• M2 Factory  Direct Supply  5 MHz 32  Elements PAUT Phased Array Probe For Thickness Measurement System 1
  • M2 Factory  Direct Supply  5 MHz 32  Elements PAUT Phased Array Probe For Thickness Measurement System 2
  • M2 Factory  Direct Supply  5 MHz 32  Elements PAUT Phased Array Probe For Thickness Measurement System 3
  • M2 Factory  Direct Supply  5 MHz 32  Elements PAUT Phased Array Probe For Thickness Measurement System 4
  • M2 Factory  Direct Supply  5 MHz 32  Elements PAUT Phased Array Probe For Thickness Measurement System 5
  • M2 Factory  Direct Supply  5 MHz 32  Elements PAUT Phased Array Probe For Thickness Measurement System 6
M2 Factory  Direct Supply  5 MHz 32  Elements PAUT Phased Array Probe For Thickness Measurement

M2 Factory Direct Supply 5 MHz 32 Elements PAUT Phased Array Probe For Thickness Measurement

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Loading Port:
Shanghai
Payment Terms:
TT OR LC
Min Order Qty:
1 pc
Supply Capability:
10000 pc/month

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Specification

Model Number::
5L32-0.6x10-S114, 5L32-0.6x10-S114
MOQ::
1
Brand::
Weld Probe
Modle:
S114
Element::
32
Warranty::
12 Months
Customization::
Support
Color::
Silver
Theory::
Ultrasonic Sensor
Place of Origin::
Shanghai, China
Usage::
Carbon Steel Weld Probe
Mounting Type::
plug-in
Size / Dimension::
30x28x25(mm)1.18x1.1x0.98(in)
Element Shape::
Linear
Case::
Stainless steel
Type::
Phased array probe
Brand Name::
M2PROBE

Products Description


Carbon Steel Weld Probe


Specific 


Features & Applications


1.High compatibility, can be compatible with most phased array flaw detectors. 

2.carbon steel weld series: 

3.Thick weld inspection from 3 mm to 60 mm4.Manual or automatic detection 

5.Wide thickness measurement 

6.Excellent signal to noise ratio 

7.Moderate constitution and large monitoring range 

8.Thick plate material and weld 

9.Forgings, noise or granular materials 

10.Moderate constitution and large monitoring range


Specification



ProbeSeries

Model

Element Shape

Freq (MHz)

E-Nos

Pitch(mm)

ActiveAperture(mm)

Elev.(mm)

Size(LxWxH)

S114

2.25L32-0.6x10

Linear

2.25

32

0.6

19.2

10

30x28x25 (mm) 1.18x1.1x0.98(in)

5L32-0.6x10

Linear

5

32

0.6

19.2

10

7.5L32-0.6x10

Linear

7.5

32

0.6

19.2

10

10L32-0.6x10

Linear

10

32

0.6

19.2

10

10L64-0.3x10

Linear

10

64

0.3

19.2

10

*The standard cable length is 2.5m/8.2ft. The phased probe can be customized,include frequency, element number and pitch,etc.


Probe Naming Rules


*The standard cable length is 2.5m/8.2ft. The phased array probe can be customized, include frequency, elements number and pitch, etc. If you have any customing requirements, our experts will work directly with you to design and manufacture customized probe, wedge, scanner.. ...


Advantages


Superior Product Performance


Test report is supplied with every probe.This form contains following contents:


High compatibility

           

We provide probes with different connectors according to your requirement. More connector types are available,  please contact us if the connnector type is not listed below.

     D19(Phasor Connector)   D3(Omniscan Connector)    D5(Connec 78PIN)



D6(Hypertronics 160 PIN)    D7(Topaz/Zircon)      D8(ITT CANNON 96PIN)


Customization Service


Customization Service

Package


M2probe provide each product with a safety box.It is external anti-fall and impact resistant. Pre-cut mesh cotton make it fully protect product safety during transportation.


Recommend Products

Phased Array Probe

Our Factory

\

Certifications

FAQ


1.Q: Can you customize the probes, wedges, scanners according to our requirement?
A: Yes, we support all customizing requirements to meet your needs.
OEM/ODM are welcomed.


2.Q: Are you factory direct supply? Can we have a visit to your factory?
A: Yes, we are factory direct supply. Our factory locates at Shanghai city, welcome to visit our factory!


3.Q: Does your factory have ISO certification?
A: Yes, our factory has ISO9001:2005 certification, we strictly follow ISO stantdards throughout whole processes from R&D to manufacturing.


4.Q: What's the MOQ? Can we buy sample to test?
A: At least 1 piece of product. Welcome to order sample.


5.Q: Can M2PROBE manufacture wedges with non-standard angles for steel and other materials?
A: Yes. The customer must specify the refracted angle desired, test material velocity, and any other important factors that may play a role in the success of the inspection. Note that, in some cases, the performance will be quoted only on a "best effort" basis. A premium will apply and/or sometimes a minimum required order quantity.


6.Q: What is the price of the product?
A: We will provide the best quality machines with best price. Never compromise performance for price.


7.Q: How long is the lead time for the product?
A: The delivery time for standard probe is usually 20 days, and for customized products, it depends on your demands of probe andtechnical difficulty.


Q: A.neutralB.groundC.short circuitD.load
Voltage in the US is 110-120 volts while in other countries it is 220-240 volts. if you have a 110-120 volt appliance, you need a step-up transformer (110 to 220)before you could use it in a 220 volt power supply.
Q: I want to use scientific equipment that will measure the electrical conductivity of water. I only want to electrocute the water and measure the current as a last resort.
water has no conductivity I tested it in science yesterday
Q: Curiosity just got the best of me. To be electrocuted one should make a complete circuit, right? What if you just touch the live wire and nothing else, you're not standing on anything, no ground. you're in mid air. Any thoughts? Thanks
yes and it can be really bad
Q: I live in a condominium made of concrete without an electrical ground wire. Is it possible for me to hammer a nail into the concrete wall and attach the ground wire onto the nail. Will this be effective? If not can anyone please suggest a method for me to be able to ground my appliances. Much thanks in advance.My country/city has almost no electrical regulation/laws and the little that we have are barely implemented and never inspected.Safe DIY Guerilla methods are accepted
It depends on what the purpose of the ground wire, whether it is for earthing or equipment grounding, however a nail in a concrete wall will not be effective for either earthing or equipment grounding. A conductor of at least 20 feet in length, imbedded in a concrete footing, will generally provide a suitable earth ground. If you are trying to establish an equipment grounding path, you need to connect to a good conductor that bonds to the neutral at the electrical service entrance of the building. If there is no equipment grounding conductor in the electrical circuits in the building, then you might look for steel or copper water or heating pipes. With a multimeter, you can measure resistance between the circuit neutral and any point that you think might be a possible ground. To effectively bond equipment, a suitable equipment ground will have a fraction of an ohm of resistance to the neutral. The purpose of an equipment ground is to be able to generate a very high ground fault current to ensure that a breaker will trip or fuse will clear very rapidly in the envent of a ground fault. An earth ground, or grounding electrode, serves a different purpose. You provide an earth ground so that the neutral conductor and all of the metal equipment enclosures will be at the same voltage as the earth, so if you are standing on a concrete floor or on the ground, and touch an electrical equipment enclosure, you won't get an electrical shock. The earth ground should be connected to a circuit neutral at only one point which should be at the main electrical disconnect or electrical meter.
Q: Hey Guys !I just finished High school and I'm quite certain that Engineering is my first choice, however, I'm still a little bit hesitant. I'm choosing between electrical or mechanical! I think I like both majors and as far as I know Mechanical is the science of moving objects where you can get more hands-on experience , while electrical engineering is more imaginative. You can't really see electricity , thus it's more challenging ! To be honest , I like challenges but I don't want to end up regretting any decisions! Can anyone give me any insights , advices or opinions on both of majors ! What I'm going to study , what can I do , anything that could practically help me decide ! Thanks in advance
I believe you grasp the essential intellectual difference between the two fields. In the study of both disciplines there are laboratories where you build things. In electrical labs you build circuits, and in mechanical labs you use lathes, drill presses and milling machines to build mechanical devices. When you are out of school and working, you will most likely not be doing anything hands on except inspecting equipment, systems and facilities. Your principal work will be analyzing, documenting, reporting and creating design/construction documents. I had an orientation to both fields (mechanical and electrical) as from the time I was about 13 I rebuilt engines in a machine shop and loved to build all sorts of mechanical things on a farm. But I also liked to design and build receivers, transmitters, amplifiers, etc. Ulitmately, I was attracted more to electrical engineering because it seemed more esoteric and mysterious; but I think I would have been happy and successful in both fields, and possibly even in structural engineering. These fields apply math and the other sciences, and require creativity to find ideal solutions. Civil engineering seemed too mundane to me.
Q: I mean for SF6 (gas) containers used to refill electrical quipment such as circuit breakers, must the container be discharged completely, or is it possible to retain a partial amount of SF6 gas in the container for future refilling activities? Any electrical experts out there, would really appreciate your assistance with this. Thanks!
Check the MSDS sheet for safe transport. Is a seal broken before use? Do the containers get returned after use or are they discarded (how?). Your local power company must have info because they use this stuff at switching stations.
Q: for an electrical class.
Wear 2 inch soles on your shoes keep one hand in your pocket don't stand in water and never touch a ground.
Q: (without using any connection wires)? I frequently need to plug existing electrical equipment in places where there is no power outlet I have to use clumsy long tailed electrical extension plug that hinders free movement ? Short of using a battery in the equipment how to connect the power junction points (earth live neutral to an existing electrical power outlet using nothing but air in between)?
Research is going on Wireless transmission of electricity in IIT, Madras, India. This will make considerable changes in how the electricity is transmitted in future certainly now, there is no way to transmit electricity wirelessly, you need to wait for some more years.
Q: Context:Unrated electrical equipment in the dust handling equipment and area could act as an ignition source, which would result in a fire or an explosion for the dust handling equipment or rooms.
It refers to both the equipment and the area.
Q: I have a mini (just like 5x6 inch) Lasko personal space heater. It is not originally intended for heating for tanks and cages, but since it is ceramic I was 't sure if it would be okay. It has safety features such as overheat protection and cool touch housing. Would it be good to use in the tank for the snake? He's a baby cornsnake, and the tank is a 29 gallon glass tank (like an aquarium). I already have a heating pad and two heat lamps, but it still won't get warm enough. And I don't want to use central heating to heat the whole house just for his small space. Not to mention, it just stopped working. I know I can get a conventional ceramic heat emitter, but since this is what I have, I'm hoping it will work.
Rule of thumb with reptiles: Never put any heat source inside of the cage. Sounds like the house is fairly cool. What are the wattages you are using for the two lamps and also what are the current temps (day/night)? Please add this detail. I do have a suggestion as to part of the problem. The average 29 gallon tanks are talls, not longs or wides. When tanks are talls, they are harder to heat and maintain that heat.

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