a variety of ways, providing a variety of different responses and behavior. Resistors in the array may also be altered to adjust the overall effect of the circuit. By connecting resistors in series or parallel, the resistance of the network can be increased or decreased. By increasing or decreasing the individual resistors, the amount of power that can be handled by the network can also be adjusted.

The RNA4A8E822JT Model

The RNA4A8E822JT is an 8-pin resistor array, specifically designed for use in power electronics applications. The 8 pins of the device are connected in a specific order, providing a low-impedance, low-loss path for current flow. This makes it well-suited for applications that require precise voltage and current regulation. The model is designed to handle up to 20 amps of continuous current. Due to its low-resistance design, it can efficiently dissipate heat without causing the circuit to overheat. This helps to increase the reliability and longevity of the overall system. The model has a low parasitic capacitance, which helps reduce the risk of interference from nearby circuitry. This makes it well-suited for use in applications where there is a possibility of interference from other devices, such as with medical devices. The low parasitic capacitance also helps prevent damage caused by large voltage spikes.

Working Principle of the RNA4A8E822JT

At its most basic level, theRNA4A8E822JT is simply a series of resistors connected in an orderly fashion. The 8-pins of the device are connected in a specific order, providing a low-impedance, low-loss path for current flow. This arrangement allows for either a decrease or increase in the overall resistance of the circuit. The device works by allowing a specific amount of current to pass through the resistors. By changing the connection of the pins, the amount of current that passes through the device can be adjusted. This makes it ideal for applications where the desired amount of current is different than what the device can typically provide. The model is also designed to dissipate heat efficiently, preventing the system from overheating. This makes the model well-suited for applications where there is a risk of heat build-up. Additionally, the model has a low parasitic capacitance, which helps to reduce interference caused by nearby devices.

Conclusion

In conclusion, the RNA4A8E822JT Resistor Array is a highly versatile device with a variety of applications and practical uses. It can regulate current and voltage, protect components from damage, and dissipate heat efficiently. Additionally, the model has a low parasitic capacitance, making it perfect for applications where EMI is a concern.

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

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