Shijiazhuang Aerospace Automation Technology Co., Ltd
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NHR-5400 series 60 segment PID self-tuning regulator
Overview: The NHR-5400 series 60 segment PID self-tuning regulator is mainly used for collecting, displaying, controlling, remote transmission, commun
Product details
overview

The NHR-5400 series 60 segment PID self-tuning regulator is mainly used for collecting, displaying, controlling, remote transmission, communication, printing and other processing of on-site temperature signals, forming a digital acquisition system and control system. It is suitable for systems that require high-precision multi-stage curve program temperature control (such as beer fermentation, kiln heating, etc.).

instrument panel
160 * 80mm (Type A) 80 * 160mm (Type B) 96 * 96mm (Type C)
Parameter function
Note: The above parameters are all parameters of the instrument. If it is not a fully functional instrument, the parameters corresponding to the unselected function will not be displayed.
Instrument wiring diagram
The specifications and dimensions are A, B, and C type wiring diagrams
Note: The direction of the wiring terminals on the back cover of the horizontal and vertical instruments is different, as shown in schematic diagram 1.


Figure 1

instrument selection
NHR-5400□-□-□/□/□/□/□( )-□-( )
① ② ③ ④ ⑤ ⑥ ⑦ ⑧ ⑨
① Specification and size
code Width * Height * Depth code Dividing number (measurement range)
A
B
C
160 * 80 * 110mm (horizontal)
80 * 160 * 110mm (vertical)
96 * 96 * 110mm (Method)
00
01
02
03
04
05
06
07
08
09
10
11
12
13
14
15
16
17
18
19
20
21
22
23
24
25
26
27
28
29
30
31
32
33
34
35
55
56
Thermocouple B (400-1800 ℃)
Thermocouple S (0-1600 ℃)
Thermocouple K (0-1300 ℃)
Thermocouple E division (0-1000 ℃)
Thermocouple T division (-200.0-400.0 ℃)
Thermocouple J division (0-1200 ℃)
Thermocouple R scale (0-1600 ℃)
Thermocouple N division (0-1300 ℃)
Thermocouple F2 division (700-2000 ℃)
Thermocouple Wre3-25 division (0-2300 ℃)
Thermocouple Wre5-26 division (0-2300 ℃)
Thermal resistance CU50 (-50.0-150.0 ℃)
Thermal resistance CU53 (-50.0-150.0 ℃)
Thermal resistance CU100 (-50.0-150.0 ℃)
Thermal resistance PT100 (-200.0~650.0 ℃)
Thermal resistance BA1 (-200.0.0~600.0 ℃)
Thermal resistance BA2 (-200.0-600.0 ℃)
Linear resistance 0-400 Ω (-1999~9999)
Remote transmission resistance 0-350 Ω (-1999~9999)
Remote transmission resistor 30-350 Ω (-1999~9999)
0~20mV (-1999~9999)
0~40mV (-1999~9999)
0~100mV (-1999~9999)
-20~20mV (-1999~9999)
-100~100mV (-1999~9999)
0~20mA (-1999~9999)
0~10mA (-1999~9999)
4~20mA (-1999~9999)
0~5V (-1999~9999)
1~5V (-1999~9999)
-5~5V (-1999~9999)
0-10V (-1999~9999) (non switchable)
0-10mA square root (-1999~9999)
4-20mA square root (-1999~9999)
0-5V square root (-1999~9999)
1-5V square root (-1999~9999)
Full switch
Special specifications
③ Control output 1 (OUT1)
code Output type (load resistance RL)
0
1
2
3
4
5
K1
K3
K4
K5
K6
8
4-20mA(RL≤600Ω)
1-5V(RL≥250KΩ)
0-10mA(RL≤1.2KΩ)
0-5V(RL≥250KΩ)
0-20mA(RL≤600Ω)
0-10V(RL≥4KΩ)
RELAY CONTACT OUTPUT
Zero crossing trigger pulse output of thyristor
Solid state relay driving voltage output
Bidirectional thyristor on-off output
Three phase thyristor zero crossing trigger pulse output
Special specifications
④ Transmission output 2 (OUT2)
code Output type (load resistance RL)
X
0
1
2
3
4
5
8
no-output
4-20mA(RL≤600Ω)
1-5V(RL≥250KΩ)
0-10mA(RL≤1.2KΩ)
0-5V(RL≥250KΩ)
0-20mA(RL≤600Ω)
0-10V(RL≥4KΩ)
Special specifications
⑤ Alarm output (relay contact output)
code Alarm limit
X
1
2
3
4
no-output
1-limit alarm
2-limit alarm
3-limit alarm
4-limit alarm
⑥ Communication output/external event input
code Communication interface/digital input interface

X
D1
D2
D3

no-output
RS-485 communication interface (Modbus)
RS232 communication interface (Modbus)
RS232C printing interface
⑦ Feed output
code Feed output (output voltage)
X
1P
2P
no-output
1-channel feeding output
2-channel feeding output
⑧ Power supply
code Voltage range
A
D
AC/DC 100-240V(50/60Hz)
DC 20-29V
⑨ Remarks (none to be omitted)
remarks:
1. When selecting, please refer to the wiring diagram to choose the function. Due to the small size of instrument wiring terminals, they may not have full functionality, and some functions can only be selected from one of them on the same group of terminals.
2. When writing the model, it must be complete, and any function items that have not been selected cannot be omitted and must be supplemented with an "X".
Example 1: NHR-5400A-55-0/2/2/X/1P (24) - A;
Example 2: NHR-5400C-27-K3/X/X/D1/X-A

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