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LT6236 Datasheet(PDF) 3 Page - Linear Technology |
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LT6236 Datasheet(HTML) 3 Page - Linear Technology |
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3 / 50 page ![]() LTC2372-16 3 237216f For more information www.linear.com/LTC2372-16 elecTrical characTerisTics converTer characTerisTics The l denotes the specifications which apply over the full operating temperature range, otherwise specifications are at TA = 25°C. (Note 4) The l denotes the specifications which apply over the full operating temperature range, otherwise specifications are at TA = 25°C. (Note 4) SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS VIN+ Absolute Input Range (CH0 to CH7) (Note 5) l –0.1 VREFBUF + 0.1 V VIN– Absolute Input Range (CH0 to CH7, COM) Fully Differential (Note 5) Pseudo-Differential Unipolar (Note 5) Pseudo-Differential Bipolar (Note 5) l l l –0.1 –0.1 VREFBUF/2 – 0.1 0 VREFBUF/2 VREFBUF + 0.1 0.1 VREFBUF/2 + 0.1 V V V VIN+ – VIN– Input Differential Voltage Range Fully Differential Pseudo-Differential Unipolar Pseudo-Differential Bipolar l l l –VREFBUF 0 –VREFBUF/2 VREFBUF VREFBUF VREFBUF/2 V V V VCM Common Mode Input Range Pseudo-Differential Bipolar and Fully Differential (Note 6) l –VREFBUF/2 – 0.1 VREFBUF/2 VREFBUF/2 + 0.1 V IIN Analog Input Leakage Current l –1 1 µA CIN Analog Input Capacitance Sample Mode Hold Mode 75 5 pF pF CMRR Input Common Mode Rejection Ratio Fully Differential, fIN = 250kHz Pseudo-Differential Unipolar, fIN = 250kHz Pseudo-Differential Bipolar, fIN = 250kHz 71 72 73 dB dB dB SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS Resolution l 16 Bits No Missing Codes l 16 Bits Transition Noise Fully Differential Pseudo-Differential Unipolar Pseudo-Differential Bipolar 0.25 0.5 0.5 LSBRMS LSBRMS LSBRMS INL Integral Linearity Error Fully Differential (Note 7) Pseudo-Differential Unipolar (Note 7) Pseudo-Differential Bipolar (Note 7) l l l –1 –1 –1 ±0.1 ±0.1 ±0.1 1 1 1 LSB LSB LSB DNL Differential Linearity Error Fully Differential (Note 6) Pseudo-Differential Unipolar (Note 6) Pseudo-Differential Bipolar (Note 6) l l l –0.5 –0.5 –0.5 ±0.1 ±0.1 ±0.1 0.5 0.5 0.5 LSB LSB LSB ZSE Zero-Scale Error Fully Differential (Note 8) Pseudo-Differential Unipolar (Note 8) Pseudo-Differential Bipolar (Note 8) l l l –6 –6 –8 ±0.5 ±0.5 ±0.5 6 6 8 LSB LSB LSB Zero-Scale Error Drift Fully Differential Pseudo-Differential Unipolar Pseudo-Differential Bipolar 1 2 2 mLSB/°C mLSB/°C mLSB/°C Zero-Scale Error Match Fully Differential Pseudo-Differential Unipolar Pseudo-Differential Bipolar l l l –6 –7 –8 ±0.5 ±1 ±1 6 7 8 LSB LSB LSB FSE Full-Scale Error Fully Differential REFBUF = 4.096V (REFBUF Overdriven) (Notes 8, 9) REFIN = 2.048V (REFIN Overdriven) (Note 8) Pseudo-Differential Unipolar REFBUF = 4.096V (REFBUF Overdriven) (Notes 8, 9) REFIN = 2.048V (REFIN Overdriven) (Note 8) Pseudo-Differential Bipolar REFBUF = 4.096V (REFBUF Overdriven) (Notes 8, 9) REFIN = 2.048V (REFIN Overdriven) (Note 8) l l l l l l –15 –25 –20 –50 –15 –30 ±2 ±3 ±1 ±4 ±2 ±3 15 25 20 50 –15 30 LSB LSB LSB LSB LSB LSB |
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