4310H-104-161/241L Allicdata Electronics
Allicdata Part #:

4310H-104-161/241L-ND

Manufacturer Part#:

4310H-104-161/241L

Price: $ 0.35
Product Category:

Resistors

Manufacturer: Bourns Inc.
Short Description: RES NTWRK 16 RES MULT OHM 10SIP
More Detail: 160, 240 Ohm ±2% 300mW Power Per Element Dual Term...
DataSheet: 4310H-104-161/241L datasheet4310H-104-161/241L Datasheet/PDF
Quantity: 1000
2000 +: $ 0.31556
Stock 1000Can Ship Immediately
$ 0.35
Specifications
Series: 4300H
Packaging: Tube 
Part Status: Active
Circuit Type: Dual Terminator
Resistance (Ohms): 160, 240
Tolerance: ±2%
Number of Resistors: 16
Resistor Matching Ratio: --
Resistor-Ratio-Drift: 50 ppm/°C
Number of Pins: 10
Power Per Element: 300mW
Temperature Coefficient: ±100ppm/°C
Operating Temperature: -55°C ~ 125°C
Applications: --
Mounting Type: Through Hole
Package / Case: 10-SIP
Supplier Device Package: 10-SIP
Size / Dimension: 0.984" L x 0.085" W (24.99mm x 2.16mm)
Height - Seated (Max): 0.350" (8.89mm)
Description

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Resistor Networks, Arrays,which are the network structure made up of resistors and other electrical components, have a wide range of applications in electronic and electrical systems. Among them, the 4310H-104-161/241L array type epitaxial resistor networks are one of the most utilized devices in the design of telecommunications, microprocessors, control systems, amplifiers, and power supplies.

The 4310H-104-161/241L resistor networks are available in two configurations: 2-resistor (2-resistor SR) and 3-resistor (3-resistor SR). Both configurations come with a temperature range of -55 ° C to +125 ° C and a maximum absolute voltage rating (VAR) of 0.2 V. The 4310H-104-161/241L resistor networks have the highest number of pins for compatibility with various designs. Because of their high stability, these networks are ideal for telecommunication applications which require precision.

The resistor networks are used in various electronic circuits as voltage-controlled resistors, current sources, voltage dividers, and low-pass filters. In addition, they can be employed as noise and thermal noise reduction elements. In telecommunications, they are used to control the transmission gain, balance, and frequency response of the transmission system.

The working principle of the 4310H-104-161/241L array type epitaxial resistor networks is based on the principle of reciprocity. That is, two equal resistors are connected to the positive and negative terminals of a voltage source and then connected to each other. This creates a dynamic negative feedback in which the current flow between the two resistors is self-correcting. This method is highly effective in controlling the signal attenuation in multiple lines, and prevents the redundancy of circuit elements.

The 4310H-104-161/241L resistor networks feature thermally-controlled, low-capacitance, and low-inductance characteristics. The material used in their construction is highly conductive and features a low thermal resistivity. This allows the networks to absorb high currents without overheating and allows them to sustain long-term performance stability. At high temperature, the thermal coefficient of resistance of 4310H-104-161/241L arrays is very small. This means they are able to maintain their resistance even when operated for a prolonged period of time at high temperature.

The 4310H-104-161/241L resistor networks are manufactured following a processes of fine photolithography and vacuum deposition, resulting in a high degree of integration and accuracy. The coating on the surface of the resistor networks helps to improve their heat sink performance. Additionally, the capacitance budget of these networks has been designed to be very low, thus reducing the distortion of digital and analog signals.

In conclusion, the 4310H-104-161/241L resistor networks can be widely utilized in telecommunications, microprocessors, power supplies, and control systems. Their efficient and precise performance in controlling the signal attenuation in multiple lines makes them a valuable option for a variety of electronic applications. Furthermore, their low thermal resistance, stability, and low capacitance budget make them suitable for a range of high-end applications.

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

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