-
- News
- Books
Featured Books
- design007 Magazine
Latest Issues
Current IssueShowing Some Constraint
A strong design constraint strategy carefully balances a wide range of electrical and manufacturing trade-offs. This month, we explore the key requirements, common challenges, and best practices behind building an effective constraint strategy.
All About That Route
Most designers favor manual routing, but today's interactive autorouters may be changing designers' minds by allowing users more direct control. In this issue, our expert contributors discuss a variety of manual and autorouting strategies.
Creating the Ideal Data Package
Why is it so difficult to create the ideal data package? Many of these simple errors can be alleviated by paying attention to detail—and knowing what issues to look out for. So, this month, our experts weigh in on the best practices for creating the ideal design data package for your design.
- Articles
- Columns
- Links
- Media kit
||| MENU - design007 Magazine
In-Circuit Pin Testing: An Excellent Potential Source of Value Creation
June 17, 2015 | Mitch Holtzer, AlphaEstimated reading time: 2 minutes

In-circuit pin testing (ICT) is a common method of inspecting electronic assemblies to measure the effectiveness of the assembly process and to predict electrical functionality. Test probes are put in contact with dedicated test points along the surface of an assembly, checking for electrical functions such as resistance, capacitance inductance and signal timing. Some circuit assemblers use functional testing for quality assurance as a substitute for ICT. In this example, the entire assembly either works or it doesn’t.
Unlike printing paste, placing components and reflowing solder, ICT is considered a non-value added process. In fact, ICT increases the cycle time of the assembly process. If the ICT is a fail, but the circuit being tested is actually good (known as a false negative), even more time is wasted trying to determine whether or not a good assembly will function properly.
The two basic types of ICT are commonly referred to as clamshell and flying probe. The clamshell ICT simultaneously tests dozens of points on a single board. One laboratory type of clamshell ICT device uses three types of pins and four different forces. A test vehicle is placed in the clamshell fixture. The clamshell is closed, and electrical resistivity is measured at each of the test pins.
Although clamshell devices are commonly used, they are somewhat impractical for testing solder paste and flux’s ability to be probed. Typically, there can be a 15-minute cycle time per test. Pin residue build up generally occurs after hundreds of tests. Cleaning flux build-up from pins is time-consuming, but necessary to minimize false negative readings.
Clamshell fixtures are quite expensive. A customized fixture must be fabricated for each unique assembly. This cost is only justified for the testing of high-value or high-volume assemblies.
Flying probe testing is also commonly used for lower value or lower volume assemblies. Flying probes test sequences are determined by easily changeable programming inputs. Clamshell fixtures are not required. Therefore, this type of test method is more suited for high mix circuit assembly applications.
In a common laboratory flying probe procedure, one pin type and one force are used, but the test runs for a total of 4,000 strikes. Flux build-up on the pins is an important part of the test. In addition, one common laboratory test vehicle contains four different types of pads. In this example, pad A is a 40 mil (1mm) square pad without vias, pad B is a 40 mil (1mm) square pad with 13 mil (0.33mm) vias, pad C is a 28 mil (0.7mm) round pad without vias, and pad D is a 28 mil (0.77mm) round pad with 13 mil (0.33mm) vias. There are 1,000 opportunities for each pad type.
Read The Full Article Here
Editor's Note: This article originally appeared in the June 2015 issue of SMT Magazine.
Suggested Items
SHENMAO Strengthens Semiconductor Capabilities with Acquisition of PMTC
07/10/2025 | SHENMAOSHENMAO America, Inc. has announced the acquisition of Profound Material Technology Co., Ltd. (PMTC), a premier Taiwan-based manufacturer of high-performance solder balls for semiconductor packaging.
KYZEN to Highlight Understencil and PCB Cleaners at SMTA Querétaro Expo and Tech Forum
07/09/2025 | KYZEN'KYZEN, the global leader in innovative environmentally responsible cleaning chemistries, will exhibit at the SMTA Querétaro Expo & Tech Forum, scheduled to take place Thursday, July 24, at Centro de Congresos y Teatro Metropolitano de Querétaro.
Driving Innovation: Direct Imaging vs. Conventional Exposure
07/01/2025 | Simon Khesin -- Column: Driving InnovationMy first camera used Kodak film. I even experimented with developing photos in the bathroom, though I usually dropped the film off at a Kodak center and received the prints two weeks later, only to discover that some images were out of focus or poorly framed. Today, every smartphone contains a high-quality camera capable of producing stunning images instantly.
Hands-On Demos Now Available for Apollo Seiko’s EF and AF Selective Soldering Lines
06/30/2025 | Apollo SeikoApollo Seiko, a leading innovator in soldering technology, is excited to spotlight its expanded lineup of EF and AF Series Selective Soldering Systems, now available for live demonstrations in its newly dedicated demo room.
Indium Corporation Expert to Present on Automotive and Industrial Solder Bonding Solutions at Global Electronics Association Workshop
06/26/2025 | IndiumIndium Corporation Principal Engineer, Advanced Materials, Andy Mackie, Ph.D., MSc, will deliver a technical presentation on innovative solder bonding solutions for automotive and industrial applications at the Global Electronics A