ZVS PCS1000 is most often covered alongside Hillcrest Energy Technologies, which appears in 2 of these 2 stories. Their average consequence score of 5 runs below the beat's 6.6 for that window. Each story carries 2 original sources on average, compared with 2.5 for the broader beat in this window.
Figures are computed live from our source-verified story record
— see our methodology for how impact and
sentiment are derived.
What the coverage shows about ZVS PCS1000
ZVS PCS1000 is most often covered alongside Hillcrest Energy Technologies, which appears in 2 of these 2 stories. Their average consequence score of 5 runs below the beat's 6.6 for that window. Each story carries 2 original sources on average, compared with 2.5 for the broader beat in this window. Coverage clusters in ev, which accounts for 1 of those 2, with the remainder spread across 1 other category. We currently track 2 Climate stories that mention ZVS PCS1000, published between March 17, 2026 and March 19, 2026.
Stories tracked
2
Sources per story
2
Computed from the 2 stories linked to this entity, with beat comparisons drawn from all 92 Climate stories published in the same date window. Shares are omitted below five stories and comparisons below a twenty-story baseline.
Coverage cohort
Appears alongside
Other entities that clear the same relevance threshold in stories also covering ZVS PCS1000. Shared-story counts are live from our verified record — not editorial picks.
Hillcrest Energy Technologies CEO Don Currie has outlined the commercialization path for the company's Zero Voltage Switching (ZVS) technology, a breakthrough in power conversion. The firm remains on track for its PCS1000 prototype in June 2026, targeting significant efficiency gains in electric vehicle and grid storage applications.
Hillcrest Energy Technologies has reaffirmed its development timeline for the ZVS PCS1000, a high-efficiency power conversion system prototype slated for June 2026. The technology leverages Zero Voltage Switching to significantly reduce energy loss and heat in power electronics for grid and industrial applications.