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901D01 SPIN MASTER TOYS (A): FINDING A MANUFACTURER FOR E-CHARGERS Ken Mark prepared this case under the supervision of Professor John Haywood-Farmer solely to provide material for class discussion. The authors do not intend to illustrate either effective or ineffective handling of a managerial situation. The authors may have disguised certain names and other identifying information to protect confidentiality. Ivey Management Services prohibits any form of reproduction, storage or transmittal without its written permission. Reproduction of this material is not covered under authorization by any reproduction rights organization. To order copies or request permission to reproduce materials, contact Ivey Publishing, Ivey Management Services, c/o Richard Ivey School of Business, The University of Western Ontario, London, Ontario, Canada, N6A 3K7; phone (519) 661-3208; fax (519) 661-3882; e-mail cases@ivey.uwo.ca. Copyright © 2001, Ivey Management Services Version: (A) 2009-12-17 In mid-July 1999, Alex Perez, operations manager of Spin Master Toys of Toronto, Ontario, was trying to decide from which supplier to purchase the design and production of the company’s latest toy, an electrically powered airplane named E-Chargers. He had investigated a number of potential suppliers in southern China and had settled on two finalists, Wah Shing Electronics Co. Ltd. (Wah Shing) and Wai Lung Plastics Mfy. Ltd. (Wai Lung). With the anticipated date for the launch of this product just a few short months away, Perez had to make his choice quickly. SPIN MASTER TOYS In April 1994, Anton Rabie, Ronnen Harary and Ben Varadi graduated from The University of Western Ontario, Rabie and Varadi from the Ivey Business School and Harary from political science. The three decided to forgo opportunities in the corporate world and strike out on their own. They were soon making Earth Buddy, a nylon stocking filled with sawdust and grass seed moulded into a head. After immersion in water, the grass seed would sprout to give the head a crop of grass — hair. Although Earth Buddy was clearly a fad item, the company managed to sell 1.5 million of them in just six months, making it one of the most popular gift items that year. In February 1995, the company followed this success with the launch of Spin Master Devil Sticks, which consisted of two hand-held sticks used to manipulate a third. This product also became a resounding success. Eventually the company incorporated Spin Master into its name. The company’s principals believed they had achieved their success through avant-garde, grassroots marketing savvy and a two-tier distribution network, which covered both the major and independent retail segments in North America. In the following three years, Spin Master Toys produced an array of relatively low-technology, high- margin toys for the Canadian market. The product list included: • Spin-A-Blo spinning toys


For the exclusive use of A. BREGANTE, 2019.


This document is authorized for use only by ANTHONY BREGANTE in SCM 822 Supply Management Spring 2019 taught by EVELYN THOMCHICK, The Pennsylvania State University from Dec 2018 to Jun 2019.


Page 2 9B01D001


• Radical Reptiles foam reptiles attached to a metal leash • Top-No-Sis spinning board • My First Kite a starter kite for children • Grow-Things water-absorbent play animals Although Spin Master Toys achieved notable success with these fad items, none reached the unit sales that Earth Buddy had produced. Following its success with Spin Master Devil Sticks, Spin Master Toys spent six months moving from being project-focused to building relationships with retailers, investors and creating a research and development department. At a major 1996 toy show, two inventors approached Rabie and Harary, and many other toy companies with the concept for a compressed-air-powered toy plane. Their initial design was a plastic soft drink bottle with wings attached. Rabie and Harary and the major toy companies rejected the idea as being too ambitious. However, the inventors were persistent, and after the original prototype had been revised several times, Spin Master Toys decided to purchase the rights to the concept. After a frustrating two years and $500,000 in development, Spin Master Toys rolled out its Air Hogs line of compressed-air-powered planes, and, with outside engineering expertise, proceeded to manufacture them in China. The company used an innovative marketing campaign to generate a groundswell of excitement. Air Hogs became a top- selling toy for the 1998 North American Christmas season and was hailed by Popular Science as one of the 100 greatest inventions of the year, creating, as it did, a new category — compressed-air-powered planes. Spin Master Toys had to double production of Air Hogs just to keep up with demand, which was increased by the product shortage in the first few months after the initial shipments. Following the success of Air Hogs, Spin Master Toys decided to develop a line of toys driven by compressed air. It subsequently launched a compressed-air-powered water rocket called the Vector, a car named the Road Ripper, and two new compressed-air-powered product-flanking planes, the V-Wing Avenger and the Renegade. With over 50 people working in its Toronto head office, and a recently opened office in Hong Kong staffed by two project managers, Spin Master Toys was enjoying rapid expansion through its combination of speed to market and innovative marketing. Revenue had grown from nearly $525,000 in 1994 to a projected $45.8 million in 1999, earning it the 10th spot on the Profit 100 Canada’s Fastest-Growing Companies list. THE TOY INDUSTRY The toy market included both hard and soft goods, as well as combinations. Hard goods included plastic and metal toys ⎯ water guns, construction toys, action figures, etc. Soft goods included plush toys, fabrics and dolls. Either hard or soft toys increasingly used embedded electronic components as differentiators. Southern China in and near Hong Kong accounted for a large percentage of the world’s toy manufacturing industry; many manufacturers there had over 50 years of toy-making experience. Beginning with low- technology plastic and metal toys in the early years, toy makers in the area had developed sophisticated design, engineering and manufacturing skills. Such factors could be important. Perez, who used to work for a large toy company, remembered a competitor that sourced from Thailand because production costs were slightly lower. Despite this advantage, the project was a dismal failure, in part because of the lack of toy-making expertise in that country.


For the exclusive use of A. BREGANTE, 2019.


This document is authorized for use only by ANTHONY BREGANTE in SCM 822 Supply Management Spring 2019 taught by EVELYN THOMCHICK, The Pennsylvania State University from Dec 2018 to Jun 2019.


Page 3 9B01D001


Aside from experience, the Hong Kong market had English-speaking workers, a western-style banking system, easy access to low-cost production facilities and workers in China, an entrepreneurial spirit and major port facilities. Deciding to source toys from this region was relatively easy. E-CHARGERS E-Chargers were Spin Master Toy’s next foray into the powered toy airplane market. Unlike the traditional toy airplane powered by a stretched rubber band, gasoline engine, or compressed air, E- Chargers were driven by electricity. The product came in two parts: a battery pack holding four AA dry cell batteries, and a plastic foam airplane containing a small capacitor1 connected to an electric motor. By inserting the battery pack into a special port on the airplane, the user both started the electric motor driving the plane’s propeller and charged the capacitor. The user then disconnected the plane from the battery pack and launched it into the air. Spin Master Toys touted E-Chargers as being capable of flights of up to 90 metres and as “high performing, easy-to-use rechargeable planes that come with their own chargers ⎯ kids just have to let them charge for 10 seconds and then let them fly.” In the company’s view, the product line allowed it to extend the magic of real flight to children as young as five ⎯ younger than the user of Air Hogs. To encourage users to collect E-Chargers, the company planned to produce six different styles and promised high performance at a low price. Spin Master Toys had sold the E-Chargers concept to retailers who subsequently placed endcap2 orders for a December 7, 1999, delivery date to meet the spring planogram3 shelving period. This was the first time that Spin Master Toys would ship products for a planogram. In the past, the company had been able to obtain special shelf space only because of its products’ uniqueness. The main advantage in shipping to a set deadline was the guarantee of shelf space. Spin Master Toys now had to design and make the E- Chargers in time to meet the order date. PRELIMINARY E-CHARGER PRODUCTION ESTIMATES Working back from December 7, 1999, Perez developed a somewhat accelerated schedule that would allow delivery of the E-Chargers plane. Exhibit 1 shows the development schedule, delay in any step of which would make the project late. Rough Engineering Model This stage involved the engineering work needed to craft a design to meet the desired specifications provided by the manufacturer. These specifications included, for example, that the toy would be capable of high-speed production while maintaining acceptable finished-product quality, that it was within the weight and size required, and that any electronic components involved would function within tolerances provided.


1A capacitor is an electronic device used to store charge ⎯ in essence it is like a rechargeable battery. It consists of an arrangement of conductors, separated by an insulator. 2 Endcaps are the attractive, highly visible end spaces on shopping aisles. Executives of Spin Master Toys expected that an


E-Chargers endcap order from a large retail customer would result in sales of about 150,000 units. 3 Retailers took three weeks after Christmas to clear out old stock and put in new toys for the spring period. The layout of


toys by aisle and shelf, known as a planogram, was determined in advance.


For the exclusive use of A. BREGANTE, 2019.


This document is authorized for use only by ANTHONY BREGANTE in SCM 822 Supply Management Spring 2019 taught by EVELYN THOMCHICK, The Pennsylvania State University from Dec 2018 to Jun 2019.


Page 4 9B01D001


Although design work normally took about eight weeks, Spin Master Toys allowed less than three weeks for E-Chargers; the design work would have to be completed no later than the middle of June. On June 22, K-Development of Erie, Pennsylvania, the company to which Spin Master Toys had contracted the development engineering, transferred the completed engineering designs to Reh Kemper, a prototype designer based in Chicago, Illinois. Reh Kemper completed its work on July 2. According to Perez’s timeline, the project was already a week behind schedule for the start of production. Engineering Models After one week of examination, study and discussion of the prototype, Perez and his team approved it and issued a ‘Final Design Release.’ Spin Master Toys then returned it to K-Development, which had five days to improve the rough engineering model and produce three initial prototypes to ensure that the design was engineered correctly to the specified tolerances. This preliminary work showed that the weight of the plane would be of great concern. Initial tests showed that to achieve the expected flight times, E-Chargers had to weigh 17 grams. Once the third engineering model was ready, Perez released it to vendors, requesting preliminary quotes within five days. Tooling From this stage on, all work would be performed at the factory, with regular updates sent to Perez by phone or fax. The tool start involved creating the moulds and other tooling required to produce the toy in mass quantity. Plastic parts such as those used in E-Chargers were normally made by injection moulding in which a molten plastic was injected into the carefully machined cavity inside a two-piece block of metal (the mould). After applying pressure and cooling, the mould was opened to remove the part. In practice, moulders might use large moulds capable of making several parts simultaneously. This crucial step usually took four weeks; the time required was usually factored into the design component. Perez estimated that Spin Master Toys would need the first test samples by September 8. Engineering Pilots The next step was testing the moulds and other tools, ideally with two engineering pilots. At least one engineering pilot had to be performed before the next stage, as it was almost inevitable that the moulds would need some adjustments. A factory would count on three weeks to run both engineering pilots. The first and second engineering pilots and the shots from them had to be completed by October 8. Final Engineering Pilot In this two-week process, the final moulds and other tools were finished. To have the product ready for the production pilot date of October 21, this step had to be completed in one week.


For the exclusive use of A. BREGANTE, 2019.


This document is authorized for use only by ANTHONY BREGANTE in SCM 822 Supply Management Spring 2019 taught by EVELYN THOMCHICK, The Pennsylvania State University from Dec 2018 to Jun 2019.


Page 5 9B01D001


Production Pilot This step tested whether the moulds and other tools would withstand high-speed production while delivering product within the required tolerances. The production pilot tests and the final quote had to be approved by November 22. Production Start In the case of E-Chargers, Perez estimated that production would have to start at least two weeks before the shipping date to allow production of enough units to meet retailer demand. Thus, production would have to start on November 22 to just make the December 7 ship date. SPIN MASTER TOYS’ CONTRACT MANUFACTURERS In the past, Spin Master Toys had obtained its products from various Chinese manufacturers. Because of the large differences between its previous toys, the company had treated each product separately. Consequently, Spin Master Toys had gained considerable experience with several suppliers, as each toy had been manufactured by a different factory. Spin Master Toys believed that its product closest in design to E-Chargers was Air Hogs. In May 1999, while working on Water Rocket, one of its second generation compressed-air-powered toys, Spin Master Toys had visited Kin Seng Ltd., the Air Hogs manufacturer. During a factory tour, Spin Master Toys discovered that the Kin-Seng factory was at capacity. Because of the tightness of its E-Chargers schedule, Spin Master Toys decided not to consider Kin Seng as a potential supplier. Spin Master Toys thus searched for an alternative manufacturer, eventually creating a short list of two, Wai Lung and Wah Shing. WAI LUNG In early 1999, Harary had been introduced to the owner of privately owned Wai Lung Manufacturing Co. Harary believed that Spin Master Toys would receive more attention from an owner-operated factory than from a subsidiary of a public corporation. Reassuring Harary that he would provide personal attention to this project, Eric Lee, Wai Lung’s owner seemed eager to strike a deal with Spin Master Toys. Harary subsequently initiated a toy project, Flick Trix Finger Bikes, with Wai Lung. Finger Bikes were miniature die-cast replicas of brand-name BMX bikes with fully functional parts. Already in a rushed situation, Harary had asked Wai Lung if it could engineer the Finger Bikes, produce and ship them in six weeks ⎯ it normally took other manufacturers six to 10 weeks to perform these tasks. With Finger Bikes already engineered by Reh Kemper, Spin Master Toys would rely on Wai Lung’s staff to beat a competitor to the market. Working at a break-neck pace, Wai Lung had been able not only to build the tools in the allotted time, but also to increase production very quickly with little lead time. Although Wai Lung had initially built tools to support a production rate of 10,000 bikes a day, once it was evident that demand was strong, the company was able to build additional tools in four weeks versus the previous six weeks, boosting Finger Bikes production to 40,000 bikes a day. Not only had Wai Lung come through for Spin Master Toys, but it went on to produce a high quality toy and increased production more steeply than Harary had thought possible. Perez expressed his thoughts:


For the exclusive use of A. BREGANTE, 2019.


This document is authorized for use only by ANTHONY BREGANTE in SCM 822 Supply Management Spring 2019 taught by EVELYN THOMCHICK, The Pennsylvania State University from Dec 2018 to Jun 2019.


Page 6 9B01D001


Wai Lung is highly committed and has put us at the top of its priority list. During our early experience with Finger Bikes, they returned calls promptly and answered all questions during the critical production period.

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