Product Selector Guide LED Tube and Ballast Designs
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- Tamsyn Bishop
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1 Innovation in power conversion Product elector Guide E Tube and Ballast esigns February 08 YTwitch- COTO
2 Product elector Guide TIAC imming, PFC, Isolated and on-isolated Flyback, Buck, and Buck-Boost YTwitch- YTwitch - inkwitch -PH PI PFC, on-imming on-isolated Buck YTwitch- PFC, Isolated and on-isolated Flyback, Buck, and Buck-Boost YTwitch- Isolated and on-isolated Flyback, Buck, and Buck-Boost (on-pfc) YTwitch- on-isolated Buck or Buck-Boost (on-pfc) YTwitch-0 0 W. W W W 0 W 0 W 0 W 90 W
3 IC Product Tables YTwitch-0 owest Component Count, Off-ine witcher IC for on-isolated E ighting Applications 0 ±% 8-08 Product PF, MCM CCM MCM CCM (ma) (ma) (ma) (ma) YT000/P YT000/P YT000/P YT000/P High 0 0 ow High ow High ow High ow Additional Features: High power factor meeting EU and UA requirements ery low component count Frequency jitter reduces EMI o bias winding or transformer required otes:. Typical output current in a non-isolated buck converter (see Key Applications Considerations section in data sheet for more information).. MCM mostly discontinuous mode.. CCM continuous conduction mode.. PF high: 0 and 0.. PF low: for non-pf application where C I > mf minimum.. Packages: P: PIP-8B, : O-8C. YTwitch- ingle-tage E river IC with Combined PFC and Constant Current Output for Buck Topology Optimized for mallest Components Product OUT 0 OUT Y0.0 W 8.0 W Y0 7. W W Y0 W W Optimized for owest TH Product OUT 0 OUT Y0.0 W 8.0 W Y0 7. W W Additional Features: CC regulation better than ±% Power factor >0.9 High efficiency >9% Critical Conduction Mode (CrM) buck, low EMI Excellent line noise and transient rejection otes:. Maximum practical continuous power in an open frame design with adequate heat sinking, measured at 0 C ambient.. Output power scales linearly if OUT falls in between the specified voltages.. Package: O-8 ( Package). Y0 W W YTwitch- ingle-tage E river IC with Combined PFC and Constant Current Output for Outstanding TIAC imming in Isolated and on-isolated Topologies Output Power (W) Product 8- or 8- YTx.7 YTx 8.8 YTx. YTx8 0. Additional Features: ess than ±% CC regulation over line and load Power Factor >0.9 Ensures monotonic A reduction with TIAC phase angle ow TH, % typical for dimmable bulbs, as low as 7% in optimized designs otes:. Maximum practical continuous power in an open frame design with adequate heat sinking, measured at 0 C ambient (see Key Applications Considerations section in data sheet for more information).. x digit describes O(MAX) of the integrated switching MOFET, =, 7 =.. Package: : O-B. E Tube and Ballast esigns
4 IC Product Tables YTwitch- ingle-tage Accurate Primary-ide Constant Current (CC) Controller with PFC for Applications with TIAC imming and on-imming Options, Product Minimum Output Power (W) Maximum Output Power (W) YTxE/. YTxE/. YTxE/.8 8 YTxE/. YTxE/. YTxE/.8 YTx7E/ YTx8E/ 8 78 Product Minimum Output Power (W) Maximum Output Power (W) YTxE 7 YTxE YTxE 8 8 YTxE 9 YTxE YTxE YTx7E 9 0 YTx8E 78 Additional Features: Better than ±% CC regulation TIAC dimmable to less than % output Fast start-up <0 ms at full brightness <s at 0% brightness High power factor >0.9 Easily meets E000-- ess than 0% TH in optimized designs Up to 9% efficient khz switching frequency for small magnetics otes:. Performance for typical design. ee Applications ote.. Continuous power in open-frame design with adequate heat sinking; device local ambient of 70 C. Power level calculated assuming a typical E string voltage and efficiency >80%.. Minimum output power requires C = 7 µf.. Maximum output power requires C =.7 µf.. YT C = 7 µf, YT C =.7 µf.. Packages: eip-7c(e), eip-7f(). 7. YT C = 7 µf, YT C =.7 µf. 8. Package: eip-7c. YTwitch- ingle-tage E river IC with Combined PFC and Constant Current Output in Isolated and on-isolated Topologies Product Output Power (W) YT 9 YT, YT YT8, YT8 otes:. Maximum practical continuous power in an open frame design with adequate heat sinking, measured at 0 C ambient (see Key Applications Considerations section in data sheet for more information).. Package: : O-B. Additional Features: Accurate CC, better than ±% Power Factor >0.9 ow TH, <0% with typical input and output conditions >90% efficient in optimized designs High switching frequency and CM allow compact magnetics upports buck, buck-boost, tapped-buck, boost, isolated and non-isolated flyback topologies MOFET voltage options and power levels for optimum device selection o electrolytic bulk capacitors or optoisolators for increased lifetime Comprehensive protection features Input and output overvoltage Open-loop protection Advanced thermal control Thermal foldback allows output light delivery at abnormally high ambient temperatures Hysteretic shutdown provides protection during fault conditions
5 IC Product Tables YTwitch- ingle-tage E river IC with Combined PFC and Constant Current Output in Isolated and on-isolated Topologies Product 77 ± % C / C Open Frame (W) Open Frame (W) Open Frame (W) YT0C/07C YT0C/07C 0 0 YT07C/077C 0 0 YT08C otes:. Minimum continuous power in a typical non-ventilated and PCB size measured at 0 C ambient. Max output power is dependent on the design. With condition that package temperature must be < C.. With 7 FET only.. Package: InOP-. Additional Features: Up to 9% efficiency across full load range Incorporates a multi-mode Quasi-esonant (Q) / CCM flyback controller, or 7 MOFET, secondary-side control and synchronous rectification driver Integrated Fluxink, HIPOT-isolated, feedback link Exceptional C/CC accuracy, independent of transformer design or external components Adjustable accurate output current sense using external sense resistor PWM dimmable Input line O with auto-restart Output fault OP/UP with auto-restart Open FET gate detection Input voltage monitor with accurate brown-in Thermal foldback ensures that power continues to be delivered (lower level) at elevated temperatures inkwitch-ph ingle-tage PFC, Primary-ide Constant Current Control and TIAC imming/ on-imming Options, Product Minimum Output Power (W) = MW Maximum Output Power (W) Minimum Output Power (W) = MW Maximum Output Power (W) K0/E/... K0/E/... K0/E/ K0/E/ K07/7E/. 0 K08/8E/.8. K09/9E/ K0/0E/ Additional Features: ingle-stage power factor correction and accurate constant current (CC) output Flicker-free phase-controlled TIAC dimming Primary side control eliminates optocoupler and all secondary current control circuitry Eliminates electrolytic bulk capacitor Eliminates all control loop compensation circuitry imple PWM dimming interface otes:. Continuous power in an open frame with adequate heat sinking at device local ambient of 70 C.. Power level calculated on typical E string voltage with efficiency >80%.. Minimum output power with C = 0 mf.. Maximum output power with C = 00 mf. KxEG C = 0 mf.. Packages: eip-7c, eip-7f. E Tube and Ballast esigns
6 Tube and Ballast esign Examples Product Family AC Input oltage () Output Power (W) Output Current (A) TIAC imming Power Factor Efficiency (%) Topology ocument K Page umber Isolated esign Examples YTwitch > Flyback E-7 7 YTwitch > Flyback E-0 7 inkwitch-ph > Flyback E- 8 inkwitch-ph > Flyback E-88 8 YTwitch > Flyback E-8 9 inkwitch-ph 8-0. > Flyback E-8 9 YTwitch > Flyback E-9 0 YTwitch > Flyback E-0 inkwitch-ph > Flyback E-8 YTwitch * >0.9 8 Flyback E- YTwitch > Flyback E-7 YTwitch > Buck-Boost + Flyback E-97 YTwitch > Flyback E-7 on-isolated esign Examples inkwitch-ph > Buck -7 K-7 7 YTwitch > Buck E-8 7 YTwitch > Buck-Boost E- 8 YTwitch > Buck-Boost E- 9 YTwitch > Tapped-Buck E- 9 YTwitch > Buck E- 0 YTwitch > Buck-Boost E- 0 YTwitch > Buck E-8 inkwitch-ph >0.9 9 Buck-Boost E- inkwitch-ph > Buck-Boost E-87 YTwitch > Buck-Boost E-0 *Analog dimming
7 Isolated esign Examples YTwitch- High-Efficiency, High Power Factor E river (E-7) 8. W,, 0 ma OUTPUT, 90 IPUT, IGE-TAGE PFC, IOATE FYBACK, MAT IGHTIG POWE UPPY AC.8 mh EJ-TP EE, 0 ma T EE0 UF00.. nf 0.0 Ω MΩ F Ω 0 70 µf K00B-TP 0 kω + 8. A mh B B0-G 000 BYC 8 pf 90-7 nf 0 nf 0 0 pf. kω µf µf FU00-7. FW G 0 0. Ω COTO P I OUT.00 Ω µf 70 nf YTwitch- U YT0C 7 UB PI YTwitch- High-Efficiency, High Power Factor E river (E-0) W, 7, 0 ma OUTPUT, 90 IPUT, IGE-TAGE PFC, IOATE FYBACK, MAT IGHTIG WITH CAAMBI CBM-00 POWE UPPY.8 mh J--F AC 7, 0 ma + T EE0 EG--F µf. nf MΩ F F F 7 Ω C9 00 pf K00B-TP 0 70 µf (AUX) 0 kω 9B-T 9 00 Ω (AUX) TP TP. A 90-7 mh nf 0 B B0 000 nf 0 8 EG--F FU00-7 µf YTwitch- YT0C Primary FET and Controller F M_/I 7 Ω P 70 nf 8 TTH0A AUX(FW) FW G I 80 µf OUT econdary Control IC.99 kω Ω 7 UB 0 pf G PI µf E Tube and Ballast esigns 7
8 Isolated esign Examples inkwitch-ph High-Efficiency, High Power Factor, E river (E-) W,, 00 ma OUTPUT, 90 IPUT, IGE-TAGE PFC, FYBACK, T8 POWE UPPY 000 µh (+) 7 MU0 C µf 00 µf 00 00, 00 kω 00 ma B B kω 0 kω MΩ nf k 00 Ω F07 8 kω F (G) EE 7 0 Ω F07 µf 0 kω 00 µh µh 7 nf 7.7 kω.7 kω 000 µh. MΩ µf MU0 inkwitch-ph U K0EG COTO 8. kω 0 0 kω 007. A 90 - mh.8 MΩ.9 kω Q FMMT9 00 µf kω ZMM7B 00 Ω µf AC PI inkwitch-ph High-Efficiency, High Power Factor, E river (E-88) W, 0, 00 ma OUTPUT, 90 IPUT, IGE-TAGE PFC, FYBACK, BAAT POWE UPPY A 000 µh 000 µh 7 nf µh B K0M 00 0 nf MΩ MΩ 887 kω inkwitch-ph U K7EG PKE00A UF007 UF00 COTO.0 kω B 0.9 kω 0 kω kω Q MMBT90 M0 F 0 Ω ZMM9B-7 9 MB000CTG E 00 kω 7 BAW-7-F µf 80 µf C9 AC 7 00 Ω 0 kω PI-a-008 Q TIPC 0 Ω Active ipple Conduction Filter 0, 00 ma
9 Isolated esign Examples YTwitch- High-Efficiency, High Power Factor, Isolated E river (E-8) W,, 0 ma OUTPUT, 90 IPUT, IGE-TAGE PFC, FYBACK, T8 POWE UPPY 70 µh Ferrite Bead. mm. mm C9 0 pf k 7 Ω 0 0 µf 00 00, 0 ma 007 k 00 kω / W 7 QA0T00 00 µh 0 kω A * 0. kω mh mh. kω nf 0 B F0M 00 µf. MΩ 0 kω YTwitch- U YTE BY8 UF00 COTO 8. kω E80 Ω 0 0 kω Q 90 BA B 0 * is needed for >00 surge.9 kω 7 µf 00 Ω.7 kω AC PI inkwitch-ph High-Efficiency, High Power Factor, E river (E-8) W,, 0 ma OUTPUT, 8 IPUT, IGE-TAGE PFC, FYBACK, T8 POWE UPPY 00 kω 0 pf k 7Ω 0 µf 0 70A 8, 0 ma 0 µh 007 PKE00A 7 UF0 TP TP 8 -. A mh 7. kω 0 µh 0 µh. kω 7 B F0M 00 Q PA 9 70 kω 0 70 kω B-T 00 Ω W PKE00A Q K8 7 µf k inkwitch-ph U K9EG UF007 UF00 COTO.9 kω 8. kω 0 07 kω E909 Q kω 00 Ω B-T 7Ω 0 pf k 9-T AC 0 µf 0 kω PI E Tube and Ballast esigns 9
10 Isolated esign Examples YTwitch- High-Efficiency, High Power Factor, C/CC E river (E-9) W,,.0 A OUTPUT, 9 IPUT, IGE-TAGE PFC, IOATE FYBACK, BAAT POWE UPPY 7 7 Ω 8 70 pf k J A 9 - J 0 µh kω 0 µh B B0-G 000 AC 0 nf 8.8 mh 0 nf.7 µf FU00-7 MΩ 8 80 kω 00 kω U 00 kω UJ YTwitch- U YTE COTO BAW-7-F 0.9 kω 0 7 kω 0 C M8/ F Z0M0. 7 BYW9-00 UA T87 BAW-7-F U M_A 7 Ω, 7 kω, µf kω µf, 8. kω 70 µf C9 70 µf UA T87 Q MMBT90 Z nf,.0 A TP TP 7 kω UB T87 0 nf.9 kω µf 0 BAW-7-F UB T87 CY AC PI
11 Isolated esign Examples YTwitch- High-Efficiency, High Power Factor E river (E-0) 9 W,, 800 ma, 80 IPUT, IGE-TAGE PFC, IOATE FYBACK, E IGHTIG WITH AI IMMIG POWE UPPY. nf AC 000 µh J--F T PQ0/0 70 µf 8 70 µf, 800 ma J- EJ-TP BZ700P C9 70 pf 00 8* * 9 0 kω 7 J A J mh B UKB nf EE 0 nf 9 7 EJ-TP BZ700P 7.7 kω µf. 0 Ω 7 F F F F F 0 EG--F FU Ω µf AF pf 0.7 kω 0.0 Ω / W 0.9 Ω J- kω 9 /0 W BAW-7-F kω /0 W UA 8 + (AUX) 8 00 Ω /0 W 7 UB 8. kω + 8 µf. kω 7 µf 0 7 kω /0 W 0 PWM COTO FW G OUT (AUX).00 kω kω P I 0 µf 70 nf YTwitch- U YT07C PI (AUX) O(OFF) PWM AI+ AI- CO8 J (AUX) U TA/, P EG 0 µf G.7 µf 80 Ω 8 8WHG 0 µh 0 nf A 9 9 Ω W witch U PI8-I/ A A0 A A A A C0 0 Ω A0 A UA P7 UB P7 0 Ω.00 kω U P7 Q8 MMBT0G B MB-TP 00 AI+ AI- J 8 7 CO8 (AUX) O(OFF) PWM AI+ AI- Q7 700 Q0 PMX 7 kω PWM 0 7 Ω J CO A A0 A MMZ0B-7-F Q9 BBW, 7 00 kω 9 BA70G 0 Ω /0 W PI E Tube and Ballast esigns
12 Isolated esign Examples inkwitch-ph High-Efficiency, High Power Factor, E river (E-8) 0 W, 0, A OUTPUT, IPUT, IGE-TAGE PFC, FYBACK, BAAT POWE UPPY 0 µh k 0 pf k Ω 000 µf 000 µf J 0, A KΩ / W PKE00A MB00G 0 kω + 0 J J J. A kω 0 µh 0 0 µh. kω 0 nf 0 B K0M A MA00Z MA00Z 7 ZMMB-7 Q PA 9 70 kω 0 70 kω 0 Ω W Q IHP80C-E 0 nf 0 0 nf 0 MΩ. MΩ UF007 UF00 inkwitch-ph U K9EG COTO.9 kω B. kω C kω Q MMT90 PQ/ kω kω µf 9 Ω Q MMBT90 ZMM9B-7 9 E 7 BAW-7-F 0 µf. nf AC - Optional. k urge upression Circuit PI
13 YTwitch- Wide Output oltage ange, ingle-tage Power Factor, E river (E-) 0 W, 0 0, 0.0 A OUTPUT, 90 IPUT, IGE-TAGE PFC, IOATE FYBACK, BAAT POWE UPPY B F08 *. mh 0. PKE0A nf kω 7 Ω UFMP-TP MΩ 7 E 8 kω 8 EB--F.7 µf.7 kω W YTwitch- U YTE COTO 0.9 kω Q.7µF 7. kω 8. kω. kω. kω 0 EF Z Z Ω 78.7 kω U MAIM 0.7 kω pf k 0 8 Ω 8 Ω EG-E/7T µf 00 7 AF Ω 9 U.9 kω 9 9 kω C kω 0 µf 00. kω 0. Ω W, 0 Ω Q MMBT90 9 kω W 00 µf U M_A. kω UA MM.7 kω 8 BAW-7-F.0kΩ *. kω U MM 7 µf ot Populated* * * 9 BAW-7-F 0.9 kω kω kω. kω W 8. kω W 9. kω W 7* Q MMBT90 70 Ω 9 kω kω /0 W 0 0 kω UB MM /0 W kω UC MM kω 8 nf PI , 00 ma 0. kω W J- Q 88 J- 0-0 J- 8 J- 9 UB FHA- 7 kω. A J mh 7 nf J- 0 nf Isolated esign Examples U FHA- E Tube and Ballast esigns
14 Isolated esign Examples YTwitch- High-Efficiency, High Power Factor E river (E-7) W,,.9 A, 0 0 IPUT, IGE-TAGE PFC, IOATE FYBACK, EMEGECY IGHTIG BATTEY CHAGIG POWE UPPY 00. mh J--F M8 000 µf µf 0 kω,.9 A + T EE E-J-TP 8 µf 00 BZG00T 0 BZG00T 0 kω. nf. MΩ. MΩ 0 Ω / W 0 kω 0 Ω / W ZE0A-E/ 0 GM-TP 0 F 7. nf Ferrite Bead (. x. mm) Ω 0.7 W C9 70 pf Q AO0 0 kω. A 0-0 AC 8 nf 70 C kω 8.8 mh B UKB nf 70 C 0 0 nf 0 EJ-TP 7 Ω.8 kω 0 pf kω.0 MΩ FU00-7 FW G µf COTO 70 nf P YTwitch- U YT08C I OUT 0.0 Ω W B0A--F PI
15 Isolated esign Examples inkwitch-ph/ytwitch- High-Efficiency, High Power Factor, E river (E-97) 0 W,, 90 ma OUTPUT, 90 0 IPUT, IGE-TAGE PFC, BUCK-BOOT A IOATE FYBACK, -WAY IMMIG E BAAT POWE UPPY. nf AC.8 mh QH0TZ00 C9 000 pf 0 MΩ 8 F F 80 pf 7 Ω 0 P-M/8A 0 µf 8 0 µf 9 0 kω 0.09 kω.8 nf, 90 ma J- 0.7 kω F P-M/8A Q FMMT9TA OUT F00-7. MΩ U kω F T PQ0/0 FU00-7 MMZ700G 7 J- J-. A 8 pf AC pf J- AC 0 7 nf 0 B UKB mh 0 nf 0 nf BZ-B8, 8. MΩ. MΩ 8 kω EG-E/7T BAHG. kω 9.9 kω PQ/0 M0Z 0 0 µf 7 Ω 9 0 pf 0 pf AC +.8 µf.80 MΩ inkwitch-ph U K9EG COTO.9 kω 0. Z kω 0 0. kω UB 7 µf FHA- µf 0 UA FHA- 0 µf 7 F00-7 Primary FET and Controller 70 nf FW G OUT P I econdary YTwitch- Control IC U YT08C UB 7.00 Ω 0.0 Ω Q AUIFU80 0. Ω Q(G) UB Ω - PI OUT 0 9. kω Q(G).00 kω 8 0 nf µf 8 0 kω UA M8T + Q 700. µf 7 70 nf 9. kω /0 W.00 kω U8 MBIM/OPB Q8 MMBT kω MMZB-7-F IM+ J- IM kω.00 kω 00 kω /8W nf 7 00 kω 7 + UB M8T 0 kω PI J- E Tube and Ballast esigns
16 Isolated esign Examples YTwitch- High-Efficiency, High Power Factor, E river (E-7) W, 80, 80 ma OUTPUT, 90 IPUT, IGE-TAGE PFC, IOATE FYBACK, WITCHE AEY FI E IGHTIG POWE UPPY. nf AC 0 µh J--F T M0 00 µf µf 00 80, 80 ma 9 E_J_TP BZ700P.0 MΩ C9 000 pf 0 F 8 00 Ω / W 00 pf k 0 TTH kω 7. nf TP EE BZ700P 0 Ω 8 F F F TP A TP 0 C 0 mh B UKB nf 7 0 nf 7 EJ-TP 7.7 kω 8 µf 7 F MΩ FU Ω FW G 9 0 pf 0. kω. Ω COTO P I OUT 0.0 Ω / W 0 µf.7 µf YTwitch- U YT08C UB PI TP
17 on-isolated esign Examples inkwitch-ph High-Efficiency, High Power Factor, E river (K-7) W,, 0 ma OUTPUT, 90 IPUT, IGE-TAGE PFC, O-IOATE BUCK COETE, T8 POWE UPPY, 0 ma J. A B B0G 000. mh 007 UG.00 MΩ 0 µf 80 µh EE BA9W µf 00.8 kω 90.9 kω 7.8 kω Q FMMT0 0 nf B-T J 00 J MΩ EB 0 7 kω J. mh.0 MΩ COTO inkwitch-ph U K0EG.9 kω 0 Ω PI--008 YTwitch-0 High-Efficiency, High Power Factor, E river (E-8) W, 8, ma OUTPUT, 90 IPUT, IGE-TAGE PFC, O-IOATE BUCK COETE, T8 POWE UPPY kω.7 mh 00--F µf YTwitch-0 U 80 kω YT000P/ 0. Ω 0. Ω 80 kω 0 nf.9 mh 8 µf 00 MΩ 8, ma + 7A 00 0 Ω W µf TTH0 ine urge Protection PI One hot o-load Protection - E Tube and Ballast esigns 7
18 on-isolated esign Examples YTwitch- High-Efficiency, High Power Factor, E river (E-) W, 9 8, 0 ma OUTPUT, IPUT, O-IOATE BUCK-BOOT, TUBE EPACEMET POWE UPPY. mh. A B B0-G nf K Optional C Clamp 80 kω E 00 µf 00 7 MU0TG TP 80 kω 7, 0 ma TP TP TP kω.0 kω 0. kω YTwitch- U YT O 0 nf COTO OC 00 kω. kω µf 0 BAW-7-F 8 7 E 0 Ω PI-77a- HBB 8
19 on-isolated esign Examples YTwitch- High-Efficiency, High Power Factor E river (E-) W,, 7 ma, 9 IPUT, IGE-TAGE PFC, O-IOATE BUCK-BOOT COETE, T8 TUBE POWE UPPY TP 9 - TP. A 7 G00F 9 G00F G00F 0 G00F mh 0 nf 0.7 µf 00.0 MΩ. MΩ EE BAW-7-F.9 kω E YTwitch- U YTE COTO TTH0A 00 7 A000 7 µf kω 0 µf ZJ0M0.7 kω 8 A000 TP, 7 ma TP mh k.9 MΩ * 8 kω PI BZY kω /0 W Q MMT90-7-F kω *Optional YTwitch- High-Efficiency, High Power Factor E river (E-). W,, 0 ma or 0, 0 ma OUTPUT, 9 IPUT, IGE-TAGE PFC, O-IOATE TAPPE-BUCK COETE, T8 TUBE POWE UPPY mh 0 kω 007 / W nf 000 MB0TG 0 µf *, 0 ma TP G00F G00F 007 TP TP 9 - TP. A 7 Ω.0 MΩ 8 9 EP7 BA9W 0 µf 0 kω E--F 7 A000 ZJ0M0 9 G00F 0 G00F 0 nf 0 MBJ00A 00 v.7 µf kω YTwitch- U YTE COTO 00 µf 0 8 A000.7 kω kω mh * *.9 kω * kω BZY kω /0 W Q MMT90 kω *Optional PI E Tube and Ballast esigns 9
20 on-isolated esign Examples YTwitch- High-Efficiency, High Power Factor E river (E-).7 W, 7, 0 ma OUTPUT, 90 IPUT, IGE-TAGE PFC, O-IOATE BUCK COETE, TUBE E POWE UPPY /0 W 7, 0 ma 90-0 Ω W 0 B B0-G 000. mh 0 nf 70 kω UG 0 µf kω. Ω, / W 0.9 Ω,. kω, YTwitch- Y0 0 M 0 kω EE pf PI YTwitch- High-Efficiency, High Power Factor E river (E-) 8 W, 7, 0 ma OUTPUT, IPUT, IGE-TAGE PFC, O-IOATE BUCK-BOOT COETE, T8 TUBE POWE UPPY kω /0 W. MΩ. COTO O OC 8 kω,, 7 kω,. kω, 8 nf.0 kω 0 pf Ω TTH0U TP A 00 B B0G mh 0 nf 00 YTwitch- U YT8 0 µf 00 UFMP-TP 8 EE 0 0 µf 80 BK TP 0 80 k Ω TP 7, 0 ma + PI E TP 0
21 on-isolated esign Examples YTwitch- High-Efficiency, High Power Factor E river (E-8) 0 W, 0, 70 ma OUTPUT, IPUT, IGE-TAGE PFC, O-IOATE BUCK, TUBE E POWE UPPY 0, 70 ma A B B0-G mh 7 0 nf. Ω 0. Ω.8 kω YTwitch- Y0.7 µf UJ 00 M 00 kω 8 µf 0. mh 00 pf kω - PI kω inkwitch-ph High-Efficiency, High Power Factor E river (E-) W,, 80 ma OUTPUT, 90 IPUT, IGE-TAGE PFC, O-IOATE BUCK-BOOT, 0 POWE UPPY 70 µh TP kω TP 90 - TP. A 70 µh. kω 70 µh. kω 7 B 0M µf E nf k XA0T00 7 BY7-00 BA9W inkwitch-ph U K9EG COTO 0 µf C9 Q FMMT0 BAW- 7-F /0 W BA MAZ900M kω 9 /0 W.7 kω.7 kω 8 00 kω 0 00 kω, 80 ma TP.9 kω 0 kω PI E Tube and Ballast esigns
22 on-isolated esign Examples inkwitch-ph High-Efficiency, High Power Factor E river (E-87) W, 00, 0 ma OUTPUT, 80 IPUT, IGE-TAGE PFC, O-IOATE BUCK-BOOT COETE, T8 POWE UPPY. kω TP 80 - TP. A mh 7 B 0M 000. mh 0 nf MΩ.00 MΩ.7 µf 0 E0 0 T E0 0.7 nf k 8 QHT00 BY7-00 COTO 0 µf 8 BY BA9W inkwitch-ph U K09EG 0 µf BAW-7-F MAZ900M 9 kω 90.9 kω Q FMMT0.8 kω 8 kω TP TP 00, 0 ma 0 00 kω. kω. mh.9 kω 7.7 kω 8 0 kω C9 PI--07 YTwitch- High-Efficiency, High Power Factor, ow TH E river (E-0) W,, 7 ma OUTPUT, 9 00 IPUT, IGE-TAGE PFC, O-IOATE BUCK-BOOT, 0 POWE UPPY mh TP G00F G00F 00 EP7 0 µf 90 kω TP 9-00 TP. A G00F G00F 0 nf mh. µf 0 nf k 8 BAW-7-F.7 MΩ.9 kω 7 BY MA0G COTO TTH0A 00 YTwitch- U YTE.7 µf 0 kω /0 W ZJ0M0 0 MA0G.7 kω 0 0 kω, 7 ma TP PI
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