ACASN1000S1000P1AT Allicdata Electronics

ACASN1000S1000P1AT Resistors

Allicdata Part #:

749-1041-6-ND

Manufacturer Part#:

ACASN1000S1000P1AT

Price: $ 0.30
Product Category:

Resistors

Manufacturer: Vishay Beyschlag
Short Description: RES ARRAY 2 RES 100 OHM 0606
More Detail: 100 Ohm ±0.1% 125mW Power Per Element Isolated 2 R...
DataSheet: ACASN1000S1000P1AT datasheetACASN1000S1000P1AT Datasheet/PDF
Quantity: 5863
Moisture Sensitivity Level (MSL): 1 (Unlimited)
Lead Free Status / RoHS Status: Lead free / RoHS Compliant
1 +: $ 0.26550
10 +: $ 0.22005
25 +: $ 0.18846
50 +: $ 0.16956
100 +: $ 0.14760
250 +: $ 0.13190
500 +: $ 0.10679
Stock 5863Can Ship Immediately
$ 0.3
Specifications
Resistor-Ratio-Drift: ±15 ppm/°C
Height - Seated (Max): 0.022" (0.55mm)
Size / Dimension: 0.063" L x 0.059" W (1.60mm x 1.50mm)
Supplier Device Package: 0606
Package / Case: 0606, Convex
Mounting Type: Surface Mount
Applications: Automotive AEC-Q200, Voltage Divider (TCR Matched)
Operating Temperature: -55°C ~ 155°C
Temperature Coefficient: ±25ppm/°C
Power Per Element: 125mW
Number of Pins: 4
Series: ACA - Precision
Resistor Matching Ratio: ±0.05%
Number of Resistors: 2
Tolerance: ±0.1%
Resistance (Ohms): 100
Circuit Type: Isolated
Moisture Sensitivity Level (MSL): --
Part Status: Active
Lead Free Status / RoHS Status: --
Packaging: Digi-Reel® 
Description

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Resistor Networks, Arrays

A resistor network or array is an electrical device that consists of multiple resistors electrically connected in parallel or series. It is a passive electrical component used to divide, combine, or filter electrical signals. The ACASN1000S1000P1AT is a type of AC array resistor network specifically used for high-voltage applications, such as voltage regulation in power systems.

Function

Resistor networks are used in a variety of applications, including selecting a specific voltage level, limiting the current flowing through a circuit, dividing a signal into equal parts, and controlling power. The ACASN1000S1000P1AT is designed for use in high-voltage applications, such as power system voltage regulation. It provides a precise means of controlling the voltage of a system, and it can also protect power supplies from damage caused by over voltage.

Design

The ACASN1000S1000P1AT is a hybrid resistor network composed of resistors in both series and parallel circuits. It is designed with both surface-mount and through-hole components, and it is rated for up to 1000 volts of operating voltage. The resistor network includes two terminals—an input terminal and an output terminal.

Working Principle

The ACASN1000S1000P1AT is designed to regulate the voltage of a high-voltage system. When current flows through the network, it travels through a series of resistors arranged in a specific pattern. This pattern causes some of the current to flow to the output terminal and some to be diverted elsewhere. The amount of current diverted is determined by the resistance of each resistor. The resistors are adjusted to the desired resistance value so that only the desired amount of current reaches the output terminal.

Advantages

The key advantage of using the ACASN1000S1000P1AT is its accuracy and reliability. It can precisely control the voltage in a power system, protecting it from over voltage and other problems that can damage the system. Furthermore, it is less expensive than many other voltage regulation solutions, and it is relatively easy to install and maintain.

Disadvantages

The ACASN1000S1000P1AT is not suitable for use in low-voltage applications due to its relatively high rated voltage. Furthermore, the design and construction of the network may limit how much current it can handle, and as such, it is not suitable for applications that require high amounts of current. Additionally, the design of the network can make it difficult to troubleshoot if it fails.

Conclusion

The ACASN1000S1000P1AT resistor network is designed for use in high-voltage applications such as voltage regulation in power systems. It provides a precise and reliable means of controlling voltage in a system, and is relatively inexpensive compared to some other solutions. However, it is not suitable for use in low-voltage applications or in circuits with high current requirements, and its design may make troubleshooting difficult.

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

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