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SIT3808AI-D2-33EE-16.800000Y SiTime Corporation LVCMOS Output Clock Oscillator, visit Digikey Buy
SIT3808AI-D3-33EE-16.384000Y SiTime Corporation LVCMOS Output Clock Oscillator, visit Digikey Buy
SIT3808ACTD2-33EE-16.80000T SiTime Corporation OSC MEMS VCXO 16.8000MHZ LVCMOS visit Digikey Buy
SIT3807ACSD2-33EE-16.80000T SiTime Corporation OSC MEMS 16.8000MHZ LVCMOS SMD visit Digikey Buy
SIT3821AC-1D3-33EE163.840000T SiTime Corporation LVPECL Output Clock Oscillator, visit Digikey Buy
SIT3808AI-D2-33EE-16.800000T SiTime Corporation LVCMOS Output Clock Oscillator, visit Digikey Buy

EE16 9V

Catalog Datasheet MFG & Type PDF Document Tags

EE16

Abstract: EE16 9V × 203/4T 0.23ø× 203/4T S 0.07ø× 1350T 0.08ø× 1390T 0.08ø× 1390T Core EE13 EE16 EE16 2SD826 , Charge Time, tC ­ S Sample Application Circuit 2 : High-grade electronic flash set EE16 DFC05R + 100µF 9V Nicd BATTER Y ×4 33k P S 1M F 0.0068µF 10V 2SD826×2 + MC 500 to 1200µF 440V S SCR1 , S : 0.08ø1390T CORE : EE16 ITR09936 1k No.538­4/5 2SD826 350 VMC - tC(1) F 0µ 50 =
SANYO Electric
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EE16 EE16 9V EE16 4 3 EE16 5V core EE16 pulse trans ENN538E 2009B

EE16

Abstract: 5A transistor (3) 350 EE13 EE16 EE16 0F =50 300 MC F 750 250 900 F 200 150 , ITR09935 No.538-4/6 2SD826 Sample Application Circuit 2 : High-grade electronic flash set EE16 DFC05R 1M 33k + 100F 9V S P Nicd BATTER Y 4 + MC 500 to 1200F 440V S SCR1 , CONVERTER TRANS P : 0.6 22 3/4T F : 0.23 20 3/4T S : 0.08 1390T CORE : EE16 ITR09936 VMC - tC(1
SANYO Electric
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5A transistor 60309E DC-DC EE13 ITR09924 MC300F MC507 EN538F

TRANSFORMER 220 to 9V

Abstract: PWR-TOP221Y DOT ON BOBBIN DENOTES PIN #1 - 3800 - PRIMARY 9 (+9V) (DRAIN) 2 + 4% + 4% 125 (HOT RAIL) 1 µHY SECONDARY (+BIAS) 3 6 (9V RETURN) BIAS (HOT , EE16/EI16, 10-PIN VERTICAL P Premier M Magnetics Inc. "INNOVATORS IN MAGNETICS TECHNOLOGY
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PWR-TOP221Y TRANSFORMER 220 to 9V flyback transformer pin configuration Transformer 9v 1A flyback transformer data pin diagram ECA-1EFG UL1950 IEC950 CSA-950 E162344 PMCU-0220 UVS2G330MRA

AQAA

Abstract: ?9%#18;V@' #19;#16; صWÂ4#31;Ú'QR9 #16;a%V" ÕQÃÂ' 5#18; ØW§#31;ÙQ?9%#18;V@' #19;#16; ص WÂ45)67Ûp #19; ×yvx•42 #16; ×yv , *'}yn|½pl#29;42#31;(#27;eE16 .)!#8;#2;!,#5;,#23; #2;#8;,) #22;$#29;#8;'!#8;#22;,!#29;#8;#3;,#8;,) #4;#6;#8;#5;#6;#8; , #29;#22;#25;#23;#8;'!#5;#6;#7;#8;0 #22;#6;#23;!#29;#8;#23; #8;( #22;#2;#8;##2; #29;#22;#25;#23;#11; #19;%#17;%#8; #25; class="hl">eE16 E #22;#8;#3;#2;!#8;#2;!=#22;!,#23;!#29;#8;#6; #23;#8;#23; #8;#22;,!#8; #22;#2;#8;##2; # ; 0#8;#23;)#5;,#8;##2; #29;#22;#25;#23;#8;,#!#25;#5;#24;#5;#25;#3;#23;#5; #6;#11; #19;%#17;5#8; rN`¢)Â"#31;#25;#28;#29;#1;#2;#3;'I z{²p|²"k#31;#19;Lp} @;~eE16
muRata
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AQAA ABCDE16

TNY254P

Abstract: TNY254 Small physical size D1 D2 1N4005 1N4005 ® C7 100 µF 25 V 5 +9V RTN TinySwitch , Bobbin EE16 10 pin (Ying Chin YC1607 or equiv.) Winding Order The secondary winding of T1 is
Power Integrations
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TNY254 TNY254P 11DQ06 YC-1607 EE16 10 pin powerint DI-4 tinyswitch 34AWG 26AWG

TNY255P

Abstract: TNY254G equivalent details. voltage. At the same time, they allow use of low cost EE16 core transformers to deliver up to , deliver up to 10 W from the same low cost EE16 core for applications such as PC standby supply. An EE13 , (EE16) as used by the TNY253/254 for lower power applications. 12 V 0V VDRAIN BYPASS Pin , operation allows the use of a low cost EE16 core transformer up to the 10W level. Figure10 shows a 5V, 10W , C4 68 pF 1 KV U1 TNY253P R2 100 6 +9V VR1 1N5239B RTN TinySwitch EN BP
Power Integrations
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TNY255P TNY254G equivalent TNY254 equivalent TNY254G TNY255G zener 9v 1w TNY253/254/255 TNY253/4 17F-3

TNY255 equivalent

Abstract: TNY255P details. voltage. At the same time, they allow use of low cost EE16 core transformers to deliver up to , deliver up to 10 W from the same low cost EE16 core for applications such as PC standby supply. An EE13 , cost transformer (EE16) as used by the TNY253/254 for lower power applications. 12 V 0V VDRAIN , operation allows the use of a low cost EE16 core transformer up to the 10W level. Figure10 shows a 5V, 10W , C4 68 pF 1 KV U1 TNY253P R2 100 6 +9V VR1 1N5294B RTN TinySwitch EN BP
Power Integrations
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TNY255 equivalent EE16 core transformer 36-source EE16 transformer tny255 TM 1343 transformer ac adapter circuit

EE16 429

Abstract: EE13 8 pin bobbin transformers VIN = 115 Vac VIN = 230 Vac EE13 EE13 EE13 EE13 EE13 EE13 EE13 EE13 EE13 EE16 EE16 EE16 Table 5 , . Core Size NSPV EE13 1.52 EE16 1.35 Table 6: Fractional Number of Secondary Turns Required per Output , example on page 21. Core Size VIN 115 Vac VIN 230 Vac EE13 214 431 EE16 N/A 384 Table 7: Typical , to choose for the design example in section 5 (page 21). Core Size NAUXMIN EE13 12 EE16 11 Table , conductor size selected for the design example in section 5 (page 21). Core Size EE13 EE16 Nominal Output
Cambridge Semiconductor
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DS-1639 EE16 429 EE13 8 pin bobbin transformers MJE13003 st core EE13 5V power supply sot23-6 CAMSEMI C2471LX2 DG-2128-0905

smd-8c

Abstract: LNK584 (FEEDBACK0.9V) -. 1.2s170ms.- . LinkZero-AXDRAIN. .IS2(LNK584310mA) 5.85V . C4 R8 220 pF 5.1 100 V L3 1 mH D6 SS15 R2 4.7 k D1 1N4007 L4 1.8 µH T1 3 EE16 8 D2 1N4007 1 , . -100mA(3) . -0.3V~9V . 100mA BYPASS. -0.3V~9V BYPASS
Power Integrations
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LNK584 LNK584DG IEC62301 smd-8c PI-2240-012301 SO8C smd8c PI-5909-100410 325VDC3 230VAC WIEC62301 85-265VAC

IN5822 diode

Abstract: Driver with MJE13003 CCT=330pF Voltage stability 4.5V≤VCC≤9V Amplitude VCT peak to peak Temperature , C11 0.1uF U1 BL8080 Q1 MJE13003 U2 PC817 IC2 TL431 T1 EE16 RF1
Shanghai Belling
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IN5822 diode Driver with MJE13003 85VAC LC8100 IN5822 IN4007 IN4148

EE16 bobbin

Abstract: 24V 10A SMPS circuit diagram Protection Debounce Time HV 120VDC, VDD=0V with 10µF HV=700V, VDD=VDD-OFF+1V Center Frequency 94 14 VDD=9V to , Specification Core: EE16 Bobbin: EE16 Figure 33. Transformer Diagram NO. S W1 W2 W3 W4 5 2 4 8
Fairchild Semiconductor
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EE16 bobbin 24V 10A SMPS circuit diagram flow sensor switch 36v 20A smps Power Supply Schematic Diagram FSL127H 100KH MS-001 5M-1994 MKT-N08FREV2
Abstract: = 9V to 22V 5 % fDT Frequency Variation vs. Temperature (11) Deviation TA = -40 to , (FPSâ"¢) Typical Application Circuit (Continued) Transformer Specification ̇ ̇ Core: EE16 Bobbin: EE16 Figure 32. Transformer Diagram NO. W1 W2 W3 W4 TERMINAL S 5 2 4 8 WIRE Fairchild Semiconductor
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FSL137H
Abstract: Maximum Duty Cycle 94 14 85 % fDV Frequency Variation vs. VDD Deviation VDD = 9V to 22V , "¢) Typical Application Circuit (Continued) Transformer Specification ̇ ̇ Core: EE16 Bobbin: EE16 Fairchild Semiconductor
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motorola optocoupler

Abstract: TNY254P T1 D R4 1.5 k 1/2 W C2 4.7 µF 400 V U1 TNY254P 6 TinySwitch BP +9V RTN , design is very simple, requiring only a primary and secondary winding. The TRD8 design utilizes an EE16 , 10 HIGH-VOLTAGE DC BUS TinySwitch DRAIN RETURN OUTPUT CORE# - PC40 EE16/24/5-Z (TDK) GAP
Power Integrations
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motorola optocoupler EE16 10 pin bobbin datasheet EE16 10 pin bobbin transformers tdk ee16 pc40 bobbin core EEL16 transformer TNY254P DIAGRAM PI-2252-091098

tny280 flyback

Abstract: flyback samsung 230 V AC Adapter/Charger EP-14 3W 9V 0.70 0.58 0.09 0.20 AC , 2.5 W 90-265 VAC 2 1 C1 10 µF 400 V D4 UF4002 T1 EE16 7 C5 220 µF 25 V , 85-265 VAC 10 C5 330 µF 16 V T1 EE16 9 3 RF1 8.2 k 2.5 W Small value Y capacitor , 5.5 V 9V 5 V, 600 mA 5V 5 V, 600 mA 6 V, 800 mA 9V 5 V, 600 mA 9V 5 V, 600 mA 13.55 V 12 V
Power Integrations
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tny280 flyback flyback samsung lnk306 TNY276 tny 290 TNY 277 equivalent EP-16

ee16 output 12v power supply

Abstract: Frequency Variation vs. VDD Deviation Frequency Variation vs. Temperature (11) Deviation VDD = 9V to 22V TA , (Continued) Transformer Specification Core: EE16 Bobbin: EE16 Figure 32. Transformer Diagram
Fairchild Semiconductor
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ee16 output 12v power supply

6V 10A SMPS circuit diagram

Abstract: EE16 bobbin Deviation Frequency Variation vs. Temperature (11) Deviation VDD = 9V to 22V TA = -40 to +105°C 94 14 100 18 , Specification Core: EE16 Bobbin: EE16 Figure 33. Transformer Diagram NO. S W1 W2 W3 W4 5 2 4 8
Fairchild Semiconductor
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6V 10A SMPS circuit diagram 20A smps Power Supply Schematic Diagram

EE16 transformer tny255

Abstract: 1N5294B use of low cost EE16 core transformers to deliver up to 5 W. The TNY253 is identical to TNY254 except , . TNY255 uses higher switching rate of 130 kHz to deliver up to 10 W from the same low cost EE16 core for , using the same size, low cost transformer (EE16) as used by the TNY253/254 for lower power applications , for TNY253/254. The higher frequency operation allows the use of a low cost EE16 core transformer up , 16V +9V VR1 1N5294B RTN 115 VAC ± 15% C1 2.2 µF 200 V C2 2.2 µF 200 V D
Power Integrations
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transformer tm 1343 tny2* 7 pin 4 pin SMD step up transformer EE16 9V 5W IN3934 core EE13 transformer
Abstract: Application Considerations section for details. voltage. At the same time, they allow use of low cost EE16 , higher switching rate of 130 kHz to deliver up to 10 W from the same low cost EE16 core for applications , using the same size, low cost transformer (EE16) as used by the TNY253/254 for lower power applications , operation allows the use of a low cost EE16 core transformer up to the 10 W level. Figure 10 shows a 5 V , 200 V VR1 1N5239B RTN 6 5 115 VAC ± 15% +9V C6 100 µF 16V D1 1N4004 Power Integrations
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TNY255

Abstract: 1N4004 smd equivalent clamp to limit DRAIN spike voltage. At the same time, they allow use of low cost EE16 core transformers , 130 kHz to deliver up to 10 W from the same low cost EE16 core for applications such as PC standby , using the same size, low cost transformer (EE16) as used by the TNY253/254 for lower power applications , Standby Supply Circuit. use of a low cost EE16 core transformer up to the 10 W level. Figure 10 shows , Charger Circuit. 1 T1 10 D3 1N3934 C6 100 F 16V VR1 1N5239B +9V D1 1N4004 5 6 RTN
Power Integrations
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1N4004 smd equivalent TNY253G 1N5239B SMD PI-2048-033001 equivalent components of zener diode 1n5229b PI2259 D-80336
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