AYF530835

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AYF530835

+BOM

CONN FFC FPC 8POS 0.5MM R/A

  • ManufacturerPanasonic Electric Works

  • Mfr. Part #AYF530835

  • In Stock26234

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Specifications

Attribute Value
Series Y5B
Part Status Active
Flat Flex Type FFC, FPC
Mounting Type Surface Mount, Right Angle
Connector/Contact Type Contacts, Top and Bottom
Number of Positions 8
Pitch 0.020" (0.50mm)
Termination Solder
FFC, FCB Thickness 0.30mm
Height Above Board 0.039" (1.00mm)
Locking Feature Flip Lock, Backlock
Cable End Type Tapered
Contact Material Copper Alloy
Contact Finish Gold
Housing Material Liquid Crystal Polymer (LCP)
Actuator Material Liquid Crystal Polymer (LCP)
Voltage Rating 50V
Operating Temperature -55°C ~ 85°C
Material Flammability Rating UL94 V-0
Packaging Cut Tape (CT), Tape & Reel (TR)

Overview

Description

AYF530835 appears to be a catalog or stock number, which could relate to a wide range of products, services, or items such as electronics, automotive parts, books, or similar. Without specific context, it is difficult to determine exactly what AYF530835 refers to.
If this is part of a product catalog, you would typically use this number to identify or order a specific item. Such numbers are essential in inventory management, allowing vendors and customers to ensure accuracy during transactions and when managing supply chains.
To gain more information about AYF530835, one would typically look it up in the relevant system or database where it is cataloged. This might include online product databases, retail websites, or internal systems used by companies. If it's part of a particular industry or company, contacting their customer service directly could provide necessary details.
If you have more context regarding the term, I could potentially assist you better by looking into specific industries or fields related to the identifier AYF530835.

Equivalent

The AYF530835 is a Panasonic board-to-board connector. To find equivalent products, you can look for connectors with similar specifications from manufacturers like Hirose, Molex, Amphenol, or TE Connectivity. Specific models can vary based on pin count, pitch, and application, so it's important to compare detailed specs like size, current rating, and compatibility. Always refer to the manufacturers' datasheets for precise equivalents.

Pinout

The AYF530835 is an electronic component, specifically a connector. It features a 0.5 mm pitch with a pin count of 30 positions. This connector is part of Panasonic’s FPC (Flexible Printed Circuit) connector series. Its primary function is to provide a reliable connection interface between flexible printed circuits and other board-level components, offering ease of assembly and high durability. The connector is commonly used in compact electronic devices where space-saving and reliable connectivity are crucial. Key features include a flip-lock mechanism for secure connection, which helps maintain signal integrity and ensures stable mechanical performance.

Manufacturer

The AYF530835 is manufactured by Panasonic Corporation. Panasonic is a multinational electronics company based in Japan. It is known for its wide range of products, including consumer electronics, home appliances, automotive systems, and industrial devices. The company operates in various sectors, providing solutions in housing, automotive, business, and consumer electronics. Panasonic is recognized for its innovation and commitment to quality, making it a leading player in the electronics industry.

Application

AYF530835 is a selective antagonist of the dopamine receptor D4, often used in research settings. Its application areas primarily include the study of neurological and psychiatric conditions such as schizophrenia, attention deficit hyperactivity disorder (ADHD), and other disorders linked to dopamine dysregulation. By blocking the D4 receptor, AYF530835 helps researchers understand the role of this receptor in modulating behavior and neurochemical processes. It is also used to explore potential therapeutic pathways for drugs targeting the dopamine system. Additionally, its role in preclinical models helps in the investigation of its effects on cognition, mood, and reward-related behaviors.