Thyristors kwi-intanethi | IiSemiconductors zaMandla ezikumgangatho ophezulu
IIPARAMETHA ZEMVELISO
Inkcazo
Isishwankathelo sokuCima ngokukhawuleza kweThyristor (GTO)
Ukucima ngokukhawuleza i-Thyristor, eqhele ukubizwa ngokuba yi-Gate Turn-Off Thyristor (GTO), luhlobo lwesixhobo se-semiconductor esinokuvulwa kwaye icinywe ngumqondiso wesango layo. Ngokungafaniyo thyristors eqhelekileyo, enokuthi ivulwe kuphela ngumqondiso wesango kwaye icinywe ngokunciphisa umsinga oqukuqelayo kubo ngaphantsi komda othile. (ukubamba okwangoku), Ii-GTOs zinokucinywa ngokusebenzayo ngokufaka ukubetha kwesango elibi. Esi sixhobo sivumela ulawulo oluchanekileyo ngaphezulu kokuziphatha kokutshintsha kwesixhobo.
Ii-GTO zisetyenziswa kwizicelo zamandla aphezulu ezinje ngeemoto zokuqhuba, izixhobo zombane, kunye nee-inverters, apho baququzelela ukutshintshwa ngokukhawuleza kunye nokulawulwa kwemisinga emikhulu. Basebenza kwimisinga ephezulu kunye nee-voltages kunezinye iintlobo ezininzi ze-transistors, ukubenza bafanelekele usetyenziso olunzima lwemizi-mveliso kunye nezorhwebo.
Iimpawu zokucima ngokukhawuleza i-Thyristor (GTO)
Ikhono lokuCima elisebenzayo: Inokuvalwa ngokufaka i-pulse yesango elibi, ukunika ulawulo olungcono lokutshintsha.
Ukuphathwa kwamandla aphezulu: Ukukwazi ukulawula amanqanaba aphezulu amandla, kunye neereyithingi ezihlala zidlula ezo ze-thyristors eziqhelekileyo.
Ukutshintsha ngokukhawuleza: Yenzelwe ukuvula ngokukhawuleza kunye namaxesha okucima, ukwenza ukusebenza ngokufanelekileyo kwiisekethe zokuguqula amandla.
Umthamo omkhulu wangoku: Uyakwazi ukuphatha imisinga ebalulekileyo, izenza zilungele izicelo ezifuna unikezelo lwamandla amakhulu.
Ukunyamezela kwamandla ombane aphezulu: Inokumelana nombane ophezulu, igalelo ekuthembekeni kwabo kwiimeko ezibangwayo.
Ukuhla kweVoltage ephantsi kwiState: Yehlisa ilahleko yamandla xa iqhuba, ukuphucula ukusebenza kakuhle ngokupheleleyo.
Iimfuno zokuqhuba isango: Ifuna uyilo olucokisekileyo lweesekethe zokuqhuba isango ukuze kuqinisekiswe ukusebenza okuthembekileyo kokuvula kunye nokucima.
Complex Control Circuits: Ngenxa yesidingo se-pulses yamasango e-positive kunye ne-negative, ulawulo lokujikeleza kunokuba nzima ngakumbi xa kuthelekiswa thyristors elula.
IiSekethe ze-Snubber: Ihlala ifuna iisekethe ze-snubber ukukhusela kwi-voltage spikes ngexesha lokutshintsha.
Ulawulo lweThermal: Ukutshatyalaliswa kobushushu okusebenzayo kubalulekile ngenxa yamanqanaba aphezulu ombane abandakanyekayo.

(Gate Turn Off Thyristor Stud Diode Thyristor SR60L-6S)
Specification of Gate Turn Off Thyristor Stud Diode Thyristor SR60L-6S
Eviction Shut Off Thyristor (GTO) Stud Diode Thyristor SR60L-6S is a high-power semiconductor tool developed for effective changing and control sought after commercial applications. It combines the capability of a thyristor with entrance turn-off ability, making it possible for precise control over conduction and obstructing states. This gadget is developed with a stud-type plan for robust mechanical and thermal efficiency, ensuring reliability in high-voltage and high-current environments.
** Electric Specs **: The SR60L-6S features a recurring top off-state voltage (V_DRM) of 600V and an optimum on-state typical existing (I_TAV) ye60A. Its non-repetitive height rise existing (I_TSM) reaches 600A, making it suitable for handling transient overloads. The forward voltage decrease (V_T) at rated present is normally 1.7 V, minimizing transmission losses. The important rate of increase of off-state voltage (idv/dt) is 500V/ μs, making certain security throughout switching shifts.
** Gate Features **: Isango lokuqalisa langoku (I_GT) is 200mA, with a gateway trigger voltage (V_GT) of 3V, permitting low-power control signals to change high tons. The gate turn-off present (I_GQ) is 20A, providing trusted turn-off efficiency. Ixesha lokuvala (t_q) is 10μs, making it possible for high-frequency operation in circuits calling for quick switching.
** Thermal and Mechanical Properties **: The device operates within a junction temperature variety of -40 °C ukuya +125 °C, with a thermal resistance (junction-to-case) ye 0.15 ° C/W for efficient warmth dissipation. The stud base is constructed from copper for optimum conductivity and resilience, ranked for a mounting torque of 10Nm.
** Usetyenziso **: The SR60L-6S is suitable for use in motor drives, abaguquli bamandla, Iinkqubo ze-UPS, and industrial automation tools. Its rugged layout guarantees performance in extreme environments, while its gate-controlled turn-off capacity enhances circuit versatility.
** Conformity and Security **: The gadget meets worldwide criteria for dependability and security, consisting of RoHS conformity. Its building and construction lessens leak currents and guarantees long-lasting stability, making it a relied on component in high-efficiency power systems.
The SR60L-6S GTO Thyristor equilibriums accuracy, ukomelela, and power-handling capacities, satisfying engineers looking for robust options for high-performance changing applications.

(Gate Turn Off Thyristor Stud Diode Thyristor SR60L-6S)
Applications of Gate Turn Off Thyristor Stud Diode Thyristor SR60L-6S
Eviction Turn Off Thyristor (GTO) Stud Diode Thyristor SR60L-6S is a high-power semiconductor tool created for durable switching applications in demanding industrial and business settings. Its one-of-a-kind GTO modern technology enables accurate control over turn-on and turn-off operations by means of entrance signals, allowing effective monitoring of high voltage and present levels. The stud-type building makes sure remarkable thermal performance by promoting direct mounting to heat sinks, making it optimal for applications needing efficient warm dissipation. With a voltage rating of as much as 600V and a current handling capability of 60A, the SR60L-6S masters high-power circuits where integrity and sturdiness are vital.
A main application of the SR60L-6S remains in commercial motor drives, where it controls speed and torque in hefty equipment such as compressors, iimpompo, and conveyor systems. Its quick switching capacity minimizes energy loss, improving system efficiency. In renewable resource systems, this thyristor is essential to solar inverters and wind turbine converters, converting variable DC outcome right into secure AC power for grid integration.
The SR60L-6S also plays an essential role in grip systems for electric lorries (Ii-EVs) and rail transport, taking care of power distribution in propulsion and stopping systems. Its rugged design makes certain efficiency under mechanical anxiety and temperature level changes. Ukongeza, it is utilized in High Voltage Direct Current (HVDC) transmission to enable reliable long-distance power transfer with marginal losses.
Ubonelelo lwaMandla olungaphazamisekiyo (IUPS) and welding equipment gain from the thyristor’s ability to manage fast tons adjustments and high surge currents, ensuring consistent procedure throughout power interruptions or intense welding cycles. The gadget’s strength in rough settings– standing up to wetness, ubumdaka, kunye nokungcangcazela– makes it ideal for oil and gas, imigodi, and marine applications.
In recap, the SR60L-6S GTO Thyristor is a flexible option for sectors calling for high-efficiency power control, consisting of manufacturing, umthombo ohlaziyekayo, uthutho, and facilities. Its mix of high performance, ukhuseleko thermal, and ruggedness placements it as a foundation of contemporary power electronics systems.
Iprofayile yekhampani
ILuoyang Datang Energy Tech Co.Ltd(sales@pddn.com) lelinye lamashishini aphambili kubuchwepheshe bombane kunye neemveliso zamandla, ebandakanyeka ngokupheleleyo ekuphuhliseni ii-inverters zelanga, iinguqu, izilawuli zombane, iikhabhathi zokuhambisa, thyristors, iimodyuli, iidiode, izifudumezi, kunye nezinye izixhobo zombane okanye iisemiconductors. Siya kuzibophelela ekunikeni abasebenzisi umgangatho ophezulu, iimveliso ezisebenzayo kunye nenkonzo enenkathalo.
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Iimeko zokuGcina
1) Gcina kwindawo eyomileyo kwiqondo lokushisa.
2) Kuphephe ukufuma kunye nobushushu obuphezulu.
3) Sebenzisa ngokukhawuleza emva kokuvula isikhwama sokupakisha sangaphakathi.
5 FAQs of Gate Turn Off Thyristor Stud Diode Thyristor SR60L-6S
What is a Gate Turn Off Thyristor (GTO) and how does the SR60L-6S function? A Gate Turn Off Thyristor (GTO) is a semiconductor device that allows precise control over switching operations. Ngokungafaniyo thyristors eqhelekileyo, a GTO can be turned on by a positive gate current and turned off by applying a negative voltage pulse to the gate terminal. The SR60L-6S is a stud-mounted GTO thyristor designed for high-power applications, combining robust construction with reliable performance. It features a stud-type package for efficient thermal management and is optimized for fast switching, making it suitable for circuits requiring controlled turn-on and turn-off.
What are the typical applications of the SR60L-6S? The SR60L-6S is commonly used in high-power industrial systems such as motor drives, ulawulo lokutsala, abaguquli bamandla, and voltage regulators. Its ability to handle high surge currents and repetitive switching makes it ideal for renewable energy systems (umz., solar/wind inverters), Iinkqubo ze-UPS, and industrial automation equipment. It is also employed in welding machines and induction heating systems where precise power control is critical.
What are the voltage and current ratings of the SR60L-6S? The SR60L-6S is rated for a maximum repetitive reverse voltage (I-VRRM) of 600V and a forward current (I-ITAV) of 60A under standard conditions. Its surge current capability (ITSM) reaches up to 600A, ensuring resilience against transient overloads. These ratings make it suitable for medium-to-high-power circuits requiring stable operation under varying loads.
How does the GTO feature differ from a conventional thyristor? Unlike conventional thyristors that remain latched once triggered until current drops to zero, the SR60L-6S can be actively turned off via a negative gate pulse. This eliminates the need for complex commutation circuits, simplifying design and improving efficiency in applications requiring frequent switching.
What precautions should be taken during installation? Ulawulo olululo lwe-thermal lubalulekile. Mount the stud base securely to a heatsink using recommended torque (typically 8-10 Nm) ukuphepha uxinzelelo lomatshini. Apply thermal paste to enhance heat dissipation. Ensure correct polarity alignment—the anode is connected to the stud base, and the cathode to the threaded terminal. Avoid excessive bending of leads, and maintain clean, tight electrical connections to prevent arcing or overheating.

(Gate Turn Off Thyristor Stud Diode Thyristor SR60L-6S)
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