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TSC2012 数据表(PDF) 30 Page - STMicroelectronics |
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TSC2012 数据表(HTML) 30 Page - STMicroelectronics |
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30 / 50 page ![]() Due to a small mismatch of the internal resistance the error, on the output common mode voltage, can be described as equation 8: Vocm= Vref1+Vref2 2 . 1+εAcc (8) Where εAccistheaccuracyreferredtotheoutputwithatypicalvalueof0.1%. • Noise The Section 4.1 expresses the noise referred to the input of the TSC2011. This device shows a 1/f noise until 10 kHz frequency. Above this limit the white noise density is 29 nV/ Hz,untilthebandwidthoftheTSC2011. The noise can be then expressed as two terms, the former related to the 1/f noise and the latter due to the white noise. If we consider that there is no additional filter on the TSC2011 and it is only bandwidth limited, it can be considered that over the 750 kHz, there is an attenuation of the noise with a first order filtering. So the equivalent noise bandwidth is 750kHz.π2. The RMS value of the output noise is the integration of the spectral noise over the bandwidth of interest and can be expressed as equation 9: enRMS= 0.110000 29.10−9f 10.103 2df+0.1750000.π229.10−92df*Gain (9) • Total error The maximum total error expected on the output of the device can be described as the sum of the different source described just above. The total output accuracy can be written as equation 10. Vouterr=Gain*Rsense*Iload εgain+εRsense +Gain.Vio+Gain . Vicm−12V CMR +Vocm εAcc +noise (10) Iload is described in Figure 63. Input current and the output noise is described by the equation 9. Note that the input bias currents are not taken into account in this section, as they are already integrated in the Vsense. The Figure 63. Input current below depicts the current flowing from the source to the load when the input common mode voltage is higher than the supply voltage. Figure 63. Input current From a calculation approach, when Vicm voltage is beyond Vcc, Iload must be considered as the sum of Isource and Input bias current (Iib). Note that the input bias current on the pin – is largely lower and can be neglected. The Figure 63. Input current also expresses that the TSC2011 cannot measure the current in the same order as input bias current (several hundreds of µA). TSC2010, TSC2011, TSC2012 Application information DS13057 - Rev 7 page 30/50 |
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