{577} TNY266PN SMPS Have No Output Voltage / Switch Mode Power Supply IC Not Switching, How to Fix

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TNY266PN SMPS Switch Mode Power Supply Have No Output Voltage / IC Not Switching, How to Fix no power problem. TNY263P, TNY263G, TNY264P, TNY264G, TNY265P, TNY265G, TNY266P, TNY266G, TNY267P, TNY267G, TNY268P & TNY268G are TinySwitch-II family offline switching smps ICs to drive flyback toplogy, its switching frequency is 132KHz. Features
it Reduces System Cost becasue it uses very minimal components to design the switch mode power supply.
these are fully integrated auto-restart for short circuit and open loop fault
protection – saves external component costs
Built-in circuitry practically eliminates audible noise with ordinary dip-varnished transformer
Programmable line undervoltage detect feature prevents power on/off glitches – saves external components
• Frequency jittering dramatically reduces EMI (~10 dB)
– minimizes EMI filter component costs
• 132 kHz operation reduces transformer size – allows use of EF12.6 or EE13 cores for low cost and small size
• Very tight tolerances and negligible temperature variation on key parameters eases design and lowers cost
• Lowest component count switcher solution
• Expanded scalable device family for low system cost Better Cost/Performance over RCC & Linears
• Lower system cost than RCC, discrete PWM and other integrated/hybrid solutions
• Cost effective replacement for bulky regulated linears
• Simple ON/OFF control – no loop compensation needed
• No bias winding – simpler, lower cost transformer
• Simple design practically eliminates rework in manufacturing EcoSmart™– Extremely Energy Efficient
• No load consumption less than 50 mW with bias winding and less than 250 mW without bias winding at 265 VAC input
• Meets California Energy Commission (CEC), Energy Star, and EU requirements
• Ideal for cell-phone charger and PC standby applications
High Performance at Low Cost
• High voltage powered – ideal for charger applications
• High bandwidth provides fast turn on with no overshoot
• Current limit operation rejects line frequency ripple
• Built-in current limit and thermal protection improves safety Description
TinySwitch™-II integrates a 700 V power MOSFET, oscillator, high voltage switched current source, current limit and thermal shutdown circuitry onto a monolithic device. The start-up and operating power are derived directly from the voltage on thenDRAIN pin, eliminating the need for a bias winding and associated circuitry. In addition, the TinySwitch-II devices incorporate
auto-restart, line undervoltage sense, and frequency jittering. An innovative design minimizes audio frequency components in the simple ON/OFF control scheme to practically eliminate audible noise with standard taped/varnished transformer construction. The fully integrated auto-restart circuit safely limits output power during fault conditions such as output short circuit or open loop, reducing component count and secondary feedback circuitry cost. An optional line sense resistor externally programs a line undervoltage threshold, which eliminates power down glitches caused by the slow discharge of input storage capacitors present in applications such as standby supplies. The operating frequency of 132 kHz is jittered to significantly reduce both the quasi-peak and average EMI, minimizing filtering cost.
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Sir you are a great help to us, who are interested in fixing and are keen to learn ways that your have mastered these mysterious components. God bless you.

danstark
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Mashallha very nice and useful tutorial. It is really very helpful too. Enjoying watching. 💞💞💞💞

kitchentoolss
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Wonderful video dear friend, have a happy day!!!

HarlavanisPanagiotis
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Gracias!! Un genio...me gustaria que doble sus videos al español. Ayudaria a muchos tecnicos latinoamericanos. Un gran abrazo desde argentina.

damianestebanclares
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Wsalam bhai mashallah nice sharing like dn stay connected my old friend 😊

NareyHaidery
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بہت ہی قیمتی معلومات
جزاک اللّہ خیر 💖💝🌹

beautyofpakistan
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Terima kasih telah berbagi skema dan cara kerja switch power suply dengan benar
semoga sehat sejahtra selalu

feebyewok
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Hello Sir .Thanks a lot for these excellent explanations .

zikermu
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You always shearing good knowledge about electronics' thanks so much.

muhammadtasleem
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As always a very informative video! Thank you for your time and effort!

al-ru
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Hi.
In this video at 5:30m you said voltage between drain and source should be around 5-15 volt. Can you explain how and why?
Thank you

alimajnooni
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Mashaa Alla brother 😊 give you super 👍 keep safe

ahmedmadkour
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Hvala na savetima, mnogo mi to znači !

pericacvijetinovic
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Thank you very much for this knowledge and experience.
This video speaks to the core problem with startup I am trying to understand with a treadmill PF906 PSU that employs a TOP244YN.

The DS says:

"When rectified DC high voltage is applied to the DRAIN
pin during start-up, the MOSFET is initially off, and the
CONTROL pin capacitor is charged through a switched high
voltage current source connected internally between the DRAIN
and CONTROL pins. When the CONTROL pin voltage VC
reaches approximately 5.8 V, the control circuitry is activated
and the soft-start begins. The soft-start circuit gradually
increases the duty cycle of the MOSFET from zero to the
maximum value over approximately 10 ms. If no external
feedback/supply current is fed into the CONTROL pin by the
end of the soft-start, the high voltage current source is turned
off and the CONTROL pin will start discharging in response
to the supply current drawn by the control circuitry."

Is it correct to say, that to understand the startup process, we need to interpret the waveform diagram of the startup counter, and that the whole process takes place in a very short (<1s) period of time?

manualspellcorrect
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, 👍 Zabardast very nice information my dear friend ❣️

ssvlogs
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Very useful in the electronic knowledge 👌 thanks for sharing

hafsakhan
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You always shearing good information about electronic 'thanks

muhammadtasleem
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Beautifully explained
Thank you so much
You have a new subscriber

FixTronics
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Waalaikumussalam wr wb
Good job brother 👍❤️

YoutubeBaruHamid
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Thank you very much for this great learning possibility.

TheSalatech
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