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ULN2003ANE4

50-V, 7-ch darlington transistor array, -20C to 70C 16-PDIP -40 to 70

Manufacturer Texas Instruments
Price Range $0.5020 / $0.8620

Part Details

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Distributors with Stock

Part Number Description Manufacturer Compare
DS9666CN Transistors 0.5A, 7 CHANNEL, NPN, Si, POWER TRANSISTOR, PLASTIC, N16E, DIP-16 Texas Instruments ULN2003ANE4 vs DS9666CN
DS2003CJ Transistors Power Bipolar Transistor, 0.5A I(C), 7-Element, NPN, Silicon, Ceramic, Metal-Sealed Cofired, 16 Pin, CERAMIC, J16A, DIP-16 Rochester Electronics LLC ULN2003ANE4 vs DS2003CJ
TD62003AP Drivers And Interfaces Peripheral Driver, 7 Driver, BIPolar, PDIP16 Marktech Optoelectronics ULN2003ANE4 vs TD62003AP
ULN2001A Drivers And Interfaces Peripheral Driver, 7 Driver, BIPolar, PDIP16 SGS-Ates Componenti Electronici SPA ULN2003ANE4 vs ULN2001A
ULS2004H883 Transistors Power Bipolar Transistor, 0.5A I(C), 50V V(BR)CEO, 7-Element, NPN, Silicon, Ceramic, Metal-Sealed Cofired, 16 Pin, HERMETIC SEALED, SIDE BRAZED, CERAMIC, DIP-16 Allegro MicroSystems LLC ULN2003ANE4 vs ULS2004H883
ULQ2001A Transistors Small Signal Bipolar Transistor, 0.5A I(C), 50V V(BR)CEO, 7-Element, NPN, Silicon, MS-001AB, MS-001AB, 16 PIN Allegro MicroSystems LLC ULN2003ANE4 vs ULQ2001A
Part Number Description Manufacturer Compare
DS9666CN Transistors 0.5A, 7 CHANNEL, NPN, Si, POWER TRANSISTOR, PLASTIC, N16E, DIP-16 Texas Instruments ULN2003ANE4 vs DS9666CN
DS2003CJ Transistors Power Bipolar Transistor, 0.5A I(C), 7-Element, NPN, Silicon, Ceramic, Metal-Sealed Cofired, 16 Pin, CERAMIC, J16A, DIP-16 Rochester Electronics LLC ULN2003ANE4 vs DS2003CJ
TD62003AP Drivers And Interfaces Peripheral Driver, 7 Driver, BIPolar, PDIP16 Marktech Optoelectronics ULN2003ANE4 vs TD62003AP
MC1413BDR2 Transistors High Voltage, High Current Darlington Transistor Driver Array, SOIC 16 LEAD, 2500-REEL ON Semiconductor ULN2003ANE4 vs MC1413BDR2
MC1413DR2 Transistors Power Bipolar Transistor, 0.5A I(C), 50V V(BR)CEO, 7-Element, NPN, Silicon, Plastic/Epoxy, 16 Pin, PLASTIC, SOIC-16 Motorola Semiconductor Products ULN2003ANE4 vs MC1413DR2
MC1416BDR2 Transistors 0.5A, 50V, 7 CHANNEL, NPN, Si, POWER TRANSISTOR, PLASTIC, CASE 751B, SOIC-16 Motorola Mobility LLC ULN2003ANE4 vs MC1416BDR2
MC1413BDR2G Transistors High Voltage, High Current Darlington Transistor Driver Array, SOIC 16 LEAD, 2500-REEL ON Semiconductor ULN2003ANE4 vs MC1413BDR2G
ULN2001A Drivers And Interfaces Peripheral Driver, 7 Driver, BIPolar, PDIP16 SGS-Ates Componenti Electronici SPA ULN2003ANE4 vs ULN2001A
ULQ2001A Transistors Small Signal Bipolar Transistor, 0.5A I(C), 50V V(BR)CEO, 7-Element, NPN, Silicon, MS-001AB, MS-001AB, 16 PIN Allegro MicroSystems LLC ULN2003ANE4 vs ULQ2001A
ULS2004H883 Transistors Power Bipolar Transistor, 0.5A I(C), 50V V(BR)CEO, 7-Element, NPN, Silicon, Ceramic, Metal-Sealed Cofired, 16 Pin, HERMETIC SEALED, SIDE BRAZED, CERAMIC, DIP-16 Allegro MicroSystems LLC ULN2003ANE4 vs ULS2004H883

Global Popularity

Popularity in Transistors

Popularity in Power Bipolar Transistors

Popularity by Region

Very High

Medium

Good

Low

  • 1. United States
    100
  • 2. China
    88
  • 3. India
    86
  • 4. Brazil
    79
  • 5. EUR
    76
  • 6. Honduras
    75
  • 7. Reunion
    73
  • 8. Bahrain
    73
  • 9. Sierra Leone
    71
  • 10. Democratic Republic of the Congo
    71

Estimated Price History

Estimated Stock History

Datasheets & Reference Designs

Reference Designs

  • TIDM-HV-1PH-DCAC Single-Phase Inverter Reference Design With Voltage Source and Grid Connected Modes | TI.com
    TIDM-HV-1PH-DCAC: This reference design implements single-phase inverter (DC-AC) control using the C2000™ F28377D microcontroller. Design supports two modes of operation for the inverter. First is the voltage source mode using an output LC filter. This control mode is typically used in uninterruptible power supplies (UPS). Second is grid connected mode with an output LCL filter, which is typically used in solar inverters. Firmware for the design is supported under the powerSUITE framework which enables adaptation using the Solution Adapter and enables tuning of the control loop using the Compensation Designer and SFRA. High-efficiency, low THD and intuitive software make this design attractive for engineers working on inverter design for UPS and alternative energy applications such as PV inverters, grid storage and micro grids.
  • TIDA-01329 Configurable Stepper Driver for HVAC Louver and Motor Control Reference Design | TI.com
    TIDA-01329: This reference design provides a flexible stepper motor system designed to drive up to two stepper motors, or 8 peripherals, while reducing the number of GPIOs needed from the host controller reducing overall cost. The system is suitable for applications requiring stepper motors or coils up to 50V, and a max current of 2.5A (with all channels enabled). This design features multiple configurations for outputs, allowing multiple peripherals to be driven (i.e. 1 motor, 1 buzzer, 1 relay, and 2 LEDs). It is adaptable to automated louver control in Heating Ventilation and Air Conditioning (HVAC) systems as well as control of relays, buzzers, and LEDs. This concept could also be more broadly expanded to drive any number of channels for other building automation designs including louver control in smart ventilation systems, automated window blind tilting, as well as pan and tilt control for IP cameras.
  • Single-Phase Inverter Reference Design With Voltage Source and Grid Connected Modes
    TIDM-HV-1PH-DCAC: This reference design implements single-phase inverter (DC-AC) control using the C2000™ F28377D microcontroller. Design supports two modes of operation for the inverter. First is the voltage source mode using an output LC filter. This control mode is typically used in uninterruptible power supplies (UPS). Second is grid connected mode with an output LCL filter, which is typically used in solar inverters. Firmware for the design is supported under the powerSUITE framework which enables adaptation using the Solution Adapter and enables tuning of the control loop using the Compensation Designer and SFRA. High-efficiency, low THD and intuitive software make this design attractive for engineers working on inverter design for UPS and alternative energy applications such as PV inverters, grid storage and micro grids.

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