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| 003 | DE-He213 | ||
| 005 | 20230102113100.0 | ||
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| 007 | cr nn 008mamaa | ||
| 008 | 171005s2018 gw | s |||| 0|eng d | ||
| 020 | _a9783319623078 | ||
| 024 | 7 |
_a10.1007/978-3-319-62307-8 _2doi |
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_bspa _cES-MaUEC _dES-MaUEC |
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| 050 | 4 |
_aTK7872.D48 _bS687 2018 EB |
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| 100 | 1 |
_aSouri, Kamran. _eautor. _4aut _4http://id.loc.gov/vocabulary/relators/aut |
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| 245 | 1 | 0 |
_aEnergy-Efficient Smart Temperature Sensors in CMOS Technology _cby Kamran Souri, Kofi A.A. Makinwa. |
| 264 | 1 |
_aCham _bSpringer International Publishing _c2018 |
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| 300 | _a1 recurso en línea (XVI, 118 páginas 98 ilustraciones, 50 ilustraciones a color.) | ||
| 336 |
_2rdacontent _aTexto _btxt |
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_2rdamedia _aelectrónico _bc |
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_2rdacarrier _arecurso electrónico _bcr |
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_atext file _bPDF |
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| 490 | 0 |
_aAnalog Circuits and Signal Processing, _x1872-082X |
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| 490 | 0 | _aEngineering (Springer-11647) | |
| 520 | 3 | _aThis book describes the design and implementation of energy-efficient smart (digital output) temperature sensors in CMOS technology. To accomplish this, a new readout topology, namely the zoom-ADC, is presented. It combines a coarse SAR-ADC with a fine Sigma-Delta (SD) ADC. The digital result obtained from the coarse ADC is used to set the reference levels of the SD-ADC, thereby zooming its full-scale range into a small region around the input signal. This technique considerably reduces the SD-ADC's full-scale range, and notably relaxes the number of clock cycles needed for a given resolution, as well as the DC-gain and swing of the loop-filter. Both conversion time and power-efficiency can be improved, which results in a substantial improvement in energy-efficiency. Two BJT-based sensor prototypes based on 1st-order and 2nd-order zoom-ADCs are presented. They both achieve inaccuracies of less than ±0.2°C over the military temperature range (-55°C to 125°C). A prototype capable of sensing temperatures up to 200°C is also presented. As an alternative to BJTs, sensors based on dynamic threshold MOSTs (DTMOSTs) are also presented. It is shown that DTMOSTs are capable of achieving low inaccuracy (±0.4°C over the military temperature range) as well as sub-1V operation, making them well suited for use in modern CMOS processes. Presents a new readout technique (the zoom-ADC) to address the implementation of energy-efficient temperature sensors in CMOS technology; Shows how this technique can be used to design energy-efficient temperature sensors without compromising other key specifications, such as accuracy and resolution; Shows how this technique can be used to design general-purpose incremental ADCs that can achieve both high resolution and state-of-the-art energy efficiency; Presents DTMOST-based temperature sensors, which achieve significantly higher accuracy than previous all-CMOS temperature sensors. | |
| 988 | _aEBSPRINGER_2018 | ||
| 650 | 7 |
_2embne _9140157 _aDetectores |
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| 700 | 1 |
_aMakinwa, Kofi A. A. _0http://id.loc.gov/authorities/names/no2010016831 _1http://viaf.org/viaf/100399192/ _997142 |
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| 776 | 0 | 8 |
_iEdición impresa: _z9783319623061 |
| 776 | 0 | 8 |
_iEdición impresa: _z9783319623085 |
| 776 | 0 | 8 |
_iEdición impresa: _z9783319872865 |
| 856 | 4 | 0 |
_uhttps://go.openathens.net/redirector/universidadeuropea.es?url=https://doi.org/10.1007/978-3-319-62307-8 _zAcceso a este recurso digital (usuarios Universidad Europea de Madrid) |
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_2lcc _cLE |
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