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ADIS16003PCB Datasheet(PDF) 3 Page - Analog Devices |
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ADIS16003PCB Datasheet(HTML) 3 Page - Analog Devices |
3 / 16 page ADIS16003 Rev. 0 | Page 3 of 16 SPECIFICATIONS TA = –40°C to +125°C, VCC = 5 V, CX, CY = 0 μF, acceleration = 0 g, unless otherwise noted. All minimum and maximum specifications are guaranteed. Typical specifications are not guaranteed. Table 1. Parameter Conditions Min Typ Max Unit ACCELEROMETER SENSOR INPUT Each axis Measurement Range1 ±1.7 g Nonlinearity % of full scale ±0.5 ±2.5 % Package Alignment Error ±1.5 degrees Alignment Error X sensor to Y sensor ±0.1 degrees Cross Axis Sensitivity ±2 ±5 % ACCELEROMETER SENSITIVITY Each axis Sensitivity at XFILT, YFILT 769 820 885 LSB/g Sensitivity Change due to Temperature2 Delta from 25°C ±8 LSB ZERO g BIAS LEVEL Each axis 0 g Voltage at XFILT, YFILT 1905 2048 2190 LSB 0 g Offset vs. Temperature ±0.14 LSB/°C ACCELEROMETER NOISE PERFORMANCE Noise Density @25°C 110 μg/√Hz rms ACCELEROMETER FREQUENCY RESPONSE3 CX, CY Range4 0 10 μF RFILT Tolerance 24 32 40 kΩ Sensor Resonant Frequency 5.5 kHz ACCELEROMETER SELF-TEST Logic Input Low 0.2 × VCC V Logic Input High 0.8 × VCC V ST Input Resistance to COM 30 50 kΩ Output Change at XOUT, YOUT T 5 Self-Test 0 to Self-Test 1 323 614 904 LSB TEMPERATURE SENSOR Accuracy VCC = 3 V to 5.25 V ±2 °C Resolution 10 Bits Update Rate 400 μs Temperature Conversion Time 25 μs DIGITAL INPUT Input High Voltage (VINH) VCC = 4.75 V to 5.25 V 2.4 V VCC = 3.0 V to 3.6 V 2.1 V Input Low Voltage (VINL) VCC = 3.0 V to 5.25 V 0.8 V Input Current VIN = 0 V or VCC -10 1 10 μA Input Capacitance 10 pF DIGITAL OUTPUT Output High Voltage (VOH) ISOURCE = 200 μA, VCC = 3.0 V to 5.25 V VCC – 0.5 V Output Low Voltage (VOL) ISINK = 200 μA 0.4 V POWER SUPPLY Operating Voltage Range 3.0 5.25 V Quiescent Supply Current FSCLK = 50 kSPS 1.5 2.0 mA Power Down Current 1.0 mA Turn-On Time6 Cx, Cy = 0.1 μF 20 Ms 1 Guaranteed by measurement of initial offset and sensitivity. 2 Defined as the output change from ambient to maximum temperature or ambient to minimum temperature. 3 Actual bandwidth response controlled by user-supplied external capacitor (Cx, Cy). 4 Bandwidth = 1/(2π x 32 kΩ x (2200 pF + C)). For Cx, Cy = 0, bandwidth = 2260 Hz. For Cx, Cy = 10 μF, bandwidth = 0.5 Hz. Min/max values not tested. 5 Self-test response changes as the square of Vcc. 6 Larger values of Cx, Cy increase turn-on time. Turn-on time is approximately 160 x (0.0022 μF + Cx + Cy) + 4 ms, where Cx, Cy are in μF. |
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