Aluminum Milling Parts Cnc Bicycle Machining Drawing Part
Specifications: customized according to the requirements of drawings and samples
Introduction: Professional hardware accessories processing factory
Description
Technical Parameters

Material: aluminum, stainless steel, brass, copper, titanium ect
Process: CNC turning machining aluminum parts, anodizing
Application: precision CNC machining anodizing aluminum parts, aluminum component
Service: OEM/ODM Anodizing 6061-T6 Supplier
Capacity:
CNC Turning | φ0.5 - φ300 * 750 mm | +/-0.006 mm~0.01mm |
CNC Milling | 510 * 1020 * 500 mm(max) | +/-0.006 mm~0.01mm |
CNC Stamping | 1000 * 1000 mm(max) | +/-0.006 mm~0.01mm |
Drawing Format | Auto CAD, Solid works, Pro/E, PDF. | |
Surface finish:
Aluminum parts | Stainless Steel parts | Steel |
Clear Anodized | Polishing | Zinc plating |
Color Anodized | Passivating | Oxide black |
Sandblast Anodized | Sandblasting | Nickel plating |
Chemical Film | Laser engraving | Chrome plating |
Brushing | Carburized | |
Polishing | Hot treatment | |
Chroming | Powder Coated |
Equipment | CNC stamping/punching machine, CNC bending machine, CNC cutting machine, 5~250 tons punching machines, welding machine, polish machines. |
Making process | Stamping, deep drawing,bending, punching, laster cutting,threading, welding, tapping, riveting, grinding |
Size | According to customer's desing |
Thickiness | 0.5mm ~12mm, or other special available |
Sample confirmation | Before start mass production we will send the pre-production samples to customer for confirmation. We will modify the mould untill customer satisfied. |
Products Scope | Funiture hardware, electronice hardware, construction hardware, sheet metal processing, machinery parts, hydraulic fitting |
Packing | According to customer's requirements |
Product include | metal stamping parts, metal press stamping parts, metal welding parts, metal drawing parts, metal punch parts, CNC Metal parts, CNC metal machining parts, CNC metal machined parts, CNC metal milling aluminum parts, CNC metal turning stainless steel parts, Metal chassis, metallic cabinets, metal cabinets, metal cases, metal enclosures, metal boxes metallic machinery casing, metallic communication products, metallic auto parts, metallic refrigerator parts, metallic washing machine parts, vending machine shell fabrication, communication cabinet fabrication, mold designing making and so on. OEM progressive metal stamping parts |
Material available | Carbon steel (CRS/SPCC, SECC,etc),Stainless steel, spring steel, Bronze (berylium, phosphor, etc), brass, copper alloy, aluminum alloy, tinplate, nickel silver, plastic |
Surface treatment available | zinc/nickel/chrome/tin plating(colour or natural), Galvanization, anodizing, oil spraying, powder coating, polishing, passivate, brush, wire drawing, etc. |
Metal processing available | Stamping parts: tooling making, samples approval, cutting, stamping, punching, tapping, welding, bending and forming, finishing, assembly; CNC parts: CNC lathe milling, CNC lathe turning, drilling, tapping, finishing, assembly, packing |





Our Warehouse



Remarks: About the packign methods, usually, we will discuss with our customers. As different parts( CNC parts,),
different weight, different shape, so we will suggest the best protective way to pack the goods. Below are some examples for your reference
Shenzhen pride Industrial Co., Ltd.
E-mail: crush@pride-cnc.com
Whatsapp:+8615629044483
Fax:+86-917-3387002
Add: Block D, Dianlian Science Park, Matian St., Guangming District, Shenzhen 518106, China
Latest News
Weightless-P technology overview
Weightier technology is a wireless communication technology specially designed by Professor William Web of the University of Cambridge in 2012 for low power consumption, low cost and complex and changeable communication scenarios in Internet of Things applications. The main E is for the free segment of 1GHz or less. Inside. Compared with traditional Cicada Nest wireless communication technologies, such as 3G.4, Weightless technology requires lower power and cost per square meter. As for traditional short-range wireless communication technologies, such as WFi, Weightless-P technology performs well in terms of coverage. This article briefly introduces the key parameters of Weightiess-P technology, hoping to provide reference for related 1 after use
The overview of system capacity system early is often key. It not only refers to the number of nodes connected at the same time, but also considers the average data length, transmission time, transmission frequency, and capacity scalability before down-scrambling will be greatly affected by Runxin bandwidth: usually In other words, in applications where there are more in-line communications, a small bandwidth can provide the best channel tolerance.
At this point, the Weightless-P technology uses a relatively small bandwidth such as 125kHz to transparently transmit data to solve the problem of expanding the uplink bandwidth. In addition, Wcightless-p technology uses frequency reuse technology to achieve a data rate of 200bps, and the frequency of Weightless technology is used as the exempt frequency band designated by the International Telecommunications Union as the sub-GTtz TSMASRD.
In most IoT applications, cost is a very important indicator. Especially when choosing the free-band wireless communication technology or the traditional cellular M2M technology that requires a paid segment. Weightless-p color uses commonly used modulation technologies such as GMSK and OQPSK, which greatly reduces the development cost of terminal chips and reduces the development difficulty.
Many Internet-connected products are powered by batteries, therefore, under the condition of a moment of electric bubble capacity. The power consumption of the product has become an important indicator. The total energy loss includes the energy consumption during data transmission and the time of data transmission, that is, the duty cycle. The Weightless technology that also uses GMSK and OQPSK has outstanding performance in interference rejection, so it can greatly reduce energy consumption under certain channel conditions. In addition, after testing, the transmission power of the terminal equipment is 17dBm, which is much smaller than the traditional cellular network that requires 50dBm transmission power.
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