USER MANUAL – Z-DAQ-PID
17
These bits aren’t used
/
Bit [15:6]
Over-scale range error for acquired input (over hardware
limits): 0=
there isn’t; 1=there is
/
Bit 5
Amplitude detection of acquired input signal: 0=amplitude is
between input start scale and input end scale; 1=amplitude
is less than input start scale
/
Bit 4
Amplitude detection of acquired input signal: 0=amplitude is
between input start scale and input end scale; 1=amplitude
is greater than input end scale
/
Bit 3
Input burn-out error (if bit40006.0=1 and the input is greater
than input scale range): 0=
there isn’t; 1=there is.
/
Bit 2
Temperature acquisition error in the thermocouple cold-
junctions (if TC-type input): 0=
there isn’t; 1=there is
/
Bit 1
Memory loss-of-
data: 0=there isn’t; 1=there is
/
Bit 0
Rejection Burn
/
Bit
R/W*
40006
These bits aren’t used
/
Bit[15:10]
Rejection: 0b00=50Hz; 0b01=60Hz; 0b10=No rejection
(“fast” sampling)
0b00
Bit [9:8]
These bits aren’t used
/
Bit [7:1]
Burn-out enabling: 0=deactivated; 1=activated (if 1: fault
output value is overwritten into output register)
0
Bit 0
Filter
Cold-junction
/
Bit, LSB
R/W*
40005
These bits aren’t used
/
Bit [15:9]
Cold-junction
compensation
(if
TC-type
input):
0=deactivated; 1=activated
0
Bit 8
Filter applied to the acquired input signal: 0=deactivated;
1=filtering min-value; 19=filtering max-value
0
Bit [7:0]
IN Type
/
Word
R/W*
40003
Input-type: 0=current; 1=voltage; 2=potentiometer; 3=TC J;
4=TC K; 5=TC R; 6=TC S; 7=TC T; 8=TC B; 9=TC E;
10=TC N; 11= 2-wires PT100; 12=3-wires PT100; 13=4-
wires PT100; 14=2-wires NI100; 15=3-wires NI100; 16=4-
wires NI100; 17=2-wires PT500; 18=3-wires PT500; 19=4-
wires PT500; 20=2-wires PT1000; 21=3-wires PT1000;
22=4-wires PT1000; 23=millivoltmeter
0