Description
Ic Diamond 24 Carat
The IC Diamond 24 Carat is a premium diamond-based thermal compound containing 92% micronized synthetic diamond by weight. Diamond has a thermal conductivity of 2,000–2,500 W/mK — roughly five times higher than pure silver — making IC Diamond one of the most effective thermal interface materials available for ASIC miner chips, CPUs, and GPUs. It is electrically non-conductive and non-capacitive, so accidental contact with nearby components will not cause shorts.In ASIC mining, thermal paste is not a set-and-forget component. Chips running 24/7 at high temperatures dry out standard thermal compounds within months. IC Diamond is formulated for long-term stability — it will not bleed, separate, or pump out under sustained load. After a two-hour break-in period, it reaches peak performance and maintains it. For miners who want the best thermal interface between their ASIC chips and heatsinks, IC Diamond is the professional choice.
Technical Specifications
| Specification | Value |
|---|---|
| Thermal Conductance | 4.5 W/m-K |
| Thermal Resistance | 0.25°C-cm²/W @ 100μ BLT |
| Diamond Content | 92% micronized synthetic diamond by weight (94% after dry-out) |
| Electrical Properties | Non-conductive, non-capacitive |
| Break-in Period | ~2 hours to reach peak performance |
| Compliance | RoHS compliant |
| Manufacturer | Innovation Cooling |
Mining Applications
- ASIC hashboard chip re-pasting — apply to individual ASIC chips during hashboard maintenance or after chip replacement for optimal thermal transfer.
- Bitaxe and open-source miners — premium thermal interface for BM1366, BM1368, BM1370, and other ASIC chips in Bitaxe builds.
- Control board and voltage regulator cooling — anywhere a chip meets a heatsink on mining hardware.
Frequently Asked Questions
Is IC Diamond better than standard hashboard thermal paste?
IC Diamond is a premium option. Standard gray thermal paste works well for bulk hashboard re-pasting across dozens of chips. IC Diamond excels when you want maximum thermal performance on individual high-value components — such as a Bitaxe build, a single chip replacement, or a control board processor. For full hashboard re-pastes on Antminers with 76+ chips, the bulk Hashboard Thermal Paste (Gray) is more cost-effective.
Will it damage my hashboard if it touches other components?
No. IC Diamond is electrically non-conductive and non-capacitive. Unlike liquid metal thermal compounds, accidental contact with solder pads, traces, or neighboring components will not cause electrical shorts.
How long does it last before I need to re-apply?
IC Diamond is engineered for long-term stability. It resists bleeding and separation under sustained heat, so it lasts longer than most standard thermal pastes. In a 24/7 mining environment, expect solid performance for 12+ months before re-evaluation. Check chip temperatures periodically — if they climb 5–10°C above your baseline, it is time to re-paste.
Why Buy from D-Central
D-Central uses IC Diamond in our repair shop for precision applications where thermal performance matters most. We stock genuine Innovation Cooling product, shipped from Canada. Need help with a hashboard re-paste or chip replacement? Our ASIC repair service handles it professionally.
Is IC Diamond better than standard hashboard thermal paste?
IC Diamond is a premium option. Standard gray thermal paste works well for bulk hashboard re-pasting across dozens of chips. IC Diamond excels when you want maximum thermal performance on individual high-value components — such as a Bitaxe build, a single chip replacement, or a control board processor. For full hashboard re-pastes on Antminers with 76+ chips, the bulk Hashboard Thermal Paste (Gray) is more cost-effective.
Will it damage my hashboard if it touches other components?
No. IC Diamond is electrically non-conductive and non-capacitive. Unlike liquid metal thermal compounds, accidental contact with solder pads, traces, or neighboring components will not cause electrical shorts.
How long does it last before I need to re-apply?
IC Diamond is engineered for long-term stability. It resists bleeding and separation under sustained heat, so it lasts longer than most standard thermal pastes. In a 24/7 mining environment, expect solid performance for 12+ months before re-evaluation. Check chip temperatures periodically — if they climb 5–10°C above your baseline, it is time to re-paste.


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