Registers Format
•
33
( This table is only for ACL-8112DG: Low Gain Card)
G3
G2
G1
G0
GAIN
Bipolar
or
Unipolar
Input Range
1
0
0
0
0.5
Bipolar
±
10V
0
0
0
0
1
Bipolar
±
5V
0
0
0
1
2
Bipolar
±
2.5V
0
0
1
0
4
Bipolar
±
1.25V
0
0
1
1
8
Bipolar
±
0.625V
0
1
0
0
1
Unipolar
0V ~ 10V
0
1
0
1
2
Unipolar
0V ~ 5V
0
1
1
0
4
Unipolar
0V ~ 2.5V
0
1
1
1
8
Unipolar
0V ~ 1.25V
Table 4.2-2 Function of the Gain Control Bits
In the ACL-8112PG, the maximum can be changed by hardware jumper
setting. The jumper JP9 is used to change the maximum analog input
range form
±
5V or
±
10V. If the JP9 is set as
±
5V, the analog input ragne
is listed as below.
G3
G2 G1 G0
GAIN
Analog Input Range
0
0
0
0
1
±
5V
0
0
0
1
2
±
2.5V
0
0
1
0
4
±
1.25V
0
0
1
1
8
±
0.625V
0
1
0
0
16
±
0.3125V
Table 4.2-3 Analog Input Range ( max. is
±
5V)
If the JP9 is set as
±
5V, the analog input ragne is listed as below
G3
G2 G1 G0
GAIN
Analog Input Range
0
0
0
0
1
±
10V
0
0
0
1
2
±
5V
0
0
1
0
4
±
2.5V
0
0
1
1
8
±
1.25V
0
1
0
0
16
±
0.625V
Table 4.2-4 Analog Input Range (max. is
±
10V)
Содержание ACL-8112 Series
Страница 1: ...NuDAQ ACL 8112 Series Enhanced Multi Functions Data Acquisition Cards User s Guide ...
Страница 4: ......
Страница 40: ...32 Registers Format 1 1 1 1 1 000 Unipolar N A Table 4 2 1 Function of the Gain Control Bits ...
Страница 44: ...36 Registers Format Base 14 DO15 DO14 DO13 DO12 DO11 DO10 DO9 DO8 ...
Страница 46: ...38 Registers Format Base 2 Counter 2 Register R W Base 3 8254 CONTROL BYTE ...
Страница 49: ...Operation Theorem 41 mode control register BASE 11 The different transfer modes are specified as follows ...
Страница 61: ...C Language Library 53 ErrCode _8112_Initial CARD_2 A8112B_DG 0x220 if ErrCode ERR_NoError exit 0 ...
Страница 71: ...C Language Library 63 ...
Страница 81: ...C Language Library 73 Example See Demo Program AD_Demo4 C ...
Страница 85: ...C Language Library 77 ERR_AD_INTNotSet Example See demo program AD_Demo2 C ...