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HLMP-CW27-RS0DD

Description
Ceramic Chip Capacitors / Standard X7R; Capacitance [nom]: 390pF; Working Voltage (Vdc)[max]: 50V; Capacitance Tolerance: +/-5%; Dielectric: Multilayer Ceramic; Temperature Coefficient: X7R; Lead Style: Surface Mount Chip; Lead Dimensions: 0402; Termination: Tin Plated Nickel Barrier; Body Dimensions: 0.040" x 0.020"; Container: Bulk; Features: Unmarked
File Size80KB,6 Pages
ManufacturerHP(Keysight)
Websitehttp://www.semiconductor.agilent.com/
Download Datasheet View All

HLMP-CW27-RS0DD Overview

Ceramic Chip Capacitors / Standard X7R; Capacitance [nom]: 390pF; Working Voltage (Vdc)[max]: 50V; Capacitance Tolerance: +/-5%; Dielectric: Multilayer Ceramic; Temperature Coefficient: X7R; Lead Style: Surface Mount Chip; Lead Dimensions: 0402; Termination: Tin Plated Nickel Barrier; Body Dimensions: 0.040" x 0.020"; Container: Bulk; Features: Unmarked

Agilent HLMP-CWxx
T-1 ¾ (5mm) Extra Bright
Precision Optical Performance
White LED Lamps
Data Sheet
Features
Well defined spatial radiation
pattern
High luminous white emission
°
Viewing angle: 15°, 23° and 30°
° °
Standoff or non-standoff leads
Superior resistance to moisture
These T-1 ¾ lamps are
untinted, non-diffused, and
incorporate precise optics
which produce well-defined
spatial radiation patterns at
specific viewing cone angle.
Applications
Electronic signs and signals
Small area illumination
Legend backlighting
General purpose indicators
Benefit
Reduced power consumption,
higher reliability, and increased
optical/mechanical design
flexibility compared to
incandescent bulbs and other
alternative white light sources.
HLMP-CW11, HLMP-CW12, HLMP-CW26, HLMP-CW27,
HLMP-CW36, HLMP-CW37
Description
These high intensity white LED
lamps are based on InGaN
material technology. A blue
LED die is coated by
phosphor to produce white.
The typical resulting color is
described by the coordinates x
= 0.31, y = 0.31 using the 1931
CIE Chromaticity Diagram.
Caution: Devices are Class 1 ESD sensitive. Please observe appropriate precautions during
handling and processing. Refer to Application Note AN-1142 for additional details.
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