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LTC2414IGN Datasheet(PDF) 24 Page - Linear Technology |
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LTC2414IGN Datasheet(HTML) 24 Page - Linear Technology |
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24 / 48 page ![]() LTC2414/LTC2418 24 241418fa complete, SCK and SDO go LOW (EOC = 0) indicating the conversion has finished and the device has entered the low power sleep state. The part remains in the sleep state a minimum amount of time (1/2 the internal SCK period) then immediately begins outputting data. The data input/ output cycle begins on the first rising edge of SCK and ends after the 32nd rising edge. The input data is then shifted in via the SDI pin on the rising edge of SCK (including the first rising edge) and the output data is shifted out of the SDO pin on each falling edge of SCK. The internally generated serial clock is output to the SCK pin. This signal may be used to shift the conversion result into external circuitry. EOC can be latched on the first rising edge of SCK and the last bit of the conversion result can be latched on the 32nd rising edge of SCK. After the 32nd rising edge, SDO goes HIGH (EOC = 1) indicating a new conversion is in progress. SCK remains HIGH during the conversion. PRESERVING THE CONVERTER ACCURACY The LTC2414/LTC2418 are designed to reduce as much as possible the conversion result sensitivity to device decoupling, PCB layout, antialiasing circuits, line fre- quency perturbations and so on. Nevertheless, in order to preserve the extreme accuracy capability of this part, some simple precautions are desirable. Digital Signal Levels The LTC2414/LTC2418’s digital interface is easy to use. Its digital inputs (SDI, FO,CSandSCKinExternalSCKmode of operation) accept standard TTL/CMOS logic levels and the internal hysteresis receivers can tolerate edge rates as slow as 100 µs.However,someconsiderationsarerequired to take advantage of the exceptional accuracy and low supply current of this converter. The digital output signals (SDO and SCK in Internal SCK mode of operation) are less of a concern because they are not generally active during the conversion state. While a digital input signal is in the range 0.5V to (VCC – 0.5V), the CMOS input receiver draws additional current from the power supply. It should be noted that, when any one of the digital input signals (SDI, FO, CS and SCK in External SCK mode of operation) is within this range, the power supply current may increase even if the signal in question is at a valid logic level. For micropower APPLICATIO S I FOR ATIO Figure 10. Internal Serial Clock, CS = 0 Continuous Operation (1) (0) EN SGL A2 A1 A0 ODD/ SIGN SDI DON’T CARE DON’T CARE SDO SCK (INTERNAL) CS LSB MSB SIG BIT 6 BIT 0 PARITY BIT 27 BIT 26 BIT 25 BIT 24 BIT 28 BIT 29 BIT 30 EOC BIT 31 DATA OUTPUT CONVERSION CONVERSION 241418 F10 VCC FO REF+ REF– CH0 CH7 CH8 CH15 COM SCK SDI SDO CS GND 919 11 12 21 28 1 8 10 18 17 15 16 20 REFERENCE VOLTAGE 0.1V TO VCC ANALOG INPUTS = 50Hz REJECTION = EXTERNAL OSCILLATOR = 60Hz REJECTION VCC 1 µF 2.7V TO 5.5V LTC2414/ LTC2418 3-WIRE SPI INTERFACE • • • • • • • • • • • • |
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