Delta Electronics DVP06AD-S User Manual

Warning
CH1
-10V~+1 0V
CH6
CH6
100K
AG
AG
24+
24-
100 or less)
(
DC/DC
+15V
Voltage inp ut
Shielding cable* 1
COM
COM
COM
COM
COM
*1: When performing analog input, p
lease isolate other power wirings.
Installation & Wiring
parameter
heat dissipation as shown
22-16 AWG
<1 .5mm
parameter
CH2
sheet when setting OF FSET and
Register for storing all error status.
+00
-8,000
e
1
d
ita
o
p
u
t
4,
2
A
(CR#18 ~ CR#23) and GAIN value (CR#24 ~ CR#29).
Please read this instruction carefully before use. DO NOT tough any terminal when the power is switched on. Switch off the power before wiring. DVP06AD-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 touch any internal circuit in 1 minute after the power is switched off. Make sure the groud terminal is correctly grounded in order to prevent electromagnetic interference.
Introduction
ENGLISH
 Model Explanation & Peripherals
Thank you for choosing Delta DVP series. The analog signal input module DVP06AD-S is able to receive 6
points of external analog signal inputs (both in voltage and current) and convert the signals into 14-bit digital ones. It is able to read and write the data in the module through FROM/TO instructions given by the program of DVP-PLC SS/SA/SX/SC/SV series MPU. There are 49 16-bit control registers in the module.
The user can select voltage or current output by wiring. Range of voltage output: ±10V DC (resolution:
1.25mV). Range of current output: ±20mA (resolution: 5µA).
 Product Profile & Outline
1. POWER, ERROR, A/D indicator
3
3.0090.00
1
25.20
2
3.00
 External Wiring
Current i nput
-20mA~+2 0mA
Shielding cable* 1
Connect ed to termina l of the power module
Earth
4
60.00 3.40 5
6
8
7
2
Unit: mm
CH1
V+ I+
*4
COM
V+
*2
I+
COM
*3
System gr ounding
60.00
DIN rail clip
3.00
9
12
10
11
104.7K
250
100K
104.7K
250
Coverter
2.
3. Terminals Extension unit/module mounting hole
4.
5. Nameplate Extension unit/module connectio n port
6.
7. Extension unit/module fixing cl ip DIN rail (35mm)
8.
9. RS-485 communicati on port Extension unit/module fixing notch
10.
11. Power input port
12. Extension unit/module connectio n port
DVP06AD-S
AG
-15V
V+
I+
V+
I+
V+
I+
COM
V+
I+
V+
I+
V+
I+
*2: When connecting to current signals, please make sure to short-circuit “V+” and “I+” terminals.
*3: Please connect the terminal on both the power module and DVP06AD-S to the system earth point and ground the
system contact or connect it to the cover of power distribution cabinet.
*4: If the ripples at the loaded input terminal are too significant that causes noise interference on the wiring, connect the
wiring to 0.1 ~ 0.47µF 25V capacitor.
Note: DO NOT wire empty terminals
Specifications
 Functions
Analog/Digital (6A/D) module
Power supply voltage 24V DC (20.4V DC ~ 28.8V DC) (-15% ~ +20%)
Analog input channel 6 channels/module
Range of analog input ±10V ±20mA
Range of digital conversion
Resolution 14 bits (1
Input impedance 200K or more 250
Overall accuracy
Response time 3ms × the number of channels
Isolation Isolation between digital area and analog area. No isolation among channels.
Range of absolute input ±15V ±32mA
Digital data format 13 significant bits out of 16 bits are available; in 2’s complement.
Average function Yes. Available for setting up in CR#2 ~ CR#7; range: K1 ~ K20.
Self-diagnosis Upper and lower bound detection/channel
Communication mode (RS-485)
When connected to DVP-PLC MPU in series
Voltage input Current input
±8,000 ±4,000
=1.25mV) 13 bits (1
LSB
±0.5% when in full scale (25°C, 77°F)
±1% when in full scale in the range of 0 ~ 55°C, 32 ~ 131°F
ASCII/RTU mode.
Communication speed: 4,800/9,600/19,200/38,400/57,600/115,200 ASCII data format: 7-bit, even bit, 1 stop bit (7, E, 1)
RTU data format: 8-bit, even bit, 1 stop bit (8, E, 1)
RS-485 cannot be used when connected to PLC MPU in series.
The modules are numbered from 0 to 7 automatically by their distance from MPU. Maximum 8 modules are allowed to connect to MPU and will not occupy any digital I/O points.
=5µA)
LSB
 Others
Max. rated power consumption
Operation/storage
Vibration/shock immunity
 Mounting Arrangements and Wiring Notes
How to install DIN rail
DVP-PLC can be secured to a cabinet by using the DIN rail of 35mm in height and 7.5mm in depth. When mounting PLC to DIN rail, be sure to use the end bracket to stop any side-to-side movement of PLC and reduce the chance of wires being loosen. A small retaining clip is at the bottom of PLC. To secure PLC to DIN rail, place the clip onto the rail and gently push it up. To remove it, pull the retaining clip down and gently remove PLC from DIN rail, as shown in the figure.
Wiring
Control Registers
RS-485
CR
#
address
#0 H’4000 ○R Model name
#1 H’4001 ○R/W Input mode setting
CR#1: The working mode of the 6 channe ls in the analog input module. There are 4 modes for each channel w hich can be set up separately. For example, if the user needs to set up CH1: m ode 0 (b2 ~ b0=00) and CH2: mode 1 (b 5 ~ b3=01), CH3: mode 2 (b8 ~ b6=10), CH4: mode 3 (b11 ~ b9=11), CH5: mode 0 ( b11 ~ b9=00), CH6: mode 1 (b11 ~ b9=01), CR#1 has to be set as H’04EA and the higher bits (b12 ~ b15) have to be reserved. Default value=H’0000.
#2 H’4002
#3 H’4003
#4 H’4004
CR#2 ~ CR#4: Range of settings in CH1 ~ CH6: K1 ~ K20. The s ettings of average times of the signals at CH1 ~ CH6. Range: K1 ~ K20. For example, if the average time at CH1 is to be set as K10 and CH2 as K18, CR#2 has to be set as H’120A. CR#3 ~ 4 apply the sam e rule. The default setting of each ch annel=K10. Default settings of CR#2 ~ CR#4 are all H’0A0A.
#6 H’4006
#7 H’4007
#8 H’4008
#9 H’4009
#10 H’400A
#11 H’400B
CR#6 ~ CR#11: The average of the signal s at CH1~CH6 obtained from the settin gs in CR#2~CR#4. For example, if the settings in CR#2~CR#4 is 10, the content in CR#6~CR#11 will be the average of the most rec ent 10 signals at CH1~CH6.
24V DC (20.4V DC ~ 28.8V DC) (-15% ~ +20%), 2W, supplied by external power.
Operation: 0°C ~ 55°C (temperature); 50 ~ 95% (humidity); pollution 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)
1. Use 22-16AWG (1.5mm) single or multiple core wire on I/O wiring terminals. The specification of the terminal is shown in the figure on the left. The PLC terminal screws shall be tightened to 1.95 kg-cm (1.7 in-lbs).
2. DO NOT place the I/O signal wires and power supply wire in the same wiring duct.
3. Use 60/75 ºC copper wires only.
Latched Register content b15 b14 b13 b12 b11 b10 b9 b8 b7 b6 b5 b4 b3 b2 b1 b0
R/W
CH1 ~ CH6
R/W
Average times setting
R/W
R C H1 input average
R CH 2 input average
R CH 3 input average
R CH 4 input average
R CH 5 input average
R CH 6 input average
Power supply
Environment
Please install PLC in an enclosure with sufficient space around it to allow
in the figure.
Set by the system. Data length: 8 bits (b7 ~ b0). DVP06AD-S model co de=H’C8.
Reserved CH6 CH5 CH4 CH3 CH2 CH 1
Input mode: Default=H’000 0. Mode 0: Voltage input (-10V ~ +10V) Mode 1: Voltage input (-5V ~ +10V) Mode 2: Current input (-12m A ~ +20mA) Mode 3: Current input (-20m A ~ +20mA)
CH2 CH1
CH4 CH3
CH6 CH5
Average of input signals at CH1 ~ CH6
D
DD
DVP
MP
D
D > 50 mm
RS-485
CR
Latched Register content b15 b14 b13 b12 b11 b10 b9 b8 b7 b6 b5 b4 b3 b2 b1 b0
#
address
#12 H’400C
#13 H’400D
#14 H’400E
#15 H’400F
#16 H’4010
#17 H’4011
#18 H’4012
#19 H’4013
#20 H’4014 ○R/W Adjus ted OFFSET value of CH3
#21 H’4015
#22 H’4016
#23 H’4017
#24 H’4018
#25 H’4019 ○R/W Adjus ted GAIN value of CH2
#26 H’401A ○R/W Adjus ted GAIN value of CH3
#27 H’401B
#28 H’401C
#29 H’401D
CR#18 ~ CR#29: Please n ote that: GAIN value – OFFSET value=+800 (current) When G AIN – OFFSET is small (steep oblique), the resolu tion of input signal will be fin er and variation on the digital value will be gre ater. When GAIN – OFFSET is big (gradual obliqu e), the resolution of input signal will be roug her and variation on the digital value wil l be smaller.
#30 H’401E
CR #30: Error status value (s ee the table below):
#31 H’401F
#32 H’4020
#33 H’4021
CR for input mode, setting of average times, OFFSET value and GAIN value will b e reset after returning to default settings.
#34 H’4022
#35 ~ #48
Symbols: : Latched (when written in throug h RS-485 communication).
LSB (Least Significant Bit): 1. For voltage input: 1
Voltage input mode:
Current input mode:
R CH 1 input present value
R CH 2 input present value
R CH 3 input present value
R CH 4 input present value
R CH 5 input present value
R CH 6 input present value
R/W Adjusted OFFSET value of CH1
R/W Adjusted OFFSET value of
R/W Adjusted OFFSET value of CH4
R/W Adjusted OFFSET value of CH5
R/W Adjusted OFFSET value of CH6
R/W Adjusted GAIN value of CH1
R/W Adjusted GAIN value of CH4
R/W Adjusted GAIN value of CH5
R/W Adjusted GAIN value of CH6
R Err or status
Error status Content b15 ~ b8 b7 b6 b5 b4 b3 b2 b1 b0
Abnormal power sup ply K1 (H’1) 0 0 0 0 0 0 0 1
Incorrect mode setting 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
Abnormal digital range K32 (H’20) 0 0 1 0 0 0 0 0
Incorrect average times setting K64 (H’40) 0 1 0 0 0 0 0 0
Instruction error K128 (H’80)
Note: Each error status is determined by the corresponding bit (b0 ~ b7) and there may b e more than 2 error s
occurring at the same time. 0=normal; 1=error
R/W Communication address setti ng
Communication speed (bau d
R/W
rate) setting
Return to default setting;
R/W
OFFSET/GAIN tuning authorization
R F irmware version
For system use
: Non-latched. R: Able to read data by FROM instructi on or RS-485 communication. W: Able to write data by TO instruction or RS -485 communication.
CR#0 ~ CR#34: The corresponding parameter addresses H’4000 ~ H’4022 are for users to read/write data
by RS-485 communication. When using RS-485, the user has to separate the module with MPU first.
a. Function codes: 03’H (read register data); 06’H (write 1 word datum to register); 10’H (write many words
data to register).
b. Latched CR should be written by RS-485 communication to stay latched. CR will not be latched if written
by MPU through TO/DTO instruction.
2. For current input: 1
Present value of input sign als at CH1 ~ CH6
OFFSET settings at CH1 ~ CH6. Default=K0; Unit: LSB. When voltage input, range: K-4,000 When current input, rang e: K-4,000 Please refer to this i nstruction GAIN.
GAIN settings at CH1 ~ CH6. Default=K4,000; Unit: LSB. When voltage input, range: K-3,200 When current input, rang e: K-3,200 Please refer to this instruction sheet when setting OFFSET and GAIN.
~ +12,000
(voltage) or +800
LSB
LSB
See the table of error status for more information.
Reserved
1 0 0 0 0 0 0 0
For setting RS-485 com munication address. Range: 01 ~ 254. D efault=K1.
For setting up RS-485 c ommunication speed: 4,800/ 9,600/ 19,200/ 38,400/ 57,600/ 115,200bps. ASCII data format: 7-bit, even bit, 1 stop bit (7, E, 1) . RTU data format: 8-bit, even bit, 1 stop bit (8, E, 1). b0: 4,800 bps. b1: 9,600 bps (default). b2: 19,200 bps. b3: 38,40 0 bps. b4: 57,600 bps. b5: 115,200 bps. b6 ~ b13: Reserved. b14: High/low b it exchange of CRC checksum (only valid in RTU mode). b15: Switch between ASCII/RT U mode.
Return to default CH6 CH5 CH4 CH3 CH2 CH1
Take the setting of CH1 for example:
1. b0: Switch for upper/lower bound alarm on the input value for the channel. 0=disable d; 1=enabled (default).
2. b1: OFFSET/GAIN tuning. 0=forbidden; 1=allowed (default).
3. When b12 ~ b15=1, all val ues in CH1 ~ CH6 will return to default settings. b12 ~ b15 will return to 0 automatically after the setting is completed.
Displaying the curr ent firmware version in hex, e.g. version
1.00 is indicated as H’0100 .
=10V/8,000=1.25mV.
LSB
=20mA/4,000=5µA.
LSB
Adjusting A/D Conversion Curve
CR#1 mode 0: GAIN=5V (4,000
ut l
ig
Mode 0
-
-
4,
4mA
00
2V
GAINOFFSET
000
Volta ge in put
Mode 3
current inpu t
0
Mod
6V5V
10V
Mode
20m
GAIN
CR#1 mode 1: GAIN=6V (4,800
GAIN:
OFFSET:
GAIN - OFFSET: Range: +800
CR#1 mode 2: GAIN=20mA (4,000
CR#1 mode 3: GAIN=20mA (4,000
GAIN:
OFFSET:
The voltage input value when the digital input value=4,000. Range: -3,200
The voltage output value when the digital input value=0. Range: -4,000
The current input value when the digital input value=+4,000. Range: -3,200
The current input value when the digital input value=0. Range: -4,000
GAIN - OFFSET: Range: +800
+4,
000
0
-6V-10V
+4, 000
-12mA-20mA 0
OFFSET
). OFFSET=0V (0
LSB
). OFFSET=2V (1,600
LSB
~ +16,000
LSB
~ +4,000
LSB
~ +12,000
LSB
). OFFSET=4mA (800
LSB
). OFFSET=0mA (0
LSB
~ +10,400
LSB
~ +4,000
LSB
~ +6,400
LSB
.
LSB
.
LSB
.
LSB
.
LSB
.
LSB
.
LSB
The user can adjust the OFFSET/GAIN curves according to the actual needs by changing the OFFSET value
LSB
LSB
LSB
LSB
LSB
~ K4,000 ~ K4,000
~ K16,000 ~ K10,400
).
LSB
LSB
LSB
).
LSB
).
.
LSB
.
LSB
LSB
LSB
~ +6,400
).
使使
(OPEN TYPE)
/
. .
14 49
使
±20mA (
LSB
3
3.0090.00
1
25.20
2
3.00
-10V~ +10V
-20mA ~+ 20mA
( 10 0 )
1 2 3
4
/
(6A/D)
24V DC (20.4V DC ~ 28.8V DC) (-15% ~ +20%)
6/
±10V ±20mA
±8,000 ±4,000
14 bits (1LSB=1.25mV) 13 bits (1LSB=5µA)
200K 250
3ms ×
±15V ±32mA
16
(RS-485)
DVP-PLC
/
/
使使/
DVP
DVP06AD-S
5µA)
(:
)
6
DVP-PLC SS/SA/SX/SC/SV
CR (Control Register)
±10V DC (
3.00
3.40
9
12
10
11
104.7K
100K
AG
104.7K
100K
AG
+15V
DC/D C
AG
-15V
0.1 ~ 0.47µF 25V
滿
滿
13 bits
8 bits
60.00
10.
11.
12.
CH1
CH6
K1 ~ K20)
(4,800/9,600/19,200/38,400/57,600
7 bits
1 stop bit (8, E, 1)
4
60.00 5
6
8
7
2
mm
CH1
V+
250
I+
*4
COM
*1
CH6
V+
*2
250
I+
COM
*1
24+
*3
24-
V+
I+
DVP06AD-S
(Voltage input)
±0.5% (25°C, 77°F)
±1% (0 ~ 55°C, 32 ~ 131°F)
(CR#2 ~ CR#7
/
ASCII/RTU
/115,200)ASCII
RS-485
使
078
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)
16 bits
1.25mV)
1.
2. DIN
3.
4.
/
5.
6.
/
7.
/
8. DIN
(35mm)
9. RS-485
/ /
DVP06AD-S
V+ I+
COM
V+ I+
COM
V+ I+
COM
V+ I+
COM
V+ I+
COM
V+ I+
COM
(Current input)
1 stop bit (7, E, 1)RTU
PLC
2
FROM/TO
I/O
22-16AW G
< 1.5mm
5V
GAIN
CH1
COM
COM
CH6
24-
+15V
-15V
COM
22-1 6A WG
< 1.5 mm
+8,0 00
OFF SE T
-4,0 00
DIN
35mmDIN
PLC
PLC
CR
RS-485
#0 H’4000
#1 H’4001
CR#1
CH1 ~ CH6
CH4
(b12 ~ b15)
#2 H’4002
#3 H’4003
#4 H’4004
CR#2 ~ CR#4
CH1
#6 H’4006
#7 H’4007
#8 H’4008
#9 H’4009
#10 H’400 A
#11 H’400 B
CR#6 ~ CR#11
1010
#12 H’4 00C
#13 H’400D
#14 H’400E
#15 H’400F
#16 H’4010
#17 H’4011
#18 H’4012
#19 H’4013
#20 H’4014
#21 H’4015
#22 H’4016
#23 H’4017
#24 H’4018
#25 H’4019
#26 H’401 A
#27 H’401 B
#28 H’401 C
#29 H’401D
CR#18 ~ CR#29
#30 H’401E
CR#30
O/G K8 (H’8) 0 0 0 0 1 0 0 0
#31 H’401F
#32 H’4020
PLC
PLCPLC
/使
1.
2.
3.
使
PLC
60/75°C
22-16AWG (1.5mm)
PLC
1.95 kg-cm (1.7Ib-in)
PLC
D
DD
DVP
MP
D
D > 50 mm
CR
R
R/W
3 (b11 ~ b9=11)CH5
R/W
R/W
R/W
K10
R
R
R
R
R
R
R
R
R
R
R
R
R/W
R/W
R/W
R/W
R/W
R/W
R/W
R/W
R/W
R/W
R/W
R/W
R
K1 (H’1) 0 0 0 0 0 0 0 1
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
K128 (H’80)
R/W
R/W
b15 b14 b13 b12 b11 b10 b9 b8 b7 b6 b5 b4 b3 b2 b1 b0
8
CH1 ~ CH6
CH1
CH2
CH3
CH4
CH5
CH6
CH1
CH2
CH3
CH4
CH5
CH6
CH1調OFFSET
CH2調OFFSET
CH3調OFFSET
CH4調OFFSET
CH5調OFFSET
CH6調OFFSET
CH1調GAIN
CH2調GAIN
CH3調GAIN
CH4調GAIN
CH5調GAIN
CH6調GAIN
K64 (H’40) 0 1 0 0 0 0 0 0
0 1 2 3
CH1
0 (b2 ~ b0=00)CH2
0 (b11 ~ b9=00)CH6
CH1 ~ CH6
K10CH2
H’0A0A
CH1 ~ CH6
CH1 ~ CH6
CH1 ~ CH6
GAINOFFSET = +800
(Baud rate)
CR#2 ~ CR#4
CH1 ~ CH6
CH1 ~ CH6
使
OFFSETGAIN
CH1 ~ CH6
使
OFFSETGAIN
b15 ~ b8 b7 b6 b 5 b4 b3 b2 b1 b0
b0 ~ b7
01
RS-485
57,600 bps, 115,200 bps bit (7, E, 1)RTU
b04,800 bps (/)
b19,600 bps (/) (
b219,200 bps (/)
b338,400 bps (/)
b 457,600 bps (/)
b 5115,200 bps (/)
b6 ~ b13
b14CRC
b15ASCII/RTU
(b7 ~ b0)DVP06AD-S
CH6 CH5 C H4 CH3 CH2 CH1
H’0000
(-10V ~ +10V)
(-6V ~ +10V) (-12mA ~ +20mA)
(-20mA ~ +20mA)
1 (b5 ~ b3=01)CH3
1 (b11 ~ b9=01)
CH2 C H1
CH4 C H3
CH6 C H5
K18
CR#2H’120A, CR#3 ~ 4
OFFSET
K-4,000
K-4,000
使
GAIN
K-3,200 K-3,200
使
~ +12,000
() +800
LSB
LSB
1 0 0 0 0 0 0 0
RS-485
ASCII
(RTU
K0
~ K4,000
LSB
~ K4,000
LSB
~ K16,000
LSB
~ K10,400
LSB
01 ~ 254
8 bits
)
2 (b8 ~ b6=10)
CR#1H’04E4
K1 ~ K20
LSB
LSB
K4,000
LSB
LSB
~ +6,400
()
LSB
LSB
K1
4,800, 9,600, 19,200 bps, 38,400 bps,
7 bits
1 stop bit (8, E, 1)
)
=H’C8
LSB
CR
RS-485
#33 H’4021
LSB
1 stop
R/W
CR#33
#34 H’4022
R
#35 ~ #48
R
使
W
使TO
LSB (Least Significant Bit)
CR#0 ~ CR#34
1.
(Function)03’H
2.
CR
調
A/D
+8,0 00
+4,0 00
0
-10V
-6V
+4,000
-12mA-20mA 0
OFFSE T
調
OFFSET
使使
线
(OPEN TYPE)
线
/线
14 49
使线
±20mA (
3
3.0090.00
1
25.20
2
3.00
线
-10V~+10V
-20mA~+20mA
b15 b14 b13 b12 b11 b10 b9 b8 b7 b6 b5 b4 b3 b2 b1 b0
CH6 CH5 CH4 CH3 CH2 CH1
CH1
調
使
1.
b0
1
b1
16
RS-485
FROM
2.
H’4000 ~ H’4022
RS-485
CR#1
0
CR#1
1
GAIN
6V
2V
10V
OFFSET
-4,0 00
-8,0 00
-4,000
4mA
3
2
20mA
GAIN
(CR#18 ~ CR#23)
OFFSET
GAINOFFSET
CR#1
CR#1
GAIN
OFFSET
GAINOFFSET
A/D
0
調0
b12 ~ b15
1
b12 ~ b15
RS-485
RS-485
1
LSB
1
LSB
使
06’H
1
0
OFFSETGAINCR#
1.00 H’0100
=10V/8,000=1.25mV
=20mA/4,000=5μA
RS-485
word
0
GAIN=5V (4,000
1
GAIN=6V (4,800
-3,200
0
-4,000
+800
2
GAIN=20mA (4,000
3
GAIN=20mA (4,000
-3,200
0
-4,000
使
(CR#24 ~ CR#29)
+800
GAIN
使使/
(:
)
DVP
DVP06AD-S
6
DVP-PLC SS/SA/SX/SC/SV
5µA)
60.00
线
线
*3
(
100 )
*1
*1
CH1
*4
*2
CR (Control Register)
4
5
6
8
7
2
mm
104.7K
V+
250
I+
104.7K
V+
250
I+
24+
9
11
AG
AG
DC/DC
3.00
12
10
100K
100K
AG
±10V DC (
60.00
3.40
CH6
(
CH1 ~ CH6
10’H
TO/DTO
), OFFSET=0V (0
LSB
), OFFSET=2V (1,600
LSB
4,000
~ +16,000
LSB
LSB
~ +4,000
LSB
LSB
~ +12,000LS)
LSB
), OFFSET=4mA (800
LSB
), OFFSET=0mA (0
LSB
+4,000
~ +10,400
LSB
LSB
~ +4,000
LSB
LSB
~ +6,400
)
LSB
LSB
調
16 bits
1.25mV)
1.
2. DIN
3.
4.
/
5.
6.
/
7.
/
DIN
(
8.
9. RS-485
10.
/
11.
12.
/
DVP06AD-S
V+
I+ COM V+
I+ COM V+
I+
V+
I+ COM V+
I+ COM V+
I+ COM
1
1)
LSB
35mm)
RS-485
words
)
LSB
LSB
FROM/TO
1线 2 3
4线
线
/
(6A/D)
24V DC (20.4V DC ~ 28.8V DC) (-15% ~ +20%)
±10V ±20mA
±8,000 ±4,000
14 bits (1
200K 250
3ms ×
±15V ±32mA
16
(RS-485)
DVP-PLC
/
/
线
DIN
35mmDIN
线
)
LSB
)
)
CR
RS-485
#0 H’4000
#10 H’400 A
#11 H’400 B
R
#1 H’4001
R/W
CR#1
CH1 ~ CH6
CH4
3 (b11 ~ b9=11)CH5
(b12 ~ b15)
#2 H’4002
#3 H’4003
#4 H’4004
CR#2 ~ CR#4
#6 H’4006
#7 H’4007
#8 H’4008
#9 H’4009
CR#6 ~ CR#11
1010
R/W
R/W
R/W
CH1
K10
R CH1
R CH2
R CH3
R CH4
R CH5
R CH6
V+
I+
DVP06AD-S
(Voltage input)
0.1 ~ 0.47µF 25V
6/
=1.25mV) 13 bits (1
LSB
±0.5% (25°C, 77°F)
±1%
(CR#2 ~ CR#7
/
/115,200)ASCII
使
078
(TEST Ea)
(0 ~
55°C, 32 ~ 131°F)
ASCII/RTU
8 bits
14 bits
K1 ~ K20)
1 stop bit (8, E, 1)
7 bits
13 bits
(4,800/9,600/19,200/38,400/57,600
24V DC (20.4V DC ~ 28.8V DC) (-15% ~ +20%), 2W,
0°C ~ 55°C ()50 ~ 95% (湿)
-25°C ~ 70°C ()5 ~ 95%
湿
IEC 61131-2, IEC 68-2-6 (TEST Fc)/IEC 61131-2 & IEC 68-2-27
PLCPLC
1. /
2.
3.
PLC
PLC
PLC
线使
PLC
线线线线 使
60/75°C
线
PLC
22-16AWG (1.5mm)
1.95 kg-cm (1.7Ib-in)
线线
CR
b15 b14 b13 b12 b11 b10 b9 b8 b7 b6 b 5 b4 b3 b2 b1 b0
CH1 ~ CH6
K10CH2
CH1 ~ CH6
CH1
0 (b11 ~ b9=00)CH6
CH1 ~ CH6
H’0A0A
CH1 ~ CH6
8
0 1 2 3
0 (b2 ~ b0=00)CH2
CH1 ~ CH6
(b7 ~ b0)DVP06AD-S
CH6 CH5 CH4 CH3 C H2 CH1
H’0000
(-10V ~ +10V)
(-6V ~ +10V)
(-12mA ~ +20mA)
(-20mA ~ +20mA)
1 (b5 ~ b3=01)CH3
1 (b11 ~ b9=01)
CH2 CH1
CH4 CH3
CH6 CH5
K18
CR#2 ~ CR#4
K1 ~ K20
CR#2H’120A, CR#3 ~ 4
(Current input)
=5µA)
LSB
1 stop bit (7, E, 1)RTU
PLC
2
PLC
D
DD
DVP
MP
D
D > 50 mm
=H’C8
2 (b8 ~ b6=10)
CR#1H’04E4
CR
RS-485
#12 H’400C
R CH1
#13 H’400D
R CH2
#14 H’400E
R CH3
#15 H’400F
R CH4
#16 H’4010
R CH5
#17 H’4011
R CH6
#18 H’4012
R/W CH1OFFSET
#19 H’4013
R/W CH2OFFSET
#20 H’4014
R/W CH3OFFSET
#21 H’4015
R/W CH4OFFSET
#22 H’4016
R/W CH5OFFSET
#23 H’4017
R/W CH6OFFSET
#24 H’4018
R/W CH1GAIN
#25 H’4019
R/W CH2GAIN
#26 H’401 A
R/W CH3GAIN
#27 H’401 B
R/W CH4GAIN
#28 H’401C
R/W CH5GAIN
#29 H’401D
R/W CH6GAIN
CR#18 ~ CR#29
线 线
#30 H’401E
R
CR#30
K1 (H’1) 0 0 0 0 0 0 0 1
K4 (H’4) 0 0 0 0 0 1 0 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
RS-485
I/O
K32 (H’20) 0 0 1 0 0 0 0 0
K128 (H’80)
#31 H’401F
R/W
#32 H’4020
R/W
#33 H’4021
R/W
CR#33
#34 H’4022
R
#35 ~ #48
R
使
W
使TO
LSB (Least Significant Bit)
CR#0 ~ CR#34
1.
(Function)03’H
2.
CR
調
A/D
+4,0 00
0
-6V-10V
+4, 00 0
-12 mA-20 mA 0
OFFSET
b15 b14 b13 b12 b11 b10 b9 b8 b7 b6 b 5 b4 b3 b2 b1 b0
CH1 ~ CH6
GAINOFFSET = +800
b15 ~ b8 b7 b6 b5 b4 b3 b2 b1 b 0
K64 (H’40) 0 1 0 0 0 0 0 0
b0 ~ b7
01
(Baud rate)
16
使
RS-485
FROM
1.
H’
4000 ~
RS-485
CR#1
0
CR#1
1
GAIN
6V
5V
2V
10V
GAI NO FFS ET
3
20m A
GA IN
(CR#18 ~ CR#23)
2
OFFSET
GAINOFFSET
CR#1
CR#1
GAIN
OFFSET
GAINOFFSET
-4,0 00
-8,0 00
4m A
CH1 ~ CH6
OFFSET
使
OFFSETGAIN
CH1 ~ CH6
使
OFFSETGAIN
LSB
1 0 0 0 0 0 0 0
RS-485
RS-485
115,200 bps
1)RTU
b04,800 bps (/)
b19,600 bps (/) (
b219,200 bps (/)
b338,400 bps (/)
b 457,600 bps (/)
b 5115,200 bps (/)
b6 ~ b13
b14CRC
b15ASCII/RTU
CH1
b0
0
1
b1
0
b12 ~ b15
1
b12 ~ b15
RS-485
RS-485
1
=10V/8,000=1.25mV2.
LSB
H’
4022
使
06’H
K0
K-4,000
K-4,000
使
GAIN
K-3,200
K-3,200
使
~ +12,000
() +800
LSB
4,800, 9,600, 19,200bps, 38 ,400 bps, 57,600 bps,
ASCII
8 bits
(RTU
CH6 C H5 CH4 CH3 CH2 CH1
1
0
OFFSETGAINCR#
1.00H’0100
RS-485
word
0
GAIN=5V (4,000
1
GAIN=6V (4,800
-3,200
0
-4,000
+800
2
GAIN=20mA(4,000
3
GAIN=20mA(4,000
-3,200
0
-4,000
A/D
GAIN
+800
线使
(CR#24 ~ CR#29)
~ K4,000
LSB
~ K4,000
LSB
~ K16,000
LSB
~ K10,400
LSB
LSB
01 ~ 254
K1
1 stop bit (8, E, 1)
)
(
CH1 ~ CH6
), OFFSET=0V (0
LSB
), OFFSET=2V (1,600
LSB
4,000
~ +16,000
LSB
~ +4,000
LSB
~ +12,000
LSB
), OFFSET=4mA(800
LSB
), OFFSET=0mA (0
LSB
+4,000
~ +10,400
LSB
~ +4,000
LSB
~ +6,400
LSB
LSB
LSB
K4,000
LSB
LSB
~ +6,400
()
LSB
7 bits
1 stop bit (7, E,
)
1
1)
1
=20mA/4,000=5µA
LSB
10’H
TO/DTO
)
LSB
LSB
LSB
LSB
LSB
LSB
LSB
RS-485
LSB
LSB
words
)
LSB
)
LSB
LSB
)
线
Loading...