On-Site Rig Assessment
A full-day walk-through of your mining facility measuring hash delivery, thermal load, and network readiness for rigs at 0.05 computing power and above.
View DetailsIncheon · South Korea · Since 2018
We visit sheds, warehouses, and co-location halls to measure what your workers actually deliver — not what the manufacturer sticker promises. Our reviewers document cable runs, switch latency, and monitoring reach so you can plan upgrades without guessing.
Field assessments for ASIC and GPU rigs rated at 0.05 computing power and higher, with honest notes on networking latency, switch placement, and whether your monitoring stack will actually reach each worker.
A full-day walk-through of your mining facility measuring hash delivery, thermal load, and network readiness for rigs at 0.05 computing power and above.
View DetailsStructured cabling plans and switch placement for mining racks so hash traffic stays local and monitoring probes see every worker.
View DetailsSet up agent reach, alert thresholds, and dashboard views so you can watch hash rate and temperature from off-site without false alarms.
View DetailsOperators across Gyeonggi and Incheon trust us to flag cabling mistakes before they cost a weekend of uptime.
They walked our 120-worker shed in Bupyeong and found three switches daisy-chained through a consumer router. Hash rate looked fine until summer heat spiked — their report gave us a phased rewiring plan we could budget for.
— Min-jun H., shed operator, Incheon
The monitoring section was thorough. We still had to source our own SNMP probes, which they warned us about upfront, but the VLAN sketch saved our electrician two days of guesswork.
— Soo-yeon K., co-location manager, Ansan
Practical write-ups on hash-rate thresholds, switch selection, and keeping remote dashboards honest.
10 February 10106
Below 0.05, consumer routers survive. Above it, dedicated switches and probe paths become mandatory.
22 January 22226
Metal chassis and fan placement matter more than port count when salt air meets mining heat.