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KAIDI vega radar level transmitter manual company for work

KAIDI vega radar level transmitter manual company for work
  • KAIDI vega radar level transmitter manual company for work
  • KAIDI vega radar level transmitter manual company for work
  • KAIDI vega radar level transmitter manual company for work
  • KAIDI vega radar level transmitter manual company for work
  • KAIDI vega radar level transmitter manual company for work
  • KAIDI vega radar level transmitter manual company for work
  • KAIDI vega radar level transmitter manual company for work

KAIDI vega radar level transmitter manual company for work

The design of Kaidi Sensors vega radar level transmitter manual involves several stages. This includes bag trend research, fabrics and fittings research, CAD prototyping, and sample making. With a compact design, it is space-saving
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Application:

6GHz radar level gauge is suitable for liquid, paste, granule and block material level and non-contact measurement, suitable for changes in temperature, pressure big; there is an inert gas and volatile.

The measurement method of microwave pulse, can work normally in the industrial frequency band range. The beam energy is low, can be installed on all kinds of metal, non-metallic container or pipe, no harm to human body and environment.


Suitable   for Medium: Liquid, especially for corrosive liquid
Explosion-proof   Grade:  Exia IIC T6 Ga/ Exd IIC T6 Gb
Measuring   Range: 20m 
Aerials: The Rod Antenna   (PTFE)
Frequency: 6 GHz
Temperature: -40~130
Measurement   Precision:  ±10mm 
Process   Pressure: (-0.1 ~ 1.6) Mpa
The signal   Output: (4 ~ 20) mA/HART 
The Scene   Display: Four LCD /Can be   programmed
Power   Source: Two-wire (DC24V) Four-wire (DC24V/AC220V) 
Repeatability: ± 1mm 
Outer   Covering : Aluminum /Plastic   /Stainless steel 
Connection:  With PTFE plate flange

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1.   Dimensions  of  Instruments

l  The rod antenna radar size (unit: mm)

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l 
The rod antenna radar size (unit: mm)

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l  Horn antenna size (unit: mm)

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l  Horn size (unit: mm)

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l  Flange Selection (unit: mm)

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2.   The  Electrical  Connection

l  The power supply voltage:


(4~20)mA/HART   (Two wire system)       The power supply and the output current signal sharing a two core   shield cable. The supply voltage range see technical data. For intrinsically   safe type must be a safety barrier between the power supply and the   instrument.
(4~20)mA/HART(Four wire   system)       Separate power supply and   the current signal, respectively using a two-core shielded cable. The supply   voltage range see technical data.
RS485 / ModbusPower   supply and Modbus signal line are separated, respectively using a two-core   shielded cable, the power supply voltage range see technical data.


l  Connection  mode:

Ø 
24V two wire wiring diagram as follows:

 

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Ø 
220V four wire connection is as below:

 

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Ø  24V RS485/Modbus wiring diagram as follows:


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Explosion Proof Connection

The intrinsic safety version sensors (Exia IIc T6) use Alu-die casting housing and filling Silicone rubber sealants internal structure aimed to prevent sparks resulted from circuit failure from leaking out. It is applicable for the continuous level measurement of flammable medium under Exia IIc T6.

A safety barrier FBS-2 must be used together with the intrinsic safety instrument. It is an associated device to this product for the power supply of this product. The main specification is intrinsic safety: Exia IIC, voltage of power supply: 24V DC±5%, short-circuit current: 135mA, operating current: 4...20mA.

All cables must be shielded. The max length is 500m for the cable from the barrier to the sensor. Stray capacitor0.1μF/Km, stray inductance 1mH/Km. Instrument must be connected to the ground potential. Any unapproved associated device is not allowed to be used.


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l  Protection  grade:


This instrument meets the protection class IP66/67 requirements, please ensure the waterproof cable sealing head. The following diagram:

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3.   Programming and  Debugging


l  There are three kinds of debugging method:

1)     Display / Keyboard  

2)     Host debugging  

             3)    HART handheld programmer

      l  Display / Keyboard:

Please debug the instrumentation by four buttons on the display screen. There are three debug menu languages optional. After debugging is generally used only for display, through the glass window can read measured value very clearly.

Display / Keyboard

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l  PC debugging:

        Connected to PC by HART

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l  HART  handheld  programmer:

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4.   Technical   Parameters


General   data    
Materials 
Antenna                                               PTFE, PP
Outer   Covering                                   Aluminum, Plastic,   Anti-static PP, Stainless steel 316
The seal   housing and the housing       Silicone Rubber 
Shell   window                                       Polycarbonate
Ground   terminal                                   Stainless steel
Process   connection  
801G1½A Thread & 1½NPT Thread / Flange (optional) 
802With PTFE plate   flange
803Stainless Steel   Flanges
804Stainless Steel   Flanges
805Stainless Steel   Flanges
806Stainless Steel   Flanges
Supply voltage  
Two-wire        
Standard                                       (1626)V DC
Intrinsically   Safe                           (21.626.4)V DC
Power   Consumption                      Max.22.5mA 
Allowable   ripple 
<100HzH47Uss < lV
- (100100K)Hz   Uss < l0mV
Flameproof
(22.8 ~ 26.4)   V DC       2-wire system
(198 ~242)V   AC   4-wire system / 110V AC    4-wire system 
Power   Consumption  Max.  1VA1W

 Cable parameters      
Cable entry / plug                         1 M20xl.5 cable entry (cable diameter   5 ~ 9mm)
1 blind blocking M20xl.5
Spring   terminals                            For wire   cross-section 2.5mm²



Output   parameters      
The output signal                             (4~20)mA / HART
Resolution                                   1.6μA
Fault   signal                                     Current output   unchanged;20.5mA;22mA;3.9mA
Two-wire load   resistor                    See below
Four-wire   resistive load                  The maximum 500Ω
Integration   time                                (0 ~ 36) s,   adjustable

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Kaidi Sensors vega radar level transmitter manual has to go through a comprehensive QC check including the performance of filter and membrane, PLC controller, and valves. It has low water absorptivity in the damp environment
The raw materials of Kaidi Sensors vega radar level transmitter manual have been extensively tested by the third-party testing organization to ensure that these materials meet the safety standards in the sauna industry. It has increased power densities which guarantee its long service life
Kaidi Sensors vega radar level transmitter manual is produced after several stages. It has to go through a mining process which includes the ore crushing, grinding, and refining. The product has dynamic and mechanical stability
Kaidi Sensors vega radar level transmitter manual meets the regulatory requirements of the textile market. The textile fibers, dyestuff, and different kinds of agents used in it are guaranteed to meet the standards. Its working panel is coated with a photo-sensitive epoxy-based ink, which can ensure its insulation resistance
The manufacturing process of Kaidi Sensors vega radar level transmitter manual includes several stages: bag market trend research, prototype design, fabrics&accessories selection, pattern cutting, sewing, and workmanship assessment. The inner layer core of the product is chemically treated for improved adhesion of the copper surface
This product does not fade, that is, it does not fade after multiple washing, but it will become soft. It stands out for its impact endurance performance
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