?

Microchip 3D Models

Find the best Microchip 3D Models, free download in STL, FBX, GLB, OBJ, 3MF, USDZ for 3D modeling and creation in Blender, 3D printing, game developing, animation, eCommerce, AR/VR and etc. Generated by Tripo AI 3D Generator.

Anonymous1775297924
Registers & Data Path IN TERMS OF Computer Organization and Architecture on a electronic circuit or chip
Anonymous1774767253
create 3d chip product
Anonymous1768414173
Anonymous1774535857
按照图片生成
Anonymous1751601301
Anonymous1766326487
Anonymous1773318788
1️⃣ العالم الرقمي
الرقمي يعني عالم ديال الحاسوب.
فيه:
أكواد
برامج
ليزر
منصات مضيئة
تخيل بحال أنك داخل حاسوب كبير.
المنظر: 🟦 خطوط زرقاء
⬛ خلفية سوداء
💻 أكواد طايرة
Anonymous1772144570
Anonymous1774278897
Anonymous1774321091
Anonymous1774308121
Anonymous1774308121
Anonymous1774201779
Anonymous1760052350
Front view, perfectly centered 3D model of two human hands facing each other horizontally, holding a square computer microchip in the center. The hands are simplified but realistic, with clean geometry and smooth surfaces, optimized for 3D printing or CNC. Red threads connect the fingers and the chip, forming clean, slightly thick strands (not too thin), evenly distributed and symmetrical.

The microchip is the focal point, with a raised surface and defined edges, slightly thicker than the threads. Composition is flat and frontal, no perspective distortion, designed as a bas-relief or low-relief sculpture suitable for signage.

Solid structure, no floating disconnected parts, all elements physically connected. Clean topology, no noise, no unnecessary micro details. Background plane included for mounting.

Material style: matte plastic or resin. High clarity, production-ready 3D asset.
no floating parts
all elements connected
thick geometry
low to medium detail
clean topology
manufacturable
bas-relief
Anonymous1760052350
Transformar la imagen a modelo 3D para imprimir, dos manos sosteniendo un chip usando hilos para sostenerlo que se conectan a las manos
Anonymous1773291557
chip
Anonymous1748067052
(RPA技术与微流控结合,模型核心展示,体现全自动)
仅需一步人工操作,其余所有步骤由芯片完成,液体流动全程封闭,模型中用有色液体,(如红色为样本,蓝色为试剂)演示混合流动,全程无人工干预,具体流程(按模型动线标注)
人工仅做:将样本滴入芯片(样本进样区)
芯片自动步骤:
1.样本在毛细作用下流向前处理腔,与预先包被在前处理腔的样本处理液自动混合,二分钟内完成病毒裂解,释放核酸,同时聚合样本中的抑制物,避免影响后续的RPA扩增
2.处理后的核酸样本,延微通道自动流入RPA扩增腔与腔体内的预埋的冻干RPA酶体系,引物探针自动融合,启动恒温扩增10到15min讲样本复制上亿份
3.扩增后的核酸产物,延微通道自动流入检测腔(内置LFD侧向流层析试纸条,模型可镶入简易试纸条)产物与试纸条上的标记物结合,自动层析显色
4.结果显示区:两条清晰条带(阳性两条,阴性一条)人工直接肉眼判读,全程总计15min内完成
融合后的三大优势
1.全自动化(微流控主导控线,RPA主导反应)模型标注:微流控=芯片内的全自动物流员,通过毛细作用让液体在通道中自动流动,混合,代替所有人工移液,在恒温区完成扩增反应,两者分工明确
2.超微量,主要体现小型处理化,
3.便携一体化,迷你恒温器,重量低,可携带
Anonymous1773058910
Enter invite code to get credits!