08055E104ZAT2A AVX Corporation, 08055E104ZAT2A Datasheet

CAPACITOR CERAMIC, 0.1UF, 50V, Z5U, 0805

08055E104ZAT2A

Manufacturer Part Number
08055E104ZAT2A
Description
CAPACITOR CERAMIC, 0.1UF, 50V, Z5U, 0805
Manufacturer
AVX Corporation
Series
0805r
Datasheets

Specifications of 08055E104ZAT2A

Tolerance (+ Or -)
-20% to 80%
Voltage
50VDC
Temp Coeff (dielectric)
Z5U
Operating Temp Range
10C to 85C
Mounting Style
Surface Mount
Construction
SMT Chip
Case Style
Ceramic Chip
Failure Rate
Not Required
Wire Form
Not Required
Product Length (mm)
2.01mm
Product Depth (mm)
1.25mm
Product Height (mm)
1.3mm
Product Diameter (mm)
Not Requiredmm
Capacitance
.1uF
Package / Case
0805
Dielectric Characteristic
Z5U
Capacitance Tolerance
+80, -20%
Voltage Rating
50VDC
Capacitor Case Style
0805
No. Of Pins
2
Capacitor Mounting
SMD
Rohs Compliant
Yes
Tolerance
- 20 %, 80 %
Operating Temperature Range
+ 10 C to + 85 C
Temperature Coefficient / Code
Z5U
Product
General Type MLCCs
Dimensions
0.049 in W x 0.079 in L x 0.930 mm H
Termination Style
SMD/SMT
Lead Free Status / RoHS Status
Compliant
AVX
Multilayer Ceramic
Chip Capacitor

Related parts for 08055E104ZAT2A

08055E104ZAT2A Summary of contents

Page 1

... AVX Multilayer Ceramic Chip Capacitor ...

Page 2

... Ceramic Chip Capacitors Table of Contents Basic Capacitor Formulas . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . How to Order - AVX Part Number Explanation . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . C0G (NP0) Dielectric General Specifications and Typical Characteristic Curves . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . . ...

Page 3

... XI. Equivalent Series Resistance (ohms) XII. Power Loss (watts) XIII. KVA (Kilowatts) XIV. Temperature Characteristic (ppm/°C) XV. Cap Drift (%) XVI. Reliability of Ceramic Capacitors XVII. Capacitors in Series (current the same) XVIII. Capacitors in Parallel (voltage the same) XIX. Aging Rate (phase angle) XX. Decibels ...

Page 4

How to Order Part Number Explanation EXAMPLE: 08055A101JAT2A 0805 5 A Size Dielectric (L" x W") C0G (NP0 0402 X7R = C 0504 X5R = D 0603 Z5U = E 0805 Y5V = G 1005 0907 1206 1210 ...

Page 5

... C from -55°C to +125°C. Capacitance drift or hysteresis for C0G (NP0) ceramics is negligible at less than ±0.05% versus up to ±2% for films. Typical capacitance change with life is less than ±0.1% for C0G (NP0), one-fifth that shown by most other dielectrics ...

Page 6

C0G (NP0) Dielectric Specifications and Test Methods Parameter/Test Operating Temperature Range Capacitance Q Insulation Resistance Dielectric Strength Appearance Capacitance Resistance to Variation Flexure Q Stresses Insulation Resistance Solderability Appearance Capacitance Variation Resistance to Q Solder Heat Insulation Resistance Dielectric Strength ...

Page 7

C0G (NP0) Dielectric Capacitance Range PREFERRED SIZES ARE SHADED SIZE 0201 Soldering Reflow Only Packaging All Paper MM 0.60 ± 0.03 L) Length (in.) (0.024 ± 0.001) MM 0.30 ± 0.03 (W) Width (in.) (0.011 ± 0.001) MM 0.15 ± ...

Page 8

C0G (NP0) Dielectric Capacitance Range PREFERRED SIZES ARE SHADED SIZE 1210 Soldering Reflow/Wave Packaging Paper/Embossed MM 3.20 ± 0.20 (L) Length (in.) (0.126 ± 0.008) MM 2.50 ± 0.20 (W) Width (in.) (0.098 ± 0.008) MM 0.50 ± 0.25 (t) ...

Page 9

... C0G (NP0) Capacitors for RF/Microwave Ultra Low ESR, “U” Series, C0G (NP0) Chip Capacitors GENERAL INFORMATION “U” Series capacitors are C0G (NP0) chip capacitors spe- cially designed for “Ultra” low ESR for applications in the communications market. Max ESR and effective capacitance ...

Page 10

... C0G (NP0) Capacitors for RF/Microwave Ultra Low ESR, “U” Series, C0G (NP0) Chip Capacitors CAPACITANCE RANGE Size Available Cap (pF) Tolerance 0402 0603 0805 1210 Cap (pF) Tolerance 0402 0603 0805 1210 0.2 B,C 25V N/A N/A N/A 1.0 0.3 1.1 0.4 1 ...

Page 11

... C0G (NP0) Capacitors for RF/Microwave Ultra Low ESR, “U” Series, C0G (NP0) Chip Capacitors 10 (GHz) Frequency ...

Page 12

... Frequency, MHz X7R formulations are called “temperature stable” ceramics and fall into EIA Class II materials. X7R is the most popular of these intermediate dielectric constant materials. Its tem- perature variation of capacitance is within ±15% from -55°C to +125°C. This capacitance change is non-linear. ...

Page 13

X7R Dielectric Specifications and Test Methods Parameter/Test Operating Temperature Range Capacitance Dissipation Factor Insulation Resistance Dielectric Strength Appearance Capacitance Resistance to Variation Flexure Dissipation Stresses Factor Insulation Resistance Solderability Appearance Capacitance Variation Dissipation Resistance to Factor Solder Heat Insulation Resistance ...

Page 14

X7R Dielectric Capacitance Range PREFERRED SIZES ARE SHADED SIZE 0201 0402 Soldering Reflow Only Reflow Only Packaging All Paper All Paper MM 0.60 ± 0.03 1.00 ± 0.10 (L) Length (in.) (0.024 ± 0.001) (0.040 ± 0.004) MM 0.30 ± ...

Page 15

X7R Dielectric Capacitance Range PREFERRED SIZES ARE SHADED SIZE 1210 Soldering Reflow/Wave Packaging Paper/Embossed MM 3.20 ± 0.20 (L) Length (in.) (0.126 ± 0.008) MM 2.50 ± 0.20 (W) Width (in.) (0.098 ± 0.008) MM 0.50 ± 0.25 (t) Terminal ...

Page 16

... Temperature °C GENERAL DESCRIPTION • General Purpose Dielectric for Ceramic Capacitors • EIA Class II Dielectric • Temperature variation of capacitance is within ±15% from -55°C to +85°C • Well suited for decoupling and filtering applications • Available in High Capacitance values (up to 100µF) ...

Page 17

X5R Dielectric Specifications and Test Methods Parameter/Test Operating Temperature Range Capacitance Dissipation Factor Insulation Resistance Dielectric Strength Appearance Capacitance Resistance to Variation Flexure Dissipation Stresses Factor Insulation Resistance Solderability Appearance Capacitance Variation Dissipation Resistance to Factor Solder Heat Insulation Resistance ...

Page 18

X5R Dielectric Capacitance Range PREFERRED SIZES ARE SHADED SIZE 0201 0402 Soldering Reflow Only Reflow Only Packaging All Paper All Paper MM 0.60 ± 0.03 1.00 ± 0.10 (L) Length (in.) (0.024 ± 0.001) (0.040 ± 0.004) MM 0.30 ± ...

Page 19

X5R Dielectric Capacitance Range PREFERRED SIZES ARE SHADED SIZE Soldering Packaging (L) Length (W) Width (t) Terminal WVDC Cap (pF) Cap. (µF) WVDC SIZE Letter A C Max. 0.33 0.56 0.71 Thickness (0.013) (0.022) (0.028) PAPER Contact Factory for Multiples ...

Page 20

Y5V Dielectric General Specifications PART NUMBER (see page 3 for complete part number explanation) 0805 3 G Size Voltage Dielectric (L" x W") 6. Y5V = G 10V = Z 16V = Y 25V = 3 50V = ...

Page 21

Y5V Dielectric Specifications and Test Methods Parameter/Test Operating Temperature Range Capacitance Dissipation Factor Insulation Resistance Dielectric Strength Appearance Capacitance Resistance to Variation Flexure Dissipation Stresses Factor Insulation Resistance Solderability Appearance Capacitance Variation Dissipation Resistance to Factor Solder Heat Insulation Resistance ...

Page 22

Y5V Dielectric Capacitance Range PREFERRED SIZES ARE SHADED SIZE 0201 0402 Soldering Reflow Only Reflow Only Packaging All Paper All Paper MM 0.60 ± 0.03 1.00 ± 0.10 (L) Length (in.) (0.024 ± 0.001) (0.040 ± 0.004) MM 0.30 ± ...

Page 23

Low Profile Chips Z5U & Y5V Dielectric PART NUMBER (see page 3 for complete information and options) 1206 3 E Size Voltage Dielectric (L" x W") 25V = 3 Z5U = E Y5V = G PERFORMANCE CHARACTERISTICS Capacitance Range Capacitance ...

Page 24

... J 5000V = K High value, low leakage and small size are difficult parame- ters to obtain in capacitors for high voltage systems. AVX special high voltage MLC chips capacitors meet these per- formance characteristics and are designed for applications such as snubbers in high frequency power converters, res- onators in SMPS, and high voltage coupling/DC blocking ...

Page 25

High Voltage Chips For 500V to 5000V Applications C0G (NP0) Dielectric PERFORMANCE CHARACTERISTICS Capacitance Range Capacitance Tolerances Dissipation Factor Operating Temperature Range Temperature Characteristic Voltage Ratings Insulation Resistance (+25°C, at 500 VDC) Insulation Resistance (+125°C, at 500 VDC) Dielectric Strength ...

Page 26

General Specifications Environmental THERMAL SHOCK Specification Appearance No visual defects Capacitance Variation C0G (NP0): ± 2.5% or ± .25pF, whichever is greater X7R: ≤ ± 7.5% Z5U: ≤ ± 20% Y5V: ≤ ± 20% Q, Tan Delta To meet initial ...

Page 27

General Specifications Environmental STEADY STATE HUMIDITY (No Load) Specification Appearance No visual defects Capacitance Variation C0G (NP0): ± ± .5pF, whichever is greater X7R: ≤ ± 10% Z5U: ≤ ± 30% Y5V: ≤ ± 30% Q, Tan Delta ...

Page 28

General Specifications Mechanical END TERMINATION ADHERENCE Specification No evidence of peeling of end terminal Measuring Conditions After soldering devices to circuit board apply 5N (0.51kg f) for 10 ± 1 seconds, please refer to Figure 1. 5N FORCE DEVICE UNDER ...

Page 29

MIL-PRF-55681/Chips Part Number Example W T MIL Style: CDR01, CDR02, CDR03, CDR04, CDR05, CDR06 Voltage Temperature Limits ± 30 ppm/°C without voltage; 0 ± 30 ppm/°C with rated voltage from -55°C to +125° ± 15% ...

Page 30

MIL-PRF-55681/Chips Military Part Number Identification CDR01 thru CDR06 Military Type Capacitance Capacitance Designation in pF tolerance AVX Style 0805/CDR01 CDR01BP100B--- 10 J,K CDR01BP120B--- 12 J CDR01BP150B--- 15 J,K CDR01BP180B--- 18 J CDR01BP220B--- 22 J,K CDR01BP270B--- 27 J CDR01BP330B--- 33 J,K ...

Page 31

MIL-PRF-55681/Chips Military Part Number Identification CDR31 thru CDR35 W T MIL Style: CDR31, CDR32, CDR33, CDR34, CDR35 Voltage Temperature Limits ± 30 ppm/°C without voltage; 0 ± 30 ppm/°C with rated voltage from -55°C to +125°C BX ...

Page 32

MIL-PRF-55681/Chips Military Part Number Identification CDR31 Military Type Capacitance Capacitance Designation tolerance AVX Style 0805/CDR31 (BP) CDR31BP1R0B--- 1.0 C CDR31BP1R1B--- 1.1 C CDR31BP1R2B--- 1.2 C CDR31BP1R3B--- 1.3 C CDR31BP1R5B--- 1.5 C CDR31BP1R6B--- 1.6 C CDR31BP1R8B--- 1.8 ...

Page 33

MIL-PRF-55681/Chips Military Part Number Identification CDR32 Military Type Capacitance Capacitance Designation tolerance AVX Style 1206/CDR32 (BP) CDR32BP1R0B--- 1.0 C CDR32BP1R1B--- 1.1 C CDR32BP1R2B--- 1.2 C CDR32BP1R3B--- 1.3 C CDR32BP1R5B--- 1.5 C CDR32BP1R6B--- 1.6 C CDR32BP1R8B--- 1.8 ...

Page 34

MIL-PRF-55681/Chips Military Part Number Identification CDR33/34/35 CDR33/34/35 to MIL-PRF-55681/9/10/11 Military Type Capacitance Capacitance Designation tolerance AVX Style 1210/CDR33 (BP) CDR33BP102B--- 1,000 F,J,K CDR33BP112B--- 1,100 F,J,K CDR33BP122B--- 1,200 F,J,K CDR33BP132B--- 1,300 F,J,K CDR33BP152B--- 1,500 F,J,K CDR33BP162B--- 1,600 ...

Page 35

... European Detail Specifications CECC 32 101-801/Chips Standard European Ceramic Chip Capacitors PART NUMBER (example) 0805 5 C Size Voltage Dielectric (L" x W") 50V = 100V = 1 2R1 = C 200V = 2 2F4 = G RANGE OF APPROVED COMPONENTS Case Dielectric Size Type 1BCG 0603 1B CG 0805 1B CG 1206 1B CG 1210 1B CG ...

Page 36

Packaging of Chip Components Automatic Insertion Packaging TAPE & REEL QUANTITIES All tape and reel specifications are in compliance with RS481. Paper or Embossed Carrier Embossed Only Paper Only Qty. per Reel/7" Reel Qty. per Reel/13" Reel (1) Dependent on ...

Page 37

Embossed Carrier Configuration 8 & 12mm Tape Only 8 & 12mm Embossed Tape Metric Dimensions Will Govern CONSTANT DIMENSIONS Tape Size +0.10 8mm 8.4 1.75 ± 0.10 -0.0 +.004 (.059 ) (.069 ± .004) (.157 ± .004) ...

Page 38

Paper Carrier Configuration 8 & 12mm Tape Only 8 & 12mm Paper Tape Metric Dimensions Will Govern CONSTANT DIMENSIONS Tape Size +0.1 8mm 1.5 1.75 ± 0.10 -0.0 (.059 +.004 ) (.069 ± .004) and -.000 12mm ...

Page 39

Bulk Case Packaging BENEFITS • Easier handling • Smaller packaging volume (1/20 of T/R packaging) • Easier inventory control • Flexibility • Recyclable CASE DIMENSIONS Shutter Slider 12mm 36mm 110mm Attachment Base CASE QUANTITIES Part Size Qty. (pcs / cassette) ...

Page 40

... General Description Basic Construction – A multilayer ceramic (MLC) capaci- tor is a monolithic block of ceramic containing two sets of offset, interleaved planar electrodes that extend to two opposite surfaces of the ceramic dielectric. This simple Ceramic Layer Formulations – Multilayer ceramic capacitors are available in both Class 1 and Class 2 formulations. Temperature ...

Page 41

... Curve 2 factor versus time. A typical curve of aging rate for semi- stable ceramics is shown in Figure Class 2 ceramic capacitor that has been sitting on the shelf for a period of time, is heated above its curie point, Curve 1 (125°C for 4 hours or 150°C for will de-age and return to its initial capacitance and dissi- 2 ...

Page 42

... As a general statement, the piezoelectric output is higher, the higher the dielectric constant of the ceramic desirable to investigate this effect before using high “K” dielectrics as coupling capaci- tors in extremely low level applications. ...

Page 43

... Watts loss = (2 π fCV Very low values of dissipation factor are expressed as their reciprocal for convenience. These are called the “Q” Quality factor of capacitors. 2 π fC Parasitic Inductance – The parasitic inductance of capac- itors is becoming more and more important in the decou- pling of today’s high speed digital systems. The relationship ...

Page 44

... Another important, often overlooked, reason for knowing the parasitic inductance is the calculation of the resonant frequency. This can be important for high frequency, by- pass capacitors, as the resonant point will give the most signal attenuation. The resonant frequency is calculated from the simple equation: f ...

Page 45

... Component pads should be designed to achieve good sol- der filets and minimize component movement during reflow soldering. Pad designs are given below for the most com- mon sizes of multilayer ceramic capacitors for both wave and reflow soldering. The basis of these designs is: • Pad width equal to component width permissible to decrease this to as low as 85% of component width but it is not advisable to go below this ...

Page 46

... In all other cases this differential should not exceed 100°C. For further specific application or process advice, please consult AVX. Cleaning Care should be taken to ensure that the capacitors are thoroughly cleaned of flux residues especially the space beneath the capacitor. Such residues may otherwise become conductive and effectively offer a low resistance bypass to the capacitor ...

Page 47

... Handling Chip multilayer ceramic capacitors should be handled with care to avoid damage or contamination from perspiration and skin oils. The use of tweezers or vacuum pick ups is strongly recommended for individual components. Bulk handling should ensure that abrasion and mechanical shock are minimized ...

Page 48

... Specifications are typical and may not apply to all applications. SpiCap (for MLC chip capacitors) SpiTan (for tantalum capacitors) SpiCalci (for power supply capacitors) SpiMic (for RF-Microwave capacitors) AVX/Elco representative 47 ...

Page 49

USA AVX Myrtle Beach, SC Corporate Offices Tel: 843-448-9411 FAX: 843-448-1943 AVX Northwest, WA Tel: 360-669-8746 FAX: 360-699-8751 AVX North Central, IN Tel: 317-848-7153 FAX: 317-844-9314 AVX Northeast, MA Tel: 508-485-8114 FAX: 508-485-8471 AVX Mid-Pacific, CA Tel: 408-436-5400 FAX: 408-437-1500 ...

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