Delta Electronics DVP06XA-S User Manual

90.00
IN
COM
104.7K
AG
AG
Voltage input
CH5
voltage output
AC drive, recorder,
AC drive, recorder,
V+
I+
COM
V+
I+
COM
I+
COM
V+
I+
COM
V+
V+
I+
COM
V+
I+
COM
CR
Example: If CR#2 is 10, the temperature i n CR#6 will be the average of
CR
To adjust GAIN value of
To adjust GAIN value of
To adjust GAIN value of
To adjust GAIN value of
b14: switch between lo w bit and high bit of CRC code (only for RTU
(CR#18, CR#24). W hen b0=1, inhibit user to adjust OFFSET and
means if characteristic register is latched. b1=0 (factory setting,
digital out put
-2,00 0
6V
5V
Mode 1
CR#1:
Digital output
-2,000
Mode
OFFSET
Voltage output
OFFSET
Current output
Digital
IN
AG
AG
24+
24­+15V
V+
I+
COM
V+
I+
COM
I+
COM
V+
I+
COM
V+
V+
I+
COM
V+
I+
COM
Warning
Please read this instruction sheet carefully before use. DO NOT t ouch any terminal when the power is switched on. Switch off the power before wiring. DVP06XA -S is an OPEN-TYPE device and therefore should be installed in an enclosure free of airborne dust,
humidity, electric shock and vibration. The enclosure should prevent non-maintenance staff from operating the device (e.g. key or specific tools are required to open the enclosure) in case danger and damage on the device may occur.
DO NOT connect input AC power supply to any of the I /O terminals; otherwise serious damage may occur. Check all
the wiring again before switching on the power.
DO NOT t ouch the internal circuit for 1 minute after the power is switched off. Make sure the ground terminal is correctly grounded in order to prevent electromagnetic interference.
Introduction
Model Explanation & Peripherals
Thank you for choosing Delta DVP series PLC. DVP06XA-S is able to receive 4 points of analog input
signals (voltage or current) and convert them into 12-bit digital signals. DVP06XA-S receives 2 groups of 12-bit digital data from the PLC MPU and converts them into 2 points of analog signals for output (in voltage/current). There are 49 16-bit c ontrol registers (CR) in DVP06XA-S, and the data in it can be read and written by using FROM/TO instru ctions in DVP Slim series PLC MPU program.
The system version of DVP06XA-S can be updated via RS-485 communication. The power unit is
separate from it and is small in size and easy to install.
The user can select voltage or current input by wiring. Range of voltage input:
Range of current input: ±20mA (resolution: 20µA).
The use r can also select voltage or current output by wiring. Range of voltage output: 0V ~ +10V DC
(resolution: 2.5mV). Range of curr ent output: 0mA ~ 20mA (resolution: 5µA).
Product Profile & Outline
4
5
1
25.20
3.00
V+
C
I+
H
1 COM V+
C I+
H
2 COM
V+
C I+
H
3 COM
V+
C I+
H
4 COM
90.00
V+
C I+
H
5 COM
2
V+
C I+
H
6 COM
OUT
3
4.00
External Wiring
-10V~+ 10V
Shielded*1
Current input
-20mA~+ 20mA
Shielded*1
6
60.00
7
8
10
9
3
Unit: mm
104.7K
CH1
V+
250
I+
*3
COM
104.7K
CH4
V+
250
*2
I+
3.4
60.00
3.00
11
12
14
13
CH1
104.7K
CH4
Status indicator (POWER, RUN and
1. ERROR)
2. Model
3. DIN rail clip
I/O terminals
4.
5. I/O terminals layout
6. Expansion hole of the expansion unit
Specification label
7.
8. Expansion port
Expansion clip
9.
10. DIN rail location (35mm)
11. RS-485 communication port
Expansion clip
12.
13. DC power input
14. Expansion port
Note 1: Please isolate analog input and other
power wiring.
Note 2: If input signal is in current, please short
out between V+ and I+ terminals.
Note 3: If the noise interference from loaded
input wiring terminal is significant, please connect a capacitor with 0.1 ~
0.47µF 25V for noise filtering.
ENGLISH
±
10V DC (resolution: 5mV).
0V~+10V
*5
scale valve...
scale valve...
terminal of power module
Specifications
Mixed analog/digital (A/D)
Power supply voltage 24V DC (20.4V DC ~ 28.8V DC) ( -15% ~ +20%)
Analog input channel 4 channels per module
Analog input range ±10V ±20mA
Digital data range ±2,000 ±1,000
Resolution 12 bits (1
Input impedance 200K and above 250
Overall accuracy ±0.5% of full scale of 25°C (77°F). ±1% of full scale during 0 ~ 55°C (32 ~ 131°F).
Response time 3ms × channels
Isolation method There is no isolati on between channels
Absolution input range ±15V ±32mA
Digital data format 2’s complement of 16-bit, (13 si gnificant bits)
Average function Yes (CR#2 ~ CR#5 can be set and the range is K1 ~ K 4,095)
Self diagnostic function self detection
Mixed digital/analog (D/A)
Analog signal output channels 2 channel per m odule
Analog output range 0 ~ 10V 0 ~ 20mA
Digital data range 0 ~ 4,000 0 ~ 4,000
Resolution 12 bits (1
Output impedance 0.5 or lower
Overall accuracy ±0.5% of full scale of 25°C (77°F). ±1% of full scale during 0 ~ 55°C (32 ~ 131°F).
Response time 3ms × channels
Max. output current 20mA (1K ~ 2M)
Tolerance carried impedance
Digital data format 2’s complement of 16-bit, (13 si gnificant bits).
Isolation method Isolation between dig ital and analog circuitry. There is no isolation between channel s.
Protection
Communication mode (RS-485)
Connect to DVP-PLC MPU in series
shielding cable *1
current output
0mA~20mA
shielding cable *4
class 3 grounding
or less)
(100
module
module
V+
CH5
I+
COM
CH6
V+
CH6
I+
COM
+15V
DC/DC
24+
DC24V
24-
converter
AG
-15V
Voltage input Current input
Upper bound and lower bound detection per channel
Voltage input Current input
Voltage output has short circui t protection but long period of short circuit may cause internal wiring damage and current output break.
MODBUS ASCII/RTU Mode. Communication baud ra te of 4,800/9,600/19,200/38,400 /57,600/115,200. For ASCII mode, date format is 7 bits , even, 1 stop bit (7, E, 1). For RTU mode, date format is 8 bits, e ven, 1 stop bit (8, E, 1). The RS-485 is disabled when the DVP06XA-S is connecte d in series with MPU.
When DVP06XA-S modules are connected to an MPU, the modules are num bered from 0-7. 0 is the closest to the MPU and 7 is the furthest. The Maximum number of modules is 8 modules and they do not occupy any digital I/O points of the MPU.
Others
Maximum power consumption 2W at 24V DC (20.4V DC ~ 28.8V DC) (-15% ~ +20%), supplied by external power.
Operation/storage
Vibration/shock immunity
CR (Control Register)
RS-485
parameter
#
address
#0 H’40C8
#1 H’40C9
CR#1: b11 ~ b0 are used to set 4 internal channels working mode of analog i nput module (AD). b12 ~ b15 are used to set 2 channels working mode of analo g output module (DA). Every channel has four m odes that can be set individually. For example: if setting CH1 to m ode 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: m ode 2 (b13 ~ b12=10), CH6: mode 1 (b15 ~ b14=01), b12 ~ b15 need be set to H’5. Factory Setting is H’0000.
#2 H’40CA
#3 H’40CB
#4 H’40CC
#5 H’40CD
#6 H’40CE
#7 H’40CF
#8 H’40D0
#9 H’40D1
#10 H’40D2 #11 H’40D3
#12 H’40D4
#13 H’40D5
#14 H’40D6
#15 H’40D7
#18 H’40DA
#19 H’40DB
Operation: 0°C ~ 55°C (temperature); 50 ~ 95% (humidity); polluti on degree 2. Storage: -25°C ~70°C (temperature); 5 ~ 95% (humidity).
International standards: IEC 61131-2, IEC 68-2-6 (TEST Fc)/IEC 61131-2 & IEC 68-2-27 (TEST Ea)
Latched Register name
R Model type
R/W Input mode setting
CH1 average number
R/W
CH2 average number
R/W
CH3 average number
R/W
CH4 average number
R/W
Average value of CH1
R
input signal Average value of CH2
R
input signal Average value of CH3
R
input signal Average value of CH4
R
input signal
R/W CH5 output signal value
R/W CH6 output signal value
Present value of CH1
R
input signal Present value of CH2
R
input signal Present value of CH3
R
input signal Present value of CH4
R
input signal To adjust OFFSET
R/W
value of CH1 To adjust OFFSET
R/W
value of CH2
b15 b14 b13 b12 b11 b10 b9 b8 b7 b6 b5 b4 b3 b2 b1 b0
CH6 CH5 CH4 CH3 CH2 CH1
System used, data length is 8 bits (b7 ~ b0). DVP06XA-S model code = H’CC Input mode setting: (CH1 ~ CH4) Mode 0: input voltage mode (-10V ~ +1 0V). Mode 1: input voltage mode (-6V ~ +10 V). Mode 2: input current mode (-12mA ~ +20mA). Mode 3: input current m ode (-20Ma ~ +20mA). Mode 4: none use. Output mode setting: (CH5 ~ CH6) Mode 0: output voltage mode (0V ~ 10V). Mode 1: output voltage mode (2V ~ 10V). Mode 2: output curr ent mode (4mA ~ 20mA). Mode 3: output current mode (0mA ~ 20mA).
The number of readings used for “average” temperature on channels CH1 ~ CH4. Setting range is K1 ~ K4,095 and factory setting is K10.
Display average value of CH1 ~ CH4 i nput signal.
the last 10 readings on CH1.
Output value of CH5 ~ CH6 , the setting range is K0 ~ K4,000. The factory setting is K0 and the unit i s LSB.
Display present value of CH1 ~ CH4 i nput signal
Offset setting of CH1 ~ CH4. Factor y setting is K0 and unit is LSB.
Note 4: Please isolate analog output and other
DVP06XA-S
=5mV) 11 bits (1
LSB
=2.5mV) 12 bits (1
LSB
0 ~ 500
Power
supply
power wiring.
Note 5: If the noise interference from loaded
input wiring terminal is significant, please connect a capacitor with 0.1 ~
0.47µF 25V for noise filtering.
Note 6: Please connect power module
terminal and analog output modu le terminal to system earth point and make system earth point be grounded or connects to machine cover.
Warning: DO NOT wire to the No function
terminal .
Environment
=20µA)
LSB
=5µA)
LSB
RS-485
Latched Register name
parameter
#
address
#20 H’40DC
#21 H’40DD
#22 H’40DE
#23 H’40DF
#24 H’40E0
#25 H’40E1
#26 H’40E2
#27 H’40E3
#28 H’40E4
#29 H’40E5
CR#24~CR#29: If the value difference comes up small (within range), the output signal r esolution is then slim and the variation is definitely larger. On the c ontrast, if the value difference exceeds the range, the output signal resolution becomes larger and the variati on is definitely smaller.
#30 H’40E6
CR#30 is the error code. Please refer to the chart below.
Power source abnormal (low voltage alarm ) K1 (H’1) 0 0 0 0 0 0 0 1 User setting D/A output exceeds range K2 (H’2) 0 0 0 0 0 0 1 0 Setting mode error K4 (H’4) 0 0 0 0 0 1 0 0 Offset/gain error K8 (H’8) 0 0 0 0 1 0 0 0 Hardware malfunction K16 (H’10) 0 0 0 1 0 0 0 0 Digital range error K32 (H’20) 0 0 1 0 0 0 0 0 Average times setting error K64 (H’40) 0 1 0 0 0 0 0 0 Instruction error K128 ( H’80)
Note: Each error code will have corresponding bit (b0 ~ b7). Two or more errors may happen at the same time. 0 means normal
EX: if the digital input exceeds 4,0 00, error (K2) will occur. If the analog output exceeds 10V, both analog input val ue error K2 and K32 will occur. (A/D does n ot support displaying error K2.)
#31 H’40E7
#32 H’40E8
#33 H’40E9
CR#33 is used to set the in ternal function priority. For example: characteristic register. Output latched functio n will save output setting in the interna l memory before power loss.
#34 H’40EA
Symbols:○ means latched. R means can read data by using FROM instruction or RS-485.
LSB (Least Significant Bit): 1. Voltage i nput: 1
The corresponding parameters address H’40C8 ~ H’40EA of CR#0 ~ CR#34 will allo w user to read/write data via
RS-485. Function code: 03’H - read data from register. 06’H - write one word into register. 10’H - wri te multiple words into register.
 Adjust A/D Conversion Curve of CH1 ~ CH4
Voltage input mode:
Current input mode:
Use the chart above to adjust A/D conversion characteristic curve of voltage input mode and current input mode. Users can adjust conversion characteristic curve by cha nging OFFSET values (CR#18 ~ CR#21) and GAIN values (CR#24 ~ CR#27) depend on application.
Adjust D/A Conversion Curve of CH5 ~ CH6
Voltage output mode:
Current output mode:
Use the chart above to adjus t D/A conversion characteristic curve of voltage outpu t mode and current output mode. Users can adjust conversion characteristic curve b y changing OFFSET values (CR#14 ~ CR #15) and GAIN values (CR#18 ~ CR#19) depend on application.
To adjust OFFSET
R/W
value of CH3 To adjust OFFSET
R/W
value of CH4 To adjust OFFSET
R/W
value of CH5 To adjust OFFSET
R/W
value of CH6
R/W
CH1 To adjust GAIN value of
R/W
CH2 To adjust GAIN value of
R/W
CH3
R/W
CH4
R/W
CH5
R/W
CH6
Error status Data register stores the error status, see error code chart for details.
R
Error description Content b15 ~ b8 b7 b6 b5 b4 b3 b2 b1 b0
and 1 means having error.
Communication
R/W
address setting
Communication baud
R/W
rate setting
Reset to factory setting
R/W
and set characteristics adjustable priority
R Software version
#35 ~ #48 System used
means non-latched. W means can write data by using TO i nstruction or RS-485.
1. Voltage output: 1
Temperature/Digital Curve
+2,000
+1,000
-6V-10V
+2,000
-12mA-20mA
10V
6V
GAIN
5V
2V
0
20mA
12mA
GAIN
10mA
4mA
0
b15 b14 b13 b12 b11 b10 b9 b8 b7 b6 b5 b4 b3 b2 b1 b0
CH6 CH5 CH4 CH3 CH2 CH1
Voltage input: setting range is K-1,000 Current input: setting range is K-1, 000
Offset setting of CH5 ~ CH6. Factor y setting is K0 and unit is LSB. The setting range is K-2,000
GAIN setting of CH1 ~ CH4 . Factory setting is K1,000 and unit is LSB. Voltage input: setting range is K-800 Current input: setting range is K-8 00 Please be notice that GAIN VALUE - OFFSET VALUE=+200 +3,000
LSB
GAIN setting of CH5 ~ CH6 . Factory setting is K2,000 and unit is LSB. The setting range is K0 ~ K4,00 0. Please be noticed that GAIN valu e – OFFSET value= +400 +6,000
LSB
(voltage) or +200
(voltage or current).
LSB
LSB
Reserved
1 0 0 0 0 0 0 0
RS-485 communication addres s. Setting range is K1 ~ K254 and factory s etting is K1.
Communication ba ud rate (4,800 / 9,600 / 19,200 / 38,400 / 57,600 / 115,200 bps). For ASCII mode, date format is 7 bits, even, 1 stop bit (7, E, 1). For RTU mode, date format is 8 bits, even, 1 stop bit (8, E, 1). b0: 4,800 bps (bit/sec). b1: 9,600 bps (bit/sec) (factory setting). b2: 19,200 bps (bit/sec). b3: 38,400 bps (bit/sec). b4: 57,600 bps (bit/sec). b5: 115,200 bps (bit/s ec). b6 ~ b13: reserved.
mode). b15: RTU mode.
Example: Setting of CH1
1. When b0=0, user can set OFFSET and GAIN value of CH1
GAIN value of CH1 (CR#18, CR#2 4).
2. b1 latched), b1=1 (not latched).
3. b2: Set to 1 and PLC wi ll be reset to factory settings.
The setting of CH5 ~ CH6, give CH 5 setting for example (b13, b12):
00: can be adjusted, latched. 01 : can be adjusted, non-latched. 10: inhibit adjust. 11: reset to factory settings and clear b12, b13 to 0.
Display software version in hexadecimal. Example: H’010A=version
1.0A.
=10V/2,000=5mV. 2. Current input: 1
LSB
=10V/4,000=2.5mV. 2. Current output: 1
LSB
Mode 0 of CR#1: GAIN=5V (1,000
Mode 0
Mode 1 of CR#1: GAIN=6V (1,200
Voltage input value when digital output is K4,000.
GAIN:
Voltage
2V
0
GAIN
OFFSE T
-1,000
Mode
0
4mA
OFFSET
mode 1
+2,000 +4,000
Mode 2
+2,000 +4,000
input
10V
3
2
Current Input
20mA
GAIN
mode 0
Digital input
Mode 3
input
Setting range is -800
Voltage input value when digital output is 0.
OFFSET:
Setting range is -1,000
GAIN-OFFSET: Setting range is +200
Mode 2 of CR#1: GAIN=20mA (1,000
Mode 3 of
GAIN=20mA (1,000
Current input value when digital output is K4000.
GAIN:
Setting range is -800
Current input value when digital outpu t value is 0.
OFFSET:
Setting range is -1,000
GAIN-OFFSET: Setting range is +200
Mode 0 of CR#1: GAIN=5V (2,000
Mode 1 of CR#1: GAIN=6V (2,400
Voltage output value when digital input is K2,000.
GAIN:
Setting range is 0 Voltage output value when digital i nput is K0.
OFFSET:
Setting range: -2,000
GAIN-OFFSET: Setting range is +400
Mode 2 of CR#1: GAIN=12mA (2,400
Mode 3 of CR#1: GAIN=10mA (2,000
Current output value when digital input val ue is
GAIN:
K2,000. Setting range is 0 Current output value when digital input is K0. Setting
OFFSET:
range is -2,000
GAIN-OFFSET: Setting range is +400
LSB
LSB
~ K2,000
~ K4,000
LSB
~ K2,600
LSB
~ +1,600
LSB
=20mA/1,000=20µA.
LSB
), OFFSET=0V (0
LSB
), OFFSET=2V (400
LSB
LSB
LSB
LSB
LSB
LSB
LSB
), OFFSET=0V (0
LSB
), OFFSET=2V (800
LSB
~ +4,000
LSB
LSB
LSB
LSB
LSB
~ +2,000
LSB
LSB
~ K1,000
.
LSB
~ K1,000
.
LSB
.
LSB
.
LSB
.
LSB
(current)
=20mA/4,000=5µA.
LSB
LSB
LSB
~ +4,000
LSB
~ +1,000
LSB
LSB
~ +3,000
LSB
), OFFSET=4mA (200
), OFFSET=0mA (0
~ +2,600
LSB
~ +1,000
LSB
LSB
~ +1,600
LSB
LSB
.
LSB
~ +2,000
.
LSB
~ +6,000
.
LSB
), OFFSET=4mA (800
), OFFSET=0mA (0
~ +4,000
LSB
LSB
.
LSB
~ +6,000
LSB.
~
LSB
~
LSB
).
).
).
LSB
).
LSB
)
).
LSB
).
LSB
).
LSB
.
使 使
/
12 2/49
 DVP06XA-S
使
使
mV)
1
25.20
3.00
90.00
2
3
4.00
-10V ~ +10V
-20mA ~ +20mA
*5
...
...
( )
/
24V DC (20.4V DC ~ 28.8V DC) (-15% ~ +20%)
12 bits (1
200K 250
3ms ×
/
12 bits (1
0.5 or
3ms ×
(RS-485)
DVP-PLC
(OPEN TYPE)
使使 /
(
)
DVP
DVP06XA-S
/ 4
16 bits
/
±20mA (
0mA ~ 20mA (
20µA)
DVP-PLC SS/SA/SX/SC/SV
RS-485
5µA)
4
5
V+
C
I+
H
1 COM V+
C I+
H
2 COM V+
C I+
H
3 COM
V+
C I+
H
4 COM V+
C I+
H
5 COM
V+
C I+
H
6 COM
OUT
6
60.00
7
8
10
9
3
3.4
3.00
11
12
14
13
mm
-10V ~ +10V
0mA ~ 20mA
100K
CH1
V+
250
I+
*3
*1
CH4
*2
*1
CH5
V+ I+
COM
*1
CH6
V+ I+
COM
*4
DC24V
100K
COM
100K
V+
250
I+
100K
COM
CH5
CH6
DC/DC
AG
-15V
1
CH1
2V+I+
CH4
DVP06XA-S
4 5
6
(06XA)
(AD)
4/
±10V ±20mA
±2,000 ±1,000
±0.5% (25°C, 77°F)
±15V ±32mA
16
(06XA)
(DA)
2/
0 ~ 10V 0 ~ 20mA
0 ~ 4,000 0 ~ 4,000
±0.5% (25°C, 77°F)
10mA (1K ~ 2M)
16
078
=5mV) 11 bits (1
LSB
滿
(CR#2 ~ CR#5
/
LSB
滿
ASCII/RTU
1 stop bit ( 8, E, 1)
7 bits
±1% (0 ~ 55°C, 32 ~ 131°F)
11 bits
K1 ~ K4,095)
=2.5mV) 12 bits (1
±1% (0 ~ 55°C, 32 ~ 131°F)
0 ~ 500
11 bits
(4,800/9,600/19,200/38,400/ 57,600 /115,200)ASCII
1 stop bit (7, E, 1)RTU
PLC
PLC
FROM/TO
±10V DC (
0V ~ +10V DC (
1.
2.
60.00
3. DIN
4.
5.
6.
/
7.
90.00
8.
/
9.
/
10. DIN (35mm)
11. RS-485
12.
/
13.
14.
/
3
0.1 ~ 0.47µF 25V
25V
RS-485
使
212
CR(Control Register)
DVP06XA-S
=20µA)
LSB
滿
=5µA)
LSB
滿
5mV)
0.1 ~ 0.47µF
8 bits
I/O
2.5
6V5V2V
OFFSET
OFFSET
V+
I+
COM
V+
I+
COM
I+
COM
V+
I+
COM
V+
V+
I+
COM
V+
I+
COM
-1,000
OFF SE T
OFF SE T
/
/
RS-485
#0 H’40C8
#1 H’40C9
CR#1b0 ~ b11
CH1 ~ CH4
CH4
3 (b11 ~ b9=011)
1 (b15 ~ b14=01)
#2 H’40CA
#3 H’40CB
#4 H’40CC
#5 H’40CD
#6 H’40CE
#7 H’ 40CF
#8 H’ 40D0
#9 H’ 40D1
#10 H’40D2
#11 H’40D3
#12 H’40D4
#13 H’40D5
#14 H’40D6
#15 H’40D7
#18 H’40DA
#19 H’40DB
#20 H’40DC
#21 H’40DD
#22 H 40DE
#23 H’40DF
#24 H’40E0
#25 H’40E1
#26 H’40E2
#27 H’40E3
CR#24~CR27
#28 H’40E4
#29 H’40E5
CR#28~CR29
#30 H’40E6
CR#30
K1 (H’1) 0 0 0 0 0 0 0 1
K2 (H’2) 0 0 0 0 0 0 1 0
O/G K8 (H’8) 0 0 0 0 1 0 0 0
K16 (H’10) 0 0 0 1 0 0 0 0
K128 (H’80)
(K2)
#31 H’40E7
#32 H’40E8
#33 H’40E9
CR#33
使調
CR
R
R/W
b12 ~ b15H’5
R/W CH1
R/W CH2
R/W CH3
R/W CH4
R CH1
R CH2
R CH3
R CH4
R/W CH5
R/W CH6
R CH1
R CH2
R CH3
R CH4
R/W CH1調OFFSET
R/W CH2調OFFSET
R/W CH3調OFFSET
R/W CH4調OFFSET
R/W CH5調OFFSET
R/W CH6調OFFSET
R/W CH1調GAIN
R/W CH2調GAIN
R/W CH3調GAIN
R/W CH4調GAIN
GAINOFFSET=+200
R/W CH5調GAIN
R/W CH6調GAIN
GAINOFFSET=+400
R
b15 ~ b8 b7 b6 b5 b4 b3 b2 b1 b0
K4 (H’4) 0 0 0 0 0 1 0 0
K32 (H’20) 0 0 1 0 0 0 0 0
K6 4 (H’40) 0 1 0 0 0 0 0 0
4,000
A/D
R/W
(Baud rate)
R/W
R/W
調
24V DC (20.4V DC ~ 28.8V DC) (-15% ~ + 20%), 2W,
0°C ~ 55°C ()50 ~ 95% ()
-25°C ~ 70°C ()5 ~ 95%
IEC 61131-2, IEC 68-2-6 (TEST Fc)/IEC 61131-2 & IEC 68-2-27 (TEST Ea)
(AD)
CH1
b0 ~ b11H’688b12 ~ b15
b0 ~ b7
01
b15 b14 b13 b12 b11 b10 b9 b8 b7 b6 b5 b4 b3 b2 b1 b 0 CR
CH6 CH5 CH4 CH3 CH2 CH1
8 使
(CH1 ~ CH4)
0 1 2 3 4使 0 2
0 (b2 ~ b0=000)CH2
1010
K0
K2,000
(-10V ~ +10V)
(-6V ~ +10V) (-12Ma ~ +20mA)
(-20mA ~ +20mA)
(CH5 ~ CH6)
(0V ~ 10V)
(4mA ~ 20mA)
CH5 ~ CH6
H’0000
CH1 ~ CH4
K10
CH1 ~ CH4
CH5 ~ CH6
LSB
CH1 ~ CH4
CH1 ~ CH4
CH5 ~ CH6
LSB
CH1 ~ CH4
~ +3,000
() +200
LSB
LSB
CH5 ~ CH6
LSB
~ +6,000
LSB
LSB
2
(b7 ~ b0)DVP06XA-S
1
3
1 (b5 ~ b3=001)CH3
CH5
CR#2 ~ CR#5
K0 ~ K4,000
OFFSET
K0
K-1,000
~ K1,000
LSB
K-1,000
~ K1,000
LSB
OFFSET
GAIN
K-800
~ K4,000
LSB
K-800
~ K2,600
LSB
~ +1,600
LSB
GAIN
2 (b13 ~ b12=10)CH6
CH1 ~ CH4
LSB
LSB
LSB
LSB
()
LSB
K0 ~ K4,000
1 0 0 0 0 0 0 0
(K2)
10V
RS-485
115,200 bps
1)RTU
B04,800 bps (/)
B19,600 bps (/) (
B219,200 bps (/)
B338,400 bps (/)
B457,600 bps (/)
B5115,200 bps (/)
B6 ~ b13
B14CRC
b15ASCII/RTU
CH1 ~ CH4CH1
1. b00
使
1使調
2. b1
)
b1=1 (
3. b2
1
CH5 ~ CH6CH5
00
調01調
10
調11
01 ~ 254
8 bits
)
(RTU
CH1
CH1
調
(b13, b12)
K1
7 bits
1 stop bit (8, E, 1)
)
調
CR#18, CR#24
b1=0 (
4,800 / 9,600 / 19,200 bps / 38, 400 bps / 57,600 bps /
ASCII
調
)
b13, b12
= H’CC
(2V ~ 10V)
(0mA ~ 20mA)
2 (b8 ~ b6=010)
(DA)
K1 ~ K4,095
K0
K-2,000 ~ K2,000
K1,000
(K32)
1 stop bit (7, E,
CR#18, CR#24b0
0
LSB
LSB
RS-485
#34 H’40EA
LSB (Least Significant Bit)
CH1 ~ CH4調A/D
CH5 ~ CH6調D/A
  
  
1
2
3
R
#35 ~ #48
1.
CR#0 ~ CR#34
06’H
-6V-10V
+1,0 00
-12m A-20m A
OFFSET (CR#18 ~ CR#21) GAIN (CR#24 ~ CR#27)
10V
6V
GAIN
5V
2V
0
20mA
GAIN
10mA
4mA
0
OFFSET (CR#14 ~ CR#15) GAIN (CR#18 ~ CR#19)
使 使 线
(OPEN TYPE)
线 : / 线
 DVP06XA-S
90.00
线
12 2(/)49
使 线 使 线
2.5mV
3.00
/
±20mA (
4
5
25.20
IN
V+
C
I+
H 1
COM
V+
C
I+
H 2
COM
V+
C
I+
H 3
COM
V+
C
I+
H
4 COM V+
C I+
H
5
COM
V+
C I+
H
6
COM
OUT
4.00
-10V ~+1 0V
线
-20mA ~+2 0mA
线
DVP
16 bits
60.00
*1
*1
b15 b14 b13 b12 b11 b10 b9 b8 b7 b6 b5 b4 b3 b2 b1 b 0 CR
CH6 CH5 CH4 CH3 CH2 CH1
16
使
R
使
FROM
W
使TO
1.
H’40C8 ~ H’40EA
word
1
LSB
1
=10V/4,000=2.5mV2.
LSB
使
10’H
=10V/2,000=5mV2.
RS-485
words
1.0AH’010A
RS-485
RS-485
1
=20mA/1,000=20µA
LSB
1
=20mA/4,000=5µA
LSB
+2,00 0
0
+1,00 0
0
10V
GAIN
OFF SET
-1,00 0
-2,0 00
3
0
4mA
20mA
GAIN
OFFS ET
-1,0 00
A/D
1
0
+2,000
+4,000
2
3
+2,000 +4,000
D/A
1
2
CR#1
0
GAIN=5V (1,000
CR#1
1
GAIN=6V (1,200
GAIN
-800
LSB
0
OFFSET
~ +1,000
GAINOFFSET
CR#1
2
GAIN=20mA (1,000
CR#1
3
GAIN=20mA (1,000
GAIN
-800
LSB
0
OFFSET
~ +1,000
GAIN-OFFSET
使
CR#1
0
GAIN=5V (2,000
CR#1
1
GAIN=6V (2,400
GAIN
~ +4,000
K0
OFFSET
-2,000
GAIN-OFFSET
CR#1
2
GAIN=12mA (2,400
CR#1
3
GAIN=10mA (2,000
GAIN
~ +4,000
K0
OFFSET
-2,000
GAIN-OFFSET
使
), OFFSET=0V (0
LSB
), OFFSET=2V (400
LSB
1,000
~ +4,000
LSB
LSB
+200
~ +3,000
LSB
LSB
LSB
+1000
~ +2,600
LSB
LSB
+200
~ +1,600
LSB
調
), OFFSET=0V (0
LSB
), OFFSET=2V (800
LSB
K2,000
LSB
~ +2,000
LSB
LSB
+400
~ +6,000
LSB
LSB
LSB
K2000
LSB
~ +2,000
LSB
LSB
+400
~ +6,000
LSB
調
LSB
), OFFSET=4mA (200
), OFFSET=0mA (0
LSB
LSB
), OFFSET=4mA (800
), OFFSET=0mA (0
LSB
使使 /
DVP06XA-S
DVP-PLC SS/SA/SX/SC/SV
0mA ~ 20mA
6
7
CH1
V+ I+
*3
COM
CH4
V+
*2
I+
COM
/ 4
RS-485
FROM/TO
20µA)
5µA
3.4
60.00
3.00
11
8
12
10
9
250
250
14
13
3
mm
104. 7K
104. 7K
AG
104. 7K
104. 7K
AG
90.00
1线
CH1
2V+I+
3 线
CH4
PLC
212
CR(Control Register)
±10V DC
0V ~ +10V DC
1.
2.
3. DIN
4.
5.
6.
/
7.
8.
/
9.
/
10. DIN
(
11. RS-485
12.
/
13.
14.
/
0.1 ~ 0.47µF 25V
(Function)03’H
).
LSB
LSB
LSB
調
).
LSB
).
LSB
LSB
調
35mm)
).
...
...
(06XA)
/
24V DC (20.4V DC ~ 26.4V DC) (-15% ~ +10%)
-1,000
LSB
12 bits (1
).
LSB
).
-1,000
).
LSB
).
0
LSB
0
LSB
200K 250
3ms ×
LSB
(06XA)
/
12 bits (1
0.5 or
3ms ×
(RS-485)
DVP-PLC
/
/
RS-485
#0 H’40C8
#1 H’40C9
5mV
CR#1b0 ~ b11
CH1 ~ CH4
3 (b11 ~ b9=011)
1 (b15 ~ b14=01)
#2 H’40CA
#3 H’40CB
#4 H’40CC
#5 H’40CD
#6 H’40CE
#7 H’40CF
#8 H’40D0
#9 H’40D1
#10 H’40D2
#11 H’40D3
#12 H’40D4
#13 H’40D5
#14 H’40D6
#15 H’40D7
#18 H’40DA
#19 H’40DB
#20 H’40DC
#21 H’40DD
#22 H’40DE
#23 H’40DF
-10V ~ +10V
*5
CH5
V+
CH5
I+
COM
线
*1
CH6
0mA ~ 20mA
V+
CH6
I+
COM
线
*4
+15V
DC/DC
24+
DC24V
( )
(AD)
4/
±10V ±20mA
±2,000 ±1,000
±15V ±32mA
1 6
(DA)
2/
0 ~ 10V 0 ~ 20mA
0 ~ 4,000 0 ~ 4,000
±0 .5%
20mA (1K ~ 2M)
1 6
078
AG
24-
-15V
LSB
±0.5% (25°C, 77°F)
±1% (0 ~ 55°C, 32 ~ 131°F)
13 /
线
7 b
bit ( 8, E, 1)
(CR#2 ~ CR#5
(25°C, 77°F)
ASCII/RTU
K1 ~
=2.5mV) 12 bits (1
LSB
0 ~ 500
13 bits
its
PLC
4线
DVP06XA-S
5 线
25V
6
线
=5mV) 11 bits (1
b
its
K4,095)
±1%
(0 ~
55°C, 32 ~ 131°F)
(4,800/9,600/19,200/38,400/57,6 00/115,200),
1 stop bit ( 7, E, 1)RTU
RS-485
使
24V DC (20.4V DC ~ 26.4V DC) (-15% ~ + 10%), 2W,
0°C ~ 55°C ()50 ~ 95% (湿)
-25°C ~ 70°C ()5 ~ 95%
IEC 61131-2, IEC 68-2-6 (TEST Fc)/IEC 61131-2 & IEC 68-2-27 (TEST Ea)
湿
2
CR
R
R/W
b12 ~ b15H’5
R/W CH1
R/W CH2
R/W CH3
R/W CH4
R CH1
R CH2
R CH3
R CH4
R/W CH5
R/W CH6
R CH1
R CH2
R CH3
R CH4
R/W CH1OFFSET
R/W CH2OFFSET
R/W CH3OFFSET
R/W CH4OFFSET
R/W CH5OFFSET
R/W CH6OFFSET
b15 b14 b13 b12 b11 b10 b9 b8 b7 b6 b5 b4 b3 b2 b1 b0 CR
CH6 CH5 CH4 CH3 C H2 CH1
8 使 0 1 2 3 4使 0 2
(AD)
CH1
b0 ~ b11H’688b12 ~ b15
0 (b2 ~ b0=000)CH2
CH5 ~ CH6
CH1 ~ CH4
CH1 ~ CH4
1010
CH5 ~ CH6
LSB
CH1 ~ CH4
CH1 ~ CH4
CH5 ~ CH6
K0
(b7 ~ b0)DVP06XA-S
(CH1 ~ CH4)
(-10V ~ +10V)
(-6V ~ +10V) (-12mA ~ +20mA) (-20mA ~ +20mA)
(CH5 ~ CH6)
(0V ~ 10V)
(4mA ~ 20mA)
1 (b5 ~ b3=001)CH3
H’0000
K10
OFFSET
K-1,000
K-1,000
OFFSET
LSB
1
3
(DA)
CH5
2 (b13 ~ b12=10)CH6
CH1 ~ CH4
K0 ~ K4,000
K0
~ K1,000
LSB
LSB
~ K1,000
LSB
LSB
0.1 ~ 0.47µF
DVP02DA-S
=20µA)
LSB
=5µA)
LSB
8 bits
I/O
= H’CC
(2V ~ 10V)
(0mA ~ 20mA)
2 (b8 ~ b6=010)CH4
K1 ~ K4,095
K0
K-2,000 ~ K2,000
RS-485
1 stop
#24 H’40E0
R/W CH1GAIN
#25 H’40E1
R/W CH2GAIN
#26 H’40E2
R/W CH3GAIN
#27 H’40E3
R/W CH4GAIN
CR#24~CR#27
线线
#28 H’40E4
#29 H’40E5
CR#28~CR#29
线
#30 H’40E6
CR#30
O/G K8 (H’8) 0 0 0 0 1 0 0 0
#31 H’40E7
#32 H’40E8
#33 H’40E9
R/W CH5GAIN
R/W CH6GAIN
R
K1 (H’1) 0 0 0 0 0 0 0 1
K2 (H’2) 0 0 0 0 0 0 1 0
K4 (H’4) 0 0 0 0 0 1 0 0
K16 (H’10) 0 0 0 1 0 0 0 0
K32 (H’20) 0 0 1 0 0 0 0 0
K64 (H’40) 0 1 0 0 0 0 0 0
K128 (H’80)
4000
(K2)
R/W
R/W
rate)
R/W
CR#33
使
LSB (Least Significant Bit)
CH1
CH5
LSB
#34 H’40EA
R
#35 ~ #48
R
W
1.
1
LSB
1.
1
CR#0 ~ CR#34
Function03’H
LSB
~
CH4A/D
-6V-10V
+1,000
-12mA-20 mA
+2,00 0
+1,00 0
OFFSET (CR#18 ~ CR#21) GAIN (CR#24 ~ CR#27)
~
CH6D/A
10V
6V
GAI N
5V
2V
0
20mA
12mA
GAIN
4mA
0
OFFSET (CR#14 ~ CR#15) GAIN (CR#18 ~ CR#19)
b15 b14 b13 b12 b11 b10 b9 b8 b7 b6 b5 b4 b3 b2 b1 b0 CR
CH6 CH5 CH4 CH3 C H2 CH1
CH1 ~ CH4
GAIN
GAINOFFSET=+200
GAINOFFSET=+400
(A/D
(Baud
16
=10V/2,000=5mV2.
=10V/4,000=2.5mV2.
0
GAIN
OFFSET
-1,000
-2,000
0
4mA
OFFSET
1
+2,0 0 0
2
LSB
CH5 ~ CH6
K2,000
LSB
b15 ~ b8 b7 b6 b5 b4 b3 b2 b1 b0
b0 ~ b7
01
(K2)
RS-485
115,200 bps
ASCII
7 b
8 b
b04,800 bps/
b19,600 bps/
b219,200 bps/
b338,400 bps/
b457,600 bps/
b5115,200 bps/
b6 ~ b13
b14CRC
b15RTU
CH1 ~ CH4CH1
1.
b01使
0使
2. b1
b1=1
3. b2
1,
CH5 ~ CH6CH5
00
01
10
11
使
使
FROM
使TO
H’40C8 ~ H’40EA
06’H
word
线
CR#1
0
CR#1
1
GAIN
6V5V2V
10V
OFFSET
GAIN-OFFSET
CR#1
3
CR#1
2
GAIN
20mA
GAIN
OFFSET
GAIN-OFFSET
A/D
线使线
线
CR#1
CR#1
0
GAIN
OFFSET
+4, 00 0
GAIN-OFFSET
CR#1
CR#1
3
GAIN
OFFSET
+2,0 00 +4,00 0
GAIN-OFFSET
D/A
线使线
K-800
~ K4,000
LSB
K-800
~ K2,600
LSB
~ +3,000
+200
LSB
GAIN
LSB
~ +6,000
线
LSB
1 0 0 0 0 0 0 0
10V
)
1
LSB
使
0 1
2 3
0 1
2 3
01 ~ 254
4,800 / 9,600 / 19,200 bps / 38,400 bps / 57,600 bps /
its
its
1 stop bit (8, E, 1)
RTU
CH1
CH1
(b13, b12)
1.0AH’010A
RS-485
RS-485
=20mA/1,000=20µA
1
=20mA/4,000=5µA
LSB
RS-485
10’H
GAIN=5V ( 1,000
GAIN=6V ( 1,200
-800
~ +4,000
LSB
LSB
0
~ +1,000
LSB
+200
LSB
GAIN=20m A (1,000
GAIN=20m A (1,000
0
+2,600
LSB
+4,000
-1,000
~ +1,000
LSB
200
LSB
GAIN=5V (2,000
GAIN=6V (2,400
~ +4,000
LSB
K0
-2,000
~ +2,000
LSB
+400
LSB
GAIN=12mA (2,400
GAIN=10mA (2,000
0
~ +4,000
LSB
LSB
K0
-2,000
~ +2,000
LSB
+400
LSB
K1,000
LSB
LSB
~ +1,600
LSB
LSB
K0 ~ K4,000
K1
1 stop bit (7, E, 1)RTU
CR#18, CR#24b0
CR#18, CR#24
b1=0
b13, b12
words
), OFFSET=0V (0
LSB
), OFFSET=2V (400
LSB
1,000
~ +3,000
LSB
), OFFSET=4mA (200
LSB
), OFFSET=0mA (0
LSB
LSB
~ +1,600
LSB
), OFFSET=0V (0
LSB
), OFFSET=2V (800
LSB
K2,000
LSB
~ +6,000
LSB
), OFFSET=4mA (800
LSB
), OFFSET=0mA (0
LSB
K2,000
LSB
~ +6,000
LSB
LSB
(K32)
0
).
LSB
).
LSB
-1,000
).
LSB
).
LSB
-800
).
LSB
).
LSB
).
LSB
).
LSB
LSB
~
LSB
0
LSB
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