ADIS16365/PCBZ Analog Devices Inc, ADIS16365/PCBZ Datasheet - Page 16

BOARD INTERFACE FOR ADIS16365

ADIS16365/PCBZ

Manufacturer Part Number
ADIS16365/PCBZ
Description
BOARD INTERFACE FOR ADIS16365
Manufacturer
Analog Devices Inc
Series
iMEMS®, iSensor™r
Datasheets

Specifications of ADIS16365/PCBZ

Sensor Type
Accelerometer, Gyroscope, 3 Axis
Sensing Range
±17g, ±75°/sec, ±150°/sec, ±300°/sec
Interface
SPI Serial
Sensitivity
3.3mg/LSB, 0.0125 ~ 0.05°/sec/LSB
Voltage - Supply
4.75 V ~ 5.25 V
Embedded
No
Utilized Ic / Part
ADIS16365
Silicon Manufacturer
Analog Devices
Application Sub Type
Accelerometer / Gyroscope
Kit Application Type
Sensing - Motion / Vibration / Shock
Silicon Core Number
ADIS16365
Lead Free Status / RoHS Status
Not applicable / RoHS Compliant
For Use With
ADISUSBZ - KIT EVAL ADIS W/SOFTWARE USB
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Not applicable / RoHS Compliant
ADIS16360/ADIS16365
Table 27. ALM_MAG1, ALM_MAG2 Bit Descriptions
Bits
[15]
[14]
[13:0]
Table 28. ALM_SMPL1, ALM_SMPL2 Bit Descriptions
Bits
[15:8]
[7:0]
Table 29. ALM_CTRL Bit Descriptions
Bits
[15:12]
[11:8]
[7]
[6]
[5]
[4]
[3]
[2]
[1]
[0]
Description (Default = 0x0000)
Alarm 2 source selection
0000 = disable
0001 = power supply output
0010 = x-axis gyroscope output
0011 = y-axis gyroscope output
0100 = z-axis gyroscope output
0101 = x-axis accelerometer output
0110 = y-axis accelerometer output
0111 = z-axis accelerometer output
1000 = x-axis gyroscope temperature output
1001 = y-axis gyroscope temperature output
1010 = z-axis gyroscope temperature output
1011 = auxiliary ADC input
Alarm 1 source selection (same as Alarm 2)
Rate-of-change enable for Alarm 2
(1 = rate of change, 0 = static level)
Rate-of-change enable for Alarm 1
(1 = rate of change, 0 = static level)
Not used
Comparison data filter setting
(1 = filtered data, 0 = unfiltered data)
Not used
Alarm output enable
(1 = enabled, 0 = disabled)
Alarm output polarity
(1 = active high, 0 = active low)
Alarm output line select
(1 = DIO2, 0 = DIO1)
Description (Default = 0x0000)
Comparison polarity
(1 = greater than, 0 = less than)
Not used
Data bits that match the format of the trigger source
selection
Description (Default = 0x0000)
Not used
Data bits: number of samples (both 0x00 and 0x01 = 1)
Rev. D | Page 16 of 20
Table 30. Alarm Configuration Example 1
DIN
0xAF55,
0xAE17
0xA700,
0xA696
0xA937,
0xA86A
Table 31. Alarm Configuration Example 2
DIN
0xAF76,
0xAEC7
0xB601
0xAA08
0xAC50
0xA700,
0xA696
0xA937,
0xA86A
PRODUCT IDENTIFICATION
Table 32 provides a summary of the registers that identify
the product: PROD_ID, which identifies the product type;
LOT_ID1 and LOT_ID2, the 32-bit lot identification code;
and SERIAL_NUM, which displays the 12-bit serial number.
All four registers are two bytes in length. When using the
SERIAL_NUM value to calculate the serial number, mask
off the upper four bits and convert the remaining 12 bits to
a decimal number.
Table 32. Identification Registers
Register Name
LOT_ID1
LOT_ID2
PROD_ID
SERIAL_NUM
Description
ALM_CTRL = 0x76C7.
Alarm 1 input = YACCL_OUT.
Alarm 2 input = ZACCL_OUT.
Rate-of-change comparison, unfiltered data.
DIO2 output indicator, positive polarity.
SMPL_PRD = 0x0001.
Sample rate = 819.2 SPS.
ALM_SMPL1 = 0x0008.
Alarm 1 rate-of-change period = 9.77 ms.
ALM_SMPL2 = 0x0050.
Alarm 2 rate-of-change period = 97.7 ms.
ALM_MAG1 = 0x8096.
Alarm 1 is true if YACCL_OUT increases by more than
0.5 g in 9.77 ms.
ALM_MAG2 = 0x376A.
Alarm 2 is true if ZACCL_OUT decreases by more
than 0.5 g in 97.7 ms.
Description
ALM_CTRL = 0x5517.
Alarm 1 input = XACCL_OUT.
Alarm 2 input = XACCL_OUT.
Static level comparison, filtered data.
DIO2 output indicator, positive polarity.
ALM_MAG1 = 0x8096.
Alarm 1 is true if XACCL_OUT > +0.5 g.
ALM_MAG2 = 0x376A.
Alarm 2 is true if XACCL_OUT < −0.5 g.
Address
0x52
0x54
0x56
0x58
Description
Lot Identification Code 1
Lot Identification Code 2
Product identification:
0x3FE8 (16,360)
0x3FED (16,365)
Serial number

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