A68064 Datasheet (2025)

Navigating the exact component classification can sometimes challenge engineers because the part number overlaps with several older display drivers (like Allegro latch drivers). However, the core TECCOR A68064 hardware is built as a high-reliability N-channel MOSFET/discrete power device engineered for heavy-duty load handling. This comprehensive breakdown outlines its technical specifications, pinout, and circuit integration steps based on official datasheet parameters. Core Technical Specifications

The A68064 is a high-performance mixed-signal microcontroller (MCU) family intended for embedded applications requiring low power, flexible I/O, and integrated analog peripherals. This article summarizes the device’s main features, typical electrical characteristics, functional blocks, and common application scenarios to help engineers evaluate suitability and accelerate design integration.

Based on available technical summaries, the A68064 features:

: Standardized at approximately 1.4V for thyristor versions. A68064 Teccor - Xecor

RDS(on)cap R sub cap D cap S open paren o n close paren end-sub : High-efficiency switching with minimal power dissipation. a68064 datasheet

In conclusion, the A68064 datasheet provides a comprehensive overview of the processor's architecture, features, and specifications. With its high-performance architecture, advanced instruction sets, and multi-core design, the A68064 processor is well-suited for a wide range of applications, including artificial intelligence, data centers, and gaming. As the demand for high-performance computing continues to grow, the A68064 processor is poised to play a significant role in shaping the future of computing.

The A68064 is a component typically manufactured by (now part of Littelfuse) or NBR , and it is described across various technical sources as a high-performance MOSFET , thyristor , or NPN transistor depending on the specific sub-variant. It is most commonly housed in a TO-220 package and is designed for power control and switching. Core Technical Specifications Specification Package Type Max Voltage Rating Up to 800V Current Rating Power Rating Gate Trigger Voltage Operating Temperature -40°C to 105°C Key Features & Functionality Efficient Switching : Features low Rds(on)cap R sub d s open paren o n close paren end-sub

TO-220 (Three-lead plastic package with an exposed metal tab). Operating Temperature Range ( TAcap T sub cap A ): -40°C to 105°C. Compliance: Lead-free / RoHS Compliant.

The by Teccor is a dependable choice for design engineers looking for a reliable N-channel MOSFET in a TO-220 package. Its ability to operate across an extended temperature range makes it ideal for industrial-grade applications. Always consult the official A68064 datasheet from the manufacturer to confirm technical specifications for your specific application. A68064 Teccor - Xecor RDS(on)cap R sub cap

Engineers sourcing the A68064 from legacy component databases often encounter broad descriptions due to part-number indexing across manufacturers. However, the core Teccor silicon architecture relies on a optimized for gated switching: Parameter Type Target Metric / System Behavior Silicon Technology

Connects to the high-voltage load or incoming AC line side of your system.

IT(RMS)cap I sub cap T open paren cap R cap M cap S close paren end-sub ) Gate Trigger Voltage ( VGTcap V sub cap G cap T end-sub ) 1.4V Maximum Power Dissipation ( PDcap P sub cap D ) 2 Watts (Free Air Ambient) Operating Temperature Range ( TAcap T sub cap A ) -40°C to +105°C Environmental Compliance Lead-Free / RoHS Compliant 🗺️ Pinout Configuration (TO-220 Package)

: Always derate output current when multiple channels are active. At 85°C ambient, reduce total power by 50%. a section on finding genuine datasheets

Let me know which you need to focus on next! A68064 Teccor - Xecor

Acting as an interface for relays, solenoids, or small motors. Design Considerations

Operates safely on domestic mains supplies (110V/220V) with massive overhead margins to protect against transient spikes from inductive loads.

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