Texas Instruments UC3902N

20V load share controller, 0°C to 70°C 8-PDIP 0 to 70
$ 4.506
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Datasheet10 pagesIl y a 14 ans

Texas Instruments

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SHENGYU ELECTRONICS

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Price @ 1000
$ 4.506
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Stock
478,169
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Authorized Distributors
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4
4
Max Input Voltage
20 V
-
-
Min Input Voltage
-
-
-
Output Voltage
40 mV
-
-
Output Current
150 µA
150 µA
150 µA
Polarity
-
-
-
Case/Package
PDIP
PDIP
PDIP
Mount
Through Hole
Through Hole
Through Hole
Operating Supply Current
4 mA
4 mA
4 mA
Operating Supply Voltage
-
20 V
20 V
Max Operating Temperature
70 °C
85 °C
85 °C
Min Operating Temperature
0 °C
-40 °C
-40 °C

Chaîne d'approvisionnement

Lifecycle StatusProduction (Last Updated: 2 years ago)
Manufacturer Lifecycle StatusACTIVE (Last Updated: 3 days ago)

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Descriptions

Descriptions de Texas Instruments UC3902N fournies par ses distributeurs.

20V load share controller, 0°C to 70°C 8-PDIP 0 to 70
LOAD SHARE CONTROLLER, 3902, DIP8; Power Supply Type:Load Share Controller; Voltage, Input Max:20V; Max Output Current:1000A; Voltage, Output Max:10V; No. of Outputs:1; Voltage, Supply Min:2.7V; Voltage, Supply Max:20V; Termination Type:Through Hole; Case Style:DIP; No. of Pins:8; Operating Temperature Range:0°C to +70°C; Temp, Op. Max:70°C; Temp, Op. Min:0°C; Base Number:3902; IC Generic Number:3902; Logic Function Number:3902; Temperature Range, IC:Commercial; Voltage, Output:40mV
The UC3902 load share controller is an 8-pin device that balances the current drawn from independent, paralleled power supplies. Load sharing is accomplished by adjusting each supply's output current to a level proportional to the voltage on a share bus. The master power supply, which is automatically designated as the supply that regulates to the highest voltage, drives the share bus with a voltage proportional to its output current. The UC3902 trims the output voltage of the other paralleled supplies so that they each support their share of the load current. Typically, each supply is designed for the same current level although that is not necessary for use with the UC3902. By appropriately scaling the current sense resistor, supplies with different output current capability can be paralleled with each supply providing the same percentage of their output current capability for a particular load. A differential line is used for the share bus to maximize noise immunity and accommodate different voltage drops in each power converter's ground return line. Trimming of each converter's output voltage is accomplished by injecting a small current into the output voltage sense line, which requires a small resistance (typically 20\Omega - 100\Omega ) to be inserted.

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