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LMP92018 数据表(PDF) 21 Page - Texas Instruments |
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LMP92018 数据表(HTML) 21 Page - Texas Instruments |
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21 / 34 page ![]() 100k 100k + - OUTx = 2 x DREF ( ) DDATAx 1024 600 + - OUTx = DREF ( ) DDATAx 1024 LMP92018 www.ti.com SNAS514B – NOVEMBER 2011 – REVISED MAY 2013 The ideal DAC core transfer function from DATAx to OUTx , x=0...3, can be expressed as: (3) The above expression is subject to non-idealities of the resistor string and limitations of the output buffer. These limitations are tabulated in Electrical Characteristics In Figure 17, the PD (Power Down) signal is asserted when the given channel is disabled via the SPI command. The PD causes the DAC buffer bias currents to shut down, and it breaks the current path through the resistive string. DAC Reference Selection All DAC channels operate from the same, user selectable, reference source. In Figure 17, DREF input can be supplied by the external source, applied to the REF pin of the device, or from the internal reference generator block. The reference block functionality is described in INTERNAL VOLTAGE REFERENCE SOURCE. Reference selection automatically forces configuration of the DACs' output buffers. If the external reference source, which is DREF driven by the REF device pin, is selected then all of the DAC output buffers are in 1x configuration, as seen inFigure 18. In the external reference mode, each active DAC presents a resistive load to the source attached to the device's REF pin, see Figure 17 and Figure 21. The overall DAC transfers function remains as shown in DAC Core Figure 18. DAC Buffer when DREF Externally Supplied If the internal reference generator is selected to drive the DAC's DREF input, then all of the DACs' buffers are automatically forced into 2x gain configuration as shown in Figure 19. This results in an overall transfer function of the DACs to change to: (4) Figure 19. DAC Buffer when DREF Internally Supplied DIGITAL TEMPERATURE SENSOR The local temperature sensor (TS) operates in one of the 2 possible modes: Continuous or One-Shot. The user selects the mode of operation via the SPI instruction, see TEMPERATURE SENSOR CONFIGURE. The output of the temperature sensor is a 12 bit signed integer, where each LSB represents 0.0625°C. Temperature sensor's output code (TDATA) examples are shown in Table 1. Copyright © 2011–2013, Texas Instruments Incorporated Submit Documentation Feedback 21 Product Folder Links: LMP92018 |
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