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TLE4929C bảng dữ liệu(PDF) 17 Page - Infineon Technologies AG

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Giải thích chi tiết về linh kiện  TLE4929C Crankshaft Sensor Fully Programmable Crankshaft Sensor
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nhà sản xuất  INFINEON [Infineon Technologies AG]
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Data Sheet
17
1.10
2018-09-13
TLE4929C Crankshaft Sensor
Fully Programmable Crankshaft Sensor
3.4
Hysteresis Concept
Figure 9
Hidden Hysteresis in protocol-variant without direction detection
The prefered switching behavior for crankshaft application in terms of hysteresis is called hidden adaptive
hysteresis. For reason of long notches or long teeth there is the EEPROM possibility to go for visible hysteresis
as well. Another EEPROM possibility is fixed hysteresis, which allows robustness against metalic flakes
attached by the back-bias-magnet.
Hidden adaptive hysteresis means, the output always switches at the same level, centered between upper and
lower hysteresis. These hysteresis thresholds needs to be exceeded and are used to enable the output for the
next following switching event. For example, if the differential magnetic field crosses the lower hysteresis
level, then the output is able to switch at the zero crossing. Next following upper hysteresis needs to be
exceeded again in order to enable for the next switching. Furthermore, the function of half hysteresis
maintains switching whenever the upper hysteresis level is not exceeded, but the lower hysteresis level is
crossed again, then the output is allowed to switch, so that no edge is lost. However, this causes additional
phase error, see Figure 9.
Doing an adaptive hysteresis gives advantage at small airgap (large signal) to have big hysteresis. Compared
with fixed hysteresis a small vibration cannot cause additional switching. According Figure 10 the adaptive
hysteresis is calculated as 25% of the differential Speed-signal peak to peak. The minimum hysteresis is
derived from EEPROM-setting ”HYST_MIN”.
t
switch point
switch point (half hystersis)
BHYS/2
BHYS/2
t



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