Saturday, 22 October 2022

Top 5 Reasons to Use the Takaya Flying Test

In 1987, a unique development was made that changed the way electronics are tested. Takaya came up with the world's first flying probe test system, which is well known as the Takaya flying test.

Let's discuss what the Takaya flying probe test system is and why you should use it to make your electronic testing easier.

What is the Takaya flying probe?

The Takaya flying probe is a testing system used for in-circuit tests without fixtures. The Takaya flying test uses probes that move very fast without requiring a conventional bed of nail adapters to perform.

Takaya Flying Probe systems are famous for their high build-up quality, robustness, and long-term stability. The Takaya flying probe system combines precise mechanisms and high-precision measuring equipment to provide the best result.

Top 5 Reasons to use the Takaya flying probe

The flying probe technology developed by Takaya has been a market leader for years. The research and development capacities concentrate 

Focusing on the instantaneous launch of innovative products into the market, Takaya develops its testing system to meet the rapidly changing technical requirements and needs of customers in the electronics industry. Here is a list of the top 5 reasons why the Takaya flying probe test is so popular.

  1. Continuous development of innovative products

Takaya continuously develops new, innovative, and modern flying probe systems in the areas of test coverage and test speed to deliver remarkable outcomes

  1. Reliable and high-quality standards

The Takaya flying probes are exclusively manufactured in Japan, maintaining high-quality standards. They never compromise between speed and long-term stability.

  1. High proximity testing

Takaya is popular for its excellence in testing. The Takaya flying test delivers a high-speed, high-precision, fixtureless, and easy-to-use circuit board tester.

  1. Decades of experience

Takaya has been a leader in the field of flying probe technology since 1987. They continuously conduct the research and development process to meet rapidly changing technical requirements.

  1. Excellent customer support

Their excellent customer support is another reason they have achieved such massive success. Their customer support service includes maintenance, calibration, installation, and training, either on-site or in one of their training centers.

To know more details regarding the Takaya flying test, you can visit https://equip-test.com/, where you will get the best deals at the most affordable price.

Wednesday, 21 September 2022

What’s Spring-Loaded Contact Probe and What are They For?

What is a Spring Loaded Contact Test Probe?

Spring-loaded contact test probes are also referred to as Pogopins, Contact pins, fixture pins, spring pins, test pins, and bed of nails.

To make contact with various test points on Printed Circuit Boards (PCBs), components, and wiring fields, spring contact test probes are used. The probes may test connector-cable systems when they are used in specialized test modules. The test probes can also be used as a charging contact or in control engineering units.

A tubular barrel, a spring, and a plunger are the components of a spring-loaded contact test probe. Different tip styles and spring tensions are available for plunger tip styles. The test surface is best-contact guaranteed.

Additionally, probes can be fixed inside housing units (receptacles) where an electrical connection is made. Also, makes it simple to remove the test probes for repair or replacement.

There are several applications for contact probes. Here’s a summary:

      ICT/FCT series - Probes for fixtures. Standard ATE probes for different centers

      Short Travel Probes/Battery contact series - Limited travel compact probes. Frequently used as a battery contact

      Interface Probes - Interface between the fixture and test system are usually realized by this option

      Pneumatic Probes - For the limited access, selective contacting of a single test point

     Threaded Probes (screw-in) - Threaded to provide a secure fit. Used to test wire harnessing in modules.

      High Current Probes - Used for applications requiring a high current.

      Switch Probes - Special probes with integrated switch elements are mainly used for presence tests.

      Push Back Probes - During the push back of connectors, the tight seat of the connector elements is verified.

Because of their numerous benefits, spring-loaded contacts have grown to be a favorite among engineers. And they could be benefiting you.

Advantages of Spring-Loaded Contact

  1. Solderless inter-connections
  2. Easy integration into systems
  3. Designed for durability
  4. Misalignment accommodation
  5. Consistent contacts
  6. High Vibration Tolerance
  7. Easy mating with other components
  8. Perfect for blind mating
  9. Self-cleaning components
  10. Excellent contact for cable termination
  11. Diversity of designs

Just Leave it to us, we have it covered!

Every design has unique specifications, and we are able to create the spring-loaded contacts you need to bring your idea to life.

We specialize in precision machined components, thus we are the experts in the industry when it comes to spring-loaded connections. We give you the products you want for your unique design needs.

Get your every component as per your need at https://equip-test.com/

https://equip-test-probes.blogspot.com/2022/08/equip-test-radio-frequency-testing.html
https://equip-test-probes.blogspot.com/2021/11/agilent-3070-in-circuit-test-ict-system.html

Tuesday, 16 August 2022

Equip-test Radio Frequency Testing

 Radio frequency testing is a non-destructive process that can be used to verify the quality of electronic components and materials. It is also used to find defects in solder joints, printed circuit boards, and other types of electronic assemblies. 

What is Radio Frequency Testing

Radio frequency testing is a process of testing radio frequency emissions to identify potential interference with other electronic devices. Radio Frequency testing can be conducted on both active and passive devices, and is often used in the development of new electronic devices or the optimization of existing ones. 

https://equip-test-probes.blogspot.com/2021/10/simple-cable-harness-tester.html

 RF testing typically involves measuring the power, frequency, and modulation of the device under test. These measurements can be used to identify potential sources of interference and optimize the performance of the DUT. Radio Frequency testing can be performed using a variety of techniques, including spectrum analyzers, vector network analyzers, and power meters. 

How RF testing performed

The radio frequency testing is performed by taking and placing the devices in an isolated area. By doing that, the electromagnetic interference with the device can be controlled and the device is observed closely by other such appliances in that area. 

In addition, testing is used to determine the device's RF immunity, which is its ability to handle interference from other devices.

https://equip-test-probes.blogspot.com/2021/11/cable-harness-test-systems-and-test.html

How the equip-test products helps in RF testing

If you’re looking for a reliable and accurate way to test your radio frequency equipment, you need a product from equip test. Our products are designed to help you get the most out of your testing, and they’re backed by our quality guarantee. We offer a variety of different models to suit your needs, and our team is always available to answer any questions you may have. With equiptest, you can be sure that your radio frequency testing is being done right. 


In these days of wireless computing, it’s vital to do an RF testing procedure. With Equiptest, you can have your radio frequency tested, wifi, gps and more. We can help you pick the right lab for a project-specific test. 

How equip-test radio frequency testing is different from others

There are many different types of Radio frequency testing, but what sets equiptest RF testing apart is our unique approach. We don’t just test for compliance with standards - we also assess the performance of your devices in the real world. This means that you can be confident that your products will work as intended, even in the most challenging environments.

What’s more, our team of experts have years of experience in Radio Frequency testing, so you can be sure that you’re getting the best possible service. We’re always happy to answer any questions you may have, and we’ll work with you to find the best solution for your needs. Contact us today to find out more about equip-test RF testing. 

For more information contact us:-

+36 15333165

info@equip-test.com

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Monday, 30 May 2022

Flash fixtures | Equip Test

      How do flash fixtures help to get better radio frequency?


We are interacting every day with radio-propelled activities in this technologically advanced world, whether directly or indirectly. The radio flash fixtures kit was able to attenuate signals up to 400 MHz to 6 GHz range and prevented external interference. Fixture kits with radiofrequency technology are easy to assemble without major tools and provide protection against high-frequency waves emanating from the fixture. We rely on geometry-aligned probes for low-reflection transmissions with standardized contacting. Moreover, Multiple configurations and multiple programs can be supported by the flash fixture programmer.

 

Radiofrequency testing is highly responsible for magnifying the broad functionality and fairly good performance of both radio and telecommunication appliances. It maintains the user's radio frequency range as there shouldn't be any overlapping in the radio waves. The RF testing is highly mandatory these days as the frequency standard needs to be approved by the current market regulation.

We have different text fixtures available with us such as:

ND-MFS-D3-RF 

The construction is strong and reliable thanks to the solidified aluminum block. A fully transportable bottom plate greatly improves the efficiency of the wiring. Each interconnection has overlapping seams that are strong and reliable. The side corners are round in shape for finer rf reflection characteristics. To extend the RF environment it features stretchable chambers.

ND-RF-EXCH-D3

As it has an outstanding measurement of shielding attenuation of 80 DB, all of its features are quite comprehensive and very effective. Moreover, it is qualified to operate in all RF bands, from 400 MHz to 6 GHz.  It also has a strong exterior with high-quality aluminum. To initiate an internal radio network, it featured with RF absorber. 

ND-MFS-D4-RF

This particular test fixture has a supple external texture with dimensions of (width, depth, height) of 729 mm x 656 mm x 280 mm. Its reported shielding attenuation is 75 DB and covers the RF band with 400 MHz to 6 GHz. Furthermore, the transport and lifting are quite easier with an aluminum grip.

ND-RF-EXCH-D4

The test fixer allotted with 325mm x 206mm usable area with shielding attenuation of 75DB along with a strong aluminum. The high-quality test fixtures will be extremely useful with their experienced construction.

Friday, 25 March 2022

High – Current Leaf Spring Probe


 The idea is to allow the audience to find their best tools through our online platform and to show them their best products. Power electronics High-Current pins and flat type contacts inside of connectors make Leaf Spring Probes a good contacting solution for high-current pins and flat type contacts. We provide the best equipment along with the highest technology and the widest range of classifications. Moreover, we offer a wide array of products including test probes, led probes, test fixtures, test systems, interface solutions, in-line test handlers, and test gigs. Leaf spring probes with a high current are designed to provide the highest performance as well as deliver a high level of reliability. 

Technical Efficiency

Each section is precisely optimized with the most advanced technology in terms of technical efficiency. On its technical specification, it has a fair opening width of 0.5 to 0.8 mm. Designed with a maximum insertion force of 2.0, it is configured with a right immersion depth of 3.5 mm to 6.0 mm (0.138 to 0.236 in), as well as a maximum current of 20 A, which will avoid any measurement errors. A brass/gold plated barrel mate is predominantly used in this type of equipment. Other important materials are Spring Steel /Gold plated. The operational temperature is the most vital process to get allowable temperature so in that case, the temperature stays  - 100 °C up to + 200 °C[- 148 °F up to + 392 °F]. It appears simple enough to drill mounting holes for your PCB so that you can mount it to an enclosure or surface. All you have to do is select a screw size that makes sense for the size of your board and the surface suitable to mount it to and drill accordingly. So after a core research the mount hole size is recommended Socket / Receptacle Diameter + 0.01 - 0.03 mm [0.394 - 1.181 mil] drill bits for this.

Tip style

This leaf spring probe is designed with a specialized testing element and concludes with the tip style. The measurements are Tip Diameter (3.2 [0.124] mm [inch]),  Tip Length (8.9 [0.351] mm [inch]), Tip - Opening Diameter 1.2 [0.047]  mm [inch], Installation Height 16.4 / [0.646]  mm / [inch]. 

Tuesday, 14 December 2021

Socket Pylon Blocks and its usability

 

The sockets are generally used for client and server connection and interaction. These allow communication between two different processes on the same or separate machines. To be more specific, it is a process of talking to other computers using standard Unix file descriptors. The file descriptor is an integer associated with the open file. It could be a network connection or a text file or a terminal or any other thing. The socket has a definite flow of events such as in a connection-based client-server model, the socket on the server side waits for the request from the client. To make it happen, the server finds an address that the client can use to get the server.

What do you mean by Sockets?

The socket is an endpoint of a 2-way communication link between two processes running in a network. This endpoint has a name and address in the network.  The socket has a port number that helps the TCP layer to identify the application where the data is to be sent. The endpoint has an IP address and one port number. The TCP connection is uniquely identified by its two endpoints. Now you can have more than one connection between the host and server. 

Pylon blocks

Pylon blocks or Interface Blocks are used as an internal interface. The integrated spring contact probe guarantees good signal transmission with low transfer resistance. The internal blocks transmit signals reliably between the test device and test system whether it’s internal, external, or customer-specific interfaces. Here at Equip test, offers Signal, High-current, Optical, Pneumatic, Mixed, RF, and USB Pylon blocks.  The features include:

·         Compact and robust design

·         Trusted signal transmission

·         High contact/transmission quality

·         Uniform low-level contact resistance

·         Quick, simple, & precise installation

The network configuration generally does not allow connection between a secure internal network and a relatively less secured external network. But you can use sockets to communicate with the server program that operates outside the firewall.  

Monday, 13 December 2021

Importance of in-circuit Test at Equip-Test

 

It is a necessary act for electronic manufacturers to take precautions and ensure nothing goes wrong with finished products. Specifically while creating devices for industries like aerospace, medical, and defense. Indeed, even devices made for other industries require cautious assembly if manufacturers wish to avoid costly rebuilds, repairs, and recalls.

All parts and components, electronics manufacturers should constantly test all through production to ensure perfect operation. Using a wide range of tests at different parts of the process Equip-Test helps guarantee the quality and reliability of all finished products.

The regularly utilized test, in-circuit test (ICT), guarantees contract manufactures and OEMs reliably meet defined parameters at the production process. ICT furnishes significant data about issues with the board.

 

How it Works at Equip-Test

Equip-Test is a leading name in the test systems world, with years of experience in the testing world; we are focusing on tomorrow’s test challenges with our innovative technology solutions. ICT depends on a unique test apparatus, usually referred to as a "bed of nails" since it contains different contact pins. The contact pins with circuit nodes on the printed circuit board (PCB) measure components to check their performance. Contract manufacturers measure vivid parameters at ICT such as capacitance, resistance, and the analog components' operation. In-circuit-test is additionally once in a while used to gauge the usefulness of computerized circuits. In any case, full testing of circuit usefulness isn't normally visible because of the complexity of the circuit.

 

In-circuit test equipment consists of several elements:

 

·         In-circuit tester:   The sensors and drivers are included within this system to set up and perform the estimations. There might be 1000 or more of these driver sensor points. These are regularly taken to a huge connector strategically placed on the framework

·       Fixture:   Considering the assortment of sheets this will be planned explicitly for a specific board and goes about as an interface between the board and the in-circuit analyser. It takes the associations for the driver sensor focuses and courses them straightforwardly to the important focuses on the board utilizing a "bed of nails".

·   Software:   Software is composed for each board type that can be tested. It trains the test framework on what tests to perform, between what focuses and details of the pass / fail criteria.

 

 

When performed accurately at Equip-Test, in-circuit test can get around 98% of flaws with the board. Test results given by ICT are not difficult to interpret at Equip-Test. This makes it workable for manufacturers of all ranges of abilities to find issues rapidly. Programming an in-circuit tester is simple. Electronics manufacturers can utilize information provided in the PCB layout to produce the vast majority of the program.

High-Quality Signal Contact for Reliable Signal Transmission

 

Interface pylon blocks are the oldest mass interconnect applications which still in demand. Till now in the larger section of the world is using it.  Interface blocks can be used for signal contact dependably between the test device and in internal, external, and customer-centric test system interfaces. High current, radio frequency, fiber optic, pneumatic, mixed, HSD, Signal, and special blocks are available from Equip-Test in various versions.

The common features you will find in signal contact through Pylon Interface blocks are:

·         Robust, Compact design

·         Reliable signal transmission

·         Better quality contact and transmission

·         Low level of contact resistance

·         Internal, external, and customer-centric interface connections

·         Simple, quick, and precise installation

 

Signal contact occurs between two interface blocks connected opposite each other and designed for a working distance of 15.1 ±0.5 mm between their mounting surfaces. Mostly one block of an interface is covered with spring-loaded test probes whereas the other has rigid contact terminals. In combination, this achieves a high level of contact quality and trustworthy signal transmission while ensuring a low level of contact resistance. The inner blocks have similar outer dimensions.

Equip-Test offers low-wear plug connections to realize quickly without any tools as an alternative to conventional wire-wrap connections. You can find a wide range of pre-flat ribbon cables, pre-wired with socket strips, multipoint connector, pre-wired litz wire cables along with 40, 102,170 Pol low resistance Pylon, 40 Pol signal contact Pylon, 85, 102,136, 170 pol signal pylon.

Reliable interfacing takes a major step by replacing the Pylon test probe design for a pin and socket design in Mass Interconnect Interface modules. The step is taken for moving away from the Pylon spring-loaded probe technology. Therefore designers use pin and socket solutions for future-proof Mass Interconnect services. It has been used in the Pylon design for high power and high-frequency applications for better signalcontact integrity.

Today, Equip-Test is the recognized global leader in mass interconnects technology solutions for the functional test industry. Buy online different types of compatible test instruments and platforms for better performance. Equip-Test is a series of modular fixture products that allows quick connection between the unit under test and a custom test system.

Spring contact probes and their utilizations

 


The Spring Contact Probe name comes from the device that connects the Device Under Test (DUT) with the electronics of the test machine, also called Contact Probe, Test Probe, Spring Probe, or Pogo Pin.

They are two different ways of utilization at Equip-Test, such as:

1.   Spring Contact Probes are prominent precision elements for the connection between the DUT and the test machine, in order to collect data during the in-circuit test (ICT). Spring Contact Probes are fundamental accuracy components for the connection between the DUT and the test machine, to gather information during the in-circuit test (ICT).

In this stage the primary need is to test a printed circuit board (PCB) by really taking a look at the changing boundaries of the parts of the electrical circuit, like the opposition/impedance, the presence of the actual part, and whether or not there are short circuits;

 

2.     Spring Contact Probes are additionally used to perform functional tests (FCT), during which the real operation of the DUT is confirmed under conditions practically equivalent to the real working conditions.

At this stage, one of the qualities that can be checked is the usefulness of the power supply line of the DUT itself.

To get the test probe process achievement, there are various types of Spring Contact Probes you can find at Equip-Test, which differ in the totality of installation, length, grid, network size, head shape, spring load, along with different types of connection.

Spring contact probes test is also referred to as:

·         Test Pins

·         Pogo Pins

·         Contact Pins

·         Fixture pins

·         Spring Pins

·         Bed of nails

All the above are utilized in generic terms to portray a component whose spring-stacked tip will give a reliable electrical contact to an objective whose distance away likely could be uncertain. The conventional use for them is to connect with printed circuit sheets (PCBs) or electrical parts, to test usefulness and to quantify the worth of the parts. They are generally utilized in vacuum test apparatuses related to program test hardware (ATE). They are likewise utilized inside a utilitarian test station as a feature of a bigger creation line.

The test is included a metal tube that assembled with a spring and contact unclogger, provided as a one-piece thing. They are generally gold plated as gold is an astounding electrical conduit and is resistant to corrosion. The electrical cable is generally associated with a receptacle into which the test probe is embedded. The utilization of a receptacle permits the test to be eliminated for cleaning or substitution without separating the electrical cable.

Spring Contact Probes at Equip-Test are utilized to connect to different test focuses on printed circuit sheets (PCBs), parts, and wiring fields. At the point when utilized in unique test modules, the tests can be utilized to test connector-cable systems. The test probes can likewise be utilized in charge designing units or as a charging contact.

Spring Contact Probes are comprised of a cylindrical barrel, a spring, and a plunger. Plunger tip styles can be given in an assortment of tip styles and distinctive spring pressures. This guarantees the best contact with the test surface.

Monday, 29 November 2021

Kelvin Probes and Work Function Difference


Kelvin probe techniques are used to measure the work functions of materials. These techniques are applied successfully in surface science under UHV conditions. For example, if you want to study the adsorption of molecular or reconstruction processes of single-crystal surfaces, that will cause a change in surface or dipole potential. Recently, Kelvin probes have been applied to corrosion science and found to be highly successful. This probe is named after Lord Kelvin.

What is Kelvin Probe?

The Kelvin Probes are a non-contact and non-destructive calculative device used to investigate the properties of the materials. Here, the probe is based on the vibrating capacitor and calculates the work function difference. In the case of non-metals, it is surface potential and in between a conducting specimen & vibrating tip. The work function is a sensitive indicator of surface condition and is affected by the following:

·         Absorbed layers

·         Surface Reconstruction

·         Surface Charging

·         Oxide Layer Imperfections

·         Surface & bulk contamination

What is Kelvin probe force microscopy (KPFM)?

KPFM or Kelvin probe force microscopy is known as surface potential microscopy and it is also a non-contact type of atomic force microscopy (AFM). These techniques are mainly used for measuring corrosion and coatings. The work function of the surfaces is measured either in atomic or molecular scales. The work function is related to the following surface phenomena:

·         Catalytic Activity

·         Reconstruction of surfaces

·         Doping and band-bending of semi-conductors

·         Charge tapping & Corrosion

The work function map generated by KPFM provides information about the composition and electronic local structures on the surface of a solid. Equip Test provides Kelvin Test Probes with following features:

1.       4 wire measurement

2.       Industrial solution

3.       Easy integration

As the Kelvin probes (KP) techniques find the Contact Potential Difference (CPD) between two surfaces that are in close proximity. In the 1st case, there will be two metals, but there is no electrical connection between them. In the second case, as the two metal pieces are connected by an electrical wire, here the electrons with a smaller work function will travel to the metal with a larger work function. As a result that, the metal with a smaller work function is to be charged with positive whereas others would be charged negatively. This will create electric potential between the two metals as their electronic state is changed relative to each other.

Why Testing Cable Harness Is Crucial for Reliable Test Systems

  Testing CableHarness systems plays a vital role in establishing trustworthy testing environments throughout the testing process. Product ...