FIM Technology

High Power Capacitors
Calculation Form
DESIGN
Specification
Your Choice
Capacitance
Working voltage
Rms current
Frequency
Ripple voltage
Ambient temperature
Lifetime @ Vw,Irms and θamb
Parasitic inductance
Cooling conditions
C (µF)
Vw (V)
Irms (Arms)
F (Hz)
Vr (V)
θamb (°C)
hours
L (nH)
PN
Capacitance
Nominal voltage
Serial resistance
Thermal resistance between
hot spot and case
Thermal resistance between
case and ambient air
C (µF)
Vn (V)
Rs (mΩ)
Rth1 (°C/W)
Rth2 (°C/W)
Calculations
Maximum ripple voltage
Vrmax=0.45Vn
Vr =
V
The maximum ripple voltage must be in any case lower than the ripple voltage
Ratio Vw/Vn
Joule losses
Dielectric losses
Hot spot temperature
ρ = Vw/Vn
Pj = Rs x Irms2
Pd = Q x tgδ0 = Q x 3.10-4
θHS = θamb + (Pj+Pd) x (Rth1+Rth2)
ρ=
Pj =
Pd =
θHS =
W
W
°C
The hot spot temperature must be in any case lower than 85°C
LIFETIME EXPECTANCY VS HOT SPOT TEMPERATURE AND VOLTAGE
1.7
1.6
1.5
HS = 50°C
Vw/Vn
1.4
1.3
HS = 70°C
1.2
1.1
HS = 85°C
1
HS = 80°C
0.9
0.8
100
1000
10000
Lifetime Expectancy (hours)
Expected lifetime at hot spot calculated and V = Vw
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100000
1000000
DISFIM Products
For Energy Storage and Discharge Applications
Based on the CONTROLLED SELF HEALING technology,
AVX offers impregnated capacitors, named DISFIM, which
are ideal for discharge applications.
With the controlled self-healing technology, the capacitance
of the DISFIM is divided into several million elementary
capacitances. The weak points in the dielectric are insulated
and the capacitor continues to work without any short-circuit
or risk of explosion.
DISFIM capacitors may represent more than 10,000 square
meters.
Only some square millimeters of active surface are lost for
every self-healing action.
Over the life of the capacitor, the capacitance gradually
decreases.
The capacitor is usually designed to lose less than 5% of its
initial capacitance during its whole lifetime.
Example of design with 2 epoxide flat terminals
APPLICATIONS
Power laser
High voltage supplies
Cable failure detection
CHARACTERISTICS
Electromagnetic and ETC guns
Marx generators
Welding machine
Custom design is the rule as applications and
operating conditions are various.
Feel free to send your request to your local AVX
representative.
Use guide for customer’s specific requirement.
Voltage range from 2kV to 75kV
Maximum energy per can 150kJ
Specific energy up to 2000J/l
Lifetime up to several tens millions shots
Stray inductance from 50nH to 500nH
CONSTRUCTION
Metal case unit
Epoxide flat terminals or ceramic terminals
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High Power Capacitors
Guide for Customer’s Specific Requirements
This questionnaire lists the information we require to prepare an offer according to your exact requirements
Company / Name / Email
Project / Quantity
Applications
DC Filtering
Discharge*
Protection*
Tuning
Capacitance (µF)
Tolerance (%)
Operating Voltage
Vpeak
Ripple Voltage (peak to peak)
Vch
Vpeak
Vdc
Vrms
Arms
Arms
V
Working Frequency (Hz)
Operating Current
Arms
Maximum Current/Duration
Arms
Apeak
s
Discharge
Apeak
Aperiodic
Oscillatory
Pulse Duration (5% lpeak)
Time to lpeak (µs)
Ringing Frequency (Hz)
Reversal Voltage (%)
Repetition Rate
shots/min/hour/day
Hz
Hold Time @ Full Voltage (s)
Fault Peak Current / nb shots
Apeak
shots
Apeak
shots
Fault Reversal Voltage (%)
Lifetime Expectancy
hours
shots
hours
Maximum Inductance (nH)
Test Voltage between Terminals (V)
Test Voltage between Shorted
Terminals and Case (V)
Maximum Surge Voltage (MSV)
MSV Duration / Frequency
s
/year
s
/year
*Due to the particularities of varying waveforms in such application, more information on the exact nature of waveform is generally required for a full analysis.
Description
Dimensions (mm) / Shape
Section:
Operating Position
Terminals
vertical, horizontal
inclined,
upside down
type
Height:
rectangular, cylindrical
quantity
Thermal Characteristics
Storage Temperature (ºC)
Operating Temperature (ºC)
Cooling Method
min.
min.
Natural Convection
average
average
Forced Air (m/s)
max.
max.
Water
Remarks
30
hours
AVX Products Listing
PASSIVES
Capacitors
Multilayer Ceramic
Film
Glass
Niobium Oxide* - OxiCap®
Pulse Supercapacitors
Tantalum
Circuit Protection
Thermistors
Fuses - Thin Film
Transient Voltage Suppressors
Varistors - Zinc Oxide
Directional Couplers
Thin-Film
Filters
Ceramic
EMI
Noise
SAW
Low Pass - Thin Film
Inductors
Thin-Film
Integrated Passive Components
PMC - Thin-Film Networks
Capacitor Arrays
Feedthru Arrays
Low Inductance Decoupling Arrays
Piezo Acoustic Generators
Ceramic
Resistors
Arrays
Miniature Axials
Timing Devices
Clock Oscillators
MHz Quartz Crystal
Resonators
VCO
TCXO
CONNECTORS
Automotive
Standard, Custom
IDC Wire to Board
Headers, Plugs, Assemblies
Board to Board
SMD (0.4, 0.5, 1.0mm), BGA, Thru-Hole
Card Edge
Memory
PCMCIA, Compact Flash, Secure Digital, MMC,
Smartcard, SODIMM
DIN41612
Standard, Inverse, High Temperature
Military
H Government, DIN41612
FFC/FPC
0.3, 0.5, 1.0mm
PolytectTM
Soft Molding
Hand Held, Cellular
Battery, I/O, SIMcard, RF shield clips
Rack and Panel
VariconTM
2mm Hard Metric
Standard, Reduced Cross-Talk
For more information please visit
our website at
http://www.avx.com
NOTICE: Specifications are subject to change without notice. Contact your nearest AVX Sales Office for the latest specifications. All statements, information and data given
herein are believed to be accurate and reliable, but are presented without guarantee, warranty, or responsibility of any kind, expressed or implied. Statements
or suggestions concerning possible use of our products are made without representation or warranty that any such use is free of patent infringement and are not
recommendations to infringe any patent. The user should not assume that all safety measures are indicated or that other measures may not be required. Specifications are
typical and may not apply to all applications.
© AVX Corporation
“Niobium Oxide Capacitors are manufactured and sold under patent license from Cabot Corporation, Boyertown, Pennsylvania U.S.A.”
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