Gate Turn-Off Thyristors IXYS Replacement

Gate Turn-Off Thyristors, also known as GTO in disc design are press pack type general-purpose thyristors, regulating and converting DC and AC currents up to 2005A in circuits with voltages to 4500V.

Gate Turn-Off Thyristors A-TG AS ENERGITM are a replacement, analog, alternative for Gate Turn-Off Thyristors IXYS.

"Air-cooled heatsinks O series for disc devices", "Air heatsink SF series", "Water heatsink SS series" for thyristor cooling are also available to order.

Part numbering guide for phase control thyristors

youtubeVideo: Reviews of high power disc thyristors

icon AS ENERGITM Semiconductors Manufacturing Reference

A GTO is a thyristor that can be turned off by applying a current to the gate in the reverse direction to that required to turn it on.

The thyristor has an industry standard ceramic housing making it easy to integrate the device into existing equipment. This thyristor has a disc housing with pressure contacts. The polarity of the thyristor is determined by the icon on the case. The technical specifications, part numbering guide, datasheets PDF, outline drawings for thyristors are listed below.

Thyristors AS ENERGITM have the following features: low static and dynamic losses, high values of VDRM/VRRM, extensive experience of using the devices in various industries, range of voltages from 100 to 9000 V and amperages from 10 to 15000 A, high resistance to thermal and electric cycling, natural or forced air cooling.

Our company provides a quality guarantee for thyristors of 2 years from the date of purchase. When supplying thyristors, if necessary, we provide technical passport and certificate of conformity.

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The final price of phase control thyristors depends on the voltage class, quantity, delivery terms, manufacturer, country of origin and form of payment.

General specifications of Gate Turn-Off Thyristors IXYS Replacements

Type VDRM VRRM IT(AV)M
(TC=55°C)
ITSM I2t RthJK Case Dimensions
ØDxØdxH
Replacement
AS ENERGITM
Data sheet
V V A A A2·s K/kW mm PDF
S0300SR12Y 1200 100 215 3.50 61.2×103 0.1300 W87 M20x1.5 A-TGS0300SR12Y
H0700KC140 1400 1400 360 4.00 80×103 0.0630 W34 47x29.5x16 A-TGH0700KC140
H0700KC14Y 1400 100 360 4.00 80×103 0.0630 W34 47x29.5x16 A-TGH0700KC14Y
S0700KC140 1400 1400 430 5.00 125×103 0.0630 W34 47x29.5x16 A-TGS0700KC140
S0700KC14Y 1400 100 430 5.00 125×103 0.0630 W34 47x29.5x16 A-TGS0700KC14Y
H0700KC17D 1700 1400 360 4.00 80×103 0.0630 W34 47x29.5x16 A-TGH0700KC17D
H0700KC17Y 1700 100 360 4.00 80×103 0.0630 W34 47x29.5x16 A-TGH0700KC17Y
S0700KC17D 1700 1400 430 5.00 125×103 0.0630 W34 47x29.5x16 A-TGS0700KC17D
S0700KC17Y 1700 100 430 5.00 125×103 0.0630 W34 47x29.5x16 A-TGS0700KC17Y
H0500KC200 2000 2000 280 3.00 45×103 0.0650 W34 47x29.5x16 A-TGH0500KC200
H0500KC20Y 2000 100 280 3.00 45×103 0.0650 W34 47x29.5x16 A-TGH0500KC20Y
H1200NC200 2000 2000 670 10.50 550×103 0.0270 W36 67x47x28 A-TGH1200NC200
H1200NC20Y 2000 100 670 10.50 550×103 0.0270 W36 67x47x28 A-TGH1200NC20Y
S0500YC20Y 2000 100 275 4.00 80×103 0.0870 W93 42x25x16.5 A-TGS0500YC20Y
S0500KC200 2000 2000 330 4.00 80×103 0.0650 W34 47x29.5x16 A-TGS0500KC200
S0500KC20Y 2000 100 330 4.00 80×103 0.0650 W34 47x29.5x16 A-TGS0500KC20Y
S1200NC200 2000 2000 790 13.00 840×103 0.0270 W36 67x47x28 A-TGS1200NC200
S1200NC20Y 2000 100 790 13.00 840×103 0.0270 W36 67x47x28 A-TGS1200NC20Y
G1000QC25B 2500 18 615 8.00 320×103 0.0380 W35 60x38x26 A-TGG1000QC25B
G2000HF250 2500 18 1030 16.00 1.28×106 0.0220 W85 100x66x26 A-TGG2000HF250
G2500HF250 2500 18 1085 16.00 1.28×106 0.0200 W85 100x66x26 A-TGG2500HF250
G3000TF250 2500 18 1690 30.00 4.5×106 0.0120 W86 112x75x26 A-TGG3000TF250
G4000EF250 2500 18 2005 32.00 5.12×106 0.0110 W104 124x85x26 A-TGG4000EF250
H0500KC25D 2500 2000 280 3.00 45×103 0.0650 W34 47x29.5x16 A-TGH0500KC25D
H0500KC25Y 2500 100 280 3.00 45×103 0.0650 W34 47x29.5x16 A-TGH0500KC25Y
H1200NC25D 2500 2000 670 10.50 550×103 0.0270 W36 67x47x28 A-TGH1200NC25D
H1200NC25Y 2500 100 670 10.50 550×103 0.0270 W36 67x47x28 A-TGH1200NC25Y
S0500YC25Y 2500 100 275 4.00 80×103 0.0870 W93 42x25x16.5 A-TGS0500YC25Y
S0500KC25D 2500 2000 330 4.00 80×103 0.0650 W34 47x29.5x16 A-TGS0500KC25D
S0500KC25Y 2500 100 330 4.00 80×103 0.0650 W34 47x29.5x16 A-TGS0500KC25Y
S1200NC25D 2500 2000 790 13.00 840×103 0.0270 W36 67x47x28 A-TGS1200NC25D
S1200NC25Y 2500 100 790 13.00 840×103 0.0270 W36 67x47x28 A-TGS1200NC25Y
G1000NC45B 4500 18 545 8.00 320×103 0.0270 W36 67x47x28 A-TGG1000NC45B
G1000QC45B 4500 18 443 6.50 211×103 0.0380 W35 60x38x26 A-TGG1000QC45B
G2000HF450 4500 18 890 13.70 938×103 0.0220 W85 100x66x26 A-TGG2000HF450
G3000TF450 4500 18 1381 24.00 2.88×106 0.0120 W86 112x75x26 A-TGG3000TF450
G4000EF450 4500 18 1480 26.00 3.38×106 0.0110 W104 124x85x26 A-TGG4000EF450

Part Numbering Guide for Gate Turn-Off Thyristors:

A TG G4000 EF 25 0
A brand AS ENERGITM
TG Product group: Gate Turn-Off Thyristors.
G4000 Fixed Type Code.
EF Housing (package) code.
25 Voltage code VRRM / 100.
0 Fixed turn-off time code.

High Power Semiconductors AS ENERGITM

Our company is engaged in the manufacturer and sale of wide range of power semiconductors (power thyristors, modules, rectifier diodes, avalanche, rotor and welding diodes, triacs etc.) currents up to 15000A and voltages to 9000V, and air and water heatsinks to them.
You can buy semiconductor devices in any volumes, and when ordering large lots, the price will be lower. We have earned the trust of customers and supply products all over the world.

For questions regarding the acquisition of Power Thyristors, Diodes, Modules send an email request to:

[email protected]

And we will provide you a commercial offer for delivery.
For a large number, we will provide an individual price!!!

We are open to manufacture products at our production facilities
according to your requests and technical task.


Photo Gallery

The photo gallery shows many different semiconductor devices, semiconductor chips and SCRs produced by AS ENERGITM, examples of test reports.



Photo of High Power Disc Thyristors:


Installation recommendations for power thyristors:

Assembling disc thyristor with a heatsink

The reliability of heat transfer and electrical contact between the mating surfaces of the thyristor and the cooler over the entire temperature range is ensured by appropriate torque (clamping force).

Before assembly you should perform visual inspection (1) contact surfaces for mechanical damages and wipe (2), soaked with alcohol (toluene, gasoline, acetone).

After inspection, fix the current contacts (leads), install a pin to fix the alignment of the structure.

To improve the parameters of heat transfer it is recommended to lubricate (3) a thin layer of silicone thermal conductive paste before the assembly, which is not a mandatory condition for installation.

Install the thyristor (3), the second part of the cooler, the fiberglass insulator and the thrust washer.

To thread the traverse (4) and evenly tighten the nuts. Make sure no misalignment and evenness of the contact surfaces.

When the parts are sufficiently clamped but moveable, we recommend placing the cooler on a flat surface and checking the tolerance for parallelism of the overall adjacent plane of the surfaces (5).

Clamp each nut in turn (about a quarter turn) to the stop (6). The amount of deflection of the traverse determines whether the achieved clamping force corresponds to the required one.

After installation, the fasteners (nuts and washers) must be additionally secured against corrosion.


Tips and recommendations for power thyristors:

The power thyristors should not be operated for long periods of time at their limit load for all parameters. In this case, the safety factor is determined by the required degree of reliability of the device.

Replace a failed power thyristor with a thyristor that matches the parameters of the one being replaced.

Supercooling must be provided when operating in an environment with an elevated ambient temperature.

Periodic cleaning of power thyristors and coolers to remove dust and contaminants is recommended to ensure proper heat dissipation.

Inductive current dividers (often twisted toroidal wire) should be used to equalize currents between power thyristors connected in parallel. The most popular connection methods are closed circuit, common coil circuit, or power thyristor. The efficiency of current dividers in this case is determined by the cross section of the magnetic wire.

Prevention of voltage unbalance when power thyristors are connected in series is achieved by using shunt resistors connected in parallel with each thyristor. Voltage equalization in transient conditions is provided by connecting capacitors in parallel to each thyristor.

It is strictly forbidden to touch power thyristors under high voltage during operation.


icon Why choose AS ENERGITM

  • Own production facilities, including semiconductor silicon chips production
  • European brand - 100% quality, favorable price, short production terms
  • Over 20 years of experience in the semiconductor industry
  • Clients from more than 50 countries trust us
  • 20000 items in the product line for currents from 10A to 15000A, voltages from 100V to 9000V
  • We produce analogues of other manufacturers' products
  • Guaranteed certified quality, warranty period of operation - 2 years

 

Quality Warranty

Our products are certified and correspond to international standards.
Our company provides a quality guarantee for products of 2 years.
We provide certificates of conformity, reliability reports, data sheets and technical passports at the request of the customer.

Certificates

Each product is tested for the main parameters, and Test reports of the parameters for each product are provided.

Test Report

Geography of partnership

AS ENERGITM company manufactures and supplies power semiconductors to more than 50 countries around the world.

Geography

Logistics and Delivery

We deliver our products all over the world with the services of logistics companies: DHL, TNT, UPS, EMS, Fedex, Aramex.
Products can be delivered by any means of transport: air, sea, rail and road.

Logistics

AS ENERGITM Semiconductors Manufacturing

Our products range includes rectifier diodes, phase control thyristors in disc and stud design, avalanche diodes and thyristors, fast switching, high frequency thyristors, fast recovery, welding and rotor diodes, triacs, bridge rectifiers, power modules (thyristor, diode, thyristor-diode, IGBT), and air and water heatsinks to them.

Power diodes and thyristors are produced for currents from 10A to 15000A, voltage range from 100V to 9000V.
Power diode and thyristor modules are produced from 25A and up to 1250A, voltage range 400V - 4400V.
The range of power semiconductors also includes equivalent, replacement, analogue and alternative semiconductor devices of global manufacturers.


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