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NTE75493 IC MOS to LED Anode Driver

Model:

NTE75493

 | Catalog #: 55051462
Price:
$3.37
$3.37
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  • Features:
  • 50mA source or sink capability
  • Rated for 10V operation
  • Low input current for MOS compatibility
  • Low standby power
  • High−gain Darlington circuits
  • Absolute Maximum Ratings:
  • Input voltage range (Note 1, Note 2): −5V to VSS
  • Collector (output) voltage VC: 10V
  • Collector (output−to−input) voltage: 10V
  • Emitter−to−ground voltage (VI ≥ 5V): 10V
  • Emitter−to−input voltage: 5V
  • Voltage at VSS terminal with respect to any other device terminal: 10V
  • Collector (output) current, IC, each collector (output): 50mA, all collectors (outputs): 200mA
  • Continuous total dissipation (TA ≤ +25°C): 875mW
  • Derate above +25°C: 7mW/°C
  • Operating temperature range TA: 0°C to +70°C
  • Storage temperature range Tstg: −65°C to +150°C
  • Lead temperature (during soldering, 1/16" from case, 10sec max) TL: +260°C

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  • Features:
  • Characterized for use to 300mA
  • High−voltage outputs
  • No output latch−up at 20V (after conducting 300mA)
  • High−speed switching
  • TTL−compatible diode−clamped inputs
  • Absolute Maximum Ratings: (Note 1)
  • Supply voltage VCC: 7V
  • Input voltage: 5.5V
  • Interemitter voltage (Note 2): 5.5V
  • Off−state output voltage: 30V
  • Continuous collector or output current (Note 3): 400mA
  • Peak collector or output current (tw ≤ 10ms, duty cycle ≤ 50%, Note 3)
  • Continuous total power dissipation (TA ≤ +25°C) PD: 1200mW
  • Derate above +25°C: 9.6mW/°C
  • Operating temperature range TA: 0°C to +70°C
  • Storage temperature range Tstg: -65°C to 150°C
  • Lead temperature (during soldering, 1/16" from case, 10 sec max) TL: +260°C

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  • Features:
  • Characterized for use to 300mA
  • High−voltage outputs
  • No output latch−up at 20V (after conducting 300mA)
  • High−speed switching
  • TTL−compatible diode−clamped inputs
  • Absolute Maximum Ratings: (Note 1)
  • Supply voltage VCC: 7V
  • Input voltage: 5.5V
  • Interemitter voltage (Note 2): 5.5V
  • Off−state output voltage: 30V
  • Continuous collector or output current (Note 3): 400mA
  • Peak collector or output current (tw ≤ 10ms, duty cycle ≤ 50%, Note 3): 500mA
  • Continuous total power dissipation (TA ≤ +25°C) PD: 1200mW
  • Derate above +25°C: 9.6mW/°C
  • Operating temperature range TA: 0°C to +70°C
  • Storage temperature range Tstg: -65°C to 150°C
  • Lead temperature (during soldering, 1/16" from case, 10 sec max) TL: +260°C

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Availability:

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Product Summary

The NTE75493 is a quad LED segment driver in a 16-lead plastic DIP-type package designed to interface between MOS ICs and LEDs. An external resistor is required for each segment to drive the output current which is approximately equal to 0.7V/R L and is relatively constant, independent of supply variations. Blanking can be achieved by taking the chip enable (CE) to a logical "1" level.

Data Sheet

  • Features:
  • Low voltage operation
  • Low input current for MOS compatibility
  • Low standby power
  • Display blanking capability
  • Output current regulation
  • Quad high gain circuits
  • Absolute Maximum Ratings:
  • Supply voltage VCC: 7V
  • Input voltage: 5.5V
  • Output voltage VO: Vcc
  • Output current, IOUT: -25mA
  • Maximum power dissipation (TA ≤ +25°C) PD: 1280mW
  • Derate Above +25°C: 10.24mW/°C
  • Operating temperature range TA: 0°C to +70°C
  • Storage temperature range Tstg: −65°C to +150°C
  • Lead temperature (during soldering, 4sec max) TL: +260°C
Pricing and availability: Please note that all prices are subject to change without prior notice. Prices advertised on this site are for online orders only. Prices on some items may differ from those advertised in RadioShack stores. All merchandise may not be available at all stores, and all stores may not participate in all sales promotions. We recommend you contact the store to confirm product availability and price.

Disclaimer: "Absolute Maximum Ratings" are those values beyond which the safety of the device cannot be guaranteed. Thy are not meant to imply that the device should be operated at these limits. The table "Electrical Characteristics" provides conditions for actual device operation.

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