Allicdata Part #: | OSOPTA1001DT1-ND |
Manufacturer Part#: |
OSOPTA1001DT1 |
Price: | $ 1.10 |
Product Category: | Resistors |
Manufacturer: | Vishay Thin Film |
Short Description: | RES ARRAY 10 RES 1K OHM 20SSOP |
More Detail: | 1k Ohm ±0.5% 100mW Power Per Element Isolated 10 R... |
DataSheet: | OSOPTA1001DT1 Datasheet/PDF |
Quantity: | 1000 |
1000 +: | $ 0.99225 |
Specifications
Series: | OSOP |
Packaging: | Tape & Reel (TR) |
Part Status: | Active |
Circuit Type: | Isolated |
Resistance (Ohms): | 1k |
Tolerance: | ±0.5% |
Number of Resistors: | 10 |
Resistor Matching Ratio: | ±0.025% |
Resistor-Ratio-Drift: | ±5 ppm/°C |
Number of Pins: | 20 |
Power Per Element: | 100mW |
Temperature Coefficient: | ±25ppm/°C |
Operating Temperature: | -55°C ~ 125°C |
Applications: | -- |
Mounting Type: | Surface Mount |
Package / Case: | 20-SSOP (0.154", 3.90mm Width) |
Supplier Device Package: | -- |
Size / Dimension: | 0.344" L x 0.154" W (8.74mm x 3.91mm) |
Height - Seated (Max): | 0.068" (1.73mm) |
Description
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OSOPTA1001DT1 is a type of resistor network used in a variety of applications where a current is required to be accurately and predictably delivered into a load. The device shields the load from the effects of potential or current disturbances that may occur within either the source or the load. The device can be used in applications such as electric power management, power protection, power conditioning, power quality monitoring, etc.The resistor network consists of a series of resistors that form a bridge between the power source and the load. This bridge helps divide the current flowing between the two points, providing a more reliable current flow. The resistors have a low thermal resistance, meaning they can dissipate heat quickly, reducing the risk of an overloaded circuit, or other damage caused by excess current.The device is constructed in two modules, a proportional module and an equal module. Both modules consist of components that are usually common; however, custom components can be used upon request.The Proportional Module consists of a number of resistors arranged in a series-connected circuit. When a current is applied to the resistors, the current is divided among them in proportion to their resistance value. This decrease in current allows for better accuracy in power delivery and can be tailored to the user’s needs.The Equal Module consists of a number of resistors that are connected in parallel and are arranged in such a way that the current is divided equally among them. This allows for more consistent, uniform current delivery, reducing the risk of overload and electrical disturbances.The Goal of OSOPTA1001DT1 is to accurately control the current delivery between two points, with the device responding quickly and accurately to any unexpected changes in current or voltage. This allows for better protection of the components involved, as well as improved accuracy in power delivery.The resistor network also makes it easier to control the voltage and current in the circuit. By using the proportional resistors, the voltage can be easily divided into an even amount. This helps regulate the power going into the component, as too high a voltage can damage the component. The equal resistors help distribute the current more evenly, helping protect both the components and the wiring, which could overheat with an uneven current flow.In summary, the OSOPTA1001DT1 is a type of resistor network used in a variety of applications to control the current delivery from a power source to a load. The proportional and equal resistor networks help divide the current in an efficient way, helping protect both the components and the wiring, as well as delivering an accurate and predictable power delivery.The specific data is subject to PDF, and the above content is for reference
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OSOPTA1001AT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 1K OHM 2... |
OSOPTA2002AT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 20K OHM ... |
OSOPTA2001AT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 2K OHM 2... |
OSOPTA5002AT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 50K OHM ... |
OSOPTA1003AT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 100K OHM... |
OSOPA1002AT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 10K OHM ... |
OSOPA5001AT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 5K OHM 2... |
OSOPA1001AT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 1K OHM 2... |
OSOPA2002AT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 20K OHM ... |
OSOPA2001AT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 2K OHM 2... |
OSOPA5002AT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 50K OHM ... |
OSOPA1003AT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 100K OHM... |
OSOPTA2002BT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 20K OHM ... |
OSOPTA2001BT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 2K OHM 2... |
OSOPTA1003BT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 100K OHM... |
OSOPTA1002CT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 10K OHM ... |
OSOPTA5001CT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 5K OHM 2... |
OSOPTA1001CT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 1K OHM 2... |
OSOPTA2002CT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 20K OHM ... |
OSOPTA2001CT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 2K OHM 2... |
OSOPTA5002CT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 50K OHM ... |
OSOPTA1003CT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 100K OHM... |
OSOPTA1002DT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 10K OHM ... |
OSOPTA5001DT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 5K OHM 2... |
OSOPTA1001DT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 1K OHM 2... |
OSOPTA2002DT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 20K OHM ... |
OSOPTA2001DT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 2K OHM 2... |
OSOPTA5002DT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 50K OHM ... |
OSOPTA1003DT1 | Vishay Thin ... | 1.1 $ | 1000 | RES ARRAY 10 RES 100K OHM... |
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