Industry News | 2016-04-30 12:49:49.0
KYZEN is pleased to announce that Debbie Carboni will present at the PCB Cleaning Technology Roundtable Discussion hosted by SMTA that is scheduled to take place, Thursday, May 19th at BESTRONICS’ facility in San Jose, Ca.
Industry News | 2022-01-23 16:30:34.0
SVTronics is pleased to announce that it has made KYZEN its cleaning chemistry standard for its manufacturing facility in Plano, TX. The sale was facilitated by the Texas-based manufacturers' representative Southwest Systems Technology. SVTronics has five fully automated high-speed SMT production lines and a separate SMT line for prototype production.
Industry News | 2009-12-07 17:51:52.0
Rancho Cucamonga, CA - September 2009 — Aqueous Technologies Corp. has today announced plans to highlight the next generation of the award-winning Automatic Defluxing System - Trident and the Zero-Ion Ionic Contamination (Cleanliness) Tester, at the upcoming Productronica exhibition - Hall A2 Stand 599. The event is scheduled to take place 10th – 13th November 2009 at the New Munich Trade Fair Center in Munich, Germany.
Technical Library | 2021-04-29 01:43:34.0
Since the 1980s the electronics industry has utilized ion chromatography (IC) analysis to understand the relationship of ions, and some organics, to product reliability. From component and board fabrication to complete electronic assemblies and their end-use environment, IC analysis has been the de facto method for evaluating ionic cleanliness of electronic hardware.
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Industry News | 2009-03-25 22:49:39.0
RANCHO CUCAMONGA, CA � March 2009 � Specifically cited in MIL-2000A, the Zero-Ion ionic contamination tester is one of the industry's most popular Resistivity of Solvent Extract (ROSE) testers. IPC-001 and IPC TM650 recognize ROSE testing as an approved method of determining the cleanliness of circuit assemblies.
Industry News | 2021-08-27 15:21:36.0
Advanced in-line cleaning system improves quality and throughput for circuit board assemblies with high-density through-hole and SMT components
Industry News | 2013-01-15 13:14:32.0
Aqueous Technologies will exhibit in booth #3127 at the upcoming IPC APEX EXPO, scheduled to take place February 19-21, 2013 at the San Diego Convention Center in California.
Industry News | 2010-05-03 19:34:28.0
RANCHO CUCAMONGA, CA — Aqueous Technologies Corp., North America’s largest provider of batch defluxing systems, announces that Accurex Solutions Pvt. Ltd. of Bangalore, India has purchased its Trident III automatic defluxing and cleanliness testing system. The sale was made by Aqueous Technologies’ Sales Manager Kevin Buckner during the recently held IPC APEX Expo in Las Vegas (April 6-8, 2010). The Trident Series represents the next generation of lead-free compatible, fully automatic post-reflow defluxing systems.
Technical Library | 2020-11-04 17:57:41.0
Residues present on circuit boards can cause leakage currents if not controlled and monitored. How "Clean is Clean" is neither easy nor cheap to determine. Most OEMs use analytical methods to assess the risk of harmful residues. The levels that can be associated with clean or dirty are typically determined based on the exposed environment where the part will be deployed. What is acceptably clean for one segment of the industry may be unacceptable for more demanding segments. As circuit assemblies increase in density, understanding cleanliness data becomes more challenging. The risk of premature failure or improper function is typically site specific. The problem is that most do not know how to measure or define cleanliness nor can they recognize process problems related to residues. A new site specific method has been designed to run performance qualifications on boards built with specific soldering materials, reflow settings and cleaning methods. High impedance measurements are performed on break off coupons designed with components geometries used to build the assembly. The test method provides a gauge of potential contamination sources coming from the assembly process that can contribute to electrochemical migration.