
Precision-Stamped Nickel Silver RF Shields Factory Ultimate
GHz-Frequency EMI Protection with Micron-Level Accuracy
Description Of Precision-Stamped Nickel Silver RF Shields Factory Ultimate
GHz-Frequency EMI Protection with Micron-Level Accuracy
Nickel silver alloy RF shielding stands as the pinnacle of
electromagnetic interference (EMI) mitigation for high-frequency
applications. Engineered with precision, this advanced shielding
solution combines the exceptional electrical conductivity of nickel
silver—a copper-nickel-zinc alloy—with tailored manufacturing
processes to deliver unmatched performance across GHz-range
frequencies. Ideal for aerospace, telecommunications, medical
devices, and 5G infrastructure, it addresses the growing demand for
reliable, durable, and cost-effective EMI protection in compact,
high-complexity systems.
Material Of Precision-Stamped Nickel Silver RF Shields Factory Ultimate
GHz-Frequency EMI Protection with Micron-Level Accuracy
| Material and Testing Report |
| Metal | Aluminum | Aluminum 2024 Aluminum 5052 Aluminum 6061-T6 |
| Aluminum 6063 Aluminum 7075 Aluminum MIC 6 |
| Stainlesss steel | SUS303, SUS304, SS316, SS316L |
| UNS S32304 UNS S32003 UNS S31803 UNS S32205 |
| UNS S32760 UNS S32750 UNS S32550 UNS S32707 UNS S33207 |
| Steel | 12L14 4140 1018 1045 12L14 4130 4142 ,O1 tool steel, |
| D2 tool steel,A36 1008 ,Alloy42 |
| Titanium | Grades 1-4 Grade 5 Grade 9 |
| Brass | 260, C360, H59, H60, H62, H63, H65, H68, H70 |
| Copper | |
| Phosphor bronze | |
| Bronze | C932 |
| Carbon fiber | |
| PTFE | Polytetrafluoroethylene (PTFE) |
| Plastic | Acetal | (Polyoxymethylene (POM)) [Delrin] |
| PEEK | Polycarbonate |
| Polystyrene | Polyether Ketone |
| Nylon | |
| ABS | |
| PVC | |
| Acrylic | |
| G-10 Garolite Fiberglass | |
| Finish Result |
| As Machined | Sharp edge and burrs will be removed |
| Bead Blast | The part surface is left with a smooth, matte appearance |
| Anodized | Type II creates a corrosion-resistant finish. Parts can be anodized
in different colors—clear, black, red, and gold are most common—and
is usually associated with aluminum. |
Type III is thicker and creates a wear-resistant layer in addition
to the corrosion resistance seen with Type II. |
| Powder Coat | This is a process where powdered paint is sprayed onto a part which
is then baked in an oven. This creates a strong, wear- and corrosion-resistant layer that is
more durable than standard painting methods. A wide variety of colors are available to create
the desired aesthetic. |
| Customized | Cotact us via email, skype, whatsapp. We will look into a finishing
process for you. |
| Others |
| Tolerance | +/-0.005mm |
| Lead Time | 1-2 weeks for samples, 3-4 weeks for mass production |
| Drawing Accepted | Solid Works, Pro/Engineer, AutoCAD(DXF, DWG), PDF |
| Payment Terms | TT/Paypal/WestUnion
|
Industries Of Precision-Stamped Nickel Silver RF Shields Factory Ultimate
GHz-Frequency EMI Protection with Micron-Level Accuracy
1. Aircraft parts
2. Automobile parts
3. Fixture parts
4. Medical parts
5. Petro chemical parts
6. Education parts
Features Of Precision-Stamped Nickel Silver RF Shields Factory Ultimate
GHz-Frequency EMI Protection with Micron-Level Accuracy
1. High precision
2. Short processing time
3. Easier customized/personalized

Our Advantages
Ultra-High Precision for Complex Geometries
Advanced stamping technologies enable the fabrication of intricate
shield shapes—such as deep-drawn frames, perforated grids, and
multi-layer enclosures—with micron-scale precision. This ensures
perfect fitment in compact devices (e.g., smartphones, IoT sensors)
while maintaining consistent electrical performance, minimizing
signal leakage, and eliminating assembly mismatches.
Enhanced Mechanical Durability & Corrosion Resistance
Nickel silver’s superior ductility and stress corrosion resistance
allow stamped shields to withstand mechanical stresses (e.g.,
vibration, thermal cycling) and harsh environmental conditions
(e.g., humidity, salt spray). Unlike plated alternatives, the
homogeneous alloy structure prevents delamination or coating wear,
ensuring decades of reliable operation in outdoor telecom towers,
industrial machinery, and marine environments.
Cost-Effective High-Volume Production
Automated stamping lines (e.g., progressive dies, multi-station
presses) enable rapid, repeatable manufacturing at scale—producing
hundreds of parts per minute with minimal material waste. This
efficiency reduces per-unit costs, accelerates time-to-market for
OEMs, and supports just-in-time delivery for industries like
consumer electronics, automotive, and medical devices.
Sustainable & Circular Manufacturing Practices
The factory prioritizes eco-friendly production: 100% recyclable
nickel silver alloy, water-based lubricants (reducing VOC
emissions), and closed-loop recycling systems for scrap metal.
These practices align with global sustainability goals (e.g., EU
RoHS, REACH) and reduce lifecycle environmental impact, making the
shields ideal for green electronics, renewable energy systems, and
circular economy initiatives.

FAQ
Q1: Where can I get product & price information?
A1:Send us inquiry e-mail, we will contact you as we receive your
mail.
Q2: How long can I get the sample?
A2:Depends on your specific items, within 3-7 days is required
generally.
Q3: What kinds of information you need for quote?
A3:Kindly please provide the product drawing in PDF, and will be
better you can provide in STEP or IGS.
Q4: What are the payment terms?
A4: We accept 50% as payment deposit, when the goods is done, we
take photos for your check and you then pay the balance.
Q5: Are you a trading company or factory?
A5:We are direct factory with 10 experienced engineers and more
than 650 employees as well approximate 2,000 square ft. workshop
area.
Q6: What shall we do if we do not have drawings?
A6:Please send your sample to our factory, then we can copy or
provide you better solutions. Please send us pictures or drafts
with dimensions (Length, Hight, Width), CAD or 3D file will be made
for you if placed order.