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What errors may occur during CNC machining and CNC machining​?

 CNC machining and numerical control machining are a method to control the movement of machine tools and the production process of machining through computer digitization and information digitization. It is an intelligent numerical control device developed as an economical, high-speed, reliable, multi-functional, intelligent, and open structure. CNC machining is also an important indicator that can measure the continuous level and comprehensive ability of a safety technology, as well as the degree of modernization of related science and technology capabilities, especially in aviation, biology, medical and other high-tech cultural industries, and it is also a powerful indicator. reflect. So, what errors may occur during CNC machining and CNC machining? Let us understand together:   The use of approximate machining motion or approximate tool contours causes errors in the CNC principle of machining. The reason why it is called machining principle error is because of the error in machining

What are the advantages of CNC machining of radiator parts?

For friends who have been in contact with the radiator component industry, they often see or hear "CNC machining", but too much exposure does not necessarily mean that many people understand. In fact, many questions are still about CNC machining. What are the advantages? Let's take a closer look. CNC machining is an index-controlled machine tool machining, which is a method of using digital information to control the machining process. Traditional mechanical processing is done manually by machine tools. During processing, the mechanical cutter is shaken to cut metal, and the accuracy is measured with calipers and other tools. However, traditional artificial intelligence processing is far from being able to meet the needs of production development. Therefore, the emergence of CNC machining provides the possibility for the standardization, precision and efficiency of mechanical product processing. The CNC machining process in the radiator component industry also shines. The

Eupec BSM100GT120DN2

# BSM100GT120DN2 Eupec BSM100GT120DN2 New 100A/1200V/IGBT/3U; IGBT Modules 1200V 100A TRIPACK , BSM100GT120DN2 pictures, BSM100GT120DN2 price, #BSM100GT120DN2 supplier ------------------------------------------------------------------- Email: [email protected] https://www.slw-ele.com/bsm100gt120dn2.html ------------------------------------------------------------------- BSM100GT120DN2 Manufacturer: Infineon Product Category: IGBT Modules RoHS: No Brand: Infineon Technologies Product: IGBT Silicon Modules Configuration: Hex Collector - Emitter Voltage VCEO Max: 1200 V Collector-Emitter Saturation Voltage: 2.5 V Continuous Collector Current at 25 C: 150 A Gate-Emitter Leakage Current: 400 nA Pd - Power Dissipation: 680 W Package / Case: EconoPACK 3A Maxim um Operating Temperature: + 150 C Maximum Gate Emitter Voltage: 20 V Minimum Operating Temperature: - 40 C Mounting Style: Screw Factory Pack Quantity: 10   100A/1200

Sanyo STK621-061

Sanyo STK621-061
#STK621-061 Sanyo STK621-061 New 3-phase Inverter Motor Drive 600V±45A, STK621-061 pictures, STK621-061 price, #STK621-061 supplier
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Email: sales@shunlongwei.com

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Overview
This IC is a 3-phase inverter power hybrid IC containing power elements (IGBT and FRD), pre-driver, overcurrent and
excessive temperature protection circuit.
Application
• 3-phase inverter motor drive
Features
• Integrates power elements (IGBT and FRD), pre-driver, and protective circuit.
• Protective circuits including overcurrent (bus line), excessive temperature and pre-drive low voltage protection are built in.
• Direct input of CMOS level control signals without an insulating circuit (photocoupler, etc) is possible.
• Single power supply drive is possible by using a bootstrap circuit with a built-in IC
• Temperature monitor is possible by the thermistor inside the IC
• Built-in simultaneous upper/lower ON prevention circuit to prevent arm shorting through simultaneous ON input for the upper and lower side transistors.
 (Dead time is required for preventing shorting due to switching delay.)
• SIP (The single in-line package) of the transfer full mold structure. 
Supply voltage VCC 450 V
Collector-emitter voltage VCE 600 V
Output current IO ±30 A
Output peak current Iop ±45 A 
Junction temperature Tj  150 °C
Storage temperature Tstg -40 to +125 °C
Operating temperature TC-20 to +100 °C
Tightening torque A screw part at use M4 type screw *3 1.17 N•m 

3-phase Inverter Motor Drive 600V±45A

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