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LBC2016T470M

Updated: 2026-07-25

Overview

The LBC2016T470M is a surface-mount electronic component commonly used in modern circuit board designs. Based on the naming convention, it appears to be a 2016 package size (2.0mm × 1.6mm) component with specific electrical characteristics. Such components are fundamental building blocks in electronic devices across industries including telecommunications, computing, and industrial automation. The component's designation suggests it may be an inductor (L), bead (B), or filter component, with 470 likely indicating its nominal value (470nH for inductors or 47Ω for beads). The 'M' suffix typically denotes a tolerance or packaging specification.

Structure and Working Principle

As a surface-mount device (SMD), the LBC2016T470M features metalized terminals on either end for soldering directly to printed circuit boards. The internal structure depends on its specific function, but likely consists of a wound wire or layered construction within a ceramic or ferrite core material. In operation, these components typically function as passive elements that store energy in magnetic fields (inductors) or filter unwanted frequencies (beads). Their small size makes them ideal for high-density circuit designs while maintaining stable performance across a range of operating conditions.

Key Features

The LBC2016T470M offers several advantages for electronic design: compact 2016 footprint saves board space, surface-mount design enables automated assembly, and standardized packaging ensures compatibility with pick-and-place equipment. The component likely features stable performance across temperature variations and good high-frequency characteristics. Manufacturing quality is critical, with key parameters including Q factor (for inductors), impedance characteristics (for beads), and DC resistance. These components are typically rated for standard reflow soldering processes and exhibit good mechanical stability when properly mounted.

Application Areas

This component finds use in various electronic applications: power supply circuits for filtering and energy storage, RF circuits for impedance matching, and signal lines for EMI suppression. It's commonly specified in designs for consumer electronics, IoT devices, and automotive electronics where space efficiency is paramount. In communication equipment, such components help maintain signal integrity by filtering noise. In power electronics, they serve as energy storage elements in DC-DC converters. The specific 470 value suggests it might be tuned for particular frequency ranges or current handling requirements.

Maintenance and Precautions

Proper handling of the LBC2016T470M requires ESD precautions during assembly and rework. The small size makes these components susceptible to tombstoning during soldering if pad designs or temperature profiles aren't optimized. Storage should be in moisture-controlled environments for extended periods. In circuit operation, designers must respect the component's maximum current and voltage ratings to prevent saturation or breakdown. Thermal management is important in high-current applications, as excessive heat can degrade performance or cause failure over time.

B2B Procurement Guide

When sourcing LBC2016T470M components, buyers should verify manufacturer specifications match application requirements exactly. Key considerations include electrical parameters (inductance/impedance, tolerance, current rating), temperature coefficient, and reliability metrics (MTBF). Purchase quantities typically range from reels of several thousand for production to cut tape for prototyping. Lead times vary by manufacturer but standard parts are often available from distributors with minimal delay. Pricing shows significant volume discounts, with unit costs potentially dropping 30-50% for order quantities above 10,000 pieces.