Electronic transformer-電子變壓器-223-20181022
平面變壓器打標(biāo)、片式變壓器打標(biāo)、薄膜變壓器打標(biāo)、空心變壓器打標(biāo);
平面變壓器激光打標(biāo)、片式變壓器激光打標(biāo)、薄膜變壓器激光打標(biāo)、空心變壓器激光打標(biāo);
變壓器打標(biāo)、電子變壓器打標(biāo)、高頻電子變壓器打標(biāo);
變壓器激光打標(biāo)、電子變壓器激光打標(biāo)、高頻電子變壓器激光打標(biāo);
變壓器磁芯激光打標(biāo)、電子變壓器磁芯激光打標(biāo)、高頻電子變壓器磁芯激光打標(biāo);
變壓器磁芯打標(biāo)、電子變壓器磁芯打標(biāo)、高頻電子變壓器磁芯打標(biāo);
工頻變壓器激光打標(biāo)、中頻變壓器激光打標(biāo)、音頻變壓器激光打標(biāo);
超音頻變電壓激光打標(biāo)、高頻變壓器激光打標(biāo);
電源變壓器激光打標(biāo)、脈沖變壓器激光打標(biāo)、音頻變壓器激光打標(biāo)、穩(wěn)壓變壓器激光打標(biāo);
電子變壓器
為適應(yīng)電子設(shè)備愈來愈輕薄短小,高頻電子變壓器一個(gè)主要發(fā)展方向是從立體結(jié)構(gòu)向平面結(jié)構(gòu)、片式結(jié)構(gòu)、薄膜結(jié)構(gòu)發(fā)展,從而形成一代又一代的新的高頻電子變壓器:平面變壓器、片式變壓器、薄膜變壓器。高頻電子變壓器的整體結(jié)構(gòu)的發(fā)展,不但形成新的磁芯結(jié)構(gòu)和線圈結(jié)構(gòu),采用新的材料,而且對(duì)設(shè)計(jì)方面和生產(chǎn)工藝方面也帶來新的發(fā)展方向。在設(shè)計(jì)方面,除了要研究各種新結(jié)構(gòu)的電磁場(chǎng)分布,如何達(dá)到最佳的優(yōu)化設(shè)計(jì),還要研究多層結(jié)構(gòu)的各種問題。在生產(chǎn)工藝方面,要研究各種新的加工方法,從而保證性能的一致性和實(shí)現(xiàn)加工工藝的機(jī)械化和自動(dòng)化等。
磁芯在采用軟磁材料,以電磁感應(yīng)原理工作的高頻電子變壓器中是最關(guān)鍵的部件。磁芯材料的主要發(fā)展方向是降低損耗,加寬使用的溫度范圍和降低成本。磁芯結(jié)構(gòu)的主要發(fā)展方向是如何形成形狀和尺寸最佳(對(duì)電磁性能、散熱、用量和成本等參數(shù))的平面磁芯、片式磁芯和薄膜磁芯。
根據(jù)高頻電子變壓器整體結(jié)構(gòu)的發(fā)展要求,磁芯結(jié)構(gòu)的發(fā)展方向是平面磁芯、片式磁芯和薄膜磁芯。平面磁芯以前有的是用原來的軟磁鐵氧體磁芯進(jìn)行改造,現(xiàn)在已有專門用于平面變壓器的各種低高度軟磁鐵氧體磁芯。
關(guān)鍵技術(shù)要點(diǎn):
電子變壓器激光打標(biāo),KingmilanLaser研發(fā)針對(duì)電子行業(yè)電子變壓器的磁芯及黃色膠帶研出專用激光打標(biāo)噴碼機(jī),采用國(guó)際上最先進(jìn)的冷光源激光技術(shù),特別能被磁芯體、包裝黃膠帶等各種材質(zhì)所吸收,可廣泛應(yīng)用電子變壓器行業(yè)、PCB行業(yè)等。具有表面基本無破損,打標(biāo)清晰,使用壽命長(zhǎng)達(dá)5年以上,基本無維護(hù)無耗材等優(yōu)點(diǎn)。相對(duì)傳統(tǒng)油墨噴碼機(jī),標(biāo)識(shí)出的產(chǎn)品清晰直觀更具制品檔次,不易藥水溶劑擦除符合永久性要求等優(yōu)點(diǎn)。相對(duì)其它激光噴碼打標(biāo),具有表面零損傷,標(biāo)識(shí)更清晰,使用壽命長(zhǎng)1-2倍等優(yōu)點(diǎn)。
Plane transformer marking, chip type transformer marking, film transformer marking, hollow transformer marking;
Laser marking of planar transformer, laser marking of chip transformer, laser marking of thin film transformer, laser marking of hollow transformer;
Transformer marking, electronic transformer marking, high frequency electronic transformer marking;
Transformer laser marking, electronic transformer laser marking, high frequency electronic transformer laser marking;
Transformer core laser marking, electronic transformer core laser marking, high frequency electronic transformer core laser marking;
Transformer core marking, electronic transformer core marking, high frequency electronic transformer core marking;
Power frequency transformer laser marking, medium frequency transformer laser marking, audio transformer laser marking;
Ultra-audio variable voltage laser marking, high-frequency transformer laser marking;
Power transformer laser marking, pulse transformer laser marking, audio transformer laser marking, voltage regulator transformer laser marking;
Electronic transformer
In order to adapt to the increasingly light and thin electronic devices, a major development direction of high-frequency electronic transformers is to develop from three-dimensional structures to planar structures, chip structures and thin-film structures, thus forming new high-frequency electronic transformers from generation to generation: planar transformers, Chip transformer, thin film transformer. The development of the overall structure of high-frequency electronic transformers not only forms a new core structure and coil structure, but also adopts new materials, and brings new development directions in terms of design and production process. In terms of design, in addition to studying the electromagnetic field distribution of various new structures, how to achieve the optimal optimization design, we must also study the various problems of the multilayer structure. In the production process, various new processing methods are to be studied to ensure the consistency of performance and the mechanization and automation of the processing technology.
The magnetic core is the most critical component in high-frequency electronic transformers that use soft magnetic materials and operate on the principle of electromagnetic induction. The main development direction of magnetic core materials is to reduce losses, widen the temperature range used and reduce costs. The main development direction of the core structure is how to form a planar core, a chip core and a thin film core with the best shape and size (parameters for electromagnetic performance, heat dissipation, amount and cost).
According to the development requirements of the overall structure of high-frequency electronic transformers, the development direction of the magnetic core structure is a planar magnetic core, a chip core and a thin film magnetic core. Previously, the planar magnetic core was modified with the original soft ferrite core. Now there are various low-profile soft ferrite cores specifically for planar transformers.
Key technical points:
Laser marking of electronic transformers, KingmilanLaser developed a special laser marking printer for magnetic cores and yellow tapes of electronic transformers in the electronics industry. It adopts the most advanced cold light source laser technology in the world, especially can be magnetic core, packaging yellow tape. Such as the absorption of various materials, can be widely used in the electronic transformer industry, PCB industry. It has basically no damage on the surface, clear marking, long service life of more than 5 years, basically no maintenance and no consumables. Compared with the traditional ink jet printer, the identified products are clear and intuitive, and have better product quality, and it is not easy to remove the solvent solvent to meet the permanent requirements. Compared with other laser marking, it has zero surface damage, clearer marking and longer service life of 1-2 times.
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