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Indium Price — The Raw Input Behind ITO — 10-Day Trend
All prices in ₹ per gram · daily rate, updated once per day
What Indium Tin Oxide Actually Is
Indium tin oxide — ITO to nearly everyone who works with it — is a compound of indium oxide and tin oxide, deposited as a film only a few hundred nanometres thick onto glass or plastic film. It does two things at once that most materials can't: stay transparent enough to see through, and conduct electricity well enough for a device to sense a touch. Today's raw indium rate, the metal ITO is built from, sits at ₹69.22 per gram as of September 17, 2026.
- 1 gram indium: ₹69.22
- 10 grams indium: ₹692.20
- 100 grams indium: ₹6,922.01
- 1 kilogram indium: ₹69,220.07
There's no separately quoted "ITO price" tracked here or, really, anywhere in a standardized public way — what feeds into a finished sputtering target's cost is the raw indium content above, plus the tin-oxide ratio and the fabrication process itself. This page tracks that upstream indium number.
Indium Reference Value, by Weight
Today's Indium rate is Sixty Nine Rupees per gram. At this rate, 10 grams of Indium costs Six Hundred and Ninety Two Rupees.
| Unit | Weight | Price (INR) | Price in Words |
|---|---|---|---|
| 1 Gram | 1.0000 g | ₹69.22 | Sixty Nine Rupees |
| 8 Grams | 8.0000 g | ₹553.76 | Five Hundred and Fifty Four Rupees |
| 10 Grams | 10.0000 g | ₹692.20 | Six Hundred and Ninety Two Rupees |
| 100 Grams | 100.0000 g | ₹6,922.01 | Six Thousand Nine Hundred and Twenty Two Rupees |
| 1 Kilogram | 1,000.0000 g | ₹69,220.07 | Sixty Nine Thousand Two Hundred and Twenty Rupees |
| 1 Ounce (oz) | 28.3495 g | ₹1,962.35 | One Thousand Nine Hundred and Sixty Two Rupees |
| 1 Troy Ounce | 31.1035 g | ₹2,152.99 | Two Thousand One Hundred and Fifty Three Rupees |
| 1 Metric Ton | 1,000,000.0000 g | ₹69,220,071.00 | Six Crore Ninety Two Lakh Twenty Thousand Seventy One Rupees |
From Ingot to Screen: How ITO Gets Made
Refined indium ingot doesn't go straight onto a display. It first gets converted, alongside tin oxide, into a solid ITO sputtering target — a dense disc or plate of the compound loaded into a vacuum sputtering chamber. Inside that chamber, ions bombard the target's surface, knocking loose atoms that drift across and settle onto a sheet of glass or plastic film as an ultra-thin, uniform coating. Run that process across enough glass panels and you've coated every touchscreen a factory ships that month.
Why nothing else does the job as well, at scale
A touch-sensitive screen has to be transparent, so the display underneath is visible, and conductive, so the device can sense exactly where a finger lands. Most conductive materials are opaque; most transparent materials don't conduct. ITO is one of the small handful of options that manages both well enough, cheaply enough, and reliably enough to run on a mass-manufacturing line — which is exactly why it became the default across smartphones, tablets, laptop screens and flat-panel televisions rather than staying a lab curiosity.
Indium Price — Last 10 Days
The most recent Indium price on record (2026-09-17) is Sixty Nine Rupees per gram. This is up by Less than One Rupees from the previous day's rate of ₹69.07.
| Date | Price (INR/g) | Change |
|---|---|---|
| 2026-09-17 | ₹69.22 | +0.15 |
| 2026-09-16 | ₹69.07 | +0.03 |
| 2026-09-15 | ₹69.04 | +0.09 |
| 2026-09-14 | ₹68.95 | +0.11 |
| 2026-09-13 | ₹68.84 | +0.00 |
| 2026-09-12 | ₹68.84 | +0.04 |
| 2026-09-11 | ₹68.80 | -0.04 |
| 2026-09-10 | ₹68.84 | +0.35 |
| 2026-09-09 | ₹68.50 | -0.26 |
| 2026-09-08 | ₹68.76 | — |
The Supply Question Sitting Behind Every ITO Target
Because ITO's performance depends so heavily on indium, ITO demand is really indium demand wearing a different name. And indium's supply doesn't respond the way a typical raw material's does — it's recovered almost entirely as a byproduct of zinc ore processing, so how much indium reaches ITO manufacturers each year tracks zinc mining and smelting decisions, not how many touchscreens the electronics industry wants to build. That mismatch is a genuine structural feature of this supply chain, not a temporary quirk.
It's also exactly why materials researchers have spent real time and money studying alternatives to ITO — cheaper, less supply-constrained transparent conductive coatings that could someday reduce this dependence. That work is real and ongoing, but nothing currently in the pipeline has displaced ITO as the proven, mass-manufacturable standard, so for the foreseeable future, watching indium's price and supply story remains the closest proxy for watching ITO's.
Indium Tin Oxide — FAQs
Indium tin oxide, or ITO, is a compound of indium oxide and tin oxide, deposited as an extremely thin transparent film onto glass or plastic. It conducts electricity while staying essentially see-through — a combination most materials can't manage — which is exactly why it became the standard coating for touch-sensing and flat-panel displays.
Not a standardized, publicly quoted one the way there is for raw indium metal. ITO's cost to a manufacturer depends on the indium content, the tin-oxide ratio, the sputtering-target fabrication process, and the specific supplier — so this page tracks the raw indium input, at ₹69.22 per gram today, rather than a finished-ITO price that isn't published anywhere consistently.
Tin oxide alone is far less electrically conductive at the film thicknesses displays need. Adding indium oxide to the mix is what gives the coating its practical, commercial-grade conductivity while keeping it thin and transparent enough to sit directly over a display's pixels.
It's the solid, disc- or plate-shaped source material — made from indium tin oxide — that's loaded into a sputtering machine and bombarded with ions to deposit an ultra-thin ITO film onto glass or film, one panel at a time. It's the manufacturing step that turns raw indium into the actual coating on a screen.
Yes, genuinely — materials scientists have spent years studying alternative transparent conductive coatings, largely because indium's supply is constrained and tied to zinc-byproduct economics rather than its own mining. That said, no alternative has displaced ITO as the dominant, mass-manufacturable choice yet, so it remains the default across touchscreens and displays for now.
Yes — it's increasingly used as a transparent conductive layer in some thin-film solar panel designs, a smaller but genuinely growing application alongside its much larger role in consumer electronics displays.