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The country of origin of an electric motor and the applicability of certain trade remedies under Section 301
N318006 March 19, 2021 OT:RR:NC:N2:220 CATEGORY: Origin Lenny Feldman Sandler, Travis & Rosenberg, P.A. 5385 Blue Lagoon Drive - Suite 200 Miami, FL 33126 RE: The country of origin of an electric motor and the applicability of certain trade remedies under Section 301 Dear Mr. Feldman: In your letter dated March 1, 2021 you requested a country of origin ruling on behalf of your client, General Transmissions, Inc., and request a confirmation that Section 301 remedies do not apply to the electric motor assembly upon importation. The merchandise under consideration is referred to as a Brushed Permanent Magnet Direct Current Motor (PMDC motor), PN AEM70166, which is described as a DC electric motor that operates on 36 VDC and has a maximum output of 375 W. The PDMC motor is said to be used in various power tools and lawn/garden appliances. You state that the PMDC motor is comprised of three main subcomponents: a wound rotor, an unwound magnetized stator, and the brush holder, where each subcomponent is composed of various parts including gears, bearings, magnets, a stator housing, a shaft, a lamination stack, a commutator, and more. The three main subcomponents are manufactured and assembled into the PMDC motor as described below, where you provide three scenarios describing an assembly process that will be the same for each scenario aside from the country location for certain production steps. In each scenario, you state that the rotor subassemblies will be manufactured by stamping steel coil into laminations, stacking the laminations, inserting a shaft into the lamination stack, and machine pressing the bushing and commutator onto the shaft. After the rotor is assembled, the core is placed on a winding machine where enameled wire is wound onto the commutator/rotor core assembly. The rotor is further processed, tested, an internal cooling fan blade is added, and the finished rotor subassembly is balanced. The production of the stator subassembly for each scenario consists of gluing magnets inside the stator housing, machine pressing a bearing into the rear of the housing, and placing the stator subassembly into a magnetizing machine. The production of the brush holder subassembly for each scenario consists of crimping the carbon brushes onto copper leaf springs, and spot welding together the brushes, wire, and a capacitor. The subassembly is riveted into a plastic bracket, electric terminals are crimped and further processed to produce the final brush holder assembly. The final assembly operation for each scenario consists of coupling the rotor subassembly and the stator subassembly via a servo-press, inserting the brush holder subassembly into the housing, and riveting an end cap. A worker applies voltage to the PMDC motor and manually adjusts the carbon brush position on the commutator. The PMDC motor is tested, a gear is machine pressed onto the output shaft, and the device is marked and packaged. In the first scenario, the stamping of steel sheet, stacking of the laminations, and inserting of the shaft/coupling via machine press to produce a rotor core will occur in Vietnam. The rotor core is then shipped to China where the commutator is pressed onto the shaft, the core is wirewound, further processed, tested, a fan blade is added, and the finished rotor subassembly is balanced. For the stator, a housing of Vietnamese origin is shipped to China where the magnets are glued inside the stator housing and a machine press attaches the bearing to the rear of the housing. Once assembled, the stator subassembly is magnetized. The brushholder subassembly is manufactured in China as described above. The final assembly of the PMDC motor in scenario one occurs in China. In the second scenario, the stamping of steel sheet, stacking of the laminations, and inserting of the shaft/coupling via machine press to produce a rotor core will occur in China. The rotor core is then shipped to Mexico where the commutator is pressed onto the shaft, the core is wirewound, further processed, tested, a fan blade is added, and the finished rotor subassembly is balanced. For the stator, a housing of Chinese origin is shipped to Mexico where the magnets are glued inside the stator housing and a machine press attaches the bearing to the rear of the housing. Once assembled, the stator subassembly is magnetized. The brushholder subassembly is manufactured in Mexico as described above. The final assembly of the PMDC motor in scenario two occurs in Mexico. In the third scenario, the stamping of steel sheet, stacking of the laminations, and inserting of the shaft/coupling via machine press to produce a rotor core will occur in Mexico. Also in Mexico, the commutator is pressed onto the shaft, the core is wirewound, further processed, tested, a fan blade is added, and the finished rotor subassembly is balanced. For the stator, a housing of Chinese origin is shipped to Mexico where the magnets are glued inside the stator housing and a machine press attaches the bearing to the rear of the housing. Once assembled, the stator subassembly is magnetized. The brushholder subassembly is manufactured in Mexico as described above. The final assembly of the PMDC motor in scenario three occurs in Mexico. The marking statute, section 304, Tariff Act of 1930, as amended (19 U.S.C. 1304), provides that, unless excepted, every article of foreign origin (or its container) imported into the U.S. shall be marked in a conspicuous place as legibly, indelibly and permanently as the nature of the article (or its container) will permit, in such a manner as to indicate to the ultimate purchaser in the U.S. the English name of the country of origin of the article. The “country of origin” is defined in 19 CFR 134.1(b) as “the country of manufacture, production, or growth of any article of foreign origin entering the United States. Further work or material added to an article in another country must effect a substantial transformation in order to render such other country the 'country of origin' within the meaning of this part.” The test for determining whether a substantial transformation will occur is whether an article emerges from a process with a new name, character or use, different from that possessed by the article prior to processing. See Texas Instruments Inc. v. United States, 69 C.C.P.A. 151 (1982). This determination is based on the totality of the evidence. See National Hand Tool Corp. v. United States, 16 C.I.T. 308 (1992), aff’d, 989 F.2d 1201 (Fed. Cir. 1993). With regard to the country of origin and applicability of Section 301 remedies under the first scenario, in our opinion, the stamping and pressing work performed in Vietnam produces a rotor core of Vietnamese origin. The rotor core is subsequently shipped to China where the Chinese commutator is pressed onto the shaft, the core is wirewound, and the rotor subassembly is finished and tested. Likewise, the stator housing, which is also produced in Vietnam, is shipped to China for final assembly into a stator subassembly by adding the magnets and the bearing. Both the rotor and stator subassemblies are combined with the Chinese brushholder subassembly and the PMDC motor is tested and packaged. In our view, the rotor and stator are the dominant components of a finished electric motor. Based on the description provided in the first scenario, the Vietnamese rotor cores are not substantially transformed by adding the commutator and winding wire in China. Furthermore, the Vietnamese stator housing is not substantially transformed as a result of gluing magnets and attaching a bearing in China. While the brushholder subassembly and final assembly/testing is performed in China, the two dominant components (the rotor and the stator) are not substantially transformed as a result. Thus, it is the opinion of this office that the assembly process performed in China does not result in a substantial transformation of the Vietnamese components and the motors un
of sections 102.11(a)(1) and 102.11(a)(2) does not yield a country of origin determination, we look to section 102.11(a)(3). “Foreign material” is defined in section 102.1(e) as “a material whose country of origin as determined under these rules is not the same country as the country in which the good is produced.” The applicable tariff shift requirement in section 102.20 for the finished Transmission of heading 8501, HTSUS, is:A change to subheading 8501 from any other heading. The foreign material in the second scenario consists of the Chinese rotor core, commutator, stator housing, the brushholder subassembly, and various parts and components. The Chinese components are shipped to Mexico where the commutator is pressed onto the shaft, the core is wirewound, and the rotor subassembly is finished and tested. The stator housing is also shipped to Mexico where the magnets and the bearing are added. Along with the Chinese brushholder subassembly, the rotor and stator subassemblies are assembled into a functioning electric motor. All of the foreign materials are identified as being sourced from China. As the none of the components that make up the motors are classified under heading 8501, HTSUS, the tariff shift requirement of section 102.11(a)(3) is met. As such, we find that the motors described under scenario two meet the marking rule and may be marked as products of Mexico. With regard to the applicability of Section 301 remedies under the second scenario, in our opinion, the stamping and pressing work performed in China produces a rotor core of Chinese origin. The rotor core is subsequently shipped to Mexico where the Chinese commutator is pressed onto the shaft, the core is wirewound, and the rotor subassembly is finished and tested. Likewise, the stator housing, which is also produced in China, is shipped to Mexico for final assembly into a stator subassembly by adding the magnets and the bearing. In Mexico, both the rotor and stator subassemblies are combined w