SBASAY6 December 2024 AMC0236
PRODUCTION DATA
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PARAMETER | TEST CONDITIONS | MIN | TYP | MAX | UNIT | |
---|---|---|---|---|---|---|
ANALOG INPUT | ||||||
CIN | Input capacitance | fCLKIN = 10MHz | 2 | pF | ||
RIN | Input resistance | INP pin to AGND, SNSN = AGND | 0.1 | 1 | GΩ | |
IIB | Input bias current(1) | INP = AGND | –10 | ±3 | 10 | nA |
CMTI | Common-mode transient immunity | 150 | V/ns | |||
DC ACCURACY | ||||||
EO | Offset error | TA = 25°C, INP = AGND | –0.9 | ±0.08 | 0.9 | mV |
TCEO | Offset error temperature drift(3) | 3.5 | 8.5 | µV/°C | ||
EG | Gain error(1) | Initial, at TA = 25°C, VINP = 1V or VINP = –1V |
–0.25 | ±0.02 | 0.25 | % |
TCEG | Gain error temperature drift(4) | –35 | ±10 | 35 | ppm/°C | |
INL | Integral nonlinearity(2) | Resolution: 16 bits | –6 | ±1 | 6 | LSB |
DNL | Differential nonlinearity | Resolution: 16 bits | –0.99 | 0.99 | LSB | |
PSRR | Power-supply rejection ratio | AVDD DC PSRR, IN = AGND, AVDD from 3.0V to 5.5V |
–83 | dB | ||
AVDD AC PSRR, IN = AGND, AVDD with10kHz / 100mV ripple |
–63 | |||||
AC ACCURACY | ||||||
SNR | Signal-to-noise ratio | VIN = 2VPP, fIN = 1kHz | 86 | 89 | dB | |
SINAD | Signal-to-noise + distortion | VIN = 2VPP, fIN = 1kHz | 77 | 88 | dB | |
THD | Total harmonic distortion(5) | VIN = 2VPP, fIN = 1kHz | –91 | –80 | dB | |
DIGITAL INPUT (CMOS Logic With Schmitt-Trigger) | ||||||
IIN | Input current | DGND ≤ VIN ≤ DVDD | 7 | µA | ||
CIN | Input capacitance | 4 | pF | |||
VIH | High-level input voltage | 0.7 x DVDD | DVDD + 0.3 | V | ||
VIL | Low-level input voltage | –0.3 | 0.3 x DVDD | V | ||
DIGITAL OUTPUT (CMOS) | ||||||
CLOAD | Output load capacitance | fCLKIN = 10MHz | 15 | 30 | pF | |
VOH | High-level output voltage | IOH = –4mA | DVDD – 0.4 | V | ||
VOL | Low-level output voltage | IOL = 4mA | 0.4 | V | ||
POWER SUPPLY | ||||||
IAVDD | High-side supply current | 5.3 | 7 | mA | ||
IDVDD | Low-side supply current | CLOAD = 15pF | 3.6 | 5 | mA | |
AVDDUV | High-side undervoltage detection threshold | AVDD rising | 2.4 | 2.6 | 2.7 | V |
AVDD falling | 1.9 | 2.0 | 2.1 | |||
DVDDUV | Low-side undervoltage detection threshold | DVDD rising | 2.3 | 2.5 | 2.7 | V |
DVDD falling | 1.9 | 2.0 | 2.1 |