Medium Power Film Capacitors
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1 FFVE/FFVI Male and Female Connections DC FILTERING GENERAL DESCRIPTION The FFV capacitor is specifically designed for DC filtering, low reactive power. The series uses a non-impregnated metallized polypropylene or polyester dielectric, which features a controlled self-healing process, specially treated to have a very high dielectric strength in operating conditions up to 15 C. The FFV special design gives this series a very low level of stray inductance (18 nh to 4 nh). Furthermore, the performance levels of the FFVE capacitor makes them a very interesting alternative to electrolytic technology, because they can withstand much higher levels of surge voltage, very high rms current ratings, and longer lifetimes. PACKAGING Self-extinguishing plastic case (V = in accordance with UL 94) filled thermosetting resin. Self-extinguishing thermosetting resin (V = in accordance with UL 94; I3F1 = in accordance with NF F 16-11). FFVE capacitors meet the Level 2 requirement of the fire behavior standard NF F DESIGN Also available with threaded female connections - M5 x 7.5mm max Torque 2.5Nm 2 (.787) SUFFIX M8 LABEL 5 (.197) H±1 (.39) SUFFIX JE 1.5 (.59) M5x7.5 5 (.197) LABEL H±1 (.39) Tightening Torque 3 N.m max *Mounting with Thermal Interface Grease Dimensions: millimeters (inches) General Tolerance: ±.5 (.2) 22 (.866) 11 (3.976) 45±1 (1.772±.39) Ø2 (.787) ±1 (.39) Ø16 (.63)min Plastic Case Tinned Output Ø5.5 (.217).6 Ø84 (.24) (3.37) max 71.7 (2.822) 84.5 (3.327) max 5 (.197) ELECTRICAL CHARACTERISTICS 71.7 (2.822) 84.5 (3.327) max 5 (.197) Max Torque 8.5 N.m for M8 Max Torque 2.5 N.m for M5 The FFVE for low voltage DC filtering are polyester dielectric capacitors. Working temperature -4 C to +15 C (according to the power to be dissipated) Capacitance range 12µF to 4µF Capacitance tolerance ±1% Rated DC voltage 3 to 19 V Test voltage between 25 C 1.5 x V n dc 1s (1.25 V n dc 1s for FFVI) Insulation voltage between shorted terminals and earth 7 kvrms/6sec/5hz Resin Rs(f) vs FREQUENCY For frequency higher than 1 khz Rs(f) = (Rs-a) + k a H=34: a.2 H=4: a.21 H=51: a.23 H=64: a.24 use following curve K Frequency (khz)
2 FFVE/FFVI Male and Female Connections POLYESTER DIELECTRIC Capacitance Irms max. Ls max. Rs Rth (µf) Height (A) (nh) (m ) ( C/W) Dimensions: millimeters (inches) Part Number* V n dc 3 volts (1.339) FFVE4H187K (1.339) FFVE4H1956K (1.575) FFVE4H257K (2.8) FFVE4H357K (2.8) FFVE4H47K-- V n dc 4 volts 1 34 (1.339) FFVE4I17K (1.339) FFVE4I127K (1.575) FFVE4I157K (2.8) FFVE4I187K (2.8) FFVE4I227K-- *Change K-- to KJE for female connectors M5 x 7.5mm LIFETIME EXPECTANCY FFVE POLYESTER V w : permanent working or operating DC voltage. POLYPROPYLENE DIELECTRIC Capacitance Irms max. Ls max. Rs Rth (µf) Height (A) (nh) (m ) ( C/W) Vw/Vndc 95 C 15 C Part Number* V n dc 6 volts (1.339) FFVE6K256K (1.575) FFVE6K17K (2.8) FFVE6K157K (2.52) FFVE6K227K-- V n dc 8 volts 66 4 (1.575) FFVE6B666K (2.8) FFVE6B17K (2.52) FFVE6B147K-- V n dc 9 volts (1.339) FFVE6C126K (1.339) FFVE6C386K (1.575) FFVE6C476K (2.8) FFVE6C76K (2.52) FFVE6C17K-- V n dc 1 volts 66 4 (1.575) FFVE6L666KJ (2.8) FFVE6L17KJ (2.52) FFVE6L147KJ7 V n dc 12 volts 47 4 (1.575) FFVE6U476KJ (2.8) FFVE6U76KJ (2.52) FFVE6U17KJ7 V n dc 19 volts 15 4 (1.575) FFVE6N156KJ (2.8) FFVE6N246KJ (2.52) FFVE6N356KJ7 *Change K-- to KJE for female connectors M5 x 7.5mm *Change KJ7 to K7X for female connectors M5 x 7.5mm C 6 C 7 C 85 C Lifetime Expectancy (hours) DC FILTERING
3 FFVE/FFVI Male and Female Connections DC FILTERING Vw/Vndc LIFETIME EXPECTANCY FOR FFVE POLYPROPYLENE K-- and KJE 5 C 7 C.8 95 C 85 C 15 C Lifetime Expectancy (hours) Vw/Vndc KJ7 and K7X C C C 15 C Lifetime Expectancy (hours) 5 C 7 C 1 1 Vw: permanent working or operating DC-voltage. Vw: permanent working or operating DC-voltage. POLYPROPYLENE DIELECTRIC Capacitance Irms max. Ls max. Rs Rth (µf) Height (A) (nh) (m ) ( C/W) Part Number* V n dc 5 volts (1.575) FFVI6J1256K (2.8) FFVI6J27K (2.52) FFVI6J2756K-- V n dc 7 volts 1 4 (1.575) FFVI6A17K (2.8) FFVI6A157K (2.52) FFVI6A227K-- V n dc 9 volts 66 4 (1.575) FFVI6C666K (2.8) FFVI6C17K (2.52) FFVI6C147K-- V n dc 11 volts 47 4 (1.575) FFVI6L476K (2.8) FFVI6L76K (2.52) FFVI6L17K-- *Change K-- to KJE for female connectors M5 x 7.5mm LIFETIME EXPECTANCY FOR FFVI Vw/Vndc C 1. 7 C.9 85 C.8 95 C.7 15 C Lifetime Expectancy (hours) Vw: permanent working or operating DC-voltage HOT SPOT CALCULATION θ hot spot = θ case + (P d + P t ) x R th with P d (Dielectric losses) = Q x tgδ [ 1 2 x C n x (V peak to peak ) 2 x f ] x tgδ (see tgδ vs dielectric pages 2 and 3) P t (Thermal losses) = R s x (I rms ) 2 where C n in Farad I rms in Ampere f in Hertz V in Volt R s in Ohm θ in C R th in C/W R th hot spot/bottom case θ case = bottom middle case
4 FFLC Design ELECTRICAL CHARACTERISTICS Capacitance range C n 112µF to 88µF (other values available upon request) Tolerance on C n ±1% Rated DC voltage V n dc 68 to 12 V Maximum rms current I rms max 14 Arms to 3 Arms Stray inductance L s * 28 nh to 4 nh DC FILTERING FFLC Part Capacitance Height Width Irms Ls* Rs Rth Weight Number (µf) mm (in) mm (in) (A) (nh) (m ) ( C/W) (kg) U N dc: 68 V FFLC6A887K (9.449) 17 (6.693) FFLC6A7157K (9.449) 145 (5.79) FFLC6A657K (9.449) 145 (5.79) FFLC6A567K (6.693) 17 (6.693) FFLC6A4557K (6.693) 145 (5.79) FFLC6A4187K (9.449) 95 (3.74) FFLC6A2667K (6.693) 95 (3.74) U N dc: 1 V FFLC6L567K (9.449) 17 (6.693) FFLC6L327K (6.693) 17 (6.693) FFLC6L437K (9.449) 145 (5.79) FFLC6L2737K (6.693) 145 (5.79) FFLC6L2537K (9.449) 95 (3.74) FFLC6L167K (6.693) 95 (3.74) U N dc : 12 V FFLC6U3527K (9.449) 17 (6.693) FFLC6U2247K (6.693) 17 (6.693) FFLC6U37K (9.449) 145 (5.79) FFLC6U197K (6.693) 145 (5.79) FFLC6U1757K (9.449) 95 (3.74) FFLC6U1127K (6.693) 95 (3.74) *Very low stray inductance for high frequency applications on request. 23
5 FFLC Design DC FILTERING LIFETIME EXPECTANCY vs HOT SPOT TEMPERATURE AND VOLTAGE Vw/Vndc C C C Lifetime Expectancy (hours) 1 1 Vw: permanent working or operating DC-voltage. ELECTRICAL CHARACTERISTICS Climatic category 4/85/56 (IEC 668) FFLC overvoltage: (Vs): Vs = 2 Vndc and limited at 21V Maximum overvoltage Peak value Maximum duration 1.67 Vndc 1 ms 1 time per week 1.25 Vndc 1 ms 1 time per day 1.1 Vndc 1 min 1 time per day Test voltage between 25 C 1.5 x Vndc for 1s Test voltage between terminals and Hz for 1 min. STANDARDS IEC : Power electronic capacitors IEC : Power electronic capacitors IEC 668-1: Environmental testing IEC 677: Rules for electric traction equipment UL 94: Fire requirements NF F NF F 16-12: Fire and smoke requirements IEC 61881: Railway applications, rolling stock equipment, capacitors for power electronics HOT SPOT CALCULATION θ hot spot = θ ambient + (P d + P t ) x R th with P d (Dielectric losses) = Q x tgδ [ 1 2 x C n x (V peak to peak ) 2 x f ] x (2 x 1-4 ) P t (Thermal losses) = R s x (I rms ) 2 where C n in Farad I rms in Ampere f in Hertz V in Volt R s in Ohm θ in C R th in C/W 24
6 FSM New design can use FFV range APPLICATIONS Recovery capacitor for G.T.O. switching (secondary snubber or clamp capacitor). High current DC filtering. TECHNOLOGY Metallized polypropylene dielectric specially treated to withstand high DC voltage stresses up to 85 C. Controlled self-healing. Internal geometry and connections specially developed for high currents (Irms up to 1 A). No liquid impregnant. Special metallization for DC voltage and high currents. PACKAGING Self-extinguishing rectangular plastic case (in accordance with UL 94 VO) (12 kv/5 Hz isolation). Filled with thermosetting resin. M8 outputs. Fixing in two planes. Vibrations and shocks resistant to IEC 677. Average weight.95 kg. DC FILTERING ELECTRICAL CHARACTERISTICS Climatic category 4/85/56 Working temperature -4 C to +85 C (according to the power to be dissipated) Capacitance range C n 2µF to 54µF Tolerance on C n ±1% Rated DC voltage V n dc 75 to 135 V Allowable overvoltages V s = 1.1 V n dc 1/3 of the time 1.3 V n dc 1 min./day 2 V n dc 1 ms/day for V n dc = 115 V 1.75 V n dc 1 ms/day for V n dc = 135 V DC test voltage between 1s at 2 C ± 15 C terminals V e dc 1.5 V n dc (IEC 6171) RMS current Irms max. = 65 to 15 A Impulse current I 2.t max. = 1 to 27 A 2 s Tangent of loss angle Tg : see table of values Series inductance L s 25 nh Thermal resistance Rth ambient/hot spot = 9.2 C/W Rth case/hot spot = 3.3 C/W MARKING Logo TPC FSM Capacitance and tolerance in clear Nominal voltage in clear RMS current in clear Date of manufacture (IEC coding) 25
7 FSM DC FILTERING 1) RECOVERY OF G.T.O. SWITCHING ENERGY Typical application Choice of voltage: V 1 V n dc Repetitive surge: 1.1 V n dc 1/3 of the time Non-repetitive surge: 1.3 V n dc 1 min./day Occasional max. surge: 2 V n dc 1 ms/day for V n dc = 115 V 1.75 V n dc 1 ms/day for V n dc = 135 V RMS current limits: The currents given in the tables are maximum. The thermal limits of the dielectric (85 C) must be respected. The self-heating can be calculated from the series resistance, Tg and the thermal resistance given in the table of values Ø = P x Rth 85 C -Ø ambient Rth: is given for still air with the capacitor not being subjected to any other heat source. P = (I rms ) 2 x R s + π 2 x C (V 1 - V 2 ) 2 x fr x 1-4 Temperature measuring point* Measurement of the case temperature ( B) together with the losses gives the temperature of the hot spot. = (RthB x P) + B 85 C *Important for series/parallel operations. Important Due to the modular nature of these capacitors series and parallel assemblies can be made to increase the capacitance and/or voltage. Ensure that suitable sized connections are used so that the capacitors will not be overheated. The inductance of the connections must be low enough to ensure equal current sharing of capacitors in parallel. For series assemblies, connect across each capacitor a resistor of value R # 3 M /C in µf (1.5 M for C = 2 µf). 2) DC FILTERING Idem paragraph 1. Cn V n dc (µf) (V) Table of Values Irms* (I 2 Tgδ maxi.*.t) max. (f khz) (A) (A 2 s) (1-4 ) Rs (m ) References f 1 FSM26A546K f 1.5 FSM26C446K f 1.1 FSM26L336K f 1.15 FSM26U286K f 1.25 FSM26V26K-- *Function of power dissipation 26
8 FSB GENERAL DESCRIPTION Metallized polypropylene dielectric capacitor with controlled self-healing. Reinforced metallization developed for high impulse currents. APPLICATIONS IGBT protection IGBT clamping PACKAGING Parallelipedic plastic case with thermosetting resin PROTECTION ELECTRICAL CHARACTERISTICS Capacitance Range C n.1µf to 2.5µF Tolerance on C n ±5%: FSB1...5 ±1%: FSB6 Rated DC Voltage V n dc 85 to 2 V Stray Inductance 25 nh RMS Current I rms max. = up to 28A The currents shown in the tables are maximum. It is necessary to respect the thermal limits of the dielectric 85 C see Hot spot temperature calculation Insulation Resistance Ri x C 3, s Impulse Current I 2.t max. = up to 1.69 A 2 s Spikes or peak currents in the capacitors may cause a deterioration of the bonding between the metallization and the connections. These bonds are capable of withstanding only a limited amount of energy for each spike. The table shows the maximum energy permitted in the form (I 2.t), where I is in Ampere, and t is in seconds. Note: The formula (I 2.t) replaces dv/dt which is less easy to use as it is not an expression of energy (I = C.dv/dt). This type of capacitor has been designed to withstand high (I 2.t) values. Variation of Capacitance with Temperature C ±2% between -4 and +85 C C Climatic Category 4/85/56 (IEC 68) Test Voltage Between 25 C 1.6 V n dc during 1s Withstanding Voltage Between Terminals and Hz during 1 min. 27
9 FSB GENERAL DESCRIPTION BOX KIND: P; 18; 19; 26; R68 2 TERMINALS SOLUTION Width Length FSB1..5 BOX KIND: R68 4 TERMINALS SOLUTION 22 (.866) 5.5 ±1 Width (.216 ±.39) 32 (1.259) FSB5 PROTECTION Height Ø Lead LS.4 min (.15 min) 5.5 ±1 (.216 ±.39) General Tolerance: ±.5mm (.2) DIMENSIONS: millimeters (inches) 37 (1.456) 27.5 ±.5 (1.82 ±.19).4 min (.15 min) Ep.6 (.23) General Tolerance: ±.5mm (.2) 1.2 ±.1 (.47 ±.3) 12.7 ±.5 (.5 ±.2) Box Kind Length Width Height Dimensions LS mm ±.4 mm ±.4 mm ±.3 lead mm +1% -.5 mm ±.4 (inches) (inches) (inches) (inches) (inches) PO 31.1 (1.23) 13. (.51) 22.4 (.88) Ø.8 (.31) 27.5 (1.83) (1.23) 14.6 (.58) 25.7 (1.1) Ø.8 (.31) 27.5 (1.83) (1.23) 17.3 (.68) 29.8 (1.17) Ø.8 (.31) 27.5 (1.83) (1.23) 2.8 (.82) 31.3 (1.23) Ø 1. (.39) 27.5 (1.83) R68 2 Terminals 32.5 (1.28) 22. (.87) 37. (1.46) Ø 1. (.39) 27.5 (1.83) Solution R68 4 Terminals 32.5 (1.28) 22. (.87) 37. (1.46) 1.2 x.6 Solution (.47 x.23) 27.5 (1.83) References Capacitance Box Kind (I2t) Irms Rs Rth (µf) (A 2 s) (A) (m ) (hotspot/amb.) U N dc = 12V Vpeak = 16V Vrms = 56V Vs = 2V FSB16U154J--.15 P FSB26U274J FSB36U394J FSB46U474J FSB56U684J--.68 R68 (2 terminals) FSB56U684JJC.68 R68 (4 terminals) U N dc = 16V Vpeak = 2V Vrms = 63V Vs = 23V FSB16M134J--.13 P FSB26M184J FSB36M244J FSB46M334J FSB56M434J--.43 R68 (2 terminals) FSB56M434JJC.43 R68 (4 terminals) U N dc = 2V Vpeak = 24V Vrms = 7V Vs = 26V FSB16N14J--.1 P FSB26N134J FSB36N184J FSB46N224J FSB56N34J--.3 R68 (2 terminals) FSB56N34JJC.3 R68 (4 terminals)
10 FSB FSB6 Plastic case resin filled Dimensions: millimeters (inches) 42.5 (1.67) 3. (1.18) 45. (1.77) ( ) 6.2 ±.2 (.244 ±.8) 12. (.472).8 ±.1 (.31 ±.4) 47. ±1. (1.85 ±.4) ( ) PROTECTION 7. (.276) 14. (.551) 17. (.669) ( ) ( ) ( ) GENERAL TOLERANCES: ±.5mm (±.2 inches) Part Number Capacitance (I2t) I rms max. R s R th (µf) (A 2 s) (A) (m ) ( C/W) FSB 85V Vndc = 85V Vpeak = 12V Vrms = 45V Vs = 15V FSB66B25K FSB66B225K FSB66B255K FSB 12V Vndc = 12V Vpeak = 16V Vrms = 56V Vs = 2V FSB66U15K FSB66U125K FSB66U155K FSB 2V Vndc = 2V Vpeak = 24V Vrms = 7V Vs = 26V FSB66N474K FSB66N564K FSB66N684K
11 PROTECTION Medium Power Film Capacitors FSB STANDARDS IEC , IEC : Power electronic capacitors TANGENT OF LOSS ANGLE (TANδ ) FOR POLYPROPYLENE DIELECTRIC Polypropylene has a constant dielectric loss factor of 2x1-4 irrespective of temperature and frequency (up to 1 MHz). IGBT SNUBBER With U I U T = 1/fr L = stray inductance IGBT + capacitor R = serial resistance IGBT + capacitor t t HOT SPOT TEMPERATURE CALCULATION θ hot spot = θ ambient + (P d + P t ) x R th with P d (Dielectric losses) = Q x tgδ [ 1 2 x C n x (V ripple peak to peak ) 2 x f ] x (2 x 1-4 ) P t (Thermal losses) = R s x (I rms ) 2 Rth : Rth ambient / hot spot in C/W where C n in Farad I rms in Ampere f in Hertz V in Volt R s in Ohm θ in C Due to the design of the capacitor and its technology, the thermal impedance between the terminations and the core of the capacitor is low, it is necessary to take care that the capacitor is never overheated by use of wrongly sized connections. Do not use the capacitor as a heat sink. Due to the complexity of the IGBT / capacitor thermal exchanges, we recommend that thermal measurements shall be made on the different components. We would be pleased to advise you on specific problems. WORKING TEMPERATURE (according to the power to be dissipated) -4 C to +85 C MARKING TPC logo Capacitance and tolerance in clear Nominal DC voltage in clear RMS current in clear Date of manufacture (IEC coding) Ieff = C b 2 U 2 with 1 e 2 T 2j b 1 T ; a = b 2 + a 2 b = ; b = b LC 2L R [ b sin(2 b T) a cos(2 b T)]+ 1 1 e 2 T + a a b 2 + a 2 a 2 a 2 3
12 FSV ELECTRICAL CHARACTERISTICS GENERAL DESCRIPTION Metallized dielectric capacitor and metal foil, low serial inductance and high RMS current. APPLICATIONS Protection of semi conductors High frequency decoupling Tunning PACKAGING Cylindrical with polyester tape wrapping, sealed with polyurethane resin Radial connections Capacitance Range Cn.1µF to.15µf Tolerance on Cn 1% Rated DC Voltage Vndc 6 to 2 V Rated AC Voltage 3 to 65 Vrms Test Voltage between 25 C 1.5 Vndc during 1s High dv/dt 1 V/µs RMS Current Irms max = up to 23A The currents shown in the tables are maximum. It is necessary to respect the thermal limits of the dielectric 85 C See Hot spot temperature calculation Working Temperature -4 C +85 C (according to the power to be dissipated) Climatic Category 4/85/56 (IEC 668) Hot Spot Calculation For all applications, the temperature in the hot spot capacitor must be lower than 85 C Hot spot = ambient + (tanδ x Q + Rs Irms 2 ) x Rth With tg δ o = Q in vars Rs in Irms in A Rth in C/W PROTECTION 31
13 FSV DESIGN FSV1 FSV2 25. MAX (.984) 25. MAX (.984) MARKING MARKING Ø1 (.39) +1% -.5 (-.2) 15. MIN (.591) 15. MIN (.591) Ø1 (.39) +1% -.5 (-.2) *27. ±2. (1.63 ±.79) D MAX. *PITCH DIMENSION AT 2.mm (.79) LENGTH OF LEADS *27. ±2. (1.63 ±.79) *15. ±2. (.591 ±.79) D MAX. *PITCH DIMENSION AT 2.mm (.79) LENGTH OF LEADS PROTECTION References Capacitance D max. Irms Rs Rth (µf) mm (in) A (m ) C/W FSV 6 V Vndc = 6V Vrms = 3V FSV16K683K (.866) FSV26K14K (.984) FSV26K154K (1.181) FSV 8 V Vndc = 8V Vrms = 4V FSV16B473K (.866) FSV26B683K (.984) FSV26B823K (1.12) FSV26B14K (1.181) FSV 1 V Vndc = 1V Vrms = 45V FSV16L333K (.866) FSV26L473K (.984) FSV26L683K (1.181) FSV 12 V Vndc = 12V Vrms = 5V FSV16U223K (.866) FSV26U333K (.984) FSV26U473K (1.181) FSV 15 V Vndc = 15V Vrms = 6V FSV16R153K (.866) FSV26R223K (.984) FSV26R333K (1.181) FSV 2 V Vndc = 2V Vrms = 65V FSV16N13K (.866) FSV26N153K (.984) FSV26N23K (1.63) FSV26N223K (1.181)
14 FPX PROTECTION ELECTRICAL CHARACTERISTICS APPLICATIONS Protection of thyristors. Protection of gate turn-off thyristor (G.T.O.). Clamping (Secondary snubber). TECHNOLOGY Metallized polypropylene dielectric capacitor with controlled self-healing. Reinforced metallization developed for high impulse currents. Axial connections specially developed to reduce series inductance and to provide rigid mechanical mounting. PACKAGING Cylindrical in plastic case filled with thermosetting resin. Outputs: threaded inserts either M6 or M8. Capacitance range C n.5µf to 6µF Tolerance on C n ±5% Rated DC voltage V n dc 1 to 3 V Peak voltage V peak 16 to 4 V Allowable overvoltage V s (for 1 s/day) 2 to 46 V Stray inductance 5 to 2 nh RMS current I rms max. = up to 16 A The currents shown in the tables are maximum. It is necessary to respect the thermal limits of the dielectric 85 C see Hot spot temperature calculation Insulation resistance R i x C 3, s Impulse current I 2.t maxi. = up to 729 A 2.s Spikes or peak currents in the capacitors may cause a deterioration of the bonding between the metallization and the connections. These bonds are capable of withstanding only a limited amount of energy for each spike. The table shows the maximum energy permitted in the form (I 2.t), where I is in Ampere, and t is in seconds. Note: The formula (I 2.t) replaces dv/dt which is less easy to use as it is not an expression of energy (I = C.dV/dt). This type of capacitor has been designed to withstand high (I 2.t) values. Variation of capacitance with temperature C ±2% between -4 and 85 C C PROTECTION Climatic category 4/85/56 (IEC 668) Test voltage between 25 C V s for 1s Test voltage between terminals and 25 C (Type 4 5 Hz for 1 min. For higher power protection devices and further information please see PPX Series in Capacitor for High Power Electronics available on AVX website: 33
15 FPX General Description / Application Notes PROTECTION G.T.O. V Choice of voltage: V 1 V peak V 2 V n dc V 1 V 2 PROTECTION T - 1/fr THYRISTOR t Nominal DC voltage (V n dc) and peak voltage (V peak ) are given in the tables. V Choice of voltage: V 1 V peak Note that V 1 is the voltage peak to peak and cannot be symmetrical vs V V 1 V t Peak voltage is given in the tables. CLAMPING Choice of voltage: V 1 V peak V 2 V n dc Nominal DC voltage (V n dc) and peak voltage (V peak ) are given in the tables. 34 For higher power protection devices and further information please see PPX Series in Capacitor for High Power Electronics available on AVX website:
16 FPX Table of Values PROTECTION Dimensions: millimeters (inches) Dimensions Cn I 2.t I rms Case H* h d (µf) max. max. Type ±.5 ±2 D ±.1 (A 2.s) (A) (±.2) (±.79) max. Rs (m ) Rth ( C/W) Part Number FPX 2 V V n dc = 1 V V peak = 16 V V rms = 56 V V s = 2 V 1 Plastic case M6/6 52 (2.72) 5 (.197) 4 (1.575) 18 (.79) FPX66N15J-- 2 Plastic case M8/8 52 (2.72) 5 (.197) 6 (2.362) 22 (.866) FPX86N25J-- 3 Plastic case M8/8 52 (2.72) 5 (.197) 72 (2.835) 22 (.866) FPX86N35J Plastic case M8/8 52 (2.72) 5 (.197) 72 (2.835) 22 (.866) FPX86N355J-- 4 Plastic case M8/8 52 (2.72) 5 (.197) 82 (3.228) 22 (.866) FPX86N45J-- 5 Plastic case M8/8 52 (2.72) 5 (.197) 82 (3.228) 22 (.866) FPX86N55J-- FPX 25 V V n dc = 13 V V peak = 2 V V rms = 7 V V s = 25 V.5 Plastic case M6/6 52 (2.72) 5 (.197) 4 (1.575) 18 (.79) FPX66P54J-- 1 Plastic case M8/8 52 (2.72) 5 (.197) 6 (2.362) 22 (.866) FPX86P15J Plastic case M8/8 52 (2.72) 5 (.197) 6(2.362) 22 (.866) FPX86P155J-- 2 Plastic case M8/8 52 (2.72) 5 (.197) 72 (2.835) 22 (.866) FPX86P25J Plastic case M8/8 52 (2.72) 5 (.197) 72(2.835) 22 (.866) FPX86P255J-- 3 Plastic case M8/8 52 (2.72) 5 (.197) 82 (3.228) 22 (.866) FPX86P35J Plastic case M8/8 52 (2.72) 5 (.197) 82(3.228) 22 (.866) FPX86P355J-- FPX 35 V V n dc = 2 V V peak = 24 V V rms = 85 V V s = 35 V 2 Plastic case M8/8 62 (2.441) 5 (.197) 72 (2.835) 22 (.866) FPX86X25J- 3 Plastic case M8/8 62 (2.441) 5 (.197) 92 (3.622) 22 (.866) FPX86X35J Plastic case M8/8 62 (2.441) 5 (.197) 92 (3.622) 22 (.866) FPX86X355J-- 4 Plastic case M8/8 62 (2.441) 5 (.197) 92 (3.622) 22 (.866) FPX86X45J-- FPX 45 V V n dc = 25 V V peak = 32 V V rms = 113 V V s = 45 V.9 Plastic case M8/8 62 (2.441) 5 (.197) 72 (2.835) 22 (.866) FPX86Z94J-- 1 Plastic case M8/8 62 (2.441) 5 (.197) 72 (2.835) 22 (.866) FPX86Z15J-- 2 Plastic case M8/8 62 (2.441) 5 (.197) 92 (3.622) 22 (.866) FPX86Z25J-- FPX 46 V V n dc = 3 V V peak = 4 V V rms = 14 V V s = 46 V.5 Plastic case M8/8 62 (2.441) 5 (.197) 72 (2.835) 22 (.866) FPX86Y54J--.68 Plastic case M8/8 62 (2.441) 5 (.197) 72 (2.835) 22 (.866) FPX86Y684J Plastic case M8/8 62 (2.441) 5 (.197) 92 (3.622) 22 (.866) FPX86Y1254J Plastic case M8/1 79 (3.11) 6 (.236) 98 (3.858) FPX86Y155J Plastic case M8/1 79 (3.11) 6 (.236) 98 (3.858) FPX86Y175J-- 2 Plastic case M8/1 79 (3.11) 6 (.236) 98 (3.858) FPX86Y25J Plastic case M8/1 118 (4.646) 6 (.236) 98 (3.858) FPX86Y255J Plastic case M8/1 118 (4.646) 6 (.236) 98 (3.858) FPX86Y275J-- 3 Plastic case M8/1 143 (5.63) 6 (.236) 98 (3.858) FPX86Y35J Plastic case M8/1 143 (5.63) 6 (.236) 98 (3.858) FPX86Y355J-- 4 Plastic case M8/1 143 (5.63) 6 (.236) 98 (3.858) FPX86Y45J Plastic case M8/1 163 (6.417) 6 (.236) 98 (3.858) FPX86Y455J-- 5 Plastic case M8/1 163 (6.417) 6 (.236) 98 (3.858) FPX86Y55J-- 6 Plastic case M8/1 163 (6.417) 6 (.236) 98 (3.858) FPX86Y65J-- * Tol: + / -3mm for H 118mm PROTECTION 35
17 FPX PROTECTION MARKING Logo Withstanding surge voltage Capacitance and tolerance in clear Nominal DC voltage in clear RMS current in clear Date of manufacture (IEC coding) DESIGN PROTECTION Plastic Case M6 / 6 or M8 / 8 Max Torque: 8.5Nm (M8) 4.5Nm (M6) h ±2 (.79) H ±.5 (.2) TPC H 62 M6/6 or M8/8 Plastic Case M8 / 1 M8 (.315) /1 (.394) Max Torque: 1Nm The positions of the connections of each side are not indexed H 79mm (3.11) TPC M8 (.315) /1 (.394) h ±2 (.79) Ød ØDmax 6. (.236) 6. (.236) Ø28 (1.13) ±.1 (.4) Ø4 (.16) A Plastic Case or (Resin Molding) Ø4 (.16) A Plastic Case A A D Max 36 Tinned Output Dimensions: millimeters (inches) General tolerance: ±2 Resin HOT SPOT TEMPERATURE CALCULATION with where θ hot spot = θ terminals + (P d + P t ) x R th P d (Dielectric losses) = Q x tgδ [ 1 2 x C n x (V peak to peak ) 2 x f ] x (2 x 1-4 ) P t (Thermal losses) = R s x (I rms ) 2 C n in Farads V in Volts I rms in Amperes R s in Ohms f in Hertz θ in C R th in C/W Tinned Output Dimensions: millimeters (inches) General tolerance: ±2 Resin 23 (.96) ±.5 (.2) Due to the design of the capacitor and its technology, the thermal impedance between the terminations and the core of the capacitor is low, it is necessary to take care that the capacitor is never overheated by use of incorrect sized connections. In the case where the series diodes are screwed to the capacitor, cooling of the diodes must be taken in account. Do not use the capacitor as a heat sink. Due to the complexity of the diode/capacitor thermal exchanges, we recommend that thermal measurements shall be made on the different components. We would be pleased to advise you on specific problems. WORKING TEMPERATURE (according to the power to be dissipated) -4 C to +85 C For higher power protection devices and further information please see PPX Series in Capacitor for High Power Electronics available on AVX website:
18 FPG - General Description PROTECTION Metallized polypropylene dielectric capacitor with controlled self-healing. Reinforced metallization on margins developed for high impulse currents. Axial connections specially developed to reduce series inductance and to provide rigid mechanical mounting. APPLICATIONS Protection of gate turn-off thyristor (G.T.O.). Medium frequency tuning. PACKAGING Cylindrical in either plastic case (preferred packaging) or a resin molding. Outputs: threaded inserts either M6 or M8. Filled with thermosetting resin. PROTECTION ELECTRICAL CHARACTERISTICS Capacitance range C n.12µf to 6µF Tolerance on C n ±5% Rated DC voltage V n dc 8 to 3 V Peak voltage V peak 12 to 4 V Allowable overvoltage V s (for 1 s/day) 15 to 46 V Nominal RMS voltage V n dc 5 to 14 V Stray inductance 1 nh RMS current I rms max. = up to 8 A The currents shown in the tables are maximum. It is necessary to respect the thermal limits of the dielectric 85 C see Hot spot temperature calculation Insulation resistance R i x C 3, s Impulse current I 2.t max. given in the tables Spikes or peak currents in the capacitors may cause a deterioration of the bonding between the metallization and the connections. These bonds are capable of withstanding only a limited amount of energy for each spike. The table shows the maximum energy permitted in the form (I 2.t), where I is in Ampere, and t is in seconds. Note: The formula (I 2.t) replaces dv/dt which is less easy to use as it is not an expression of energy (I = C.dV/dt). This type of capacitor has been designed to withstand high (I 2.t) values. Variation of capacitance with temperature C ±2% between -4 and 85 C C Climatic category 4/85/56 (IEC 668) Test voltage between 25 C V s during 1s Test voltage between terminals and 25 C (Type 4 5 Hz during 1 min. For higher power protection devices and further information please see PPX Series in Capacitor for High Power Electronics available on AVX website: 37
19 FPG General Description / Application Notes PROTECTION APPLICATION NOTES G.T.O. PROTECTION MARKING Logo Withstanding surge voltage Capacitance and tolerance in clear Nominal DC voltage in clear RMS current in clear Date of manufacture (IEC coding) DESIGN Dimensions: millimeters (inches) PROTECTION Choice of voltage: V 1 V peak V 2 V n dc Maximum overvoltage V s (1 s/day) Max Torque: 8.5Nm (M8) 4.5Nm (M6) h ±2 (.79) H ±.5 (.2) TPC H 62 M6/6 or M8/8 h ±2 (.79) Ød ØDmax Ø4 (.16) A Plastic Case or (Resin Molding) A Nominal DC voltage (V n dc) and peak voltage (V peak ) are given in the table of values. HOT SPOT TEMPERATURE CALCULATION with where 38 θ hot spot = θ terminals + (P d + P t ) x R th P d (Dielectric losses) = Q x tgδ [ 1 2 x C n x (V peak to peak ) 2 x f ] x (2 x 1-4 ) P t (Thermal losses) = R s x (I rms ) 2 C n in Farads V in Volts I rms in Amperes R s in Ohms f in Hertz θ in C R th in C/W Tinned Output Dimensions: millimeters (inches) General tolerance: ±2 Resin Due to the design of the capacitor and its technology, the thermal impedance between the terminations and the core of the capacitor is low, it is necessary to take care that the capacitor is never overheated by use of incorrect sized connections. In the case where the series diodes are screwed to the capacitor, cooling of the diodes must be taken in account. Do not use the capacitor as a heat sink. Due to the complexity of the diode/capacitor thermal exchanges, we recommend that thermal measurements shall be made on the different components. We would be pleased to advise you on specific problems. WORKING TEMPERATURE (according to the power to be dissipated) -4 C to +85 C For higher power protection devices and further information please see PPX Series in Capacitor for High Power Electronics available on AVX website:
20 FPG Table of Values PROTECTION Dimensions I 2.t Irms Cn Case H* h D d (µf) max. max. Rs Rth Type ±.5 ±2 ±.5 (A 2.s) (A) (m ) ( C/W) (±.2) (±.79) max. (±.2) Part Number FPG 15 V V n dc = 8 V V peak = 12 V V rms = 5 V V s = 15 V 1 Resin Molding M6/6 (1.929) (.165) (1.575) (.748) FPG66R15J Resin Molding M6/6 (1.929) (.165) (2.165) (.748) FPG66R155J-- 2 Plastic Case M8/8 (2.47) (.197) (2.362) (.866) FPG86R25J-- 3 Plastic Case M8/8 (2.47) (.197) (2.835) (.866) FPG86R35J Plastic Case M8/8 (2.47) (.197) (2.835) (.866) FPG86R355J-- 4 Plastic Case M8/8 (2.47) (.197) (1.575) (.866) FPG86R45J-- 5 Plastic Case M8/8 (2.47) (.197) (3.622) (.866) FPG86R55J-- 6 Resin Molding M8/8 (2.47) (.224) (3.622) (1.12) FPG86R65J-- FPG 2 V V n dc = 1 V V peak = 16 V V rms = 6 V V s = 2 V.5 Plastic Case M6/6 (2.47) (.197) (1.575) (.79) FPG66N54J-- 1 Plastic Case M8/8 (2.47) (.197) (2.362) (.866) FPG86N15J Plastic Case M8/8 (2.47) (.197) (2.362) (.866) FPG86N155J-- 2 Plastic Case M8/8 (2.47) (.197) (2.835) (.866) FPG86N25J Plastic Case M8/8 (2.47) (.197) (2.835) (.866) FPG86N255J-- 3 Plastic Case M8/8 (2.47) (.197) (3.228) (.866) FPG86N35J Plastic Case M8/8 (2.47) (.197) (3.228) (.866) FPG86N355J-- 4 Resin Molding M8/8 (2.47) (.224) (3.622) (1.12) FPG86N45J-- FPG 25 V V n dc = 13 V V peak = 2 V V rms = 7 V V s = 25 V.47 Resin Molding M6/6 (2.323) (.165) (1.575) (.748) FPG66P474J-- 1 Resin Molding M6/6 (2.323) (.165) (2.165) (.748) FPG66P15J Resin Molding M8/8 (2.323) (.165) (2.362) (.748) FPG66P155J-- 2 Plastic Case M8/8 (2.441) (.197) (2.835) (.866) FPG86P25J Plastic Case M8/8 (2.441) (.197) (2.835) (.866) FPG86P255J-- 3 Resin Molding M8/8 (2.441) (.224) (3.228) (1.12) FPG86P35J-- 4 Plastic Case M8/8 (2.441) (.197) (3.622) (.866) FPG86P45J-- = Preferred standard values Dimensions: millimeters (inches) PROTECTION For higher power protection devices and further information please see PPX Series in Capacitor for High Power Electronics available on AVX website: 39
21 FPG Table of Values PROTECTION PROTECTION Dimensions: millimeters (inches) Dimensions I 2.t Irms Cn Case H* h D d (µf) max. max. Rs Rth Type ±.5 ±2 ±.5 (A 2.s) (A) (m ) ( C/W) (±.2) (±.79) max. (±.2) References FPG 26 V V n dc = 175 V V peak = 2 V V rms = 8 V V s = 26 V.47 Resin Molding M6/6 (2.323) (.165) (1.575) (.748) FPG66W474J-- 1 Resin Molding M6/6 (2.323) (.165) (2.165) (.748) FPG66W15J Resin Molding M6/6 (2.323) (.165) (2.362) (.748) FPG66W155J-- 2 Plastic Case M8/8 (2.441) (.197) (2.835) (.866) FPG86W25J Resin Molding M8/8 (2.441) (.224) (3.228) (1.12) FPG86W255J-- 3 Plastic Case M8/8 (2.441) (.197) (3.622) (.866) FPG86W35J Plastic Case M8/8 (2.441) (.197) (3.622) (.866) FPG86W355J Plastic Case M8/8 (2.441) (.197) (3.622) (.866) FPG86W395J-- FPG 35 V V n dc = 2 V V peak = 24 V V rms = 1 V V s = 35 V.33 Resin Molding M6/6 (2.323) (.165) (1.575) (.748) FPG66X334J--.5 Resin Molding M6/6 (2.323) (.165) (2.165) (.748) FPG66X54J-- 1 Plastic Case M8/8 (2.441) (.197) (2.835) (.866) FPG86X15J Resin Molding M8/8 (2.441) (.224) (3.228) (1.12) FPG86X155J-- 2 Plastic Case M8/8 (2.441) (.197) (3.622) (.866) FPG86X25J-- FPG 45 V V n dc = 25 V V peak = 32 V V rms = 12 V V s = 45 V.22 Resin Molding M6/6 (2.323) (.165) (1.575) (.748) FPG66Z224J--.47 Resin Molding M6/6 (2.323) (.165) (2.362) (.748) FPG66Z474J--.68 Plastic Case M8/8 (2.441) (.197) (2.835) (.866) FPG86Z684J-- 1 Resin Molding M8/8 (2.441) (.224) (3.228) (1.12) FPG86Z15J Plastic Case M8/8 (2.441) (.197) (3.622) (.866) FPG86Z1254J-- FPG 46 V V n dc = 3 V V peak = 4 V V rms = 14 V V s = 46 V.12 Resin Molding M6/6 (2.323) (.165) (1.575) (.748) FPG66Y124J--.22 Resin Molding M6/6 (2.323) (.165) (2.362) (.748) FPG66Y224J--.33 Plastic Case M8/8 (2.441) (.197) (2.835) (.866) FPG86Y334J--.47 Resin Molding M8/8 (2.441) (.224) (3.228) (1.12) FPG86Y474J--.6 Plastic Case M8/8 (2.441) (.197) (3.622) (.866) FPG86Y64J-- = Preferred standard values 4 For higher power protection devices and further information please see PPX Series in Capacitor for High Power Electronics available on AVX website:
22 FD Design GENERAL DESCRIPTION FD series use metallized dielectric, controlled self-healing technology, high specific energy. USUAL APPLICATIONS The FD capacitors are designed for discharge applications such as Laser, electronic flash, cardiac defibrillator, etc. FD series offer a very high specific energy level, higher than 15J per liter for cardiac defibrillator application. ELECTRICAL CHARACTERISTICS Operating temperature: 55 C to +85 C Storage temperature: 55 C to +85 C Capacitance range: 5µF to 15µF other values on request Capacitance tolerance: ±1% Nominal charging voltage: 1kV to 3kV higher voltage on request Test voltage between 25 C: 1.2 x U N dc during 1s Test voltage between terminals and 25 C: 2 U N dc during 1 min (type test) DISCHARGE HOT SPOT CALCULATION For all applications the temperature in the hot spot capacitor must be lower than 85 C θ hot spot = θ ambient + (tgδ x Q + R si rms2 ) x R th with tgδ = Q in Vars R s in Ohm I rms in Ampere R th in C/W 41
23 FD Design FDV1 PACKAGING 62. ±2. (2.44 ±.79) D Max MARKING Cylindrical with thermosetting sleeve, sealed with polyurethane resin. 15. (.59) Min Ø1. +1% -.5 (.39 +1% -.2) 1. (.393) 65. ±2. (2.559 ±.79) DISCHARGE Capacitance Max I peak max Irms max Rs Rth (µf) diameter mm (in) (A) (A) (m ) ( C/W) Part Number Uch = 1V 8 5 (1.969) FDV16L86K (1.732) FDV16L66K (1.457) FDV16L46K (1.12) FDV16L26K-- Uch = 14V 5 51 (2.8) FDV16Q56K (1.614) FDV16Q36K (1.378) FDV16Q26K (1.63) FDV16Q16K-- Uch = 17V (2.8) FDV16S356K (1.732) FDV16S256K (1.378) FDV16S156K (.945) FDV16S55K-- LIFETIME EXPECTANCY vs VOLTAGE AND HOT SPOT TEMPERATURE C 7 C 4 C Vw/Vndc C Lifetime Expectancy (quantity of charge + discharge cycles) Vw: operating or working charge voltage 42
24 FD Design FDBB 118 ±2. (4.646 ±.79) LABEL 1 ±2. (3.937 ±.787) Ø5. ±2. (Ø1.969 ±.79) DESIGN Cylindrical plastic case filled with polyurethane resin LIFETIME EXPECTANCY 75 shots under 35 C hot spot temperature, reversal voltage = 1% max, charge duration 1s, hold time 1s SPECIFIC PRODUCTS For all other voltages, values, specific proposal will be done. Requested elements: *Voltage charge *Reversal voltage *Voltage hold time *Discharge rate *Discharge time *Charge time *Lifetime *Temperature of use Capacitance Energy Energy I peak (µf) Joule Density max Part Number (J/I) (A) 18 Volts FDBB6S157K-- 25 Volts FDBB6P17K-- 3 Volts FDBB6X76K-- DISCHARGE 43
25 FAV General Description ELECTRICAL CHARACTERISTICS APPLICATIONS High reactive energy tuning for convertors. Protection of semi-conductors. TECHNOLOGY Metallized polypropylene film and metal foil. Dry capacitor. Climatic category 4/85/56 (IEC 668) Working temperature hot spot temperature: -4 C to +85 C Hot spot temperature 85 C (must be calculated: see below) Capacitance range C n 8 to 12nF Tolerance ±1% Rated AC voltage V n rms = 3 to 65 V Rated DC voltage V n dc = 6 to 2 V Maximum rms current Irms max = 1 to 4 Arms Maximum reactive power Q max = 7 to 14 kvar Stray inductance 15 nh Test voltage between terminals 1.5 x V n dc 1s Withstanding voltage between terminals and case 3 Vrms 6s STANDARDS IEC : IEC : Power electronic capacitors IEC 668-1: Environmental testing 1.E+ 6 IEC 677: Rules for electric traction equipment UL 94: Fire requirements NF F E+ 5 NF F 16-12: Fire and smoke requirements HOT SPOT TEMPERATURE CALCULATION θ hot spot = θ ambient + (P d + P t ) x (R th + 7.4) with P d (Dielectric losses) = Q x tgδ [ 1 2 x C x (V peak to peak ) 2 x fr ] x Protections applications (V 2 x C x 2 π Fr) x Tuning applications Pc (Joule losses) = R s x (I rms ) 2 where Q in Var R s in Ohm R th in C/W PACKAGING Rectangular resin case. 4 leads 1.2 x.8mm for printed circuit board mounting. Self-extinguishing plastic case (V = in accordance with UL 94) filled thermosetting resin. Self-extinguishing thermosetting resin (V = in accordance with UL 94; I3F2 = in accordance with NF F 16-11). (Note that FFV3 and FAV3 are in the same packaging.) Lifetime (Hours) LIFETIME EXPECTANCY 1.E+ 4 1.E Temperature ( C)
26 FAV B General tolerance: ±.5 (±.2) Dimensions: millimeters (inches) 1.2 (.48) B A (1.181) (.984).6 (.24) A 16 (.63) Plastic Case 4 (1.575) 1.2 (.47) ±.1 (.4) 4 (1.575).8 (.32) ±.1 (.4) 4.5 (.178) ±1 (.4) 36 (1.418) Cn I rms max Q max Rs Ls Rth (nf) (A) (kv) (m ) (nh) ( C/W) Vndc 6 V Vrms: 3 V Part Number FAV36K125K FAV36K15K-- Vndc 8 V Vndc 1 V Vrms: 4 V FAV36B84K FAV36B624K-- Vrms: 45 V FAV36L564K FAV36L474K-- Vndc 12 V Vrms: 5 V FAV36U334K FAV36U274K-- Vndc 15 V Vrms: 6 V FAV36R184K FAV36R154K-- Vndc 2 V Vrms: 65 V FAV36N124K FAV36N14K FAV36N83K-- 45
27 FAI The FAI series uses metallized polypropylene dielectric specifically designed for very high reactive power. The FAI's special design gives to this series a very low level of stray inductance. APPLICATIONS These capacitors have been designed principally for: low and medium frequency applications (1 khz to 5 khz) ELECTRICAL CHARACTERISTICS Capacitance range C n 11nF to 6µF Tolerance ±1% Rated AC voltage 2 to 65 Vrms Series parasitic inductance < 5 nh Test voltage between 25 C 1.2 Vrms 5/6 Hz 1s MAXIMUM WORKING TEMPERATURE (HOT SPOT) +85 C: Hot spot temperature must be calculated as function of power dissipation. HOT SPOT (THERMAL) CALCULATION You can calculate the maximum operating (hot spot) temperature of this capacitor in the following manner: Polypropylene has a constant loss factor (tgδ ) of 2x1-4 irrespective of temperature and frequency (up to 1 MHz). The loss factor of the capacitor is made up of the sum of two components. The first represents electrical losses (tgδ = ) and the second represents Joule effect in the connection and foils: Rs.C.2πF. For all applications, the temperature in the hot spot capacitor must be lower than 85 C. Heating calculation of hot spot capacitor: FAI1 FAI2 FAI3 θ hot spot = θ terminals + (tgδ.q + R s.(i rms ) 2 ).R th Heating calculation of hot spot capacitor: FAI6 θ hot spot = θ water + (tgδ Q + R s.(i rms ) 2 ).R th With: tgδ = Q in Var R s in Ohms I rms in Amperes R th in C/W (water flow = 1 dm 3 /minute) Note: The life time depends of hot spot temperature, see following curve. 1 Theoretical life time vs hot spot temperature Life Time (Hours) Hot spot temperature ( C) 46
28 FAI FAI1 VERSION C Irms max Vrms max Q max Rs Rth (nf) (A) (V) kvars (m ) ( C/W) L max H max Part Number x 1-4 x F (2.165) 35 (1.378) FAI16J114K x 1-4 x F (2.953) 4 (1.575) FAI16J214K x 1-4 x F (2.953) 4 (1.575) FAI16J334K x 1-4 x F (3.74) 45 (1.772) FAI16J514K x 1-4 x F (3.74) 45 (1.772) FAI16J664K-- With F in Hz FAI2 VERSION Dimensions: millimeters (inches) C Irms max Vrms max Q max Rs Rth (nf) (A) (V) kvars (m ) ( C/W) L max H max Part Number x 1-4 x F (2.953) 4 (1.575) FAI26J664K x 1-4 x F (2.953) 4 (1.575) FAI26J125K x 1-4 x F (2.953) 4 (1.575) FAI26I245K-- With F in Hz FAI3 VERSION Dimensions: millimeters (inches) C Irms max Vrms max Q max Rs Rth (nf) (A) (V) kvars (m ) ( C/W) L max H max Part Number (2.165) 35 (1.378) FAI36J114K (2.953) 37 (1.457) FAI36J334K (3.74) 42 (1.654) FAI36J514K (3.74) 42 (1.654) FAI36J664K-- FAI4 VERSION 5. (.197) 65. ±.5 (2.559 ±.2) M6 Depth 6 5. (.197) Dimensions: millimeters (inches) 4. ±.5 (1.575 ±.2) 5. (1.969) 1 Marking 3.2 ±.1 (1.189 ±.4) 75. (2.953) Dimensions: millimeters (inches) C Irms max Vrms max Q max Rs Rth (nf) (A) (V) kvars (m ) ( C/W) Part Number FAI46H45K FAI46I245K FAI46J185K FAI46J125K FAI46J664K FAI46K334K FAI46K284K-- 47
29 FAI 48
30 FAI 6 5 FAI46H45K-- 4nF±1% 3Vrms I (Arms) 6 5 FAI46I245K-- 24nF±1% 4Vrms I (Arms) U (Vrms) U (Vrms) 1 Q (Kvar) 1 1 Frequency (khz) 1 1 Q (Kvar) 1 1 Frequency (khz) 1 FAI46J185K-- 18nF±1% 45Vrms FAI46J664K-- 66nF±1% 5Vrms 6 5 I (Arms) 6 5 U (Vrms) 4 U (Vrms) Q (Kvar) 2 1 I (Arms) Q (Kvar) 1 1 Frequency (khz) Frequency (khz) FAI46J334K-- 33nF±1% 6Vrms U (Vrms) 6 5 FAI46J284K-- 28nF±1% 6Vrms U (Vrms) I (Arms) I (Arms) 1 Q (Kvar) 1 1 Frequency (khz) 1 1 Q (Kvar) 1 1 Frequency (khz) 1 49
31 FAI FAI6 Dimensions: millimeters (inches) Width Vrms max C Qmax Irms max Rs Rth (V) (µf) (kvar) (A) (m ) ( C/W) Part Number x f(hz) FAI66F156K-- (3.543) x f(hz) FAI66H126K x f(hz) FAI66I75K x f(hz) FAI66J55K x f(hz) FAI66K355K x f(hz) FAI66A155K x f(hz) FAI66F36K-- (7.48) x f(hz) FAI66H246K x f(hz) FAI66I146K x f(hz) FAI66J16K x f(hz) FAI66K75K x f(hz) FAI66A35K x f(hz) FAI66F456K-- (11.417) x f(hz) FAI66H366K x f(hz) FAI66I216K x f(hz) FAI66J156K x f(hz) FAI66K155K x f(hz) FAI66A455K x f(hz) FAI66F66K-- (15.354) x f(hz) FAI66H486K x f(hz) FAI66I286K x f(hz) FAI66J26K x f(hz) FAI66K146K x f(hz) FAI66A65K-- 5
32 FAI FAI6 WIDTH: 9 (3.543) FAI6 WIDTH: 29 (11.417) Dimensions: millimeters (inches) 175 (6.89) ±2 (.78) ep: 3 (.118) 2 (.787) ~7 (2.76) 9 (3.54) ±2 (.78) 5 (1.97) ±.5 (.2) ~2 (.787) ~2 (.787) RESIN MOLDING 2 GROOVES 57(2.24) ±3 (.118) 35 (1.378) TERMINALS WATER COOLED CIRCUIT (PIPE 8/1) 175 (6.89) ±2 (.78) ep: 3 (.118) 2 (.787) 5 (1.97) ±.5 (.2) 5 (1.97) ±.5 (.2) ~225 (8.858) 29 (11.42) ±2 (.78) 5 (1.97) ±.5 (.2) 5 (1.97) ±.5 (.2) 5 (1.97) ±.5 (.2) ~2 (.787) ~2 (.787) RESIN MOLDING 2 GROOVES 57(2.24) ±3 (.118) 35 (1.378) TERMINALS WATER COOLED CIRCUIT (PIPE 8/1) 2 (.787) 1 (3.937) Max. 1 (3.937) Max. (~2 (.787) 2 (.787) 12 (.472) ~1 (3.937) 12 (.472) FAI6 WIDTH: 19 (7.48) FAI6 WIDTH: 39 (15.354) 175 (6.89) ±2 (.78) ep: 3 (.118) 2 (.787) 5 (1.97) ±.5 (.2) ~16 (6.3) 19 (7.48) ±2 (.78) 5 (1.97) ±.5 (.2) 5 (1.97) ±.5 (.2) ~2 (.787) ~2 (.787) RESIN MOLDING 2 GROOVES 57(2.24) ±3 (.118) 35 (1.378) TERMINALS WATER COOLED CIRCUIT (PIPE 8/1) 175 (6.89) ±2 (.78) ep: 3 (.118) 2 (.787) 5 (1.97) ±.5 (.2) 5 (1.97) ±.5 (.2) 5 (1.97) ±.5 (.2) ~325 (12.8) 39 (15.35) ±2 (.78) 5 (1.97) ±.5 (.2) 5 (1.97) ±.5 (.2) 5 (1.97) ±.5 (.2) 5 (1.97) ±.5 (.2) ~2 (.787) ~2 (.787) 2 GROOVES RESIN MOLDING 57(2.24) ±3 (.118) 1 (3.937) Max. TERMINALS WATER COOLED CIRCUIT (PIPE 8/1) 35 (1.378) 1 (3.937) Max. 2 (.787) 12 (.472) ~1 (3.937) 2 (.787) 12 (.472) ~65 (2.56) 51
33 FAI 52
34 FAI 7 F 4 Vrms Width 9 mm FAI66I75K- - 5 F 5 Vrms Width 9 mm FAI66J55K F (khz) 14 F 4 Vrms Width 19 mm FAI66I146K- - U (Vrms) I ( Arms) Q( kvar) F (khz) 1 F 5 Vrms Width 19 mm FAI66J16K- - U (Vrms) I ( Arms) Q( kvar) U (Vrms) I ( Arms) Q( kvar) U (Vrms) I ( Arms) Q( kvar) F (khz) 21 F 4 Vrms Width 29 mm FAI66I216K F (khz) 15 F 5 Vrms Width 29 mm FAI66J156K U (Vrms) 12 I ( Arms) 1 Q( kvar) U (Vrms) 12 I ( Arms) 1 Q( kvar) F (khz) 28 F 4 Vrms Width 39 mm FAI66I286K- - 2 F (khz) 2 F 5 Vrms Width 39 mm FAI66J26K U (Vrms) I ( Arms) Q( kvar) 15 1 U (Vrms) I ( Arms) Q( kvar) F (khz) 1 1 F (khz) 53
35 FAI 3.5 F 6 Vrms Width 9 mm FAI66K355K F 65 Vrms Width 9 mm FAI66A155K U (Vrms) I ( Arms) Q( kvar) 1 1 F (khz) 7 F 6 Vrms Width 19 mm FAI66K75K- - U (Vrms) I ( Arms) Q( kvar) 1 1 F (khz) 1.5 F 6 Vrms Width 29 mm FAI66K155K U (Vrms) I ( Arms) Q( kvar) 1 1 F (khz) 3 F 65 Vrms Width 19 mm FAI66A35K- - U (Vrms) I ( Arms) Q( kvar) 1 1 F (khz) 4.5 F 65 Vrms Width 29 mm FAI66A455K U (Vrms) 12 I ( Arms) 1 Q( kvar) U (Vrms) 12 I ( Arms) 1 Q( kvar) F (khz) 14 F 6 Vrms Width 39 mm FAI66K146K- - F (khz) 6 F 65 Vrms Width 39 mm FAI66A65K U (Vrms) I ( Arms) Q( kvar) 15 1 U (Vrms) I ( Arms) Q( kvar) F (khz) 1 1 F (khz)
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