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AS5045-ASST bảng dữ liệu(PDF) 35 Page - ams AG |
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AS5045-ASST bảng dữ liệu(HTML) 35 Page - ams AG |
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35 / 47 page ![]() ams Datasheet Page 35 [v2-01] 2017-Jul-13 Document Feedback AS5045 − Detailed Description Angular Error Caused by Propagation Delay: A rotating magnet will cause an angular error caused by the output propagation delay. This error increases linearly with speed: Where: esampling = angular error [°] rpm = rotating speed [rpm] prop.delay = propagation delay [seconds] Note(s): Since the propagation delay is known, it can be automatically compensated by the control unit processing the data from the AS5045. Internal Timing Tolerance The AS5045 does not require an external ceramic resonator or quartz. All internal clock timings for the AS5045 are generated by an on-chip RC oscillator. This oscillator is factory trimmed to ±5% accuracy at room temperature (±10% over full temperature range). This tolerance influences the ADC sampling rate and the pulse width of the PWM output. • Absolute Output; SSI Interface: A new angular value is updated every 96μs (typ.) in fast mode and every 384μs (typ.) in slow mode. •PWM Output: A new angular value is updated every 400μs (typ.). The PWM pulse timings Ton and Toff also have the same tolerance as the internal oscillator. If only the PWM pulse width Ton is used to measure the angle, the resulting value also has this timing tolerance. However, this tolerance can be cancelled by measuring both Ton and Toff and calculating the angle from the duty cycle. Temperature Magnetic Temperature Coefficient: One of the major benefits of the AS5045 compared to linear Hall sensors is that it is much less sensitive to temperature. While linear Hall sensors require a compensation of the magnet’s temperature coefficients, the AS5045 automatically compensates for the varying magnetic field strength over temperature. The magnet’s temperature drift does not need to be considered, as the AS5045 operates with magnetic field strengths from ±45…±75mT. Example: An NdFeB magnet has a field strength of 75mT @ -40°C and a temperature coefficient of -0.12% per Kelvin. The temperature change is from -40° to 125° = 165K. The magnetic field change is: 165 x -0.12% = -19.8%, which corresponds to 75mT at -40°C and 60mT at 125°C. (EQ5) delay prop rpm e sampling . * 6 , ∗ = (EQ6) () 1 4097 − + ⋅ = off on on t t t Position |
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