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  2. Tin-silver-copper - Wikipedia

    en.wikipedia.org/wiki/Tin-silver-copper

    Tin-silver-copper (Sn-Ag-Cu, also known as SAC), is a lead-free alloy commonly used for electronic solder.It is the main choice for lead-free surface-mount technology (SMT) assembly in the industry, [1] as it is near eutectic, with adequate thermal fatigue properties, strength, and wettability. [2]

  3. Solder alloys - Wikipedia

    en.wikipedia.org/wiki/Solder_alloys

    Copper content increases hardness of the alloy and inhibits dissolution of soldering iron tips and part leads in molten solder. Sn 62 Pb 37 Cu 1: 183 [17] Pb: Yes: Similar to Sn 63 Pb 37. Copper content increases hardness of the alloy and inhibits dissolution of soldering iron tips and part leads in molten solder. Sn 63 Pb 37 P 0.0015-0.04: 183 ...

  4. Soldering iron - Wikipedia

    en.wikipedia.org/wiki/Soldering_iron

    Melting the solder can release toxic fumes, particularly solder with higher proportions of lead. It is recommended to work in a well-ventilated area; to avoid inhaling the toxic fumes; and to wash hands with soap after operating with a soldering iron. It is also recommended to use lead-free solder to mitigate the risks of lead exposure. [30] [31]

  5. Soldering - Wikipedia

    en.wikipedia.org/wiki/Soldering

    Common solder alloys include tin-lead, tin-silver, and tin-copper, among others. Lead-free solder has also become more widely used in recent years due to health and environmental concerns associated with the use of lead. In addition to the type of solder used, the temperature and method of heating also play a crucial role in the soldering process.

  6. Solder - Wikipedia

    en.wikipedia.org/wiki/Solder

    Most lead-free replacements for conventional 60/40 and 63/37 Sn-Pb solder have melting points from 50 to 200 °C higher, [17] though there are also solders with much lower melting points. Lead-free solder typically requires around 2% flux by mass for adequate wetting ability. [18]

  7. Solderability - Wikipedia

    en.wikipedia.org/wiki/Solderability

    Solderability when using lead-free alloys can differ significantly from solderability when using lead based alloys. Noble metals may be easy to solder but they have brittle joints. The metals in the good category require a large amount of heat therefore oxidation is an issue. To overcome this a flux is required.

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