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Delta DVP06XA-S2 User Manual

Delta DVP06XA-S2
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Vibration/shock immunity
International standards: IEC 61131-2, IEC 68-2-6 (TEST Fc)/IEC 61131-2 & IEC 68-2-27 (TEST Ea)
CR (Control Register)
CR#
RS-485
parameter
address
Latched Register name
b15
b14
b13
b12
b11
b10
b9
b8
b7
b6
b5
b4
b3
b2
b1
b0
CH6 CH5 CH4 CH3 CH2 CH1
#0 H’40C8 R Model type
For system use
Data length: 8 bits (b7 ~ b0)
Model code of DVP06XA-S: H’CC
Model code of DVP06XA-S2: H’D4
Users can read the model type by means of a program to check if the
extension module exists.
#1 H’40C9 R/W Input mode setting
Input mode setting: (CH1 ~ CH4)
Mode 0: Voltage input mode (-10V ~ +10V)
Mode 1: Voltage input mode (-6V ~ +10V)
Mode 2: Current input mode (-12mA ~ +20mA)
Mode 3: Current input mode (-20mA ~ +20mA)
Output mode setting: (CH5 ~ CH6)
Mode 0: Voltage output mode (0V ~ 10V)
Mode 1: Voltage mode (2V ~ 10V)
Mode 2: Current output mode (4mA ~ 20mA)
Mode 3: Current output mode (0mA ~ 20mA)
CR#1: b11~b0 are used to set 4 internal channels working mode of analog input module (AD). b12~b15 are used to set 2 channels working mode of
analog output module (DA). Every channel has four modes that can be set individually. For example: if setting CH1 to mode 0 (b2~b0=000), CH2 to
mode 1 (b5~b3=001), CH3: mode 2 (b8~b6=010), CH4: mode 3 (b11~b9=011), b0~b11 need be set to H’688. If setting CH5: mode 2 (b13~b12=10),
CH6: mode 1 (b15~b14=01), b12~b15 need be set to H’6. Factory Setting is H’0000.
#2
H’40CA
R/W
CH1 average number
The number of readings used for “average” temperature on channels CH1 ~
CH4. Setting range is K1 ~ K20 and factory setting is K10.
#3
H’40CB
R/W
CH2 average number
#4
H’40CC
R/W
CH3 average number
#5
H’40CD
R/W
CH4 average number
#6
H’40CE
R
Average value of CH1 input signal
Display average value of CH1 ~ CH4 input signal.
Example: If CR#2 is 10, the temperature in CR#6 will be the average of the
last 10 readings on CH1.
#7
H’40CF
R
Average value of CH2 input signal
#8
H’40D0
R
Average value of CH3 input signal
#9
H’40D1
R
Average value of CH4 input signal
#10
H’40D2
R/W
CH5 output signal value
Output value of CH5 ~ CH6, the setting range is K0 ~ K4,000. The factory
setting is K0 and the unit is LSB.
#11
H’40D3
R/W
CH6 output signal value
#12
H’40D4
R
Present value of CH1 input signal
Display present value of CH1 ~ CH4 input signal
#13
H’40D5
R
Present value of CH2 input signal
#14
H’40D6
R
Present value of CH3 input signal
#15
H’40D7
R
Present value of CH4 input signal
#18 H’40DA R/W To adjust OFFSET value of CH1
Offset setting of CH1 ~ CH2. Factory setting is K0 and unit is LSB.
Voltage input: setting range is K-1,000
LSB
~ K1,000
LSB
.
Current input: setting range is K-1,000
LSB
~ K1,000
LSB
.
#19
H’40DB
R/W
To adjust OFFSET value of CH2
#20 H’40DC R/W To adjust OFFSET value of CH3
Offset setting of CH3 ~ CH4. Factory setting is K0 and unit is LSB.
Voltage input: setting range is K-1,000
LSB
~ K1,000
LSB
.
Current input: setting range is K-1,000
LSB
~ K1,000
LSB
.
#21
H’40DD
R/W
To adjust OFFSET value of CH4
#22
H’40DE
R/W
To adjust OFFSET value of CH5
Offset setting of CH5 ~ CH6. Factory setting is K0 and unit is LSB.
The setting range is K-2,000
LSB
~ K2,000
LSB
.
#23
H’40DF
R/W
To adjust OFFSET value of CH6
#24
H’40E0
R/W
To adjust GAIN value of CH1
GAIN setting of CH1~CH4. Factory setting is K1,000 and unit is LSB.
Voltage input: setting range is K-800
LSB
~ K4,000
LSB
.
Current input: setting range is K-800
LSB
~ K2,600
LSB
.
Please be notice that GAIN VALUE - OFFSET VALUE=+200
LSB
~ +3,000
LSB
(voltage) or +200
LSB
~ +1,600
LSB
(current)
#25
H’40E1
R/W
To adjust GAIN value of CH2
#26
H’40E2
R/W
To adjust GAIN value of CH3
#27 H’40E3 R/W To adjust GAIN value of CH4
#28
H’40E4
R/W
To adjust GAIN value of CH5
GAIN setting of CH5 ~ CH6. Factory setting is K2,000 and unit is LSB.
The setting range is K0 ~ K4,000.
Please be noticed that GAIN value – OFFSET value= +400
LSB
~ +6,000
LSB
(voltage or current).
#29 H’40E5 R/W To adjust GAIN value of CH6
CR#24~CR#29: If the value difference comes up small (within range), the output signal resolution is then slim and the variation is definitely larger. On
the contrast, if the value difference exceeds the range, the output signal resolution becomes larger and the variation is definitely smaller.
#30
H’40E6
R
Error status
Data register stores the error status, see error code chart for details.
CR#30 is the error code. Please refer to the chart below.
Error description
Value
b15~ b12
b11
b10
b9
b8
b7
b6
b5
b4
b3
b2
b1
b0
Abnormal power
K1 (H’1)
Reserved
0
0
0
0
0
0
0
0
0
0
0
1
The D/A output exceeds the range.
K2 (H’2)
0
0
0
0
0
0
0
0
0
0
1
0
Mode error
K4 (H’4)
0
0
0
0
0
0
0
0
0
1
0
0
Offset/gain error
K8 (H’8)
0
0
0
0
0
0
0
0
1
0
0
0
Temperature sensor error
*1
K16 (H’10)
0
0
0
0
0
0
0
1
0
0
0
0
Abnormal digital value
K32 (H’20)
0
0
0
0
0
0
1
0
0
0
0
0
Incorrect number of values averaged
K64 (H’40)
0
0
0
0
0
1
0
0
0
0
0
0
Instruction error
K128 (H’80)
0
0
0
0
1
0
0
0
0
0
0
0
The input received by CH1 is out of the range.
K256 (H’100)
0
0
0
1
0
0
0
0
0
0
0
0
The input received by CH2 is out of the range.
K512 (H’200)
0
0
1
0
0
0
0
0
0
0
0
0
The input received by CH3 is out of the range.
K1024 (H’400)
0
1
0
0
0
0
0
0
0
0
0
0
The input received by CH4 is out of the range.
K2048 (H’800)
1
0
0
0
0
0
0
0
0
0
0
0

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Delta DVP06XA-S2 Specifications

General IconGeneral
BrandDelta
ModelDVP06XA-S2
CategoryI/O Systems
LanguageEnglish

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