2021-2026 Audi RS E Tron Gt 4 Door Power units -> Electric drive control unit (power electronics) User Manual
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Power units -> Electric drive control unit (power electronics) for Your Audi RS E Tron Gt 4 Door First Generation (2021-2026)

Description of function  
The power electronics applies an alternating voltage displaced by 120° to the coils. This generates a magnetic field that alternates  
its direction continuously. This characteristic is also used to drive the rotary-mounted magnets. If the positive edge of the sine  
wave is applied to the coil, the north pole is attracted; when it is the negative edge, the south pole is attracted. The motor begins to  
turn. The faster the frequency of the power electronics, the quicker the motor turns. In recuperation, a voltage is induced in the  
stator coils by the magnetic field of the permanent magnets. This energy is used to charge the battery. As the electric drive motors  
on the Audi e-tron GT are permanently excited synchronous motors, the rotation of the field in the stator is just as fast as the speed  
of the rotor. The motors are fully regulated by the power electronics, which process the driver’s requests.  
Reference  
Further information on this topic can be found in Service TV programme 0568 TV "Electric drives – Motors".  
Electric drive control unit (power electronics)  
Introduction  
Power electronics have become an integral part of today’s electrical engineering. They have the task of converting electric energy  
using electronic components – be it from alternating voltage to direct voltage or vice versa. To be able to switch high three-figure  
ampere currents, power electronics are being further developed on a daily basis. There are two different versions of the electric  
drive control unit on the Audi etron GT (type F8). Each of the power electronics is connected to the vehicle body via a potential  
equalisation line.  
Electric drive control unit for front axle J1234 (300 A version)  
Electric drive control unit for front axle J1234 is bolted onto the electric drive motor. The contact between the control electronics  
and the electric drive motor is fixed.  
Contacts on front axle  
684_362  
Note  
Electric drive control unit for front axle J1234 must under no circumstances be opened.  
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How the system works  
684_359a  
Electric drive control unit for front axle J1234 converts direct voltage from the battery into three-phase alternating voltage for the  
electric drive motors. The direct voltage enters the power electronics via plug contacts. The electromagnetic compatibility filter en-  
sures that no interference from the switching impulses can be transmitted into the system as a whole. There follows a group of  
several intermediate circuit capacitors which provide a uniform amount of energy to the IGBTs (insulated-gate bipolar transistors).  
During recuperation, the condensers also smooth the voltage used to charge the battery. Converted voltage enters the motor via  
the IGBTs. Current sensors monitor the motor’s current draw on the alternating current and direct current side.  
300 A pulse inverter  
684_414  
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Electric drive control unit for rear axle J1235 (600 A version)  
Electric drive control unit for rear axle J1235 is bolted onto the electric drive motor. However, the contacts are different to those on  
the front axle. The current bridge consists of bus bars with flexible elements.  
Contacts on rear axle  
684_333  
Note  
Electric drive control unit for rear axle J1235 must under no circumstances be opened.  
How the system works  
684_359b  
Electric drive control unit for rear axle J1235 converts direct voltage from the battery into three-phase alternating voltage for the  
electric drive motors. As can be seen in the illustration, the design and functions of electric drive control unit for rear axle J1235 are  
practically identical to those on the control unit for the front axle. The only difference is that the number of IGBTs has been adjus-  
ted for the higher current. There are six power modules rather than three. The IGBTs are correspondingly connected together in  
parallel. Current sensors monitor the motor’s current draw on the alternating current and direct current side.  
The 300 ampere version is used on the Audi e-tron GT. On the RS e-tron GT, the 600 ampere version is used.  
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