Software User Manual - Argos 3D-P320
Last change: 2 February 2016
Version 0.14
© Bluetechnix 2016
Page 50 | 70
Addr
(hex)
Register Name
Default
Value
(hex)
R/W Description
003C
TempCompGradient3Lim
R/W Factor ‘a’ of the temperature compensation
function: y [mm] = a/100000 * x³ + b/10000 * x² +
c/1000 * x
003D
BuildYearMonth
R
Firmware Build date/time
Bit[14-4]: Year
Bit[3-0]: Month
003E
BuildDayHour
R
Firmware Build day/hour
Bit[9-5]: Day
Bit[4-0]: Hour
003F
BuildMinuteSecond
R
Firmware Build date/time
Bit[11-6]: Minute
Bit[5-0]: Second
0040
UpTimeLow
R
Lower 16 bit of uptime in [s]
0041
UpTimeHigh
R
Higher 16 bit of uptime in [s]
0042
AcfPlausCheckAmpLimit
0032
R/W Limit for the ACF plausibility check
0043
TimSerialLow
R
Serial Number of the TIM, low word
0044
TimSerialHigh
R
Serial Number of the TIM, high word
0046
ProcessorStatus
R
Bit[0:7]…Temperature of the processor in °C (0xFF:
Sensor not available)
Bit[8:15]…Processor speed in 10-MHz-steps
0047
RgbLedColor
0000
R/W RGB565 color value of RGB LED
0048
Lim1Status
0000
R
Status word of LIM #1 or external illumination.
Bits[0..4]: Overcurrent on LED segments 0..4
Bits[8..12]: Open load on LED segments 0..4
Bit[14]: Temperature sensor error
Bit[15]: Could not read status word (communication
failure)
0049
Lim2Status
0000
R
Status word of LIM #2 (Bit description see register
Lim1Status
)
004A
TempCompGradientTim
R/W Factor ‘c’ of the ToF sensor temperature
compensation function: y [mm] = a/100000 * x³ +
b/10000 * x² + c/1000 * x
004B
TempCompGradient2Tim
R/W Factor ‘b’ of the ToF sensor temperature
compensation function: y [mm] = a/100000 * x³ +
b/10000 * x² + c/1000 * x
004C
TempCompGradient3Tim
R/W Factor ‘a’ of the ToF sensor temperature
compensation function: y [mm] = a/100000 * x³ +
b/10000 * x² + c/1000 * x
Table 5-1: General registers
Note 2): The content depends on the mounted lens and the calibration data and represents the real viewing
angles.
5.2
Registers for GPIO Control
Addr (hex)
Register Name
Default Value (hex)
R/W
Description
00D0
IOstate0
R/W
Bit[0]: … state of IN_0 (only R)
Bit[1]: … state of IN_1 (only R)
Bit[8]: … state of OUT_0 (R/W)