Dual Thyristor Modules Infineon Replacement

Thyristor Modules are monolithic design with dual topology of semiconductor thyristors (thyristor-thyristor type). Used in DC and AC circuits with loads to 820A and reverse pulse voltages up to 3800V.

Thyristor Modules AMTT AS ENERGITM is a replacement, equivalent and alternative semiconductor device for SCR Modules TT Series Infineon Technologies.

The thyristor modules are housed in a standard industrial case making it easy to easy integrate of the device into existing equipment.

Modules has different internal constructions: soldered construction – the contact is established by solder layers; pressure contact construction – the contact is established by pressure, solder free assembly.

Circuit Diagram of Thyristor Modules

The main (power) terminals are on the top of the case and are marked as 123 (common anode-cathode, cathode, anode). The control terminals are marked as 4, 5, 6, 7 (G1, K1, G2, K2).

The modules are designed and assembled in high reliable pressure contact and in solder bond technology which addresses the specific requirements of cost and performance optimized applications.

Thyristor modules are used in various power equipment - power and control units, electrical drives, power regulators, AC regulators, converters, controllers of blast furnaces or chemical processes, welding equipment, and as rectifiers for AC converters.

Our power modules are offered in several dual and single device topologies for almost all phase control or rectifier applications.

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

The final price of thyristor / diode modules depends on the class, quantity, delivery terms, manufacturer, country of origin and form of payment.

For questions regarding the acquisition of Power Modules, Thyristors, Diodes, 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.

General specifications of Thyristor-Thyristor Modules Infineon and Replacements

Type IT(AV)M
(TC,°C)
VRRM
VDRM
ITSM I2t VT0 rT Tvj max Rth(j-c) W Package, Dimensions L×B×H Replacement
AS ENERGITM
Data sheet
A V A kA2·s V mΩ ºC K/W kg mm PDF
Thyristor modules - baseplate 20x58 mm - solder bond
TT60N16SOF 55 (85) 1600 1200 7.20 1.00 4.80 130 0.49 0.075 TS20
93x20x30
AMTT60N16SOF
TT60N16SOFB01 55 (85) 1600 1200 7.20 1.00 4.80 130 0.49 0.075 TS20
93x20x30
AMTT60N16SOFB01
TT120N16SOF 120 (85) 1600 2250 18.05 0.90 3.35 130 0.20 0.075 TS20
93x20x30
AMTT120N16SOF
TT120N16SOFB01 120 (85) 1600 1900 18.05 0.90 3.35 130 0.20 0.075 TS20
93x20x30
AMTT120N16SOFB01
Thyristor modules - baseplate 20x92 mm - pressure contact
TT61N14KOF 60 (85) 1400 1400 9.80 0.80 3.40 125 0.52 0.16 TP20
92x20x30
AMTT61N14KOF
TT61N16KOF 60 (85) 1600 1400 9.80 0.80 3.40 125 0.52 0.16 TP20
92x20x30
AMTT61N16KOF
TT92N12KOF 92 (85) 1200 1800 16.20 0.85 2.43 140 0.37 0.16 TP20
92x20x30
AMTT92N12KOF
TT92N16KOF 92 (85) 1600 1800 16.20 0.85 2.43 140 0.37 0.16 TP20
92x20x30
AMTT92N16KOF
TT104N14KOF 102 (85) 1400 1800 16.20 0.85 2.43 140 0.37 0.16 TP20
92x20x30
AMTT104N14KOF
Thyristor modules - baseplate 34x94 mm - solder bond
TT140N16SOF 140 (85) 1600 4000 80.00 1.00 1.60 125 0.19 0.165 TS34
94x34x30
AMTT140N16SOF
TT160N16SOF 160 (85) 1600 4500 101.30 1.10 0.99 125 0.165 0.165 TS34-2
94x34x30
AMTT160N16SOF
TT175N16SOF 175 (85) 1600 5400 125.00 0.83 1.30 125 0.164 0.165 TS34
94x34x30
AMTT175N16SOF
TT190N16SOF 190 (85) 1600 4500 101.30 0.85 0.90 125 0.165 0.165 TS34-2
94x34x30
AMTT190N16SOF
TT190N18SOF 190 (85) 1800 4500 101.30 0.85 0.90 125 0.165 0.165 TS34-2
94x34x30
94x34x30
AMTT190N18SOF
TT240N16SOF 240 (85) 1600 4400 96.80 0.85 0.90 140 0.165 0.165 TS34-2
94x34x30
AMTT240N16SOF
TT240N18SOF 240 (85) 1800 4400 96.80 0.85 0.90 140 0.165 0.165 TS34-2
94x34x30
AMTT240N18SOF
Thyristor modules - baseplate 34x94 mm - pressure contact
TT122N22KOF 122 (85) 2200 2950 43.50 1.00 2.15 125 0.20 0.31 TP34
94x34x30
AMTT122N22KOF
TT142N16KOF 142 (85) 1600 4100 84.00 0.90 1.10 125 0.22 0.31 TP34
94x34x30
AMTT142N16KOF
TT162N14KOF 162 (85) 1400 4400 97.00 0.85 0.95 125 0.20 0.31 TP34
94x34x30
AMTT162N14KOF
TT162N16KOF 162 (85) 1600 4400 97.00 0.85 0.95 125 0.20 0.31 TP34
94x34x30
AMTT162N16KOF
TT180N12KOF 180 (85) 1200 4100 84.00 0.85 0.90 130 0.20 0.31 TP34
94x34x30
AMTT180N12KOF
TT180N16KOF 180 (85) 1600 4100 84.00 0.85 0.90 130 0.20 0.31 TP34
94x34x30
AMTT180N16KOF
Thyristor modules - baseplate 50x92 mm - solder bond
TT280N16SOF 280 (85) 1600 7800 304.2 0.77 0.82 130 0.11 0.37 TS50
115x50x53
AMTT280N16SOF
TT280N18SOF 280 (85) 1800 7800 304.2 0.77 0.82 130 0.11 0.37 TS50
115x50x53
AMTT280N18SOF
TT320N16SOF 320 (85) 1600 8200 335.0 0.77 0.58 130 0.11 0.37 TS50
115x50x53
AMTT320N16SOF
TT320N16SOF TIM 320 (85) 1600 8200 335.0 0.77 0.58 130 0.11 0.37 TS50
115x50x53
AMTT320N16SOF TIM
TT320N18SOF 320 (85) 1800 8200 335.0 0.77 0.58 130 0.11 0.37 TS50
115x50x53
AMTT320N18SOF
TT390N16SOF 380 (85) 1600 8100 328.0 0.77 0.58 140 0.11 0.37 TS50
115x50x53
AMTT390N16SOF
TT390N18SOF 380 (85) 1800 8100 328.0 0.77 0.58 140 0.11 0.37 TS50
115x50x53
AMTT390N18SOF
Thyristor modules - baseplate 50x92 mm - pressure contact
TT170N14KOF 170 (85) 1400 4600 106.0 0.95 1.00 125 0.17 0.8 TP50A
115x50x52
AMTT170N14KOF
TT170N16KOF 170 (85) 1600 4600 106.0 0.95 1.00 125 0.17 0.8 TP50A
115x50x52
AMTT170N16KOF
TT170N18KOF 170 (85) 1800 4600 106.0 0.95 1.00 125 0.17 0.8 TP50A
115x50x52
AMTT170N18KOF
TT210N18KOF 210 (85) 1800 5800 168.0 1.00 0.85 125 0.13 0.8 TP50A
115x50x52
AMTT210N18KOF
TT215N18KOF 215 (85) 1800 6300 198.0 0.95 0.92 125 0.13 0.8 TP50A
115x50x52
AMTT215N18KOF
TT215N20KOF 215 (85) 2000 6300 198.0 0.95 0.92 125 0.13 0.8 TP50A
115x50x52
AMTT215N20KOF
TT215N22KOF 215 (85) 2200 6300 198.0 0.95 0.92 125 0.13 0.8 TP50A
115x50x52
AMTT215N22KOF
TT250N14KOF 250 (85) 1400 7000 245.0 0.80 0.70 125 0.13 0.8 TP50A
115x50x52
AMTT250N14KOF
TT250N16KOF 250 (85) 1600 7000 245.0 0.80 0.70 125 0.13 0.8 TP50A
115x50x52
AMTT250N16KOF
TT250N16KOF TIM 250 (85) 1600 7000 245.0 0.80 0.70 125 0.13 0.8 TP50A
115x50x52
AMTT250N16KOF TIM
TT250N18KOF 250 (85) 1800 7000 245.0 0.80 0.70 125 0.13 0.8 TP50A
115x50x52
AMTT250N18KOF
TT251N14KOF 250 (85) 1400 8000 320.0 0.80 0.70 125 0.13 0.8 TP50A
115x50x52
AMTT251N14KOF
TT251N16KOF 250 (85) 1600 8000 320.0 0.80 0.70 125 0.13 0.8 TP50A
115x50x52
AMTT251N16KOF
TT251N18KOF 250 (85) 1800 8000 320.0 0.80 0.70 125 0.13 0.8 TP50A
115x50x52
AMTT251N18KOF
TT260N22KOF 260 (85) 2200 8000 320.0 0.85 0.64 125 0.12 0.8 TP50A
115x50x52
AMTT260N22KOF
TT270N16KOF 270 (92) 1600 9000 400.0 0.80 0.58 125 0.12 0.8 TP50A
115x50x52
AMTT270N16KOF
TT285N16KOF 285 (92) 1600 10000 781.0 0.80 0.50 130 0.112 0.8 TP50A
115x50x52
AMTT285N16KOF
TT330N12KOF 330 (85) 1200 10000 500.0 0.80 0.50 130 0.112 0.8 TP50A
115x50x52
AMTT330N12KOF
TT330N14KOF 330 (85) 1400 10000 500.0 0.80 0.50 130 0.112 0.8 TP50A
115x50x52
AMTT330N14KOF
TT330N16KOF 330 (85) 1600 10000 500.0 0.80 0.50 130 0.112 0.8 TP50A
115x50x52
AMTT330N16KOF
TT330N16KOF TIM 330 (85) 1600 10000 500.0 0.80 0.50 130 0.112 0.8 TP50A
115x50x52
AMTT330N16KOF TIM
Thyristor modules - baseplate 60x124 mm - pressure contact
TT240N36KOF 240 (85) 3600 5500 151 1.17 1.70 125 0.078 1.5 TP60
150x60x52
AMTT240N36KOF
TT240N38KOF 240 (85) 3800 5500 151 1.17 1.70 125 0.078 1.5 TP60
150x60x52
AMTT240N38KOF
TT400N24KOF 400 (85) 2400 11000 605 1.00 0.50 125 0.065 1.5 TP60
150x60x52
AMTT400N24KOF
TT400N26KOF 400 (85) 2600 11000 605 1.00 0.50 125 0.065 1.5 TP60
150x60x52
AMTT400N26KOF
TT430N22KOF 430 (85) 2200 12000 1051 0.95 0.45 125 0.065 1.5 TP60A
150x60x52
AMTT430N22KOF
TT500N12KOF 500 (85) 1200 14500 1051 0.85 0.35 125 0.058 1.5 TP60A
150x60x52
AMTT500N12KOF
TT500N14KOF 500 (85) 1400 14500 1051 0.85 0.35 125 0.058 1.5 TP60A
150x60x52
AMTT500N14KOF
TT500N16KOF 500 (85) 1600 14500 1051 0.85 0.35 125 0.058 1.5 TP60A
150x60x52
AMTT500N16KOF
TT500N16KOF TIM 500 (85) 1600 14500 1051 0.85 0.35 125 0.058 1.5 TP60A
150x60x52
AMTT500N16KOF TIM
TT500N18KOF 500 (85) 1800 14500 1051 0.85 0.35 125 0.058 1.5 TP60A
150x60x52
AMTT500N18KOF
TT520N22KOF 520 (85) 2200 14500 1051 0.85 0.35 125 0.058 1.5 TP60A
150x60x52
AMTT520N22KOF
TT570N16KOF 570 (87) 1600 14000 1531 0.80 0.23 125 0.058 1.5 TP60A
150x60x52
AMTT570N16KOF
TT570N18KOF 570 (87) 1800 16500 2000 0.80 0.30 125 0.058 1.5 TP60A
150x60x52
AMTT570N18KOF
TT600N16KOF 600 (85) 1600 17500 1531 0.80 0.23 125 0.058 1.5 TP60A
150x60x52
AMTT600N16KOF
TT600N16KOF TIM 600 (85) 1600 17500 1531 0.80 0.23 125 0.058 1.5 TP60A
150x60x52
AMTT600N16KOF TIM
Thyristor modules - baseplate 60x124 mm - pressure contact
TT700N22KOF 700 (85) 2200 17100 1462 0.85 0.35 135 0.049 1.4 TP60A
150x60x52
AMTT700N22KOF
TT820N16KOF 820 (85) 1600 20100 2020 0.80 0.23 135 0.048 1.4 TP60A
150x60x52
AMTT820N16KOF
TT820N16KOF TIM 820 (85) 1600 20100 2020 0.80 0.23 135 0.048 1.4 TP60A
150x60x52
AMTT820N16KOF TIM

Drawings and housings dimensions for Modules:


Part Numbering Guide for Thyristor-Thyristor Modules:

A M TT 500 N 18 K O F
A brand AS ENERGITM
M Product group: Module.
TT Circuit topology: Thyristor-Thyristor.
500 Average on-state current IT(AV), Amp.
N Phase control device.
18 Voltage class VRRM / 100.
K Mechanical construction:
K – pressure contact technology
S – solder technology
O Turn off time tq: no guaranteed.
F Critical rise of off-state dv/dt class: F = 1000 V/μs

Circuit diagram of Thyristor-Thyristor Modules:

circuit

AK, K, A – main (power) terminals.

G1, K1, G2, K2 – control terminals.


Recommendations for mounting power modules

Heatsink and Surface Specifications, Preparation

In order to ensure good thermal contact and to obtain the thermal contact resistance values specified in the datasheets, the contact surface of the heat sink must be clean and free from dust particles. It is useful to clean the mounting surface of the heat sink with wipes and an alcohol cleaner, e.g. isopropanol, right before the mounting process. The following mechanical specifications have to be met:
– Unevenness of heat sink mounting area must be ≤ 50μm per 100 mm
– Roughness Rz: < 10 μm
– No steps > 10 μm


Heat sink surface specification

Applying Thermal Paste

Recommended to use stencil printing in order to apply thermal interface material. Recommended to use thermal paste thickness in the range from 50 μm to 100 μm. Applying thermal paste by means of roller is not recommended for mass production as reproducible of an optimized thermal paste thickness cannot be guaranteed.

Mounting torque on heat sink MS

To secure power modules, the use of steel screws in combination with suitable washers and spring lock washers or combination screws is strongly recommended. The specified in datasheet torque value must be observed.

A pre-tightening torque and retightening to the given torque value is recommended. For the screwing process the speed has to be limited and soft torque limitation is recommended to avoid torque peaks, which may occur with pneumatic screwdrivers.


Example of mounting order

The screws must be tightened in diagonal order with equal torque in several steps until the specified torque value MS has been reached.


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
  • 10000 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 supplies power semiconductors and other equipment 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.

GİZEM GÖZÜN 26.01.2021 at 13:04
8
I'm Gizem, I'm a chemical engineer. I'm interested in making ceramic stuffs as a hobby. Would you please give some explanation about my questions below;
1) If I only mix SiO2 and Fe2O3 (3:1), can i get a suitable product without using other components?
2) Can i use water as fastener? or would you suggest me another fastener?
3) At which temperature should i mix them?
Thank you for your interest, Kind Regards
26.01.2021 at 14:43
5
Hello, Gizem. The mass of ceramic is produced by grinding and mixing with water of different components: clay, feldspar, sand, kaolin. The proportions of these materials are different percentages, depending on what and with what characteristics you need to get a ceramic mass.
Each manufacturer of ceramic mass has its own recipes and its own raw materials, which are available in its region.
There are also books on ceramics that specify the chemical composition and approximate recipes for ceramic masses.
Roman 27.06.2022 at 00:03
3
Is It need to apply vaselin or thermal past at Thyristor surfaces then attach to radiator/current leading parts?
Maksim 27.06.2022 at 10:39
3
When assembling thyristors, diodes with heat sinks, it is recommended to lubricate the contact surfaces with a thin layer of heat conducting paste to improve the heat transfer parameters. But this is not a prerequisite for assembly.

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