The TLE92783QXV33XUMA1 belongs to the category of integrated circuits (ICs) specifically designed for automotive applications.
This IC is primarily used in automotive electronic systems, providing control and communication functions for various components within a vehicle.
The TLE92783QXV33XUMA1 is available in a small outline package (SOP), which ensures easy integration into automotive electronic systems.
The essence of this IC lies in its ability to provide efficient control and communication capabilities, enabling the smooth operation of various automotive components.
The TLE92783QXV33XUMA1 is typically packaged in reels, with a quantity of 2500 units per reel.
Pin | Name | Function --- | ---- | -------- 1 | VCC | Power Supply 2 | GND | Ground 3 | CS | Chip Select 4 | SCLK | Serial Clock 5 | MOSI | Master Output Slave Input 6 | MISO | Master Input Slave Output 7 | INT | Interrupt Output 8 | RST | Reset 9 | NC | Not Connected 10 | NC | Not Connected 11 | NC | Not Connected 12 | NC | Not Connected 13 | NC | Not Connected 14 | NC | Not Connected 15 | NC | Not Connected 16 | NC | Not Connected 17 | NC | Not Connected 18 | NC | Not Connected 19 | NC | Not Connected 20 | NC | Not Connected
The TLE92783QXV33XUMA1 operates by receiving commands from a microcontroller through the SPI interface. It then processes these commands and communicates with the connected automotive components accordingly. The IC continuously monitors the status of the components and provides feedback to the microcontroller. In case of any faults or abnormalities, the IC triggers an interrupt signal to alert the system.
The TLE92783QXV33XUMA1 is widely used in various automotive applications, including:
These alternative models offer similar functionality and characteristics to the TLE92783QXV33XUMA1, providing flexibility for different automotive system designs.
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Sure! Here are 10 common questions and answers related to the application of TLE92783QXV33XUMA1 in technical solutions:
1. What is TLE92783QXV33XUMA1? TLE92783QXV33XUMA1 is a specific integrated circuit (IC) used for motor control applications, particularly in automotive systems.
2. What is the purpose of TLE92783QXV33XUMA1? The main purpose of this IC is to provide a flexible and efficient solution for controlling various motors in automotive applications, such as window lifters, sunroofs, and seat adjustments.
3. What are the key features of TLE92783QXV33XUMA1? Some key features of this IC include multiple half-bridges, diagnostic functions, PWM control, overtemperature protection, and under-voltage lockout.
4. How many half-bridges does TLE92783QXV33XUMA1 have? TLE92783QXV33XUMA1 has three half-bridges, which can be used to control up to three different motors simultaneously.
5. Can TLE92783QXV33XUMA1 be used in other applications besides automotive systems? While it is primarily designed for automotive applications, TLE92783QXV33XUMA1 can also be used in other industrial or consumer electronics applications that require motor control.
6. What is the maximum voltage rating of TLE92783QXV33XUMA1? The maximum voltage rating of this IC is typically 40V, making it suitable for various automotive power supply systems.
7. Does TLE92783QXV33XUMA1 support diagnostic functions? Yes, TLE92783QXV33XUMA1 has built-in diagnostic functions that can monitor the status of the motor and provide fault detection, such as overcurrent or short-circuit conditions.
8. How is TLE92783QXV33XUMA1 controlled? This IC can be controlled through a microcontroller or other digital control systems using a standard serial communication interface, such as SPI (Serial Peripheral Interface).
9. What are the typical operating temperatures for TLE92783QXV33XUMA1? The typical operating temperature range for this IC is -40°C to +150°C, allowing it to withstand harsh automotive environments.
10. Are there any evaluation boards or reference designs available for TLE92783QXV33XUMA1? Yes, the manufacturer of TLE92783QXV33XUMA1 typically provides evaluation boards and reference designs to help engineers in implementing this IC into their applications. These resources can assist in understanding the functionality and performance of the IC.