Delta Electronics DVP06XA-H2 User Manual

Warning
CH1
CH4
CH4
AG
Voltage i nput
COM
CH5
CH5
COM
CH
24+
24-
DC/DC
+15V
-15V
Volt age o utput
(100 or less )
parameter
parameter
. If the analog output exceeds 10V, both analog inp ut value
485 communication addres s.
bps; b4: 57,600 bps; b5: 115,200 bps; b6 ~ b13: reserved; b14:
-2,00 0
GAIN
OFFSET
Digital out put
-1,00 0
Digital output
OFFS ET
Voltage o utput
OFFSE T
Current output
CH4
COM
Please read this instruction sheet carefully before use. DO NOT touch any terminal when the power is switched on. Switch off the power before wiring. DVP06XA-H2 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.
the wiring again before switching on the power.
DO NOT touch 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.
ENGLISH
Introduction
 Model Explanation & Peripherals
Thank you for choosing Delta DVP series PLC. DVP06XA-H2 is able to receive 4 points of analog input signals (voltage or current) and convert them into 12-bit digital signals. DVP06XA-H2 receives 2 groups of 12-bit digital data from PLC MPU and converts them into 2 points of analog signal for output (in voltage/current).
 You can select voltage or current input by wiring. Range of voltage input: ±10V DC (resolution: 5mV).
Range of current input: ±20mA (resolution: 20µA).
 You can also select voltage or current output by wiring. Range of voltage output: 0V ~ +10V DC
(resolution: 2.5mV), Range of current output: 0mA ~ 20mA (resolution: 5µA).
 Product Profile (Indicators, Terminal Block, I/O Terminals)
1
DIN rail (35mm)
2
Connection port for extension unit/module
3
Model name
4
POWER, ERROR, A D indicator
5
DIN rail clip
Unit: mm
6
Terminals
7
Mounting hole
8
I/O terminals
9
Connection port for extension unit/module
 External Wiring
-10V ~ +10V
Current input
-20mA ~ +20mA
Shield ing cable * 1
Shield ing cable * 1
100K
CH1
V+
250
I+
*3
*2
100K
COM
AG
100K
V+
250
I+
100K
COM
*1: When performing analog input, please isolate
other power wirings.
*2: Short-circuit V+ and I+ terminal when
connecting current signals.
*3: If the ripples at the input voltage cause noise
interference, connect the wiring to 0.1 ~
0.47µF 25V capacitor.
24V 0V
D - V + I + COM
D + V +
CH1 CH3 CH5
CH2 CH4 CH6RS-485
I + V + I + COM V + I +
V + I + V + I + COM
8
0V~+ 10V
*5
AC mo tor dri ve Reco rder Scale val ve...
AC mo tor dri ve Reco rder
Scale val ve... Termin al of powe r mod ule
Ear th
Shiel din g cable *1
Curre nt output
0mA~20 mA
Shiel din g cable *4
24V DC
V+ I+
CH
6
V+ I+
Conv erte r
*4: When performing analog output, please isolate
other power wirings.
*5: If the ripples at the loaded output are too
significant that cause noise interference, connect the wiring to 0.1 ~ 0.47µF 25V
6
capacitor.
*6: Please connect the terminal on both the
power module and DVP06XA-H2 to the system earth point and ground the system contact or
AG
connect it to the cover of power distribution cabinet.
Note: DO NOT wire empty terminal .
Specifications
Analog/Digital (AD) Voltage input Current input
Power supply voltage 24V DC (20.4V DC ~ 28.8V DC) (-15% ~ +20%)
Analog input channel 4 channels/module Range of analog input ±10V ±20mA
Range of digital conversion ±2,000 ±1,000
Resolution 12 bits (1
Input impedance 200K or higher 250
Overall accuracy
Responding time 3ms × the number of channels
Isolation Between analog and digital channels
Range of absolute input ±15V ±32mA Digital data format 11 significant bits out of 16 bits are availab le; in 2’s complement
Average function Yes; available for setting up in CR#2 ~ CR#5; rang e: K1 ~ K20
Self-diagnosis Upper and lower bound detection/channel
Digital/Analog (DA) Voltage output Current output
Analog output channel 2 channels/module Range of analog output 0 ~ 10V 0 ~ 20mA
Range of digital data 0 ~ 4,000 0 ~ 4,000
Resolution 12 bits (1
Overall accuracy
Output impedance 0.5 or lower
Response time 3ms × the number of channels
Max. output current 20mA (1K ~ 2M) ­Tolerable load impedance - 0 ~ 500
Digital data format 11 significant bits out of 16 bits are availab le; in 2’s complement
Isolation
Protection
Communication mode (RS-485)
When connected to DVP-PLC MPU in series
 Other Specifications
Max. rated power consumption
Operation/storage
Vibration/shock immunity
= 5mV) 11 bits (1
LSB
±0.5% when in full scale (2 5°C, 77°F) ±1% when in full scale wi thin the range of 0 ~ 55°C, 32 ~ 131°F
= 2.5mV) 12 bits (1
LSB
±0.5% when in full scale (2 5°C, 77°F) ±1% when in full scale wi thin the range 0 ~ 55°C, 32 ~ 131°F
Internal circuit and anal og output terminals are isolated by optica l coupler. No isolation among anal og channels. The voltage output is protected by short circuit. Please also be a ware that being short circuit for too long period of time ma y cause damage on internal circuit. The current output can be open circuit.
ASCII/RTU mode. Communication speed: 4,800 ~ 115,200 bps. 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 wh en connected to PLC MPU.
The modules are numbered from 0 to 7 automaticall y by their distance from MPU. No. 0 is the closest to MPU and No. 7 is the furthest. Maximum 8 modules ar e allowed to connect to MPU and will not occup y any digital I/O points.
24V DC (20.4V DC ~ 28.8V DC) (-15% ~ +20%)., 3.5W s upplied by external power
Operation: 0°C ~ 55°C (temperature); 50 ~ 95% (humidi ty); 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)
Power supply
Environment
LSB
LSB
= 20µA)
= 5µA)
Control Register
RS-485
CR
#
address
#0 H’40C8
#1 H’40C9
CR#1: b0 ~ b11 are used for setting up the working mode of the 4 channels in analog input (A/D). There are 4 m odes for each channel which c an be set up separately. For example, if the user needs to set up CH1: mode 0 (b2 ~ b0 = 000), CH2: mode 1 (b5 ~ b3 = 001) , CH3: mode 2 (b8 ~ b6 = 010), and CH 4: mode 3 (b11 ~ b9 = 011), b0 ~ b11 have to be set to H688. b12 ~ b15 are used for setting up the working mode of the 2 channels in analog output (D/A). There are 4 modes for each channel which c an be set up separately. For example, if the user needs to set up CH5: mode 2 (b13 ~ b12 = 10) and CH6: mode 1 (b15 ~ b 14 = 01), b12 ~ b15 have to be se t to CH5. Default value = H’0000.
#2 H’40CA #3 H’40CB #4 H’40CC #5 H’40CD #6 H’40 CE #7 H’40 CF #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 R/W Adjus ted GAIN value of CH1 #25 H’40E1 R/W Adjus ted GAIN value of CH2 #26 H’40E2 #27 H’40E3
Register content b15 b14 b13 b12 b11 b10 b9 b8 b7 b6 b5 b4 b3 b2 b1 b0
Latched
R Model name
R/W I/O mode setting
R/W CH1 average time
R/W CH2 average time
R/W CH3 average time
R/W CH4 average time
R CH1 inpu t average
R CH2 input average
R CH3 input average
R CH4 input average
R/W CH5 output value
R/W CH6 output value
R CH1 inpu t present value
R CH2 inpu t present value
R CH3 input present value
R CH4 input present value
R/W Adjusted OFFSET value of CH1
R/W Adjusted OFFSET value of CH2
R/W Adjusted OFFSET value of CH3
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 CH 3
R/W Adjusted GAIN value of CH 4
Set up by the s ystem. DVP06XA-H2 model code = H’6604 You can read the model name from the program and see if the extension module exists.
CH6 CH5 CH4 CH3 CH2 CH1 Input mode (CH1 ~ CH4) : Mode 0: Voltage input (-10V ~ +10V); Default = H’0000. Mode 1: Voltage input (-6V ~ +10V). Mode 2: Current input (-12mA ~ +20mA). Mode 3: Current inp ut (-20mA ~ +20mA) Output mode (CH5 ~ CH6) : Mode 0: Voltage output (0V ~ 10V). Mode 1: Voltage output (2V ~ 10V). Mode 2: Cur rent output (4mA ~ 20mA). Mode 3: Current output (0mA ~ 20mA).
Range of settings in CH 1 ~ CH4: K1 ~ K20. Default = K10. Please note that the average tim e settings at CR#2 ~ CR#5 only need to be written in o nce.
Average of input signals at CH1 ~ CH4. For example, if the settings in CR#2 ~ CR#5 are 10, the content in CR#6 ~ CR#9 will be the average of the most recent 10 signals at CH1 ~ CH4.
Output value at CH5 ~ CH6. Range: K0 ~ K4,000. Default = K0. Unit: LSB.
Present value of input signals at CH1 ~ CH4.
OFFSET settings at CH1 ~ CH4. Default = K0; Unit: LSB. When voltage input, range: K-1,000 ~ K1,000. When current input, rang e: K-1,000 ~ K1,000.
OFFSET settings at CH5 ~ CH6. Range: K-2,000 ~ K2,000. Default = K0; Unit: LSB.
GAIN settings at CH1 ~ CH 4. Default = K1,000; Unit: LSB. When voltage input, range: K-800 ~ K4,000. When current input, rang e: K-800 ~ K2,600.
RS-485
CR
Latched Register content b15 b14 b13 b12 b11 b10 b9 b8 b7 b6 b5 b4 b3 b2 b1 b0
#
address Note: GAIN value - OFFSET valu e = +200 When GAIN - OFFSET is smal l (steep oblique), the resolution of input signa l will be finer and variation on the digital value will be greater. When G AIN - OFFSET is big (gradual oblique), the resolu tion of input signal will be rougher and variation on the digital value will be sm aller. #28 H’40E4
R/W Adjusted GAIN value of CH 5
#29 H’40E5
R/W Adjusted GAIN value of CH 6
Note: GAIN value - OFFSET valu e = +400
When GAIN - OFFSET is sm all (steep oblique), the resol ution of output signal will be finer and variation on the digital value will be greater. When GAIN - OFFSET is big (gradual obl ique), the resolution of output signal wil l be rougher and variation on the digital value wi ll be smaller.
#30 H’40E6
CR#30: Error status value (see the tab le below)
#31 H’40E7
#32 H’40E8
R Error status
Error status Content b15 ~ b8 b7 b6 b5 b4 b3 b2 b1 b0 Abnormal power supply K1 (H’1) 0 0 0 0 0 0 0 1 Incorrect analog input valu e K2 (H’2) 0 0 0 0 0 0 1 0 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 conversion value 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 th ere may be more th an 2 errors occurring at the
same time. 0 = normal; 1 = error.
Example: If the digital input exceeds 4,00 0, error (K2) will occur
error K2 and K32 will occur. (A/D does not sup port displaying error K2.)
R/W Communication address setti ng
R/W
#33 H’40E9 R/W
CR#33: For authorizations on some internal functions, e.g. OFFSET/G AIN tuning. The latched function wil l store the output setting in the internal memory before the power is cut off.
#34 H’40EA R Firm ware version
#35 ~ #48 For system use
Symbols: : Latched (when written in through RS-485 communication) . : Non-latched.
R: Able to read data by FROM instructi on, W: Able to write data by TO instruction or RS-485 com munication.
LSB (Least Significant Bi t): For voltage input: 1
CR#0 ~ CR#34: The corres ponding parameter addresses H’40C8 ~ H ’40EA are for you to read/write data by RS-48 5 communication. When usi ng RS-485, You have to separate the module with MPU first.
a. Communication ba ud rate: 4,800/9,600/19,200/38,400/57,600/115,200 bps . b. Modbus ASCII/RTU comm unication protocols: ASCII data format (7-bit, even bit, 1 stop bit (7, E, 1)); RTU data
format (8-bit, even bit, 1 sto p bit (8, E, 1)). c. Function: H’03 (read r egister data); H’06 (write 1 word datum to register); H’10 (write many word data to register). d. Latched CR should be written by RS-485 communication to stay latched. CR will no t be latched if written b y MPU
through TO/DTO instruction.
Temperature/Digital Characteristic Curve
 Adjusting A/D Conversion Curve at CH1 ~ CH4
+2,000
+1,000
0
-6V-10V
Voltage input mode
Current input mode
OFFSET value (CR#18 ~ C R#21) and GAIN value (CR#24 ~ CR #27).
-1,000
+1,000
-12mA-20mA 0
OFFSE T
You can adjust the OFFSET/GAIN curve of voltage/current inp ut mode according to the actual needs by changing the
 Adjusting D/A Conversion Curve at CH5 ~ CH6
10V
Mode 1
6V
GAIN
5V
2V
0
+2,00 0 +4,00 0
Voltage output mode
20mA
Mode 2
12mA
GAIN
10mA
4mA
0
+2,0 00 +4,0 00
Current output mode
You can adjust the OFFSET/GAIN curve of voltage/current output mode according to the actu al needs by changing
the OFFSET value (CR#14 ~ CR#15) and GAIN value (CR#18 ~ CR#19).
~ +3,000
LSB
~ +6,000
LSB
Communication speed (bau d rate) setting
Returning to default setting; OFFSET/GAIN tuning authorization
For voltage output: 1
Mode 0
6V5V2V
LSB
CR#1 mode 0 G AIN = 5V (1,000
CR#1 mode 1 G AIN = 6V (1,200
Mode 1
GAIN
Voltage input
10V
OFFSET
GAIN - OFFSET Range: +200
CR#1 mode 2 G AIN = 20mA (1,000
Mode 3
Mode 2
CR#1 mode 3 G AIN = 20mA (1,000
GAIN
Current input
4mA
20mA
GAIN
OFFSET
GAIN - OFFSET Range: +200
CR#1 mode 0 GAIN = 5V (2,000
CR#1 mode 1
Mode 0
GAIN
OFFSET
Digita l input
GAIN - OFFSET
CR#1 mode 2
CR#1 mode 3 GAIN = 10mA (2,000
Mode 3
GAIN
OFFSET
Digital input
GAIN - OFFSET
(voltage) or +200
LSB
(voltage or current).
LSB
~ +1,600
(current).
LSB
LSB
GAIN settings at CH5 ~ CH 6. Range: K0 ~ K4,000. Default = K2,000; Unit: LS B.
Register for storing all error status. See the table of error status for more information.
Reserved
1 0 0 0 0 0 0 0
For setting RS­Range: 01 ~ 254. Defaul t = K1. For setting up communi cation speed: 4,800 ~ 115,200bps. b0: 4,800 bps; b1: 9,600 bps (d efault); b2: 19,200 bps; b3: 38,400
high/low bit exchange of C RC checksum (only valid in RTU mode); b15 = 0: ASCII mode; b15 = 1: RTU mode. ASCII data format: 7-bit, even bit, 1 stop bit (7, E, 1). RTU data format: 8-bit, even bit, 1 stop bi t (8, E, 1) Default = H’0002.
b15 b14 b13 b12 b11 b10 b9 b8 b7 b6 b5 b4 b3 b2 b1 b0
CH6 CH5 CH4 CH3 CH2 CH1
Default = H’0000. Take the setting of CH1 ~ CH4 for example:
1. When b0 = 0, the user is allo wed to tune CR#18 (OFFSET ) and CR#24 (GAIN) of CH1. When b0 = 1, the user is not allowed to tune CR #18 (OFFSET) and CR#24 (GAIN) of CH1.
2. b1 represents whether the OFFSET/GAIN tuning registers are latched. b1 = 0 (default, latc hed); b1 = 1 (non-latched).
3. When b2 = 1, all s ettings will return to default values. Take the setting of CH5 for the settings of CH5 ~ CH6: When b13 and b12 = 00: adjustable, latched; 01: adjustable, non-latched 10: not adjustable; 11: returning to default setting and reset b13 and b12 as 0.
Displaying the current firm ware version in hex; e.g. version
1.0A is indicated as H’010A.
= 10V/2,000 = 5mV. For current input: 1
= 10V/4,000 = 2.5mV. For current inp ut: 1
LSB
The voltage input value when the d igital output value = K4,000. Range: -800
The voltage output value when digital input value = K0. Range: -1,000
The current output value when digi tal input value = K1,000. Range: -800
The current output value when digi tal input value = K0. Range: -1,000
GAIN = 6V (2,400
The voltage output value when digital input value = K2,000. Range: 0
The voltage output value when digital input value = K0. Range: -5V ~ +5V (-2,000
Range: +400
GAIN = 12mA (2,400
The current output value when digi tal input value = K2,000. Range: 0
The current output value when digi tal input value = K0. Range: -10mA ~ +10mA (-2,000
Range: +400
). OFFSET = 0V (0
LSB
). OFFSET = 2V (400
LSB
LSB
~ +1,000
LSB
~ +3,000
LSB
LSB
LSB
LSB
~ +1,000
LSB
~ +1,600
LSB
). OFFSET = 0V (0
LSB
). OFFSET = 2V (800
LSB
~ +4,000
LSB
~ +6,000
LSB
LSB
LSB
~ +4,000
LSB
~ +6,000
LSB
= 20mA/1,000 = 20µA.
LSB
= 20mA/4,000 = 50µA.
LSB
~ +4,000
LSB
.
LSB
.
LSB
). OFFSET = 4mA (200
). OFFSET = 0mA (0
~ +2,600
LSB
.
LSB
.
LSB
.
LSB
~ +2,000
LSB
.
LSB
). OFFSET = 4mA (800
). OFFSET = 0mA (0
.
LSB
LSB
.
LSB
.
.
LSB
~ +2,000
).
LSB
).
LSB
).
LSB
).
LSB
).
LSB
).
LSB
).
).
LSB
).
LSB
).
LSB
使使
(OPEN TYPE)

1
2
3
4
5
DVP-PLC
2 使 使
2.5mV
DIN (35mm)
DIN
-10V~ +10V
-20mA ~+20 mA
...
...
12 bits (1
12 bits (1
DVP
±20mA
CH1
*3
*1
*1
0V~+10 V
*5
*1
0mA~20mA
*4
24V DC
( )
100
(AD)
24V DC (20.4V DC ~ 28.8V DC) (-15% ~ +20%)
4/
±10V ±20mA
±2,000 ±1,000
200K 250
±0.5% 25°C, 77°F
3ms ×
±15V ±32mA
16
(DA)
2
0 ~ 10V 0 ~ 20mA
0 ~ 4,000 0 ~ 4,000
±0.5% (25°C, 77°F)
0.5Ω or
3ms ×
20mA (1K ~ 2M) -
- 0 ~ 500
16
(RS-485)
078
使使/
DVP06XA-H2
4
12
20µA
0mA ~ 20mA
5µA
±10V DC
0V ~ +10V DC
mm
6
100K
V+
250
I+
100K
COM
AG
100K
V+
250
*2
I+
100K
COM
AG
CH5
V+ I+
CH
6
V+ I+
COM
DC/DC
24+ 24-
= 5mV) 11 bits (1
LSB
CR#2 ~ CR#5
7-bit
1)
= 2.5mV) 12 bits (1
LSB
ASCII/RTU
1 stop bit (7, E, 1)RTU
PLC
7
8
9
CH1
CH4
CH5
CH
6
+15V
AG
-15V
滿
11 bits
K1 ~ K20
滿
11 bits
(4,800 ~ 115,200 bps)ASCII
RS-485
使
1 2V+
3
4 5
25V
6
= 20µA)
LSB
±1% 0 ~ 55°C, 32 ~ 131°F
= 5µA)
LSB
±1% (0 ~ 55°C, 32 ~ 131°F)
8-bit
PLC
212
CH1 CH3 CH 5
CH2 CH 4 CH6RS-485
8
0.1 ~ 0.47µF 25V
滿
滿
5mV
24V 0V
D - V + I + COM
D + V +
I + V + I + CO M V + I +
V + I + V + I + COM
I+
0.1 ~ 0.47μF
DVP06XA-H2
1 stop bit (8, E,
I/O
-2,000
6V
OFFSET
OFFS ET
OFFSE T
OFFSET
-1,000
OFF SET
OFFS ET
CR
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 ~ CR#27
#28 H’40E4
#29 H’40E5
CR#28 ~ CR#29
#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
OFFSET/GAIN K8 (H’8) 0 0 0 0 1 0 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)
(K2)
#31 H’40E7
#32 H’40E8
#33 H’40E9
CR#33
使調
#34 H’40EA
#35 ~ #48
R
使
LSB (Least Significant Bit)
CR#0 ~ CR#34
24V DC (20.4V DC ~ 28.8V DC) (-15% ~ +20%), 3.5W,
CR
R
R/W
CH1
b12 ~ b15H5
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
GAIN - OFFSET = +200
R/W CH5調GAIN
R/W CH6調GAIN
GAIN - OFFSET = +400
R
b15 ~ b8 b7 b6 b5 b4 b3 b2 b1 b0
K4 (H’4) 0 0 0 0 0 1 0 0
K64 (H’40) 0 1 0 0 0 0 0 0
4,000
R/W
R/W
R/W
調
R
16
FROM
1
= 10V/2,000 = 5mV
LSB
1
= 10V/4,000 = 2.5mV
LSB
H’40C8 ~ H’40EA
50 ~ 95%
5 ~ 95%
0°C ~ 55°C
-25°C ~ 70°C
IEC 61131-2, IEC 68-2-6 (TEST Fc)/IEC 61131-2 & IEC 68-2-27 (TEST Ea)
2
b15 b14 b 13 b12 b11 b10 b9 b8 b7 b6 b5 b4 b3 b2 b1 b0
DVP06XA-H2
使
CH6 CH5 CH4 CH3 CH2 CH1
(CH1 ~ CH4)
0 1 2 3
(CH5 ~ CH6)
0 2
(AD)
0 (b2 ~ b0 = 000)CH2
b0 ~ b11H’688b12 ~ b15
CH5 ~ CH6
CH1 ~ CH4
b0 ~ b7
A/D
K10
CH1 ~ CH4
1010
CH5 ~ CH6
K0
CH1 ~ CH4
CH1 ~ CH4
CH5 ~ CH6
K0
CH1 ~ CH4
~ +3,000
LSB
CH5 ~ CH6
K2,000
~ +6,000
LSB
1 0 0 0 0 0 0 0
01
(K2)
RS-485
b2
bpsb6 ~ b13
b15 = 0ASCII
1 stop bit (7, E, 1)RTU
bit (8, E, 1)
b15 b14 b13 b12 b11 b10 b9 b8 b7 b6 b5 b4 b3 b2 b1 b 0
CH6 CH5 CH4 CH3 CH2 CH1
H’0000, CH1 ~ CH4CH1
1. b00
使
1
使調
2. b1
調
b1 = 1(
)
3. b2
1,
CH5 ~ CH6CH5
00
調01調
10
調11
使
, W
使TO
1
LSB
1
LSB
使
= H’6604
(-10V ~ +10V)
3
CH5
2 (b13 ~ b12 = 10)CH6
CH1 ~ CH4
K0 ~ K4,000
+200
~ +1,600
LSB
K0 ~ K4,000
K1
b0
ASCII
調
CR#18, CR#24
b1 = 0
b13, b12
RS-485
H’0000
(2V ~ 10V)
(0mA ~ 20mA)
2 (b8 ~ b6 = 010)
(DA)
K1 ~ K20
K-2,000 ~ K2,000
K1,000
LSB
4,800 bpsb19,600 bps
RTU
8-bit
CR#18, CR#24b0
0
RS-485
(-6V ~ +10V) (-12mA ~ +20mA) (-20mA ~ +20mA)
(0V ~ 10V)
1
(4mA ~ 20mA)
1 (b5 ~ b3 = 001)CH3
CR#2 ~ CR#5
LSB
OFFSET
K0
K-1,000 ~K1,000
K-1,000 ~K1,000
OFFSET
LSB
GAIN
K-800 ~ K4,000
K-800 ~ K2,600
LSB
GAIN
LSB
LSB
10V
01 ~ 254
4,800 ~ 115,200 bps
19,200 bpsb338,400 bpsb457,600 bpsb5115,200
b14CRC
b15 = 1RTU
H’0002
CH1
CH1
調
b13, b12
1.0A H’010A
RS-485
= 20mA/1,000 = 20µA
= 20mA/4,000 = 5µA
RS-485
(K32)
LSB
1.
2.
3.
4.
CH1 ~ CH4調A/D
CH5 ~ CH6調D/A
LSB
  
  

7-bit
1 stop
1
2
/
3
4
5
4,800/9,600/19,200/38,400/57,600/115,200 bps
使
Modbus ASCII/RTU
RTU
(Function)H’03
CR
-10V
-6V
-20mA
-12mA
OFFSET (CR#18 ~ CR#21) GAIN (CR#24 ~ CR#27)
10V
6V 5V
2V
0
20mA
10mA
4mA
0
OFFSET (CR#14 ~ CR#15) GAIN (CR#18 ~ CR#19)
使使 线
(OPEN TYPE)
线 线
12 2 使线
±20mA
使线
2.5mV
DIN (35mm)
DIN
ASCII
8 bits
RS-485
1 stop bit (8, E, 1)
H’06
word
+2,000
0
+1,000
1
5V
2V0
10V
GAIN
-1,000
3
+1,000
2
0
4mA
20mA
GAIN
OFFS ET
-1,000
A/D
1
0
GAIN
+2,00 0
+4,00 0
2
3
GAIN
+2,00 0
+4,00 0
D/A
使使
CR#1
0 GAIN = 5V (1,000
CR#1
1
GAIN = 6V (1,200
GAIN
-800
K0
OFFSET
GAIN - OFFSET
CR#1
CR#1
GAIN
OFFSET
GAIN - OFFSET
使調調
CR#1
CR#1
GAIN
OFFSET
GAIN - OFFSET
CR#1
CR#1
GAIN
OFFSET
GAIN - OFFSET
使調調
-1,000
+200
2
3
0
1
2
3
LSB
GAIN = 20mA (1,000
GAIN = 20mA (1,000
-800
K0
-1,000
+200
LSB
GAIN = 5V (2,000
GAIN = 6V (2,400
0
~ +4,000
LSB
K0
-2,000
+400
LSB
GAIN = 12mA (2,400
GAIN = 10mA (2,000
0
~ +4,000
LSB
K0
-2,000
+400
LSB
DVP
DVP06XA-H2
/4
20µA
0mA ~ 20mA
5µA
mm
6
7
8
9
7bit
H’10
TO/DTO
). OFFSET = 0V (0
LSB
). OFFSET = 2V (400
LSB
K4,000
~ +4,000
LSB
~ +1,000
LSB
~ +3,000
). OFFSET = 4mA (200
LSB
). OFFSET = 0mA (0
LSB
K1,000
~ +2,600
LSB
~ +1,000
LSB
~ +1,600
). OFFSET = 0V (0
LSB
). OFFSET = 2V (800
LSB
K2,000
LSB
~ +2,000
LSB
~ +6,000
). OFFSET = 4mA (800
LSB
). OFFSET = 0mA (0
LSB
K2,000
LSB
~ +2,000
LSB
~ +6,000
PLC
±10V DC
0V ~ +10V DC
1 stop bit (7, E, 1)
word
).
LSB
LSB
LSB
LSB
LSB
LSB
LSB
LSB
).
LSB
LSB
LSB
LSB
LSB
LSB
212
24V 0V
D - V + I + CO M
D + V +
CH1 CH3 CH 5
CH2 CH 4 CH6RS-4 85
I + V + I + CO M V + I +
V + I + V + I + CO M
8
).
LSB
).
LSB
5mV
-10V ~+10 V
-20m A~+ 20mA
100K
CH1
V+
250
I+
*3
线
*1
CH4
*2
线
1*
100K
COM
AG
100K
V+
250
I+
100K
COM
AG
1线
CH1
2V+
0.1 ~ 0.47µF 25V
3线
CH4
I+
0V~+ 10V
...
...
*5
线
0mA~ 20m A
线
( )
100
(AD)
24V DC (20.4V DC ~ 28.8V DC) (-15% ~ +20%)
).
LSB
).
).
LSB
).
4/
±10V ±20mA
±2,000 ±1,000
12 bits (1
200K 250
± 0.5% 25°C, 77°F
3ms ×
±15V ±32mA
16
(DA)
2
0 ~ 10V 0 ~ 20mA
0 ~ 4,000 0 ~ 4,000
12 bits (1
± 0.5% (25°C, 77°F)
0.5Ω or
3ms ×
20mA (1K ~ 2M) -
- 0 ~ 500
16
(RS-485)
DVP-PLC
078
CR
RS-485
#0 H’40C8
R
#1 H’40C9
R/W
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’40D B
#20 H’40DC
#21 H’40DD
#22 H’40DE
#23 H’40DF
#24 H’40E0
#25 H’40E1
#26 H’40E2
#27 H’40E3
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
R/W CH1GAIN
R/W CH2GAIN
R/W CH3GAIN
R/W CH4GAIN
CH5
V+ I+
COM
*1
CH6
V+ I+
COM
*4
24+
DC24 V
DC/DC
24-
4线
CH5
5线
CH6
6
+15V
AG
-15V
25V
线
0.1 ~ 0.47µF
DVP06XA-H2
= 5mV) 11 bits (1
LSB
线
7-bit
11 bits
CR#2 ~ CR#5
= 2.5mV) 12 bits (1
LSB
11 bits
ASCII/RTU
1 stop bit (7, E, 1)RTU
PLC
24V DC (20.4V DC ~ 28.8V DC) (-15% ~ +20%), 3.5W,
0°C ~ 55°C
-25°C ~ 70°C
b12 ~ b15H5
IEC 61131-2, IEC 68-2-6 (TEST Fc )/IEC 61131-2 & IEC 68-2-27 (TEST Ea)
CR
b15 b14 b 13 b12 b11 b10 b 9 b8 b7 b6 b5 b4 b3 b2 b1 b0
使
CH6 CH5 CH4 CH3 CH2 CH1
0 1 2 3
0 2
(AD)
CH1
0 (b2 ~ b0 = 000)CH2
b0 ~ b11H688b12 ~ b15
CH1 ~ CH4
CH1 ~ CH4
1010
CH5 ~ CH6
K0
CH1 ~ CH4
CH1 ~ CH4
CH5 ~ CH6
K0
CH1 ~ CH4
±1% 0 ~ 55°C, 32 ~ 131°F
K1 ~ K20
±1% (0 ~ 55°C, 32 ~ 131°F)
(4,800 ~ 115,200 bps)ASCII
RS-485
使
50 ~ 95%
湿
5 ~ 95%
湿
DVP06XA-H2
(CH1 ~ CH4)
(-10V ~ +10V) (-6V ~ +10V) (-12mA ~ +20mA) (-20mA ~ +20mA)
(CH5 ~ CH6)
(0V ~ 10V)
(4mA ~ 20mA)
CH5 ~ CH6
H’0000
K10
OFFSET
K-1,000 ~K1,000
K-1,000 ~K1,000
OFFSET
LSB
GAIN
K-800 ~ K4,000
K-800 ~ K2,600
= 20µA)
LSB
= 5µA)
LSB
8-bit
2
= H’6604
1
3
1 (b5 ~ b3 = 001)CH3
CH5
CR#2 ~ CR#5
K0 ~ K4,000
LSB
K0
1 stop bit (8, E, 1)
H’0000
(DA)
2 (b13 ~ b12 = 10)CH6
K1 ~ K20
CH1 ~ CH4
K-2,000 ~ K2,000
K1,000
(2V ~ 10V)
(0mA ~ 20mA)
2 (b8 ~ b6 = 010)
I/O
LSB
CR
LSB
RS-485
GAIN - OFFSET = +200
线
#28 H’40E4
R/W CH5GAIN
#29 H’40E5
R/W CH6GAIN
GAIN - OFFSET = +400
线
#30 H’40E6
CR#30
#31 H’40E7
#32 H’40E8
#33 H’40E9
CR#33
#34 H’40EA
#35 ~ #48
LSB (Least Significant Bit)
CR#0 ~ CR#34
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
OFFSET/GAIN K8 (H’8) 0 0 0 0 1 0 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)
(K2)
R/W
R/W
R/W
使
R
R
使
1.
2.
使
Modbus ASCII/RTU
1)RTU
3.
(Function)H’03
4.
CR
CH1 ~ CH4A/D
-10V
-20mA
OFFSET (CR#18 ~ CR#21) GAIN (CR#24 ~ CR#27)
CH5 ~ CH6D/A
10V
6V 5V
2V
0
20mA
12mA
4mA
0
OFFSET (CR#14 ~ CR#15) GAIN (CR#18 ~ CR#19)
b15 b14 b 13 b12 b11 b10 b 9 b8 b7 b6 b5 b4 b3 b2 b1 b0
~ +3,000
+200
LSB
LSB
CH5 ~ CH6
~ +6,000
LSB
LSB
b15 ~ b8 b7 b6 b5 b4 b3 b2 b1 b0
K64 (H’40) 0 1 0 0 0 0 0 0
b0 ~ b7
01
4000
(K2)
16
FROM
1
= 10V/2,000 = 5mV
LSB
1
= 10V/4,000 = 2.5mV
LSB
4,800/9,600/19,200/38,400/57,600/115,200 bps
RS-485
A/D
RS-485
b2
bpsb6 ~ b13 b15 = 0ASCII
1 stop bit (7, E, 1)RTU
E, 1)
b15 b14 b13 b12 b11 b10 b9 b8 b7 b6 b5 b4 b3 b2 b1 b 0
CH6 CH5 CH4 CH3 CH2 CH1
H’0000, CH1 ~ CH4CH1
1. b00
1
使
2. b1
b1 = 1(
)
3. b2
1,
CH5 ~ CH6CH5
00
01
10
11
使
, W
使TO
H’40C8 ~ H’40EA
8 bits
使
H’06
~ +1,600
LSB
GAIN
LSB
K2,000
线
1 0 0 0 0 0 0 0
10V
4,800 ~ 115,200 bps
19,200 bpsb338,400 bpsb457,600 bpsb5115,200
b14CRC
b15 = 1RTU
H’0002
使
CH1
1 stop bit (8, E, 1)
RS-485
1
= 20mA/1,000 = 20µA
LSB
1
= 20mA/4,000 = 5µA
LSB
RS-485
ASCII
7
word
+2,000
+1,000
-6V
+1,00 0
-12mA
GAIN
GAIN
线
0
6V5 V2V
0
10V
GAIN
-1,000
-2,000
3
0
4mA
OFFSE T
GAIN
线
1
0
+2,00 0
+4,00 0
2
3
+2,00 0
+4,00 0
1
20mA
2
A/D
D/A
CR#1
0 GAIN = 5V (1,000
CR#1
1 GAIN = 6V (1,200
GAIN
K0
OFFSET
GAIN - OFFSET
CR#1
CR#1
GAIN
OFFSET
GAIN - OFFSET
2 GAIN = 20mA (1,000
3 GAIN = 20mA (1,000
K0
线使线
CR#1
0 GAIN = 5V (2,000
CR#1
1 GAIN = 6V (2,400
GAIN
K0
OFFSET
GAIN - OFFSET
CR#1
CR#1
GAIN
OFFSET
GAIN - OFFSET
2 GAIN = 12mA (2,400
3 GAIN = 10mA (2,000
K0
线使线
线
LSB
K0 ~ K4,000
01 ~ 254
K1
b0
4,800 bpsb19,600 bps
ASCII
8-bit
CH1
CR#18, CR#24b0
CR#18, CR#24
b1 = 0
b13, b12
b13, b12
0
1.0A H’010A
RS-485
bits
H’10
TO/DTO
). OFFSET = 0V (0
LSB
). OFFSET = 2V (400
LSB
K4,000
-800
~ +4,000
LSB
LSB
-1,000
~ +1,000
LSB
+200
~ +3,000
LSB
LSB
). OFFSET = 4mA (200
LSB
). OFFSET = 0mA (0
LSB
K1,000
-800
~ +2,600
LSB
LSB
-1,000
~ +1,000
LSB
+200
~ +1,600
LSB
LSB
). OFFSET = 0V (0
LSB
). OFFSET = 2V (800
LSB
K2,000
0
~ +4,000
LSB
LSB
-2,000
~ +2,000
LSB
0
-2,000
LSB
LSB
~ +4,000
LSB
~ +6,000
). OFFSET = 4mA (800
LSB
). OFFSET = 0mA (0
LSB
K2,000
LSB
~ +2,000
LSB
~ +6,000
LSB
LSB
LSB
LSB
+400
+400
(K32)
RTU
1 stop bit (8,
RS-485
1 stop bit (7, E,
LSB
LSB
LSB
LSB
LSB
).
word
).
LSB
LSB
7-bit
).
).
LSB
).
LSB
).
).
LSB
).
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