Datasheet: A68064
The performance envelope of the A68064 targets high-stress electrical environments that demand fast, low-loss power manipulation. Principal Advantages
TO-220 (through-hole, offering excellent heat dissipation) Operating Temperature: -40°C to +105°C (extended range) Primary Function: High-performance power switching Key Traits: Low
The provides the essential electrical parameters, pin configurations, and thermal specifications for the A68064 , a highly versatile power control component primarily manufactured by Teccor Electronics (now part of Littelfuse). Packaged in a standardized, robust TO-220 form factor , this device is heavily utilized in industrial automation, motor control, and power management systems.
Serves as the primary solid-state switch in pulse-width modulation (PWM) speed controllers and soft-starters. a68064 datasheet
Multiple pins are tied to ground to serve as a heat sink and provide a low-resistance path for high-current loads. 5. Truth Table and Functional Logic
Connects to the ground or return path.
Because the A68064 serves as an obsolete or highly specialized industrial renewal part, it frequently appears across component cross-reference indices in a few distinct configurations: The performance envelope of the A68064 targets high-stress
Before diving into pinouts and timing diagrams, let’s highlight the core features that make the A68064 a go-to component for interface applications:
: Used as a latch driver for digital counters and shift registers, or as a power controller in motor and lighting systems. Typical Applications
Whether you are replicating a classic design or creating a new industrial control panel, mastering the A68064 datasheet will empower you to build efficient, scalable, and reliable systems. Serves as the primary solid-state switch in pulse-width
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– Receives the logic or driver control signal to initiate thyristor triggering or switching conduction states.
Always connect the COMMON pin (Pin 11) to the positive voltage rail power supply of the load. This routes the inductive spike through the internal flyback diodes, clamping the spike safely to the supply rail. Thermal Dissipation and De-rating