Allicdata Part #: | VSSR24-390-JB-ND |
Manufacturer Part#: |
VSSR2401391JUF |
Price: | $ 0.76 |
Product Category: | Resistors |
Manufacturer: | Vishay Thin Film |
Short Description: | RES ARRAY 23 RES 390 OHM 24SSOP |
More Detail: | 390 Ohm ±5% 100mW Power Per Element Bussed 23 Resi... |
DataSheet: | VSSR2401391JUF Datasheet/PDF |
Quantity: | 1000 |
55 +: | $ 0.69120 |
Number of Pins: | 24 |
Height - Seated (Max): | 0.069" (1.76mm) |
Size / Dimension: | 0.341" L x 0.154" W (8.66mm x 3.91mm) |
Supplier Device Package: | 24-SSOP |
Package / Case: | 24-SSOP (0.154", 3.90mm Width) |
Mounting Type: | Surface Mount |
Applications: | -- |
Operating Temperature: | -55°C ~ 125°C |
Temperature Coefficient: | ±100ppm/°C |
Power Per Element: | 100mW |
Series: | VSSR |
Resistor-Ratio-Drift: | -- |
Resistor Matching Ratio: | -- |
Number of Resistors: | 23 |
Tolerance: | ±5% |
Resistance (Ohms): | 390 |
Circuit Type: | Bussed |
Part Status: | Active |
Packaging: | Tube |
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Resistor Networks, Arrays, and the VSSR2401391JUF Application Field and Working Principle
Resistor networks and arrays are devices that are used to join multiple electrical components in order to increase electrical efficiency and performance. In this article, we will explore the application field for the VSSR2401391JUF as well as discuss the working principle of this particular device.
Resistor networks and arrays exist in a variety of different forms, including straightforward four-terminal circuits, two wire networks, three terminal networks, and more complex arrangements. The application of the resistor network or array can vary greatly depending on the intended use. Generally speaking, these devices can be used for a variety of purposes, such as resistance matching, voltage-regulation, linearization, and multiplexing.
The VSSR240139JUF is a four-terminal, three-wire network that is used in distributed power systems. This particular resistor network is designed to provide a low cost solution to the implementation of voltage-sensing, remote terminal voltage-regulation, low impedance current sensing, and voltage monitoring in distributed systems.
In order to understand how this device works, it is necessary to understand the principles behind transformer-less control. Transformer-less control is a process by which the voltage of one component is determined by the variation of voltage on another component. This process utilizes two separate resistors in a series configuration. The voltages across the resistors are related in respect to the load current. This relationship is expressed in Ohm’s law (V=IR) where V is the voltage across the resistors, I is the current through the components, and R is the resistance of the resistors.
The VSSR240139JUF is a four-terminal device that utilizes this same principle, but incorporates additional series resistors. Connecting the four terminals of the device creates a resistor stack, which creates a voltage that is proportional to the load current. This voltage is then utilized to regulate the output voltage of the system. This is done by utilizing the input voltage of the system and a reference voltage which is measured at the output of the device. The difference between the two voltages is calculated using the feedback mechanism of the device, and the output voltage is then adjusted accordingly.
The VSSR240139JUF is a device that is extremely versatile and can be used for a variety of applications. It can be used to sense and regulate voltage in a variety of distributed power systems, and can provide effective feedback for linearization in AC power systems. It can also be used in multiplexing applications, where data packets can be communicated across multiple channels. Additionally, it can be utilized to provide voltage sensing in DC systems, which improves the accuracy of current sensing systems.
The VSSR240139JUF is an incredibly versatile device that can be used in a variety of electrical systems. This device is a four-terminal, three-wire network and utilizes partner resistors to sense and regulate the output voltage of a system. It can be used in voltage-sensing, remote terminal voltage-regulation, low impedance current sensing, and voltage monitoring applications. Additionally, the device can also be utilized in multiplexing and linearization systems. The VSSR240139JUF is a device that offers tremendous flexibility and can be incorporated into a wide variety of electrical systems.
The specific data is subject to PDF, and the above content is for reference
Part Number | Manufacturer | Price | Quantity | Description |
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VSSR2401332JUF | Vishay Thin ... | 0.41 $ | 1000 | RES ARRAY 23 RES 3.3K OHM... |
VSSR1601102GTF | Vishay Thin ... | 0.42 $ | 1000 | RES ARRAY 15 RES 1K OHM 1... |
VSSR1601101GTF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 15 RES 100 OHM ... |
VSSR1601101JTF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 15 RES 100 OHM ... |
VSSR1603100JTF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 8 RES 10 OHM 16... |
VSSR1603100GTF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 8 RES 10 OHM 16... |
VSSR1603101JTF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 8 RES 100 OHM 1... |
VSSR1603220JTF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 8 RES 22 OHM 16... |
VSSR1603240GTF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 8 RES 24 OHM 16... |
VSSR1603330GTF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 8 RES 33 OHM 16... |
VSSR1603330JTF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 8 RES 33 OHM 16... |
VSSR1603390GTF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 8 RES 39 OHM 16... |
VSSR1603470JTF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 8 RES 47 OHM 16... |
VSSR1603510GTF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 8 RES 51 OHM 16... |
VSSR1603680JTF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 8 RES 68 OHM 16... |
VSSR2001102GTF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 19 RES 1K OHM 2... |
VSSR2001103GTF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 19 RES 10K OHM ... |
VSSR2001152GTF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 19 RES 1.5K OHM... |
VSSR2001472GTF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 19 RES 4.7K OHM... |
VSSR2401103GTF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 23 RES 10K OHM ... |
VSSR2401472GTF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 23 RES 4.7K OHM... |
VSSR2401502GTF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 23 RES 5K OHM 2... |
VSSR2401512GTF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 23 RES 5.1K OHM... |
VSSR2403103GTF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 12 RES 10K OHM ... |
VSSR2403330GTF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 12 RES 33 OHM 2... |
VSSR2403472GTF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 12 RES 4.7K OHM... |
VSSR1603100JUF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 8 RES 10 OHM 16... |
VSSR1603510GUF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 8 RES 51 OHM 16... |
VSSR1603510JUF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 8 RES 51 OHM 16... |
VSSR1603680JUF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 8 RES 68 OHM 16... |
VSSR2001102GUF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 19 RES 1K OHM 2... |
VSSR2001472GUF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 19 RES 4.7K OHM... |
VSSR2401472GUF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 23 RES 4.7K OHM... |
VSSR2401502GUF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 23 RES 5K OHM 2... |
VSSR2401512GUF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 23 RES 5.1K OHM... |
VSSR1601202JUF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 15 RES 2K OHM 1... |
VSSR1601222JUF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 15 RES 2.2K OHM... |
VSSR1601473JUF | Vishay Thin ... | 0.48 $ | 1000 | RES ARRAY 15 RES 47K OHM ... |
RES NTWRK 18 RES 47 OHM 36LBGA47 Ohm 1% ...
RES NTWRK 32 RES 56 OHM 36LBGA56 Ohm 1% ...
RES ARRAY 4 RES 39 OHM 120639 Ohm 5% 62....
RES ARRAY 4 RES 43 OHM 080443 Ohm 5% 62....
RES ARRAY 4 RES 120 OHM 0804120 Ohm 5% 6...
RES ARRAY 2 RES 300 OHM 0606300 Ohm 5% 6...