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ROE capacitor EYF Datasheets Context Search

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1995 - Eyf 06 ROE

Abstract:
Text: reverse voltage breakdown). The bulk capacitor is a 3300uF/63V, low ESR, EYF ( ROE ). A current sense , % FUSE C1 2.2 µF 100V 15 16 Q1 STP60N06 L4981A 1 10 6 C2 3300µF 63V EYF ROE 8 2 , reduction of the electrolytic bulk capacitor used at PFC stage output ­ reduced Volt/Amp requested to the , , C2 C3, C4, C5 C7 C8 C9 C10 C11 C12,C13,C14 (*) C15 D L1 15k 16k 22 0.5W 6.2k 4.7k 3300µF 63VL EYF ( ROE ) 2.2µF 390pF Film 22nF MKT 1817 (ERO) 2.2nF KP1830 220nF MKT 2.2nF MP1830 220µF 40VL EKR 1 µF Film


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1999 - SCHEMATIC DIAGRAM POWER SUPPLY 12v 5A

Abstract:
Text: bulk capacitor is a 3300uF/63V, low ESR, EYF ( ROE ). A current sense resistor has been used , D1 STPS20100CT L C2 3300µF 63V EYF ROE Q1 STP60N06 1 10 6 2 5 9 17 , mains frequency ­ reduction of the electrolytic bulk capacitor used at PFC stage output ­ reduced , , C5 C7 C8 C9 C10 C11 C12,C13,C14 (*) C15 D 15k 16k 22 0.5W 6.2k 4.7k 3300µF 63VL EYF ( ROE ) 2.2µF 390pF Film 22nF MKT 1817 (ERO) 2.2nF KP1830 220nF MKT 2.2nF MP1830 220µF 40VL EKR


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PDF AN825 SCHEMATIC DIAGRAM POWER SUPPLY 12v 5A 12V DC to 24V dC converter schematic diagram schematic diagram converter input 24v to 12v SCHEMATIC DIAGRAM POWER SUPPLY 12v 10A ROE capacitor 220 schematic diagram converter 12v to 24v ROE ELECTROLYTIC CAPACITOR 220VAC to 24Vac transformer ROE capacitor EYF roe EYF
1997 - schematic diagram AC to DC converter high output

Abstract:
Text: boost diode is STPS20100CT (Schottky diode 100V reverse voltage breakdown). The bulk capacitor is a 3300uF/63V, low ESR, EYF ( ROE ). A current sense resistor has been used considering a max. current of , % C2 3300µF 63V EYF ROE Q1 STP60N06 1 10 6 2 5 9 17 11 12 7 R2 13K , ,C13,C14 (*) C15 D 15k 16k 22 0.5W 6.2k 4.7k 3300µF 63VL EYF ( ROE ) 2.2µF 390pF Film 22nF , frequency ­ reduction of the electrolytic bulk capacitor used at PFC stage output ­ reduced Volt/Amp


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1999 - 12V DC to 24V dC converter schematic diagram

Abstract:
Text: bulk capacitor is a 3300uF/63V, low ESR, EYF ( ROE ). A current sense resistor has been used , STPS20100CT L C2 3300µF 63V EYF ROE Q1 STP60N06 1 10 6 2 5 9 17 12 11 , C11 C12,C13,C14 (*) C15 D 15k 16k 22 0.5W 6.2k 4.7k 3300µF 63VL EYF ( ROE ) 2.2µF 390pF , mains frequency ­ reduction of the electrolytic bulk capacitor used at PFC stage output ­ reduced , capacitor (the output capacitor of PFC is the input filter for DC-DC converter). Measurement results of


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PDF AN825 12V DC to 24V dC converter schematic diagram diagram Converter 24v to 12v 220VAC to 24Vac transformer schematic diagram converter input 24v to 12v MP1830 ROE capacitor 220 SCHEMATIC DIAGRAM POWER SUPPLY 12v 10A transformer 220 12v schematic diagram AC to DC converter high output L4970
1997 - 12v 120W AUDIO AMPLIFIER CIRCUIT DIAGRAM

Abstract:
Text: boost diode is STPS20100CT (Schottky diode 100V reverse voltage breakdown). The bulk capacitor is a 3300uF/63V, low ESR, EYF ( ROE ). A current sense resistor has been used considering a max. current of , % C2 3300µF 63V EYF ROE Q1 STP60N06 1 10 6 2 5 9 17 12 11 7 R2 13K , 15k 16k 22 0.5W 6.2k 4.7k 3300µF 63VL EYF ( ROE ) 2.2µF 390pF Film 22nF MKT 1817 (ERO) 2.2nF , frequency ­ reduction of the electrolytic bulk capacitor used at PFC stage output ­ reduced Volt/Amp


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2003 - COGEMA 949178 40uH

Abstract:
Text: APPLICATION NOTE PARTS LIST R1 = 30K * C1, C2 = 3300µF 63VL EYF ( ROE ) R2 = 10K C3, C4, C5, C6 = , 63V EYF ( ROE ) D1 = SB 560 (or equivalent) L1 = 150µH core 58310 MAGNETICS 45 TURNS 0.91mm (AWG , 100µF 40VL EKR ( ROE ) R8 = OPTION C15 = 1µF Film * C1, C2 = 1000µF 63V EYF ( ROE ) D1 = SB 560 , = 3300µF 63VL EYF ( ROE ) R3 = 15K C3, C4, C5, C6 = 2.2µF R4 = 16K C7 = 390pF Film R5 = , = 3300µF 63VL EYF ( ROE ) R3 = 15K C3, C4, C5, C6 = 2.2µF R4 = 16K C7 = 390pF Film R5 =


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PDF AN557 L4970A, L497XA COGEMA 949178 40uH cogema 949178 ekr 1000 Eke Roederstein ROE eke capacitor ERO Roederstein AN557 EKR roederstein COGEMA 949181 core circuit diagram of smps 400w
1997 - ekr 1000 manual

Abstract:
Text: test circuit part list. PARTS LIST Table A. R1 = 30K C1, C2 = 3300µF 63VL EYF ( ROE V0 , = C2 = 1000µF 63V EYF ( ROE ) C3 = C4 = C5 = C6 = 2,2µF 50V C7 = 390pF Film C8 = 22nF MKT 1837 (ERO , 30K 22 4.7K see table A OPTION * C1 = C2 = 1000µF 63V EYF ( ROE ) C3 = C4 = C5 = C6 = 2,2µF 50V , part list. PARTS LIST Table A. R1 = 30K C1, C2 = 3300µF 63VL EYF ( ROE V0 R10 R8 , LIST Table A. R1 = 30K C1, C2 = 3300µF 63VL EYF ( ROE V0 R10 R8 R2 = 10K C3, C4


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PDF L4970A, L497XA AN557/1297 ekr 1000 manual ekr 63V CAPACITOR cogema 949178 ROE eke capacitor Eke Roederstein EYF roederstein EKR CAP ROE ERO mkt EKR ROE 2200 cogema
1997 - ekr 1000

Abstract:
Text: test circuit part list. PARTS LIST Table A. R1 = 30K C 1, C2 = 3300µF 63VL EYF ( ROE V0 , = C 2 = 1000µF 63V EYF ( ROE ) C 3 = C 4 = C5 = C 6 = 2,2µF 50V C 7 = 390pF Film C 8 = 22nF MKT , = 30K 10K 15K 30K 22 4.7K see table A OPTION * C1 = C 2 = 1000µF 63V EYF ( ROE ) C 3 = C , , C2 = 3300µF 63VL EYF ( ROE V0 R10 R8 R2 = 10K C 3, C4, C5, C 6 = 2.2µF R3 = 15K C , 63VL EYF ( ROE V0 R10 R8 R2 = 10K C 3, C4, C5, C 6 = 2.2µF R3 = 15K C 7 = 390pF


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PDF L4970A, L497XA AN557/1297 ekr 1000 L497X ekr 1000 manual ERO Roederstein L4974A layout 48 VOLT 150 AMP smps cogema transformer EYF roederstein EKR ROE 2200 COGEMA 949178 40uH
1995 - ekr 1000 manual

Abstract:
Text: test circuit part list. PARTS LIST Table A. R1 = 30K C 1, C2 = 3300µF 63VL EYF ( ROE V0 , table A OPTION * C1 = C2 = 1000µF 63V EYF ( ROE ) C 3 = C4 = C5 = C6 = 2,2µF 50V C 7 = 390pF Film C , , C2 = 3300µF 63VL EYF ( ROE V0 R10 R8 R2 = 10K C 3, C4, C5, C6 = 2.2µF R3 = 15K C , 63VL EYF ( ROE V0 R10 R8 R2 = 10K C 3, C4, C5, C6 = 2.2µF R3 = 15K C 7 = 390pF Film , converted into a continuous mean value across the capacitor C and therefore across the load. The current


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PDF L4970A, L497XA AN557/0593 ekr 1000 manual l296 circuit diagram ROE eke capacitor ekr 1000 equivalent sb560 EKR ROE 2200 EYF roederstein COGEMA 949178 40uH l4974a
2005 - kp 63v capacitor

Abstract:
Text: see table 6 R8 = OPTION R9 = 4.7K * C1 = C2 = 1000mF 63V EYF ( ROE ) C3 = C4 = C5 = C6 = 2,2µF 50V , Table 2. Pin Description N° Pin 1 BOOTSTRAP A Cboot capacitor connected between this , DELAY A Cd capacitor connected between this terminal and ground determines the reset signal delay , . Soft Start Time Constant. A capacitor is connected between the sterminal and ground to define the soft , determines the constant charging current of Cosc. 18 OSCILLATOR Cosc. External capacitor connected


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PDF L4972A 200KHz L4972A PowerDIP20 kp 63v capacitor L4972 L4970A L4972AD SO20 ERO mkt ERO kp 1830 ERO Film Capacitor DIP20
7A SF

Abstract:
Text: ,5W Re = 4K7 R7= 10U R8 = see table A Rg = OPTION C2 = 3300nF 63Vl EYF ( ROE ) C3, C4, C5, Ce = 2.2[jF , Cosc. 2 OSCILLATOR Cose- External capacitor connected to ground determines (with Rosc) the switching , . This output is high when the supply and the output voltages are sate. 5 RESET DELAY A Cd capacitor , capacitor connected between this terminal and the output allows to drive properly the internal D-MOS , divider for higher voltages. 12 SOFT START A capacitor is connected between this terminal and ground to


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PDF L4975 500KHZ L4975 33BpF 50KHz H83L4975 L4970 LA970 7A SF MP91 9l reset L4975HT l4974 H89L Figure22 500KHZ
1994 - core 58310 MAGNETICS

Abstract:
Text: = 4.7K R7 = see table A R8 = OPTION R9 = 4.7K * C1 = C2 = 1000µF 63V EYF ( ROE ) C3 = C4 = C 5 = , L4972A-L4972AD PIN FUNCTIONS N o Name Fun ction 1 BOOTSTRAP A Cboot capacitor connected , RESET DELAY A Cd capacitor connected between this terminal and ground determines the reset signal , Constant. A capacitor is connected between thi sterminal and ground to define the soft start time constant , capacitor connected to ground determines (with Rosc) the switching frequency. 20 OUTPUT Regulator


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PDF L4972A L4972AD 200KHz L4972A core 58310 MAGNETICS L4970A L4972AD SO20
2005 - Not Available

Abstract:
Text: EYF ( ROE ) C3 = C4 = C5 = C6 = 2,2µF 50V C7 = 390pF Film C8 = 22nF MKT 1837 (ERO) C9 = 2.7nF KP , capacitor connected between this terminal and the output allows to drive properly the internal D-MOS transistor. Function 2 RESET DELAY A Cd capacitor connected between this terminal and ground , regulation loop gain characteristics. Soft Start Time Constant. A capacitor is connected between the , . External capacitor connected to ground determines (with Rosc) the switching frequency. 20 OUTPUT


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PDF L4972A 200KHz L4972A PowerDIP20
1994 - 58310

Abstract:
Text: 1000µF 63V EYF ( ROE ) C3 = C4 = C5 = C6 = 2,2µF 50V C7 = 390pF Film C8 = 22nF MKT 1837 (ERO) C9 = , Name Function A Cboot capacitor connected between this terminal and the output allows to drive properly the internal D-MOS transistor. A Cd capacitor connected between this terminal and ground , gain characteristics. 8 SOFT START Soft Start Time Constant. A capacitor is connected between , . 18 OSCILLATOR Cosc. External capacitor connected to ground determines (with Rosc) the switching


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PDF L4972A L4972AD 200KHz L4972A 58310 L4972D cogema ERO Film Capacitor L4970A L4972AD SO20 thomson film capacitors
2000 - ERO Film Capacitor

Abstract:
Text: = 1000µF 63V EYF ( ROE ) C3 = C4 = C5 = C6 = 2,2µF 50V C7 = 390pF Film C8 = 22nF MKT 1837 (ERO) C9 , Function 1 BOOTSTRAP A Cboot capacitor connected between this terminal and the output allows to drive properly the internal D-MOS transistor. 2 RESET DELAY 3 RESET OUT A Cd capacitor , characteristics. 8 SOFT START Soft Start Time Constant. A capacitor is connected between thi sterminal , charging current of Cosc. Cosc. External capacitor connected to ground determines (with Rosc) the


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PDF L4974A 200KHz L4974A ERO Film Capacitor ROE capacitor EYF boostrap L4962 L4970A
1994 - boostrap

Abstract:
Text: 22 R6 = 4.7K R7 = see table A R8 = OPTION R9 = 4.7K * C1 = C2 = 1000µF 63V EYF ( ROE ) C3 = C4 = , Fun ction 1 BOOTSTRAP A Cboot capacitor connected between this terminal and the output allows to drive properly the internal D-MOS transistor. 2 RESET DELAY A Cd capacitor connected , regulation loop gain characteristics. 8 SOFT START Soft Start Time Constant. A capacitor is , charging current of Cosc. 18 OSCILLATOR Cosc. External capacitor connected to ground determines


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PDF L4974A 200KHz L4974A boostrap l4970a application ERO 1830 L4962 L4970A RS FLIP FLOP LAYOUT
ERO kp 1830

Abstract:
Text: = 4.7K R7 = see table A R8 = OPTION R9 = 4.7K * C1 = C2 = 1000µF 63V EYF ( ROE ) C3 = C4 = C 5 = , L4972A-L4972AD PIN FUNCTIONS N o Name Fun ction 1 BOOTSTRAP A Cboot capacitor connected , RESET DELAY A Cd capacitor connected between this terminal and ground determines the reset signal , Constant. A capacitor is connected between thi sterminal and ground to define the soft start time constant , capacitor connected to ground determines (with Rosc) the switching frequency. 20 OUTPUT Regulator


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PDF L4972A L4972AD 200KHz L4972A ERO kp 1830 ERO Film Capacitor L4970A L4972AD SO20
L4972

Abstract:
Text: 63V EYF ( ROE ) C3= C4 = C5=C6 = 2,2nF50V C7 = 330pF Film C8 = 22nF MKT 1837 (ERO) C9 = 2.2nF KP 1830 , Ctoot capacitor connected between this terminal and the output allows to drive properly the internal D-MOS transistor. 2 RESET DELAY A Cd capacitor connected between this terminal and ground determines , Time Constant. A capacitor is connected between this terminal and ground to define the soft start time , - External capacitor connected to ground determines (with Rose) the switching frequency. 20 OUTPUT Regulator


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PDF L4972 L4972D 200KHz 10OKHz) V/12V L4970. L4972-L4972D 58310 L4970 L4972D Eyf 06 ROE H89L ROE capacitor 220 S020 transistor a 1837
ero 1813

Abstract:
Text: = 1 0£2 Re = see table A Rg = OPTION Cl, C2 = 3300pF 63Vl EYF ( ROE ) C3, C4, C5, C6 = 2.2|iF C7 = , - External capacitor connected to ground determines (with Rosc) the switching frequency. 3 RESET INPUT Input , the supply and the output voltages are safe. 5 RESET DELAY A Cd capacitor connected between this terminal and ground determines the reset signal delay time. 6 BOOTSTRAP A Cboot capacitor connected , START A capacitor is connected between this terminal and ground to define the soft start time. 13 SYNC


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PDF L4977 500KHz L4977 L4970 L4974. 330pF LA970 15KIl ero 1813 ERO mkt 1813 L49701 L4974 thomson film capacitors ec BISCR cogema 949178 L4977HT
1994 - ERO kp 1830

Abstract:
Text: = 4.7K R7 = see table A R8 = OPTION R9 = 4.7K * C1 = C2 = 1000µF 63V EYF ( ROE ) C3 = C4 = C 5 = , L4972A-L4972AD PIN FUNCTIONS N o Name Fun ction 1 BOOTSTRAP A Cboot capacitor connected , RESET DELAY A Cd capacitor connected between this terminal and ground determines the reset signal , Constant. A capacitor is connected between thi sterminal and ground to define the soft start time constant , capacitor connected to ground determines (with R osc) the switching frequency. 20 OUTPUT Regulator


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PDF L4972A L4972AD 200KHz L4972A ERO kp 1830 core 58310 MAGNETICS ero 1830 L4970A L4972AD SO20
2000 - Not Available

Abstract:
Text: EYF ( ROE ) C3 = C4 = C5 = C6 = 2,2µF 50V C7 = 390pF Film C8 = 22nF MKT 1837 (ERO) C9 = 2.7nF KP , Function 1 BOOTSTRAP A Cboot capacitor connected between this terminal and the output allows to drive properly the internal D-MOS transistor. 2 RESET DELAY A Cd capacitor connected between , gain characteristics. 8 SOFT START Soft Start Time Constant. A capacitor is connected between , . 18 OSCILLATOR 20 OUTPUT Cosc. External capacitor connected to ground determines (with


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PDF L4974A 200KHz L4974A
2000 - 4.7k Preset

Abstract:
Text: 1000µF 63V EYF ( ROE ) C3 = C4 = C5 = C6 = 2,2µF 50V C7 = 390pF Film C8 = 22nF MKT 1837 (ERO) C9 = , FUNCTIONS No Name Function 1 BOOTSTRAP A Cboot capacitor connected between this terminal and , OUT A Cd capacitor connected between this terminal and ground determines the reset signal delay , capacitor is connected between thi sterminal and ground to define the soft start time constant. 9 , connected to ground determines the constant charging current of Cosc. Cosc. External capacitor connected


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PDF L4972A L4972AD 200KHz L4972A 4.7k Preset cogema L4970A L4972AD SO20
L4970HT

Abstract:
Text: EYF ( ROE ) Ca, C4, Cs, Ce = 2.2|iF C7 = 390pF Ca = 22nFMKT1817 (ERO) C9 = 2.2nF KP1830 C10 = 0.1 |iF , capacitor connected to ground determines (with R0Sc) the switching frequency. 3 RESET INPUT Input of Power , and the output voltages are safe. 5 RESET DELAY A Cd capacitor connected between this terminal and ground determines the reset signal delay time. 6 BOOTSTRAP A Cboot capacitor connected between this , START Soft Start Time Constant. A capacitor is connected between this terminal and ground to define the


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PDF L4970 500KHz L4970 L4974. LA97/i/72 L4970HT max 17119 cjj 05w TRANSISTOR UO 112 THOMSON B3L4 KT 819 transistor 30KC1 L4970 equivalent 23fj
ero 1813

Abstract:
Text: Function 1 BOOTSTRAP A Cboot capacitor connected between this terminal and the output allows to drive properly the internal D-MOS transistor. 2 RESET DELAY A Cd capacitor connected between this terminal and , Start Time Constant. A capacitor is connected between this terminal and ground to define the soft start , capacitor connected to ground determines (with R0Sc) the switching frequency. 20 OUTPUT Regulator Output , prevents instabilities. An external bootstrap capacitor charge to 12V by an internal voltage reference is


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PDF L4974 200KHZ L4974 100KHz) V/12V L4970. 100KHZ ero 1813 L497A u9701 ha7c 1513-T ERO mkt 1813 MKT 1813 OB 97B ROE EYF
l4970

Abstract:
Text: R7= 100 Rö = see table A Rg = OPTION Ci, C2 = 3300|iF 63Vl EYF ( ROE ) C3, C4, C5, C6 = 2.2|aF C7 = , C0sC- 2 OSCILLATOR Cose- External capacitor connected to ground determines (with R0Sc) the switching , . This output is high when the supply and the output voltages are safe. 5 RESET DELAY A Cd capacitor , capacitor connected between this terminal and the output allows to drive properly the internal D-MOS , a divider for higher voltages. 12 SOFT START A capacitor is connected between this terminal and


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PDF 500KHz L4977 L4970 L4974. 33BpF tj22K LA377 L4974 UO-12U TRANSISTOR UO 112 THOMSON ui35 L4377 7e2e 40KHZ 18KA 0d22B
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