Pure Silver
| Identification | Feature | Main Application Field | Supply Form |
| Ag | Environmentally friendly, high conductivity, low and stable contact resistance. | Relays, switches | Wire, Strip, Special-shaped Profiles |
| Identification | Silver content (Wt.%) | Density (g/cm³) | Resistivity (μΩ.cm) | Vickers hardness (HV) | Tensile Strength (MPa) | Elongation Rate (%) |
| Ag | 99.99 | 10.50~10.55 | 1.60~1.90 | 50~120 | 200~480 | 1~10 |
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| Ag 200X transverse | Ag 200X longitudinal |
Fine-grain Silver
| Identification | Feature | Main Application Field | Supply Form |
| FAg | It adds a little nickel to form silver alloy in the substrate of silver, improve the intensity of material, the resistance tomelting, welding and wearing; at the same time, it has high conductivity and low contact resistance | Relays, switches | Wire, Strip, Special-shaped Profiles |
| Identification | Silver content (Wt.%) | Density (g/cm³) | Resistivity (μΩ.cm) | Vickers hardness (HV) | Tensile Strength (MPa) | Elongation Rate (%) |
| FAg | 99.80~99.90 | 10.50~10.55 | 1.73~1.93 | 50~110 | 240~355 | 1~20 |
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| FAg 200X transverse | FAg 200X longitudinal |
Silver-nickel
| Identification | Feature | Main Application Field | Supply Form |
| AgNi | Environmentally friendly, adopt the advanced technique of sintering and extrusion, nickel-grain homogeneously distribute as fibers. The material has high conductivity,low&stable contact resistance; better resistance of melting, welding and wearing under the middle and low current; the material transfers less under the condition of direct current; if the content of nickel increasesjt can improve the resistance of melting and welding, but raise contact resistance and elevate the temperature. | Relays, contactors, circuit breakers, switches | Wire, Strip, Special-shaped Profiles |
| Identification | Silver content (Wt.%) | Density (g/cm³) | Resistivity (μΩ.cm) | Vickers hardness (HV) | Tensile Strength (MPa) | Elongation Rate (%) |
| AgNi(2) | 97~99 | 10.30~10.50 | 1.65~1.85 | 60~90 | 200~300 | 1~20 |
| AgNi(10) | 89~91 | 10.22~10.42 | 1.75~1.99 | 75~120 | 240~450 | 1~30 |
| AgNi(12) | 86~88 | 10.24~10.44 | 1.90~2.10 | 90~130 | 250~450 | 1~25 |
| AgNi(15) | 83~85 | 10.22~10.42 | 1.95~2.15 | 90~140 | 250~535 | 1~20 |
| AgNi(20) | 78~80 | 10.15~10.35 | 2.05~2.25 | 100~130 | 320~490 | 1~20 |
| AgNi(25) | 74~76 | 9.90~10.10 | 2.05~2.25 | 100~130 | 300~400 | 1~20 |
| AgNi(30) | 69~71 | 9.85~10.05 | 2.25~2.45 | 85~130 | 270~420 | 5~30 |
| AgNi(40) | 59~61 | 9.77~9.81 | 2.59~2.66 | 110~120 | 390~420 | 1~2 |
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| AgNi(10) transverse | AgNi(10) longitudinal |
Silver-Cadmium Oxide Contact
| Identification | Feature | Main Application Field | Supply Form |
| AgCdO | With advanced process of sintering and extrusion, material particles of AgCdO distribute uniformly among silver substrate. Under the action of electric arc, AgCdO composes,evaporates,which makes switch point surface cool down, that is reducing theoxyarc energy and quenching arc. So AgCdO raises the material resistance of oxygen welding and voltaic arc, and reduces electricresistance at the same time. The more AgCdO is, the better resistance of oxygen welding is. The shortcoming is higher electric resistance, more temperature rise, and worse plasticity. | Relays, contactors, circuit breakers, switches | Wire, Strip, Special-shaped Profiles |
| Identification | Silver content (Wt.%) | Density (g/cm³) | Resistivity (μΩ.cm) | Vickers hardness (HV) | Tensile Strength (MPa) | Elongation Rate (%) |
| AgCdO(10) | 89~91 | 10.10~10.30 | 1.90~2.10 | 80~135 | 240~440 | 1~30 |
| AgCdO(12) | 87~89 | 10.05~10.25 | 2.00~2.20 | 60~135 | 200~440 | 2~40 |
| AgCdO(15) | 84~86 | 9.95~10.15 | 2.07~2.27 | 60~135 | 200~460 | 1~40 |
| AgCdO(17) | 82~84 | 9.92~10.12 | 2.08~2.28 | 60~135 | 260~480 | 2~30 |
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| AgCdO(15) 200X transverse | AgCdO(15) 200X longitudinal |
Silver-Tin Oxide
| Identification | Feature | Main Application Field | Supply Form |
| AgSnO₂ | Silver tin oxide material has the same electrical properties as silver cadmium oxide material, and has better welding resistance, arc ablation resistance and abrasion resistance. It is non-toxic and harmless, and it is an environmentally friendly material. | Relays, contactors, circuit breakers, switches | Wire, Strip, Special-shaped Profiles |
| Identification | Manufacturing technique | Silver content (Wt.%) | Density (g/cm³) | Resistivity (μΩ.cm) | Vickers hardness (HV) | Tensile Strength (MPa) | Elongation Rate (%) |
| AgSnO₂(10) | Atomizing-Sintering-Extrusion(Atomization method) | 87~89 | 9.80~10.00 | 2.00~2.30 | 75~115 | 200~380 | 4~25 |
| AgSnO₂(12) | 87~89 | 9.75~9.95 | 2.10~2.30 | 80~120 | 200~380 | 4~20 | |
| AgSnO₂(10) | Powder Metallurgy | 89~91 | 9.75~9.95 | 2.05~2.25 | 65~120 | 180~380 | 2~40 |
| AgSnO₂(12) | 86.5~88.5 | 9.65~9.85 | 2.15~2.35 | 60~125 | 220~420 | 1~35 | |
| AgSnO₂(20) | 79~81 | 9.13~9.33 | 2.65~2.85 | 70~110 | 230~330 | 1~10 |
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| AgSnO₂(12) 200X transverse | AgSnO₂(12) 200X longitudinal |
Indium Oxide Silver Oxide
| Identification | Feature | Main Application Field | Supply Form |
| AgSnO₂In₂O₃ | AgSnO₂In₂O₃ show high arc erosion resistance and a good resistance against contact welding. By introducing certain additives, the AgSnO₂ materials, produced by the powder metallurgy technique (sintering and extrusion) can be modified in such amanner that contact resistance and over temperature behavior can be maintained low and stable over service life. Material transfer in DC operation is low. Contact materials of the AgSnO₂ and AgSnO₂In₂O₃ type are non-toxic and friendly to the environment. | Relays, contactors, circuit breakers, switches | Wire, Strip, Special-shaped Profiles |
| Identification | Silver content (Wt.%) | Density (g/cm³) | Resistivity (μΩ.cm) | Vickers hardness (HV) | Tensile Strength (MPa) | Elongation Rate (%) |
| AgSnO₂In₂O₃(8) | 91~93 | 9.95~10.15 | 1.90~2.20 | 85~115 | 225~325 | 10~35 |
| AgSnO₂In₂O₃(10) | 89~91 | 9.90~10.10 | 2.05~2.25 | 95~115 | 200~340 | 12~30 |
| AgSnO₂In₂O₃(12) | 87~89 | 9.70~9.95 | 2.20~2.50 | 90~120 | 290~390 | 10~35 |
| AgSnO₂In₂O₃(14.5) | 84~87 | 9.65~9.85 | 2.20~2.65 | 95~125 | 300~400 | 13~30 |
| AgSnO₂In₂O₃(15) | 83~85 | 9.65~9.85 | 2.40~2.60 | 95~125 | 280~380 | 10~30 |
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| AgSnO₂In₂O₃(10) 200X transverse | AgSnO₂In₂O₃(10) 200X longitudinal |
Silver zinc oxide
| Identification | Feature | Main Application Field | Supply Form |
| AgZnO | Silver zinc oxide exhibits excellent resistance to welding, high breaking capacity and good thermal stability. Being non-toxic and environmentally friendly, it serves as the mainstream material to replace toxic silver cadmium oxide. | Relays, contactors, switches | Wire, Strip, Special-shaped Profiles |
| Identification | Silver content (Wt.%) | Density (g/cm³) | Resistivity (μΩ.cm) | Vickers hardness (HV) | Tensile Strength (MPa) | Elongation Rate (%) |
| AgZnO(10) | 89~91 | ≥9.30 | ≤2.60 | ≥65 | 220~320 | ≥2 |
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| AgZnO(10) 200X longitudinal | AgZnO(10) 200X transverse |
Silver Oxide Copper
| Identification | Feature | Main Application Field | Supply Form |
| AgCuO | Environmentally friendly materials have excellent, stable welding resistance and good arc erosion resistance. They also have high hardness, good conductivity and thermal conductivity. They have lower material transfer under DC conditions. They are ideal electrical contact materials. | Relays, contactors, switches | Wire |
| Identification | Silver content (Wt.%) | Density (g/cm³) | Resistivity (μΩ.cm) | Vickers hardness (HV) | Tensile Strength (MPa) | Elongation Rate (%) |
| AgCuO(10) | 89~91 | 10.20~10.40 | 1.80~2.00 | 95~125 | 330~430 | 1~10 |
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| AgCuO(10) 200X transverse | AgCuO(10) 200X longitudinal |
Silver-Copper
| Identification | Feature | Main Application Field | Supply Form |
| AgCu | Silver copper alloy features excellent electrical and thermal conductivity, low and stable contact resistance, good resistance to welding and electrical wear, as well as superior processability and formability. With a relatively moderate cost, it is a widely used basic electrical contact material in the field of low and medium current electrical appliances. | Relays, contactors, switches | Wire, Strip |
| Identification | Silver content (Wt.%) | Density (g/cm³) | Resistivity (μΩ.cm) | Vickers hardness (HV) | Tensile Strength (MPa) | Elongation Rate (%) |
| AgCu(3) | 96~98 | ≥10.35 | 1.80~2.00 | 70~95 | 200~300 | 10~30 |
| AgCu(28) | 71~73 | ≥9.80 | ≤2.10 | 75~145 | 250~320 | 10~40 |
| AgCu(30) | 69~71 | ≥9.75 | ≤2.15 | 90~120 | 295~400 | 1~30 |
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| AgCu(28) 200X transverse | AgCu(28) 200X longitudinal |





