Delta Electronics DVP04TC-H2 User Manual

Warning
CH1
10 k
MUX
L -
Cold-J unction
System
, even
Digital output
Please read this instruction sheet carefully before use. Switch off the power before wiring. DVP04TC-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 damages 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 terminal when the power is switched on. Make sure the ground termnial is correctly grounded in order to prevent electromagnetic interference. Keep the wire as short as possible between RTD and PLC and the power wire as far away as possible from I/O wire
to prevent interference.
When setting the
thermocouple temperature sensor mo de, please make sure that the setting of CR#1 is correct, or it will cause
serious errors.
ENGLISH
Introduction
 Model Explanation & Peripherals
 Thank you for choosing Delta’s DVP series PLC. DVP04TC-H2 is able to receive 4 points of external
thermocouple temperature sensors (J-type, K-type, R-type, S-type, T-type) and convert them into 14-bit digital signals. Besides, through FROM/TO instructions in DVP-EH2 MPU program, the data in DVP04TC-H2 can be read or written. There are 49 16-bit control registers (CR) in DVP04TC-H2.
 DVP04TC-H2 displays temperatures in Celsius (resolution: 0.1°C) and Fahrenheit (resolution: 0.18°F).
 Product Profile (Indicators, Terminal Block, I/O Terminals)
D - L + L - L +
CH1 CH2 CH3 CH4RS-485
L - L + L - L + L -
8
Unit: mm
1
DIN rail (35mm)
2
Connection port for extension unit/module
3
Model name
4
POWER, ERROR, A/D indi cator
5
DIN rail clip
6
Terminals
7
Mounting hole
8
I/O terminals
9
Mounting port for extensi on unit/module
 External Wiring
Thermoc ouple
Shieldi ng cable *1
+
L -
-
Thermoc ouple
Shieldi ng
CH4
cable *1
+
-
*2
*3
groundi ng
Compen sation
24+ 0V
Termina l of power mo dule
Ear th
*1: The wiring used for analo g input should adopts the conn ection cable or shielding cable of thermocouple temperature sensor
J-type / K-type / R-type / S-type / T-type and should be separated from other power cable or wirings that may cause interference. The screw torque of the terminal should be 1.9 5 kg-cm (1.7 in-lbs).
*2: Terminal SLD is the ground location for noise suppression.
*3: Please connect the
contact or connect it to the cover of power distribution cabinet.
Note: DO NOT wire empty termin al . Use 60/75°C copper conductor only.
(100 or les s)
terminal on both th e power module and DVP04TC-H2 to the system ea rth point a nd ground the system
DC/ DC
5V
AG +15V
AG
-15V
Specifications
Temperature
measurement module
Power supply voltage 24V DC (20.4V DC ~ 28.8V DC) (-15% ~ +20%)
Analog output channel 4 channels/module
Applicable sensor types J-type, K-type, R-type, S-ty pe, T-type Floating thermocouple sensor
Range of input temperature
Range of digital conversion
Resolution 14 bits (0.1°C/0.18°F)
Overall accuracy
Response time 200ms × the number of channe ls
Isolation Isolation between digi tal area and analog area. No isolation among cha nnels.
Digital data format 13 significant bits out of 16 bi ts are available; in 2’s complement
Average function Yes; available for setting up in CR#2 ~ C R#5; range: K1 ~ K20
Self-diagnosis Upper and lower bound detecti on/channel
Communication mode (RS-485)
When connected to DVP-PLC MPU in series
See the table in Section 
See the table in Section 
±0.5% when in full scale (2 5°C, 77°F) ±1% when in full scale within 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 bps. ASCII data format: 7-bit, even b it, 1 stop bit (7, E, 1). RTU data format: 8-bi t, even bit, 1 stop bit (8, E, 1). RS-485 cann ot be used when connected to PLC M PU.
The modules are numbered from 0 to 7 automatically by their distance from MPU. No. 0 is the closest to MPU and No. 7 is the furthest. Maximum 8 modules are allo wed to connect to MPU and will not occupy any dig ital I/O points.
 Other Specifications
Max. rated power consumption
Operation/storage
Vibration/shock imm unity Standard: IEC61131-2, IEC 68-2-6 (TEST Fc)/IEC61131-2 & IEC 68-2-27 (TEST Ea)
24V DC (20.4V DC ~ 28.8V DC) (-15% ~ +20%), 2.5W supplied by external power.
1. Operation: 0°C~ 55°C (Temperature), 50 ~ 95% (Humidity), pol lution degree 2
2. Storage: -25°C~ 70°C (Temperature), 5 ~ 95%Humidity
Explanation
Power supply
Environment
Control Register
RS-485
CR
Latched
parameter
#
address
#0 H’4096
#1 H’4097
CR#1: The working mode of the 4 channels in the sensor s selected by the temperature measurement m odule. There are 2 modes (J-type and K-t ype) for each channel which can be set up separately. For example, if the user needs to set up CH1: mode 0 (b2 ~ b0 = 100); CH2: m ode 1 (b5 ~ b3 = 001); CH3: mode 0 (b8 ~ b6 = 000) a nd CH4: mode 1 (b11 ~ b9 =
001), CR#1 has to be set a s H0208 and the higher bi ts (b12 ~ b15) have to be reserved. The default valu e = H’0000.
#2 H’4098
#3 H’4099
#4 H’409A
#5 H’409B
#6 H’409C
24V 0V
D + SLD
SLD SLD SLD
#7 H’409D
#8 H’409E
#9 H’409F
CR#6 ~ CR#9: The averag e Celsius temperature measured at C H1 ~ CH4 obtained from the average tim e settings in CR#2 ~ CR#5. For example, i f the average time is set as 10, the content in CR#6 ~ CR#9 will be the average of the m ost recent 10 temperature signals i n Celsius at CH1 ~ CH4.
#10 H’40A0
#11 H’40A1
#12 H’40A2
#13 H’40A3
CR#10 ~ CR#13: The aver age Fahrenheit temperature measured at CH1 ~ CH 4 obtained from the average time setting s in CR#2 ~ CR#5. For example, i f the average time is set as 1 0, the content in CR#10 ~ CR#13 will be the average of the most recent 10 temperature signal s in Fahrenheit at CH1 ~ CH4.
#14 H’40A4
#15 H’40A5
#16 H’40A6
#17 H’40A7
#19 H’40A9
#20 H’40AA
#21 H’40AB
#22 H’40AC
Register content
R Model nam e
R/W Thermocouple type
R/W CH1 average time
R/W CH2 average time
R/W CH3 average time
R/W CH4 average tim e
R Average °C temp. measured at CH1
R Average °C temp. measured at CH2
R Average °C temp. measured at CH3
R Average °C temp. measured at CH4
R Average °F temp. measured at CH1
R Average °F temp. measured at CH2
R Average °F temp. measured at CH3
R Average °F temp. measured at CH4
R Present °C temp. measured at CH1
R Present °C temp. measured at CH2
R Present °C temp. measured at CH3
R Present °C temp. measured at CH4
R Present °F temp. measured at CH1
R Present °F temp. measured at CH2
R Present °F temp. measured at CH3
R Present °F temp. measured at CH4
b15 b14 b13 b12 b11 b10 b9 b8 b7 b6 b5 b4 b3 b2 b1 b0
Set up by the system. DVP04TC-H2 model code = H’6403. You can read the model name from the program and see if the extension m odule exists.
Reserved CH4 CH3 CH2 CH1
Take the setting of CH1 for example:
1. When (b2, b1, b0) is s et as (0,0,0), choose J-type
2. When (b2, b1, b0) is s et as (0,0,1), choose K-type
3. When (b2, b1, b0) is s et as (0,1,0), choose R-type
4. When (b2, b1, b0) is s et as (0,1,1), choose S-type
5. When (b2, b1, b0) is s et as (1,0,0), choose T-type
Range of settings in CH1 ~ CH4: K1 ~ K20. Default =K 10.
Please note that when PLC MPU writes in the average time by TO/DTO instruction, please use the rising/falling edge contact detection ins tructions (LDP/LDF…) in case you may not obtai n the correct average temperature.
Average Celsius temperature measured at CH1 ~ CH4. Unit: 0.1°C
Average Fahrenheit temperature measured at CH1 ~ CH4.
Unit: 0.1°F
Present Celsius temperature measured at CH1 ~ CH4. Unit: 0.1°C
Present Fahrenheit tem perature measured at CH1 ~ CH4. Unit: 0.1°F
RS-485
CR
Latched
parameter
#
address
#24 H’40AE
#25 H’40AF
#26 H’40B0
#27 H’40B1
#30 H’40B4
CR#30: Error status (see the table below)
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
Wiring to empty external contac t
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 th ere may be more than 2 errors occurring at the
same time. 0 = normal; 1 = error.
#31 H’40B5
#32 H’40B6
#33 H’40B7
#34 H’40B8
#35 ~ #48 For system use
Register content
R/W OFFSET value of CH1
R/W OFFSET value of CH2
R/W OFFSET value of CH3
R/W OFFSET value of CH4
R Error status
K2 (H’2) 0 0 0 0 0 0 1 0
R/W Communication address s etting
Communication speed ( baud rate)
R/W
setting
R/W Returning to default setting
R Firmware version
b15 b14 b13 b12 b11 b10 b9 b8 b7 b6 b5 b4 b3 b2 b1 b0
Adjustable OFFSET settings at CH1 ~ CH4. Range: -1,000 ~ +1,000 Default = K0 Unit: 0.1°C
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 RS-485 communi cation address. Range: 01 ~ 254, Default = K1.
For setting up communi cation speed: 4,800/9,600/19,200/ 38,400/57,600/115,200 bps. ASCII data format: 7-bit bit, 1 stop bit (7, E, 1). RTU data for mat: 8-bit, even bit, 1 stop bit (8, E, 1). Default: H’ 0002. b0: 4,800 bps. b1: 9,600 bps (default). b2: 19,200 bps. b3: 38,400 bps. b4: 57,600 bps. b5: 115,200 bps. b14: High/low bi t exchange of CRC checksum (only valid
in RTU mode)
b15: Switch between ASCII/RTU mode s; 0 = ASCII mode
(default)
b15 b14 b13 b12 b11 b10 b9 b8 b7 b6 b5 b4 b3 b2 b1 b0
ERR LED CH4 CH3 CH2 CH1
Take the setting of CH1 for example:
1. b0 is reserved.
2. b1 is reserved.
3. When b2 is set as 1, all th e settings will return to default settings.
ERR LED definition: default of b12 ~ b15 = 1111
1. When b12 = 1, CH1 wi ring to empty external contact,
ERR LED will flash.
2. When b13 = 1, CH2 wi ring to empty external contact,
ERR LED will flash.
3. When b14 = 1, CH3 wi ring to empty external contact,
ERR LED will flash.
4. When b15 = 1 CH2 wiri ng to empty external contact,
ERR LED will flash.
Displaying the current firm ware version in hex; e.g. version 1.0A is indicated as H’01 0A
PID Control Registers
CR#
Latched
CH1 CH2 CH3 CH4
#51 #71 #91 #111
#52 #72 #92 #112
#53 #73 #93 #113
#54 #74 #94 #114
#55 #75 #95 #115
#56 #76 #96 #116
#57 #77 #97 #117
#58 #78 #98 #118
#59 #79 #99 #119
#60 #80 #100 #120
#61 #81 #101 #121
#62 #82 #102 #122
#63 #83 #103 #123
#64 #84 #104 #124
#65 #85 #105 #125
#66 #86 #106 #126
#67 #87 #107 #127
CR#0 ~ CR#127: The corresponding parameter address H’4096 ~ H’4115 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.
1. Modbus ASCII/RTU communication protocol: 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)).
2. Function: H’03 (read register data); H’06 (write 1 word datum into register); H’10 (write many word data into register).
3. 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
4. Symbols: : Latched. : Non-latched. R: Able to read data by FROM instruction or RS-485 communication. W: Able to write data by TO instruction or RS-485 communication.
Register content Explanation
R/W
Temperature SV Range: K-1,000 ~ K8,000. Default = K0.
R/W Sampling time (s) Range: K1 ~ K30 (s). Default = K2.
R/W
KP Default = K121.
R/W KI Integral constant, Default = K2,098.
R/W
KD Derivative constant, Default = K-29.
R/W
Upper limit of I value Range: K-32,760 ~ K32,760. Default = K0.
R/W
Lower limit of I value Range: K-32,760 ~ K32,760. Default = K0.
R
I value Current accumulated offset value. Default = K0.
R/W
Heating/cooling control 0: Heater, 1: Cooler. Default = K0.
R/W
Upper limit of output Range: K-32,760 ~ K32,760. Default = K4,000.
R/W
Lower limit of output Range: K-32,760 ~ K32,760. Default = K0. .
R
Output percentage (%) Range: K0 ~ K1,000 (Unit: 0.1%). Default = K0.
R Output width (ms) Width of control output, Unit: ms. Default = K0.
R
Output cycle (ms) Cycle of control output, Unit: ms. Default = K0.
R Output volume Default = K0.
R/W
PID_Run/Stop 0: Stop, 1: Run. Default = K0.
R/W
Auto Tune 0: Disabled, 1: Auto-tuning. Default = K0.
Temperature / Digital Curve
°C/°F Temperature Measurement Mode:
Max.
Min.
Min.
Max.
Measured temperatur e input
Range of input tem perature Range of digital conversion
Thermo
-couple
Min. (°C / °F) Max. (°C / °F) Min. (°C / °F) Max. (°C / °F)
J type -100°C / -148°F 700°C / 1,292°F K-1,000 / K-1,480 K7,000 / K12,920
K type -100°C / -148°F 1,000°C / 1,832°F K-1,000 / K-1,480 K10,000 / K18,320
R type -10°C / -14°F 1,700°C / 3,092°F K-100 / K-140 K17,000 / K30,920
S type -10°C / -14°F 1,700°C / 3,092°F K-100 / K-140 K17,000 / K30,920
T type -100°C / -148°F 350°C / 662°F K-1,000 / K-1,480 K3,500 / K6,620
使使
(OPEN TYPE)
調

1
2
3
4
5
1使
2 3
DVP
T
14
49
使
DIN (35mm)
DIN
SLD
DVP04TC-H2
使
使使
CR#1
DVP04TC-H2
CR (Control Register)
4
DVP-PLC EH2
16 bits
0.1
°C
FROM/TO
mm
6
+
-
*1
+
-
*3
(100 )
J / K / R / S / T
1.95 kg-cm (1.7 in-lbs)
60/75°C
7
8
9
*1
CH1
10 k L+ L -
SLD
CH4
L+ L -
SLD
*2
24+ 0V
DC/ DC
MUX
5V
AG +15V
AG
-15V
DVP-PLC
24V DC (20.4V DC ~ 28.8V DC) (-15% ~ +20%)
4
J-type, K-type, R-type, S-type, T-type
14 bits (0.1°C/0.18°F)
200ms ×
16
(RS-485)
±0.5% (25°C, 77°F)
CR#2 ~ CR#5
ASCII/RTU
(8, E, 1)
078
24V DC (20.4V DC ~ 28.8V DC) (-15% ~ +20%), 2.5W,
滿
13 bits
7-bit
PLC
±1% (0 ~ 55°C, 32 ~ 131°F)
K1 ~ K20
(4,800/9,600/19,200/38,40 0/57,600/115,200)ASCII
1 stop bit (7, E, 1)RTU
RS-485
使
滿
8-bit
I/O
0.18
J, K, R, S,
°F
D - L + L - L +
CH1 CH2 CH3 CH4RS-485
L - L + L - L + L -
8
1 stop bit
24V 0V
D + SLD
SLD SLD SLD
Min.
Min.
1.
0°C ~ 55°C
CR
#0 H’4096
#1 H’40 97
CR#1
2
~ b6 = 000)CH4
H’0000
#2 H’4098
#3 H’4099
#4 H’409A
#5 H’409B
#6 H’409C
#7 H’409D
#8 H’409E
#9 H’409F
CR#6 ~ CR#9
1010
#10 H’40A0
#11 H’ 40A1
#12 H’40A2
#13 H’40A3
CR#10 ~ CR#13
1010
#14 H’40A4
#15 H’40A5
#16 H’40A6
#17 H’40A7
#19 H’40A9
#20 H’40AA
#21 H’40AB
#22 H’40AC
#24 H’40AE R/W CH1 OFFSET
#25 H’40AF
#26
#27
#30 H’40B4
CR#30
OFFSET/GAIN K8 (H’8) 0 0 0 0 1 0 0 0
#31
#32 H’ 40B6
#33 H’40B7
#34 H’40B8
#35 ~ #48
PID
CH1 CH2 CH3 CH4
#51 #71 #91 #111
#52 #72 #92 #112
#53 #73 #93 #113
#54 #74 #94 #114
2.
RS-485
R
R/W
CH1 ~ CH4
1 (b11 ~ b9 = 001)
R/W CH1
R/W CH2
R/W CH3
R/W CH4
R CH1
R CH2
R CH3
R CH4
R CH1
R CH2
R CH3
R CH4
R CH1
R CH2
R CH3
R CH4
R CH1
R CH2
R CH3
R CH4
R/W CH2 OFFSET
H’40B0
R/W CH3 OFFSET
H’40B1
R/W CH4 OFFSET
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)
H’40B5
R/W
R/W
R/W
R
CR
-25°C ~ 70°C
IEC61131-2, IEC 68-2-6 (TEST Fc)/IEC61131-2 & IEC 68-2-27 (TEST Ea)
CR
CH1 ~ CH4
CH1 ~ CH4
CH1 ~ CH4
CH1 ~ CH4
b15 ~ b8 b7 b6 b5 b4 b3 b2 b 1 b0
b0 ~ b7
01
16
R/W
R/W
KP
R/W
KI
R/W
50 ~ 95%
5 ~ 95%
b15 b14 b13 b12 b11 b10
DVP04TC-H2
使
CH4 CH3 CH2 CH1
CH1
1. (b2, b1, b0)
2. (b2, b1, b0)
3. (b2, b1, b0)
4. (b2, b1, b0)
5. (b2, b1, b0)
CH1
0 (b2 ~ b0 = 000)CH2
CR#1H’0208
CH1 ~ CH4
使 )
CH1 ~ CH4
0.1°C
CR#2 ~ CR#5
(°C)
CH1 ~ CH4
0.1°F
(°F)
CH1 ~ CH4
0.1°C
CH1 ~ CH4
0.1°F
CH1 ~ CH4
調
-1,000 ~ +1,000
K0
OFFSET
1 0 0 0 0 0 0 0
RS-485
115,200 bps
(7, E, 1)RTU
b0: 4,800 bps
b2: 19,200 bps
b4: 57,600 bps
b14: CRC
b15: ASCII/RTU
b15 b14 b13 b12 b11 b10
ERR
CH1
1. b0
b1
ERR
1. b12 = 1CH1
2. b13 = 1CH2
3. b14 = 1CH3
4. b15 = 1CH4
使
(s)
2
b9 b8 b7 b6 b5 b4 b3 b2 b1 b0
= H’6403
(0, 0, 0)
(0, 0, 1)
(0, 1, 0)
(0, 1, 1)
(1, 0, 0)
K10(
CR#2 ~ CR#5
使調
ASCII
H’0002
/
/ /
0
CH4 CH3 CH2 CH1
K-1,000 ~ K8,000
K1 ~ K30 (s)
K121
J-type
K-type
R-type
S-type
T-type
(J-type, K-type)
1 (b5 ~ b3 = 001)CH3
(b12 ~ b15)
PLC
TO/DTO
(LDP/LDF…)
OFFSET
0.1°C
- OFFSET =
01 ~ 254
4,800/9,600/19,200 bps/38,4 00 bps/57,600 bps/
K1
b1: 9,600 bps
b2 = 1
b12 ~ b15 = 1111
7-bit
8-bit
/
b3: 38,400 bps
b5: 115,200 bps
b9 b8 b7 b6 b5 b4 b3 b2 b1 b0
/
/
RTU
ASCII
ERR
ERR
ERR
ERR
1.0A H’010A
K0
K2
K2,098
1 stop bit (8, E, 1)
K1 ~ K20
0 (b8
1 stop bit
CR
CH1 CH2 CH3 CH4
#55 #75 #95 #115
#56 #76 #96 #116
#57 #77 #97 #117
#58 #78 #98 #118
#59 #79 #99 #119
#60 #80 #100 #120
#61 #81 #101 #121
#62 #82 #102 #122
#63 #83 #103 #123
#64 #84 #104 #124
#65 #85 #105 #125
#66 #86 #106 #126
#67 #87 #107 #127
CR#0 ~ CR#127
1.
使
1)RTU
2.
3.
CR
4.
R使 W使TO
Max.
Min.
使使
线
线
线
线线线线
ST
49
使
1
DIN (35mm)
2
3
4
5
DIN
KD
R/W
R/W
R/W
R
R/W
R/W
R/W
%
R
R
R
R
PID_Run/Stop
R/W
Auto Tune
R/W
Modbus ASCII/RTU
(Function)H’03
Max.
H’4096 ~ H’4115
8-bit
RS-485
J type -100°C / -148°F 700°C / 1,292°F K-1,000 / K-1,480 K7,000 / K12,920
K type -100°C / -148°F 1,000°C / 1,832°F K-1,000 / K-1,480 K10,000 / K18,320
R type -10°C / -14°F 1,700°C / 3,092°F K-100 / K-140 K17,000 / K30,920
S type -10°C / -14°F 1,700°C / 3,092°F K-100 / K-140 K17,000 / K30,920
T type -100°C / -148°F 350°C / 662°F K-1,000 / K-1,480 K3,500 / K6,620
(OPEN TYPE)
使使
CR#1
DVP
14
DVP04TC-H2
CR (Control Register)
0
1K0
(ms)
(ms)
0Stop1Run
0
1
使
ASCII
1 stop bit (8, E, 1)
H’06
RS-485
K-29
K-32,760 ~ K32,760
K0
K-32,760 ~ K32,760
K0
K0
K-32,760 ~ K32,760
K-32,760 ~ K32,760
K0 ~ K1,000
msK0
msK0
K0
K0
Auto-tuning
word
K0
K0
RS-485
7-bit
0.1%
K0
H’10
TO/DTO
FROM
K4,000
1 stop bit (7, E,
RS-485
Min. (°C / °F) Max. (°C / °F) Min. (°C / °F) Max. (°C / °F)
4JKR
DVP-PLC EH2
mm
16 bits
0.1°C
6
7
8
9
FROM/TO
0.18°F
8
CH1 CH2 CH3 CH4RS-485
线
1
2 3
RS-485
word
DVP-PLC
CR
#0
#1 H’4097
CR#1
~ b6 = 000)CH4
#2 H’4098
#3 H’4099
#4 H’409A
#5 H’409B
24V 0V
#6 H’409C
#7 H’409D
D - L + L - L +
#8 H’409E
D + SLD
#9 H’409F
CR#6 ~ CR#9
1010
SLD SLD SLD
#10 H’40A0
L - L + L - L + L -
#11 H’ 40A1
#12 H’40A2
#13 H’40A3
CR#10 ~ CR#13
1010
#14 H’40A4
#15 H’40A5
#16 H’40A6
#17 H’40A7
#19 H’40A9
#20 H’40AA
#21 H’40AB
#22 H’40AC
线
1 *
CH1
10K
SLD
1 *
CH4
SLD
*2
K1 ~ K20)
1 stop bit (7, E, 1)RTU
RS-485
L+ L-
L+ L-
24+ 0V
MUX
AG
+15V
DC/DC
AG
-15V
(4,800/9,600/19,200/38,400/57,600 /115,200)ASCII
使
5V
使线
线
SLD
200ms ×
(RS-485)
DVP04TC-H2
线使
24V DC (20.4V DC ~ 28.8V DC) (-15% ~ +20%)
4
J-type, K-type, R-type, S-type, T-type
14 bits (0.1°C/0.18°F)
±0.5% (25°C, 77°F)
±1% (0 ~ 55°C, 32 ~ 131°F)
16
(CR#2 ~ CR#5
ASCII/RTU
(8, E, 1)
078
+
-
线
+
-
*3
( )100
J / K / R / S / T
线线线
1.95 kg-cm (1.7 in-lbs)
60°C /75°C
线
13 bits
7-bit
PLC
24V DC (20.4V DC ~ 28.8V DC) (-15% ~ +20%), 2.5W,
1.
R
R/W
CH1 ~ CH4
1 (b11 ~ b9 = 001)
CH1
R/W
CH2
R/W
CH3
R/W
CH4
R/W
R CH1
R CH2
R CH3
R CH4
R CH1
R CH2
R CH3
R CH4
R CH1
R CH2
R CH3
R CH4
R CH1
R CH2
R CH3
R CH4
0°C ~ 55°C
2.
-25°C ~ 70°C
IEC61131-2, IEC 68-2-6 (TE ST Fc)/IEC61131-2 & IEC 68-2-27 (TEST Ea)
b15 b14 b13 b12 b11 b10 b9 b8 b7 b 6 b5 b4 b3 b2 b1 b0
CH1 ~ CH4
CH1 ~ CH4
CH1 ~ CH4
CH1 ~ CH4
RS-485
H’4096
2
50 ~ 95%
湿
5 ~ 95%
DVP04TC-H2
使
CH4 CH3 CH2 CH1
CH1
1. (b2, b1, b0)
2. (b2, b1, b0)
3. (b2, b1, b0)
4. (b2, b1, b0)
5. (b2, b1, b0)
CH1
0 (b2 ~ b0 = 000)CH2
CR#1H0208
CH1 ~ CH4
使沿
CH1 ~ CH4
0.1°C
CR#2 ~ CR#5
(°C)
CH1 ~ CH4
0.1°F
CR#2 ~ CR#5
(°F)
CH1 ~ CH4
0.1°C
CH1 ~ CH4
0.1°F
2
湿
= H’6403
(0, 0, 0)
K10
J-type
(0, 0, 1)
K-type
(0, 1, 0)
R-type
(0, 1, 1)
S-type
(1, 0, 0)
T-type
1 (b5 ~ b3 = 001)CH3
(b12 ~ b15)
PLC
8-bit
(J-type, K-type)
TO/DTO
(LDP/LDF)
I/O
K1 ~ K20
1 stop bit
H0000
0 (b8
CR
RS-485
#24 H’40AE
R/W CH1 OFFSET
#25 H’40AF
R/W CH2 OFFSET
#26 H’40B0
R/W CH3 OFFSET
#27 H’40B1
R/W CH4 OFFSET
#30 H’40B4
CR#30
#31 H’40B5
#32 H’40B6
#33
#34 H’40B8
#35 ~ #48
PID
CH1 CH2 CH3 CH4
#51 #71 #91 #111
#52 #72 #92 #112
#53 #73 #93 #113
#54 #74 #94 #114
#55 #75 #95 #115
#56 #76 #96 #116
#57 #77 #97 #117
#58 #78 #98 #118
#59 #79 #99 #119
#60 #80 #100 #120
#61 #81 #101 #121
#62 #82 #102 #122
#63 #83 #103 #123
#64 #84 #104 #124
#65 #85 #105 #125
#66 #86 #106 #126
#67 #87 #107 #127
CR#0 ~ CR#127
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
K64 (H’40) 0 1 0 0 0 0 0 0
K128 (H’80)
R/W
R/W
H’40B7
R/W
R
CR
1.
使
Modbus ASCII
1)RTU
2.
(
Function
3.
CR
4.
R使 W使TO
Max.
Min.
Max.
b15 b14 b13 b12 b11 b10 b9 b8 b7 b 6 b5 b4 b3 b2 b1 b0
CH1 ~ CH4
使
-1,000 ~ +1,000
K0
OFFSET
b15 ~ b8 b7 b6 b5 b4 b3 b2 b1 b0
b0 ~ b7
01
RS-485
115,200 bps
(7, E, 1)RTU
B0: 4,800 bps/
b2: 19,200 bps/
b4: 57,600 bps/
b14: CRC
b15: ASCII/RTU
b15 b14 b13 b12 b11 b10 b9 b8 b7 b 6 b5 b4 b3 b2 b1 b0
ERR
CH1
1. b0
ERR
1. b12 = 1CH1
2. b13 = 1CH2
3. b14 = 1CH3
4. b15 = 1CH4
16
使
0.1°C
1 0 0 0 0 0 0 0
4,800/9,600/19,200 bps/38,400 bps/57,600 bps
ASCII
H’0002
B1: 9,600 bps/
B3: 38,400 bps/
B5: 115,200 bps/
0
CH4 C H3 CH2 CH1
b1b21
b12 ~ b15 = 1111
R/W
R/W
R/W
R/W
R/W
R/W
R/W
R
R/W
R/W
R/W
R
R
R
R
R/W
R/W
)
H’03
(s)
KP
KI
KD
%
(ms)
(ms)
PID_Run/Stop 0Stop1Run
Auto Tune 0
H’4096 ~ H’4115
RTU
8-bit
RS-485
K-1,000 ~ K8,000
K1 ~ K30 (s)
K121
K-32,760 ~ K32,760
K-32,760 ~ K32,760
0
K0
1K0
K-32,760 ~ K32,760
K-32,760 ~ K32,760
K0 ~ K1,000
msK0
msK0
K0
1
Auto-tuning
使
ASCII
1 stop bit (8, E, 1)
H’06
word
RS-485
K2
K0
RS-485
FROM
Min. (°C / °F) Max. (°C / °F) Min. (°C / °F) Max. (°C / °F)
J type -100°C / -148°F 700°C / 1,292°F K-1,000 / K-1,480 K7,000 / K12,920
K type -100°C / -148°F 1,000°C / 1,832°F K-1,000 / K-1,480 K10,000 / K18,320
R type -10°C / -14°F 1,700°C / 3,092°F K-100 / K-140 K17,000 / K30,920
S type -10°C / -14°F 1,700°C / 3,092°F K-100 / K-140 K17,000 / K30,920
T type -100°C / -148°F 350°C / 662°F K-1,000 / K-1,480 K3,500 / K6,620
OFFSET
– OFFSET =
01 ~ 254
K1
7-bit
8-bit
RTU
ASCII
ERR
ERR
ERR
ERR
1.0A H’010A
K0
K2,098
K-29
K0
K0
K0
0.1%
K0
K0
7-bit
H’10
TO/DTO
1 stop bit (8, E, 1)
K4,000
1 stop bit (7, E,
RS-485
RS-485
1 stop bit
word
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