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TLE5011 Datasheet(PDF) 19 Page - Infineon Technologies AG |
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TLE5011 Datasheet(HTML) 19 Page - Infineon Technologies AG |
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19 / 45 page ![]() TLE5011 Specification Final Data Sheet 19 V2.0, 2011-03 3.5 Calibration GMR Values The end-of-line calibration can be accomplished using following sequence: 1. Turn magnetic field 360° left and measure X and Y values 2. Calculate amplitude, offset, phase correction values of left turn 3. Turn further 90° left and 90° back right without measurement 4. Turn magnetic field 360° right and measure X and Y values 5. Calculate amplitude, offset, phase correction values of right turn 6. Calculate mean values of amplitude, offset, phase correction values The conditions are specified in Table 9. The values obtained from this sequence must be stored in a non-volatile memory. They are used for the correction of the read-out X and Y values before the angular calculation. The resulting angular deviation is calculated using the parameters determined above. Temperature Measurement The signal amplitude T 25 of the temperature measurement path at the calibration conditions must be measured and stored. Calibration Conditions All errors are related to calibration performed by Infineon under the following conditions: 3.6 Angle Calculation 3.6.1 Components of the Output Signals The X and Y signals at the output can be described by the following equations: AX : Amplitude of X (= cos) signal AY : Amplitude of Y (= sin) signal OX : Offset of X (= cos) signal OY : Offset of Y (= sin) signal ϕ X : Phase error of X (= cos) signal ϕ Y : Phase error of Y (= sin) signal 3.6.2 GMR Error Compensation Temperature-dependent Offset Value To increase the accuracy, the temperature-dependent offset drift can be compensated. The temperature of the chip must be read out. The offset values O X and OY can be described by the following equations. Table 9 GMR test calibration conditions at IFX Parameter Symbol Limit Values Unit Notes min. typ. max. Flux density BCAL -30 - mT BZ =0mT Temperature TCAL -25 - °C XA X αϕ X + () cos × O X + = YA Y αϕ Y + () sin × O Y + = |
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