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ADIS16080/PCBZ Datasheet(PDF) 3 Page - Analog Devices

Part # ADIS16080/PCBZ
Description  짹80째/sec Yaw Rate Gyro with SPI Interface
PDF  16 Pages
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Manufacturer  AD [Analog Devices]
Direct Link  http://www.analog.com
Logo AD - Analog Devices

ADIS16080/PCBZ Datasheet(HTML) 3 Page - Analog Devices

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ADIS16080
Rev. 0 | Page 3 of 16
SPECIFICATIONS
TA = 25°C, VCC = VDRIVE = 5 V, angular rate = 0°/sec, COUT = 0 μF, ±1 g, unless otherwise noted.
Table 1.
Parameter
Conditions
Min1
Typ
Max1
Unit
SENSITIVITY
Dynamic Range2
Full-scale range over specifications range
±80
°/sec
Initial
Clockwise rotation is positive output,
TA = −40°C to +85°C
9.21
10.24
11.26
LSB/°/sec
Change over Temperature3
VCC = VDRIVE = 4.75 V to 5.25 V
±5
%
Nonlinearity
Best fit straight line
0.15
% of FS
Voltage Sensitivity
VCC = VDRIVE = 4.75 V to 5.25 V
0.7
% of FS
NULL
Initial
1629
2048
2466
LSB
Change Over Temperature3
VCC = VDRIVE = 4.75 V to 5.25 V
±85
LSB
Turn-On Time
Power on to ±½°/sec of final
35
ms
Linear Acceleration Effect
Any axis
2.05
LSB/g
Voltage Sensitivity
VCC = VDRIVE = 4.75 V to 5.25 V
±10.24
LSB/V
NOISE PERFORMANCE
Total Noise
0.1 Hz to 40 Hz; no averaging
0.42
°/sec rms
43
LSB rms
Rate Noise Density
@ 25°C
0.05
°/sec /√Hz
0.51
LSB rms/√Hz
FREQUENCY RESPONSE
3 dB Bandwidth (User-Selectable)4
COUT = 0 μF
40
Hz
Sensor Resonant Frequency
14
kHz
SELF-TEST INPUTS
ST1 RATEOUT Response5
ST1 pin from Logic 0 to Logic 1
−328
−540
−819
LSB
ST2 RATEOUT Response5
ST2 pin from Logic 0 to Logic 1
+328
+540
+819
LSB
Logic 1 Input Voltage
Standard high logic level definition
3.3
V
Logic 0 Input Voltage
Standard low logic level definition
1.7
V
Input Impedance
To common
50
kΩ
TEMPERATURE SENSOR
Reading at 298 K
2048
LSB
Scale Factor
Proportional to absolute temperature
6.88
LSB/K
2.5 V REFERENCE
Voltage Value
2.45
2.5
2.55
V
Load Drive to Ground
Source
100
μA
Load Regulation
0 μA < IOUT < 100 μA
5.0
mV/mA
Power Supply Rejection
VCC = VDRIVE = 4.75 V to 5.25 V
1.0
mV/V
Temperature Drift
Delta from 25°C
5.0
mV
LOGIC INPUTS
Input High Voltage, VINH
0.7 × VDRIVE
V
Input Low Voltage, VINL
0.3 × VDRIVE
V
Input Current, IIN
Typically 10 nA
−1
+1
μA
Input Capacitance, CIN
10
pF
ANALOG INPUTS6
Resolution
12
Bits
Integral Nonlinearity6
−2
+2
LSB
Differential Nonlinearity
−2
+2
LSB
Offset Error
−8
+8
LSB
Gain Error
−2
+2
LSB
Input Voltage Range
0
VREF × 2
V



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