MAX5491PC02000+T Allicdata Electronics

MAX5491PC02000+T Resistors

Allicdata Part #:

MAX5491PC02000+TTR-ND

Manufacturer Part#:

MAX5491PC02000+T

Price: $ 1.78
Product Category:

Resistors

Manufacturer: Maxim Integrated
Short Description: RES NTWRK 2 RES MULT OHM TO236-3
More Detail: 10k, 20k Ohm 87.5mW Power Per Element Voltage Div...
DataSheet: MAX5491PC02000+T datasheetMAX5491PC02000+T Datasheet/PDF
Quantity: 1000
2500 +: $ 1.60875
Stock 1000Can Ship Immediately
$ 1.78
Specifications
Number of Pins: 3
Height - Seated (Max): 0.044" (1.12mm)
Size / Dimension: 0.115" L x 0.051" W (2.92mm x 1.30mm)
Supplier Device Package: SOT-23-3
Package / Case: TO-236-3, SC-59, SOT-23-3
Mounting Type: Surface Mount
Applications: Voltage Divider (TCR Matched)
Operating Temperature: -40°C ~ 85°C
Temperature Coefficient: ±35ppm/°C
Power Per Element: 87.5mW
Series: MAX5491
Resistor-Ratio-Drift: ±2 ppm/°C
Resistor Matching Ratio: ±0.1%
Number of Resistors: 2
Tolerance: --
Resistance (Ohms): 10k, 20k
Circuit Type: Voltage Divider
Part Status: Active
Packaging: Tape & Reel (TR) 
Description

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Resistor Networks, Arrays is an electronic technology that allows engineers to create electrical networks from individual resistors or special integrated circuits. The MAX5491PC02000+T is one such device designed for applications such as current digital sampling, current digital multiplexing, pulse width modulation, and voltage level shifting.

The MAX5491PC02000+Thas two parts- a chip with power transistors and an array of resistors. Its unique design allows the engineer to quickly and easily combine the transistor and resistor array into an electrical network. The resistor array consists of four three-terminal resistor networks, two pull-up networks and two pull-down networks. The pull-up networks are designed for applications that require high levels of current, while the pull-down networks are optimized for low-level applications. The transistor part of the chip contains power transistors that switch between the bias settings of the system. These power transistors are designed to handle high levels of current and provide low resistance when activated.

The MAX5491PC02000+Tcan be used in a variety of different industry applications. It is particularly useful for current digital sampling, current digital multiplexing, pulse width modulation, and voltage level shifting. These applications require a reliable electrical network with low resistance when activated and the ability to switch between two bias settings. With the MAX5491PC02000+T, engineers can quickly and easily create such a network.

When used for current digital sampling or current digital multiplexing, the MAX5491PC02000+T allows engineers to control the current of an analog signal and switch between two bias settings. This is achieved by connecting the power transistors to the resistor array. The resistor array is designed to provide low resistance when activated and high resistance when inactive. The transistors provide the switching capability between the two bias states.

When used for pulse width modulation, the MAX5491PC02000+T allows engineers to change the duty cycle of a pulse width modulated signal. By connecting the transistors to the resistor array, they can control the amount of current flow through the resistor array. This is then used to determine the duty cycle of the pulse width modulated signal. Lastly, the MAX5491PC02000+T can also be used for voltage level shifting, which involves changing the voltage level of an analog signal. The resistor array and transistors are used to control the voltage level by adjusting the current flow through the resistor array.

In summary, the MAX5491PC02000+T is a versatile device that can be used to create electrical networks in a variety of different applications. It uses a combination of power transistors and a resistor array to control the current flow through the network and switch between two bias settings. This allows engineers to easily and quickly create networks suitable for current digital sampling, current digital multiplexing, pulse width modulation, and voltage level shifting.

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

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