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530L104KT16T

Description
multilayer ceramic capacitors mlcc - smd/smt 16volts 0.1uf 10%
CategoryPassive components   
File Size306KB,3 Pages
ManufacturerAll Sensors
Environmental Compliance
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530L104KT16T Overview

multilayer ceramic capacitors mlcc - smd/smt 16volts 0.1uf 10%

530L104KT16T Parametric

Parameter NameAttribute value
ManufactureAmerican Technical Ceramics (ATC)
Product CategoryMultilayer Ceramic Capacitors MLCC - SMD/SMT
RoHSYes
Capacitance0.1 uF
Voltage Rating16 V
Tolerance10 %
Temperature Coefficient / Code+/- 15 %
Case Code - i0402
Case Code - mm1005
Operating Temperature Range- 55 C to + 125 C
ProducRF Microwave MLCCs
Package / Case0402 (1005 metric)
PackagingReel
Factory Pack Quantity500
Termination StyleSMD/SMT
TypeBroadband Multilayer Capaci
Voltage Rating DC16 V
AT C 5 3 0 L B R O A D B A N D M U L T I L AY E R C A PA C I T O R S
ATC 530L Broadband
Multilayer Capacitors
Features:
• EIA 0402 Case Size
• Operating Frequency
16 KHz to 18 GHz
• Insertion Loss: 1 dB max.
• Low Loss X7R Dielectric
• RoHS Compliant Terminations
• Solderable SMT Terminations
ATC’s new 530L Series Multilayer Broadband Capacitor
provides low insertion loss performance over multiple oc-
taves of frequency spectrum. The 530L capacitor is
compatible with high speed automated pick and place
SMT manufacturing.
The 530L is ideal for broadband DC blocking, coupling,
bypassing, and feedback applications in optical
communications systems and equipment using high-
speed digital logic.
Advantages:
• Broadband Performance
• Low Insertion Loss
• Flat Frequency Response
• Excellent Return Loss through 18 GHz
• Unit-to-Unit Performance Repeatability
• Rugged Ceramic Construction
530L Insertion Loss (S21)
0.5
0
-0.5
-1
0
-5
-10
-15
530L Return Loss (S11)
Magnitude (dB)
-1.5
-2
-2.5
-3
-3.5
-4
-4.5
0.4
2.16
3.92
5.68
7.44
9.2
10.96 12.72 14.48
16.24
18
Magnitude (dB)
-20
-25
-30
-35
-40
-45
-50
0.4
2.16
3.92
5.68
7.44
9.2
10.96
12720 14.48
16.24
18
Frequency (GHz)
Frequency (GHz)
ATC 530L Data Sheet Test Condition Description
All testing performed on 10-mil-thick Rogers RO4350 microstrip board, with the UUT subtending a 24 mil gap in a 22-mil-wide center trace (nominal
50-ohm characteristic impedance). Measurements were made using an Anritsu 3680K Universal Test Fixture and an HP8722D Vector Network Analyzer
having a four-receiver architecture. Measurements have been de-embedded to the edges of the UUT using a standard TRL calibration procedure.
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