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LT6236 Datasheet(PDF) 4 Page - Linear Technology |
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LT6236 Datasheet(HTML) 4 Page - Linear Technology |
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4 / 50 page ![]() LTC2372-16 4 237216f For more information www.linear.com/LTC2372-16 DynaMic accuracy The l denotes the specifications which apply over the full operating temperature range, otherwise specifications are at TA = 25°C and AIN = –1dBFS. (Notes 4, 10) SYMBOL PARAMETER CONDITIONS MIN TYP MAX UNITS SINAD Signal-to-(Noise + Distortion) Ratio Fully Differential fIN = 1kHz, REFIN = 2.048V (REFIN Overdriven) Pseudo-Differential Unipolar fIN = 1kHz, REFIN = 2.048V (REFIN Overdriven) Pseudo-Differential Bipolar fIN = 1kHz, REFIN = 2.048V (REFIN Overdriven) l l l 93 90 90 96 93.4 93.4 dB dB dB Fully Differential fIN = 1kHz, REFBUF = 5V (REFBUF Overdriven) (Note 9) Pseudo-Differential Unipolar fIN = 1kHz, REFBUF = 5V (REFBUF Overdriven) (Note 9) Pseudo-Differential Bipolar fIN = 1kHz, REFBUF = 5V (REFBUF Overdriven) (Note 9) 97 94.5 94.5 dB dB dB Fully Differential fIN = 1kHz, REFIN = 2.048V (REFIN Overdriven), SEL = 1 Pseudo-Differential Bipolar fIN = 1kHz, REFIN = 2.048V (REFIN Overdriven), SEL = 1 95 91.5 dB dB SNR Signal-to-Noise Ratio Fully Differential fIN = 1kHz, REFIN = 2.048V (REFIN Overdriven) Pseudo-Differential Unipolar fIN = 1kHz, REFIN = 2.048V (REFIN Overdriven) Pseudo-Differential Bipolar fIN = 1kHz, REFIN = 2.048V (REFIN Overdriven) l l l 93 90 90 96 93.4 93.4 dB dB dB Fully Differential fIN = 1kHz, REFBUF = 5V (REFBUF Overdriven) (Note 9) Pseudo-Differential Unipolar fIN = 1kHz, REFBUF = 5V (REFBUF Overdriven) (Note 9) Pseudo-Differential Bipolar fIN = 1kHz, REFBUF = 5V (REFBUF Overdriven) (Note 9) 97 94.5 94.5 dB dB dB Fully Differential fIN = 1kHz, REFIN = 2.048V (REFIN Overdriven), SEL = 1 Pseudo-Differential Bipolar fIN = 1kHz, REFIN = 2.048V (REFIN Overdriven), SEL = 1 95 91.5 dB dB converTer characTerisTics 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 Full-Scale Error Drift Fully Differential REFBUF = 4.096V (REFBUF Overdriven) (Note 9) Pseudo-Differential Unipolar REFBUF = 4.096V (REFBUF Overdriven) (Note 9) Pseudo-Differential Bipolar REFBUF = 4.096V (REFBUF Overdriven) (Note 9) 0.2 0.2 0.2 ppm/°C ppm/°C ppm/°C Full-Scale Error Match Fully Differential REFBUF = 4.096V (REFBUF Overdriven) (Note 9) Pseudo-Differential Unipolar REFBUF = 4.096V (REFBUF Overdriven) (Note 9) Pseudo-Differential Bipolar REFBUF = 4.096V (REFBUF Overdriven) (Note 9) l l l –6 –7 –8 ±0.5 ±1 ±1 6 7 8 LSB LSB LSB |
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