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FANUC Other A76L-0151-0098

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A76L-0151-0098

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The FANUC A76L-0151-0098 is a quad differential line driver integrated circuit designed for efficient signal transmission. This component operates on a supply voltage of 5 VDC with a maximum data transfer rate of 10 Mbps, making it suitable for high-speed applications.

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Technical specifications for A76L-0151-0098

ManufacturerFANUC
Product TypeQuad Differential Line Driver IC
Product LineOther
Part NumberA76L-0151-0098
SeriesPCBs
Number of Pins16
Number of Channels4
Pin Pitch2.54 mm
Supply Voltage5 VDC
Power Consumption1 W
Input Logic LevelsTTL/CMOS
Operating Temperature Range0 °C to +55 °C
Storage Temperature Range–20 °C to +60 °C
Humidity Range10% to 90% RH (non-condensing)
Altitude1000 m
Data Rate10 Mbps
MountingDirect soldering onto PCB

The FANUC A76L-0151-0098 device is a versatile quad differential line driver IC tailored for reliable data communication. This integrated circuit consists of 16 pins arranged with a pin pitch of 2.54 mm. It is organized into four independent channels. Powering the IC requires a 5 VDC supply, with total power consumption not exceeding 1 watt. The operating environment is specified with temperatures between 0 °C and +55 °C, while it can withstand storage temperatures ranging from -20 °C to +60 °C. These specifications ensure consistent performance under a broad spectrum of conditions.

Humidity must be maintained between 10% and 90% relative humidity without condensation to protect the IC's integrity. Additionally, it can function effectively at altitudes up to 1000 meters above sea level. The data transmission rate reaches up to 10 Mbps, supporting quick and efficient information exchange. This component mounts directly onto a printed circuit board through soldering, facilitating straightforward integration into electronic designs. The total weight of the A76L-0151-0098 is a mere 5 grams, and its compact dimensions are 20 mm in length, 6 mm in width, and 3 mm in thickness, allowing it to fit easily into various applications while providing essential functionality for enhanced electronic systems.