Tuesday, April 28, 2009

SMT and Emerging Markets: Photovoltaics at APEX

The most-uttered phrases at APEX this year including the expected “surface mount,” and “BGA,” and the like, but another vocabulary set is rapidly gaining traction with exhibitors and OEM/EMS attendees. “Solar cells” and “photovoltaics” were on many people’s minds, as the mature SMT industry reaches into the emerging markets available to exchange information and develop processes. Solder suppliers, printing companies, chemists, and oven manufacturers are a few of the companies promoting solar manufacturing technology for the electronics manufacturing crowd.

Electronic Trend Publications (ETP) reports that capacity of photovoltaic modules (panels) sold in 2008 exceeded 4.9 gigawatts, a nearly 25% increase over 2007. The market is expected to grow to more than 15 gigawatts in 2013 and 44 gigawatts by 2023, and be a leading vertical market for product assembly for both OEMs and CMs, ETP notes.

The factory cost of producing photovoltaic modules was $9.8 billion in 2008 and will grow to $52 billion in 2023, a compound annual growth rate of 11.8%. Photovoltaic cell producers are looking to outsource module assembly to capable industry suppliers and EMS providers. Outsourcing will grow to 4% in 2013 and 25% in 2023, as OEMs seek a competitive cost advantage, ETP predicts.

Virtual Industries, which makes vacuum tweezers for handling components and wafers, offers custom applications for the solar market. Many customers will purchase vacuum handling tips to integrate into automated systems, making handling equipment an easy retrofit from electronics components to solar wafers. Retrofits are also an option for dispensing systems, and companies like Techcon Systems, a division of OK International, are expanding into the photovoltaics manufacturing sector. “We’ve had three successes for valves and pumps in the solar market in the past six months,” noted Bryan Gass, VP of the OEM division at Techcon.

In the field of metals and chemicals, distributors like K.R. Anderson Inc. see solar as a yet-untapped manufacturing market. It is the future of our industry, and yet a great deal of companies entering the photovoltaics manufacturing market don’t have a solid understanding of the materials involved, said Jeff Wagner, sales manager, K.R. Anderson. As a distributor with a narrow focus — carrying less than 10 core lines — the company feels it can partner with materials suppliers and new solar customers to understand and troubleshoot problems and develop easier to use, better performance products. This requires an investment in technical staff that is difficult for assemblers facing tight margins and reduced personnel resources, added Wagner. This “middle man” position of the distributor actually can benefit the electronics assembler, much like an outsourced R&D/failure analysis lab.

Major equipment manufacturers also are pointing electronics manufacturers' attentions to familiar equipment with applications beyond PCBs and ICs.

Assembléon, a capital equipment supplier, is immersing itself in the green energy concept, from its own machines to the products its customers manufacture. Among the promising innovations is the YGP screen printer, which uses a servo-controlled single-sided squeegee blade. This design keeps solder paste in front of the stencil at roll-in, which reduces sheer and maintains solder paste composition. This technology will prove beneficial for solar cell manufacturers trying to achieve taller, narrower metallization fingers on solar cell surfaces. By preserving the integrity of the metal materials, the stencil enables users to implement smaller apertures and thicker stencils.

Reflow oven supplier BTU International has increasingly developed products for the solar manufacturing market in recent years, both silicon and thin film. The company is also rolling out new products for the traditional electronics market. Paul Van Der Wansem, chairman, president, and CEO, BTU, explained that solar makes the electronics sector stronger, both with R&D sharing to enhance products in both markets and with global infrastructure improvements to the electronics supply chain. Aspects like better temperature control and oven power can benefit electronics manufacturers and photovoltaics producers, perhaps in the same EMS or OEM factory.

Look for DEK’s cover story in the upcoming May/June issue of SMT for more on the convergence and collaboration between electronics and solar manufacturers, including how solder print technology can be adapted to improve metallization on the surface of photovoltaics, improving current-carrying capacity and minimizing the shading effect on cell efficiency.

Meredith Courtemanche, managing editor

Monday, April 20, 2009

Lean Facilities: Workspace Utilization in Electronics Production

Every inch counts on the manufacturing floor, and waste — be it spoiled solder paste, overstocked components, or wasted space — is not tolerated in a working lean production facility. This year at the IPC APEX Expo in Las Vegas, we saw several approaches to saving space, cutting down inefficient work in progress (WIP) bottlenecks, and increasing productivity in electronics assembly and test. For electronics manufacturers who will be scaling back expansion plans, trying to utilize existing space rather than invest in additional facilities or buildings, smarter conveyors, workstations, and storage solutions are in order.

Workflow
Movement of product through a facility can make or break lean goals. PROMATION Inc. demonstrated a dual-operator hand insertion solution with programmable slide shuttles for auto routing and PCB introduction into a selective soldering system with underside return (see image). The design enables higher utilization of floor space and personnel, said Gary Goldberg, president. It eliminates waiting time for the operator and is flexible. For optical inspection, the PCBs come in to an operator workstation. If it passes the board is sent to reflow. If it fails, a conveyor will take the board to rework. They automatically return for post-solder inspection. An AOI system can replace the operator workstation, activating pass/fail without operator intervention. The wrap-around design can be modified to suit any volume or number of operators, and all of the lifts, conveyors, and workstations involved are PROMATION components. Considering how many facilities have inspection, rework, and soldering in three distinct areas, with parts moved from one to another, this smart design can eliminate wasted time and space.

Ken Bliss, president and Shana Bliss, sales manager at Bliss Industries Inc., discussed the FLEXconveyor, a flexible box build factory on wheels has multiple patents pending on its flexible platform. The conveyor is designed to be able to bend up to 90° and features quick-clamp connectivity, the ability to support a 19" rackmount chassis, and can be configured without the use of tools or bolts. Users can start with as small as a 10 × 8 ft line and add on other sections and elements, such as the flexconveyor pickup station. The metal parts are zinc-plated with ESD-safe drag chain. Locking casters hold the completed conveyor configuration in place. “The goal is to relieve bottlenecks and eliminate waste in production lines,” says Ken Bliss, adding that it meets the modern assembler’s need to change the line on the fly and increase production rates. “We configure exactly what a customer wants, visually, on the computer system,” said Shana Bliss. “They can see the details of how the line will work before the final quote, and four weeks later, units are shipped to the customer. The same driver who delivers the FLEXconveyor or any of our other assembly systems is the person who will set it up in 1–2 hours typically for a 50,000 sq.ft. factory.” When a new job is brought in, or volumes change, the conveyor sections can be unlocked and rolled into new positions, occupying a given amount of floor space in the best possible workflow. At APEX, Bliss announced that OnCore Manufacturing Services, an EMS company in the defense, medical, and industrial markets, tested FLEXconveyor in five facilities and plans to deploy it into all of its locations nationwide. This is the first installation of the new box build conveyor.

Storage
Inventory kills lean, so the saying goes. However, there are some products that must be kept in stock, such as stencils, board fixturing, wave solder pallets, etc. And when inventory does come into the factory, dealing with it efficiently can save from incoming inspection to rework/scrap.

DEK has a product to minimize the footprint of stencil storage. The Vector Guard stencil fixturing system is a model for looking at tooling less as a consumable and more as part of the factory floor. The fixed frame and interchangeable foils stencil holder uses vacuum — via a simple air pump — to tension the stencil onto the frame. It holds position and tension better than mesh-mount designs, said Brian Lau, GM of the Americas and David Byrd, U.S. operations manager at DEK. It also frees up an enormous amount of storage in the stencil holding area, as one frame is reusable and does not have to be stored with the foils. To make adoption easier, the air-tensioned VectorGuard can be cleaned like a mesh-mount stencil, can be used with the same variety of stencil foil materials, and integrates easily into printer platforms.

When dealing with incoming inventory and kitting, flexible and value-added storage products can enhance the final assembly reliability, throughput, and traceability.

Component storage involves one part to one location, said Ron Wrable, director of sales, Inovaxe. The company’s products manage WIP inventory by assigning each product a barcode and combining Web-based software as a service (SaaS) INOVISION and INOKIT with on-floor component storage, kitting, and delivery system INOCART. AN INOCART MSD also is available for moisture-sensitive components (MSDs) that will be compromised by time spent unprotected in the factory environment. Other MSD cabinet makers, such as Totech, explain that desiccant cabinets simplify inventory management logistics, since components can stay in tape-and-reel storage, and the added step and capital equipment investment of drying ovens are circumvented. Totech’s MSD storage cabinets can be configured as simple component stocking areas, MSD dryers (desiccant and low heat), or N2 environment storage. “When MSD cabinets are not in use they are not wasted space,” agreed Michelle Ogihara, sales and marketing manager, Seika, pointing out that “the McDry cabinet is designed for MSD electronics, so its recovery time is faster and its relative humidity (RH) settings are very precise. However, when MSDs aren’t in stock, it can be plain component storage, with the ergonomic design and adjustable shelves aiding manufacturers even without baking or desiccant features in use.” Understanding the range of customer needs and facility designs, McDry is manufactured in tabletop size, feeder-storage capacity, up through very large units.

“WIP is killing U.S. assemblers’ efficiency,” said Ken Bliss, while discussing the future of the American electronics manufacturing plant. Rather than changing the plant’s address — either to a larger facility or to an offshore location — first consider what can be done to make product flow better from incoming inventory to final assembly/box build.

By Meredith Courtemanche, managing editor
and Gail Flower, editor-at-large, SMT