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... for external input resistors, enabling inverter circuit configurations with just on/off condition settings. These transistors are suitable for applications such as inverters, interfaces, and drivers. Comple...
... for external input resistors, enabling inverter circuit configurations with straightforward on/off condition settings. These transistors are ideal for applications such as inverters, interfaces, and drivers...
... input resistors, enabling inverter circuit configurations with only on/off conditions to be set. These transistors are ideal for applications requiring simplified inverter, interface, and driver circuits. C...
... (R1 = R2 = 47k), simplifying inverter circuit configuration without external resistors. This design facilitates easy circuit design by focusing solely on on/off conditions. It is suitable for applications s...
...R1 = R2 = 22k) that simplify circuit design by eliminating the need for external input resistors. This component is ideal for configuring inverter circuits, offering easy operation by simply setting on/off c...
... (R1 = R2 = 2.2k), these transistors eliminate the need for external input resistors, making circuit design easier by focusing solely on setting on/off conditions. They are suitable for inverter, interface, ...
...R1 = 100k. These transistors simplify circuit design by enabling the configuration of inverter circuits without external input resistors, requiring only the setting of on/off conditions. They are suitable fo...
...R1 = 1k, R2 = 10k) for simplified inverter circuit configuration. This AEC-Q101 qualified component eliminates the need for external input resistors, allowing for easy circuit design by simply setting on/off...
... board area. They provide a collector-emitter voltage (VCEO) of 50V and a collector current (IC) of 100mA, with a typical input resistance (R1) of...
...R1 = R2 = 10k). This integration simplifies circuit design by eliminating the need for external input resistors, enabling the configuration of inverter circuits with ease. Designed for applications requiring...
Product Overview The DTA144E series is a range of PNP digital transistors featuring built-in bias resistors (R1 = R2 = 47k). This integrated design simplifies circuit configuration, particularly for inverter ci...
Product Overview The DTC114Y series are NPN digital transistors featuring built-in biasing resistors (R1 = 10k, R2 = 47k). This integration simplifies circuit design by eliminating the need for external input r...
Product Overview The DTA144E series is a range of PNP digital transistors featuring built-in bias resistors (R1 = R2 = 47k). This integrated design simplifies circuit configuration, enabling the creation of inv...
Product Overview The DTA043E series is a line of PNP digital transistors featuring built-in biasing resistors (R1 = R2 = 4.7k). This integration simplifies circuit design by eliminating the need for external in...
Product Overview The DTC114E series is a line of NPN digital transistors featuring built-in biasing resistors (R1 = R2 = 10k). This integration simplifies circuit design by eliminating the need for external inp...
Product Overview The DTA013Z series is a line of PNP digital transistors with built-in biasing resistors, designed for simplified circuit design. These transistors feature integrated R1 (1k) and R2 (10k) resist...
Product Overview The DTA113Z series are PNP digital transistors with built-in bias resistors, designed for simplified circuit configuration. These transistors feature integrated resistors (R1 = 1.0k, R2 = 2.2k)...
Product Overview The DTC143X series is a line of NPN digital transistors designed for efficient circuit configuration. These transistors feature built-in biasing resistors (R1 = 4.7k, R2 = 10k), simplifying inv...
Product Overview The DTA123E series is a PNP digital transistor featuring built-in biasing resistors (R1 = R2 = 2.2k). This integrated design simplifies circuit construction, particularly for inverter circuits,...
Product Overview The DTA114ECA is a PNP digital transistor featuring built-in biasing resistors (R1 = R2 = 10k). This integrated design simplifies circuit configuration, particularly for inverter circuits, by e...