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LTC2413IGN Datasheet(PDF) 14 Page - Linear Technology |
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LTC2413IGN Datasheet(HTML) 14 Page - Linear Technology |
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14 / 44 page ![]() LTC2413 14 sn2413 2413fs on the rising edge of the 32nd SCK pulse. On the falling edge of the 32nd SCK pulse, SDO goes HIGH indicating the initiation of a new conversion cycle. This bit serves as EOC (Bit 31) for the next conversion cycle. Table 2 summarizes the output data format. As long as the voltage on the IN+ and IN– pins is maintained within the – 0.3V to (VCC + 0.3V) absolute maximum operating range, a conversion result is generated for any differential input voltage VIN from –FS = –0.5 • VREF to +FS = 0.5 • VREF. For differential input voltages greater than +FS, the conversion result is clamped to the value corre- sponding to the +FS + 1LSB. For differential input voltages below –FS, the conversion result is clamped to the value corresponding to –FS – 1LSB. Simultaneous Frequency Rejection The LTC2413 internal oscillator provides better than 87dB normal mode rejection over the range of 49Hz to 61.2Hz as shown in Figure 4. For this simultaneous 50Hz/60Hz rejection, FO should be connected to GND. When a fundamental rejection frequency different from the range 49Hz to 61.2Hz is required or when the converter must be sychronized with an outside source, the LTC2413 can operate with an external conversion clock. The conveter automatically detects the presence of an external clock signal at the FO pin and turns off the internal oscillator. The frequency fEOSC of the external signal must be at least 2560Hz to be detected. The external clock signal duty cycle is not significant as long as the minimum and maximum specifications for the high and low periods, tHEO and tLEO, are observed. Table 2. LTC2413 Output Data Format Differential Input Voltage Bit 31 Bit 30 Bit 29 Bit 28 Bit 27 Bit 26 Bit 25 … Bit 0 VIN* EOC DMY SIG MSB VIN* ≥ 0.5 • VREF** 0 0110 0 0 … 0 0.5 • VREF** – 1LSB 0 0101 1 1 … 1 0.25 • VREF** 0 0101 0 0 … 0 0.25 • VREF** – 1LSB 0 0100 1 1 … 1 0 0 0100 0 0 … 0 –1LSB 0 0011 1 1 … 1 – 0.25 • VREF** 0 0011 0 0 … 0 – 0.25 • VREF** – 1LSB 0 0010 1 1 … 1 – 0.5 • VREF** 0 0010 0 0 … 0 VIN* < –0.5 • VREF** 0 0001 1 1 … 1 *The differential input voltage VIN = IN+ – IN–. **The differential reference voltage VREF = REF+ – REF–. Figure 3. Output Data Timing APPLICATIO S I FOR ATIO MSB SIG “0” 1 2 3 4 5 262732 BIT 0 BIT 27 BIT 5 LSB24 BIT 28 BIT 29 BIT 30 SDO SCK CS EOC BIT 31 SLEEP DATA OUTPUT CONVERSION 2413 F03 Hi-Z |
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