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Tin Price — 10-Day Trend Behind the Solder Story
All prices in ₹ per gram · daily rate, updated once per day
The Metal Inside Every Circuit Board
Open almost any piece of electronics — a phone, a laptop, a washing machine's control board — and somewhere inside it, tiny beads of tin-based solder are holding the components in place and carrying the electrical connections between them. Tin, trading at ₹4.55 per gram today, September 17, 2026, owes most of its commercial importance to this one job. It is not a supporting use among several. It is, by a wide margin, the reason tin matters as much as it does.
Solder needs to do something genuinely difficult: melt at a low enough temperature to avoid frying delicate components, flow cleanly into a tight joint, and then solidify into a connection reliable enough to last the life of the device. Tin's relatively low melting point among industrial metals is exactly the property that makes it suited to that job.
Tin Price by Weight
Today's Tin rate is Five Rupees per gram. At this rate, 10 grams of Tin costs Forty Six Rupees.
| Unit | Weight | Price (INR) | Price in Words |
|---|---|---|---|
| 1 Gram | 1.0000 g | ₹4.55 | Five Rupees |
| 8 Grams | 8.0000 g | ₹36.43 | Thirty Six Rupees |
| 10 Grams | 10.0000 g | ₹45.53 | Forty Six Rupees |
| 100 Grams | 100.0000 g | ₹455.33 | Four Hundred and Fifty Five Rupees |
| 1 Kilogram | 1,000.0000 g | ₹4,553.32 | Four Thousand Five Hundred and Fifty Three Rupees |
| 1 Ounce (oz) | 28.3495 g | ₹129.08 | One Hundred and Twenty Nine Rupees |
| 1 Troy Ounce | 31.1035 g | ₹141.62 | One Hundred and Forty Two Rupees |
| 1 Metric Ton | 1,000,000.0000 g | ₹4,553,317.00 | Forty Five Lakh Fifty Three Thousand Three Hundred and Seventeen Rupees |
From Tin-Lead to Lead-Free, Tin Stayed the Constant
For most of the 20th century, electronics solder meant a tin-lead alloy — a formula that worked reliably for decades of manufacturing. Environmental and regulatory pressure eventually pushed much of the industry away from lead, and manufacturers shifted toward lead-free alloys that blend tin with small amounts of other metals, commonly copper or silver, in place of lead. What didn't change through that entire transition is the base metal itself. Tin remained the dominant ingredient before the shift and after it.
Why the electronics industry can't simply swap tin out
There is no widely adopted mainstream substitute for tin in solder today. Alternatives have been explored in research settings over the years, but nothing has displaced tin-based alloys at commercial scale across the industry. That durability is part of why tin demand has grown roughly in step with the electronics industry itself — more phones, more computers, more industrial control boards manufactured worldwide has generally meant more solder consumed, and therefore more tin demand.
This is also why tin behaves differently from metals with a wide spread of uses. A construction slowdown barely dents copper demand, because copper also goes into wiring, motors and plumbing. A slowdown concentrated in electronics manufacturing, though, lands on tin demand more directly, simply because there isn't a second or third major use case absorbing the difference the way there is for most other base metals.
Tin Price — Last 10 Days
The most recent Tin price on record (2026-09-17) is Five Rupees per gram. This is up by Less than One Rupees from the previous day's rate of ₹4.53.
| Date | Price (INR/g) | Change |
|---|---|---|
| 2026-09-17 | ₹4.55 | +0.02 |
| 2026-09-16 | ₹4.53 | -0.03 |
| 2026-09-15 | ₹4.56 | -0.13 |
| 2026-09-14 | ₹4.69 | -0.04 |
| 2026-09-13 | ₹4.74 | +0.00 |
| 2026-09-12 | ₹4.73 | -0.03 |
| 2026-09-11 | ₹4.77 | -0.03 |
| 2026-09-10 | ₹4.79 | +0.02 |
| 2026-09-09 | ₹4.78 | +0.02 |
| 2026-09-08 | ₹4.76 | — |
What This Means for Anyone Watching the Tin Market
If you are trying to make sense of why tin moved on a given week, electronics-industry news is usually a better place to look than general commodity headlines. Chip production reports, consumer electronics sales trends, and manufacturing output data out of the world's major electronics hubs all carry more weight for tin specifically than they would for a metal with a broader industrial footprint.
That doesn't make tin unpredictable — it makes it legible, in a specific way. Once you know that solder is the story, most of what shows up in tin's price starts making more sense, because it usually traces back to the same underlying question: how is the electronics industry doing right now, and how is it likely to be doing next quarter.
Tin Solder and Electronics — FAQs
Tin has a relatively low melting point among industrial metals, which lets it melt, flow into a joint, and solidify without damaging the sensitive electronic components sitting right next to it. That property, combined with decades of manufacturing experience built around tin-based alloys, is why solder remains built primarily around tin even as the industry has changed the rest of its formula over time.
No. Solder is an alloy, not pure tin. For decades the standard was a tin-lead mix. Environmental and regulatory pressure has since pushed much of the industry toward lead-free formulations that blend tin with small amounts of other metals, such as copper or silver, but tin remains the dominant base metal in both the older and newer formulations.
Solder for electronics manufacturing is tin's single largest use by a wide margin, ahead of every other application — including tin plating and bronze alloys — combined. This is the main reason tin's price behaves more like a proxy for electronics-industry health than most other base metals do.
It can, because fewer devices manufactured generally means less solder consumed. The relationship isn't perfectly one-to-one — industrial electronics, automotive electronics and other segments also consume solder — but consumer electronics is a large enough piece of the puzzle that a genuine slowdown there is a real factor worth watching for tin demand.
It is possible in principle, but there is no widely adopted mainstream alternative to solder for joining components onto circuit boards today. Any shift of that scale would likely take years to materialize industry-wide, and framing it as an imminent certainty would go beyond what is actually known.