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LTC2410IGN 数据表(PDF) 13 Page - Linear Technology |
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LTC2410IGN 数据表(HTML) 13 Page - Linear Technology |
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13 / 44 page ![]() LTC2410 13 APPLICATIO S I FOR ATIO The serial clock mode is selected on the falling edge of CS. To select the external serial clock mode, the serial clock pin (SCK) must be LOW during each CS falling edge. The serial data output pin (SDO) is Hi-Z as long as CS is HIGH. At any time during the conversion cycle, CS may be pulled LOW in order to monitor the state of the converter. While CS is pulled LOW, EOC is output to the SDO pin. EOC = 1 while a conversion is in progress and EOC = 0 if the device is in the sleep state. Independent of CS, the device automatically enters the low power sleep state once the conversion is complete. When the device is in the sleep state (EOC = 0), its conversion result is held in an internal static shift regis- ter. The device remains in the sleep state until the first rising edge of SCK is seen while CS is LOW. Data is shifted out the SDO pin on each falling edge of SCK. This enables external circuitry to latch the output on the rising edge of SCK. 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. On the 32nd falling edge of SCK, the device begins a new conversion. SDO goes HIGH (EOC = 1) indicating a conversion is in progress. At the conclusion of the data cycle, CS may remain LOW and EOC monitored as an end-of-conversion interrupt. Alternatively, CS may be driven HIGH setting SDO to Hi-Z. As described above, CS may be pulled LOW at any time in order to monitor the conversion status. Typically, CS remains LOW during the data output state. However, the data output state may be aborted by pulling CS HIGH anytime between the first rising edge and the 32nd falling edge of SCK, see Figure 6. On the rising edge of CS, the device aborts the data output state and imme- diately initiates a new conversion. This is useful for sys- tems not requiring all 32 bits of output data, aborting an invalid conversion cycle or synchronizing the start of a conversion. External Serial Clock, 2-Wire I/O This timing mode utilizes a 2-wire serial I/O interface. The conversion result is shifted out of the device by an exter- nally generated serial clock (SCK) signal, see Figure 7. CS may be permanently tied to ground, simplifying the user interface or isolation barrier. The external serial clock mode is selected at the end of the power-on reset (POR) cycle. The POR cycle is concluded approximately 0.5ms after VCC exceeds 2.2V. The level applied to SCK at this time determines if SCK is internal or external. SCK must be driven LOW prior to the end of POR in order to enter the external serial clock timing mode. Figure 5. External Serial Clock, Single Cycle Operation EOC BIT 31 SDO SCK (EXTERNAL) CS TEST EOC SUB LSB MSB SIG BIT 0 LSB BIT 5 BIT 27 BIT 26 BIT 28 BIT 29 BIT 30 SLEEP DATA OUTPUT CONVERSION 2410 F05 CONVERSION = 50Hz REJECTION = EXTERNAL OSCILLATOR = 60Hz REJECTION Hi-Z Hi-Z Hi-Z VCC TEST EOC TEST EOC VCC FO REF+ REF– SCK IN+ IN– SDO GND CS 214 3 4 13 5 6 12 1, 7, 8, 9, 10, 15, 16 11 REFERENCE VOLTAGE 0.1V TO VCC ANALOG INPUT RANGE –0.5VREF TO 0.5VREF 1 µF 2.7V TO 5.5V LTC2410 3-WIRE SPI INTERFACE |
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