Taranis Identifies Borr Zone Using EM, Prepares for Drilling on East Side of Lamprophyre Dyke
FOR IMMEDIATE RELEASE
Taranis Resources Inc.
681 Conifer Lane
Estes Park, Colorado
80517
www.taranisresources.com
Taranis Identifies Borr Zone Using EM, Prepares for Drilling on East Side of Lamprophyre Dyke
Estes Park, Colorado, February 17, 2026 – Taranis Resources Inc. (“Taranis” or the “Company”)
[TSX.V: TRO, OTCQB: TNREF] is providing an update on its planned 2026 exploration activities at the
Thor project. Recent airborne electromagnetic (“EM”) surveying has identified a series of conductive
anomalies immediately east and downslope of the Thor deposit, including the newly defined Borr Zone.
These anomalies are interpreted to represent the down-dip continuation of mineralization beyond a
lamprophyre dyke that bisects the known Thor epithermal system and form the basis for targeted drilling
planned in 2026. There are notably few historical workings nor is there any recorded prior drilling in the
area of the Borr zone, meaning that further discoveries in this area could drastically reshape the existing
mineral resource.
The Mineralized Trend at Thor
Thor lies within a 5‑kilometer, northwest‑trending mineralized corridor that includes the Ajax, Nettie L.,
GYP, IXL, Baltimore, and True Fissure Mines. This trend is spatially related to the overturned Silver Cup
Anticline, which plunges 35 degrees to the northwest. Silver, gold, and base-metal mineralization occur in
proximity to the Silver Cup Anticline in epithermal veins.
The Silver Cup Anticline plunges Northwesterly under the Thor epithermal Deposit. The Silver Cup
Anticline is overturned to the northeast, and on the east side of Ferguson Creek the IXL, GYP, Nettie L.,
and Ajax Mines occur directly along apex of this anticline. 3D modeling of geological and airborne MT
data shows that there are two parallel bands of EM conductors lying on the limbs of the tightly folded
anticline. The source of these anomalies extends to great depth, but they link the sulfide-rich
mineralization at Thor to the tightly folded edges of the Silver Cup Anticline. This is consistent with
historic information that Taranis has been able to acquire and incorporate into the 3D modeling that shows
the Nettie. L. Mine is a funnel shaped feature along the crest of the Silver Cup Anticline.
On the west side of Ferguson Creek, Taranis discovered the Borr Zone in 2025. Intercepts of the Borr
zone included 5.25m of 26.2 g/t Ag, 0.766 g/t Au and 3.55% combined Pb+Zn. (see Taranis News
Release dated 10/27/2025). This area is of major importance because it lies 1.3km southeast of the known
Thor deposit, and it geologically connects to the historic mines on the east side of Ferguson Creek based
on the distribution of EM conductors. High-grade zinc showings, such as the Baltimore Mine, have been
noted in this area between the Borr Zone and the IXL Mine. In 2025, Taranis also drilled another shallow
drill hole that intersected mineralization in close vicinity to Thor-256 and the results are shown below.
Thor-257
From
(m)
To (m) Width
(m)
Ag
(g/t)
Cd
(ppm)
S
(%)
Sb
(ppm)
Sn
(ppm)
Au
(ppb)
Pb (%) Zn
(%)
Combined
Pb+Zn (%)
27.00 27.74 0.74 15.4 43.9 0.3 13.4 48.3 16 0.85 0.72 1.56
2
27.74 28.14 0.40 43.7 89.7 0.9 31.6 23.9 19 1.90 1.53 3.43
28.14 28.70 0.56 14.3 402 3.3 7.7 14.9 132 0.30 6.75 7.05
Average
1.70 21.7 173 1.4 15.8 31.6 55 0.91 2.89 3.81
Little is understood about the Borr Zone as it is not exposed at surface, but it is clearly the down-dip
continuation of the main Thor epithermal deposit and warrants further drilling.
Historic Evidence for a Larger, Truncated Deposit
With a more comprehensive understanding of the local geology, it has been identified that a relatively
young lamprophyre dyke intersects the Thor epithermal deposit. The discovery of the Borr Zone on the
east side of the dyke (Thor-256 & 257) shows that mineralization extends east beyond the dyke boundary,
supporting the potential for significant down‑dip expansion of the Thor epithermal deposit.
The Morgan Tunnel, the last major historical underground exploration effort at Thor in the early 1900’s,
inadvertently intersected the lamprophyre dyke rather than the projected down‑dip continuation of the
existing Thor deposit. This explains why the Thor epithermal system appears unusually long (2.3 km
strike), but has a minimal dip extent. Taranis believes the original deposit was more equidimensional and
the lower part of the Thor deposit was discovered with holes Thor-256 and Thor-257.
“Nortran” EM Anomalies at Horton
Compilation work by Taranis has also identified a cluster of 19 EM anomalies that occur directly north of
the area of high-grade float mineralization discovered by Taranis at Horton. These anomalies were
identified in 1987 by Nortran Resources, and were never explored. The helicopter survey was conducted
by Apex Airborne Surveys in conjunction with Questor Surveys using three frequencies (380, 920 and
4,020 Hz). Taranis was also able to identify an anomalous areas of conductivity in a ground EM-37
survey completed in 2007, and the Nortran anomalies were also duplicated in the Expert Geophysics
survey completed in 2022. This cluster of EM anomalies are now considered high-priority given
numerous high-grade boulders found at Horton (See Taranis News Release dated 03/25/2025).
Comments
The Silver Cup Mining District is large, extending for approximately 52km in a northwesterly direction .
Many old mines have not been explored with modern geophysical methods, despite being mined over a
century ago. Recently, Taranis has initiated exploration outside of the know n Thor deposit and this has
yielded promising results in addition to the recent discovery of a lamprophyre dyke system. Modern
geophysical surveying and 3D computer models that incorporate district -scale geological features such as
the Silver Cup Anticline have outlined an existing minera lized system that is dotted with old mines and
prospects at surface. Accurate 3D models reaching up to 2km underground help relate surface prospects to
their broader deposit sources. Taranis’s goal is to link all of these together into a singular cluster of deposits
in the subsurface that extends upwards of 7km.
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Qualified Person
Exploration activities at Thor were overseen by John Gardiner (P. Geo.), President and CEO of Taranis
Resources Inc., and a Qualified Person under Canadian National Instrument 43-101. Mr. Gardiner is the
principal of John J. Gardiner & Associates, LLC, operating in British Columbia under Firm Permit
Number 1002256. Mr. Gardiner has reviewed and approved the comments contained within this News
Release.
Quality Control and Laboratory Methods
All samples for the Thor project were securely delivered to Act labs in Kamloops, British Columbia.
Analytical work was completed both at the Kamloops, and Ancaster, Ontario locations. Actlabs is ISO
17025 accredited.
Visibly (or potentially mineralized sections of core) were systematically sampled after sawing the core in -
half onsite. Samples were analyzed for 42 elements by 4-Acid Digestion / Inductively Coupled Plasma -
Mass Spectrometry (“ICP-MS”) and for gold by 30g Fire Assay / Atomic Absorption Spectrophotometry
(“AAS”)
Where overlimit values were encountered in the analysis of these samples, ‘ore-grade’ determinations were
made using subsequent ICP analysis and gravimetric methods. As a Quality Control (“QC”) measure,
Taranis also su bmitted analytical standards into the sample stream every tenth sample in addition to the
laboratory’s own quality control methods.
Taranis currently has 102,421,487 shares issued and outstanding (119,972,613 shares on a fully-diluted
basis).
TARANIS RESOURCES INC.
Per: John J. Gardiner (P. Geo.), President and CEO
For further information contact:
John J. Gardiner
681 Conifer Lane
Estes Park, Colorado 80517
Cell: (720) 209-3049
NEITHER THE TSX VENTURE EXCHANGE NOR ITS REGULATION SERVICES PROVIDER
(AS THAT TERM IS DEFINED IN THE POLICIES OF THE TSX VENTURE EXCHANGE)
ACCEPTS RESPONSIBILITY FOR THE ADEQUACY OR ACCURACY OF THIS NEWS
RELEASE.
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This News Release may contain forward-looking statements based on assumptions and judgments of
management regarding future events or results that may prove to be inaccurate as a result of factors
beyond its control, and actual results may differ materially from expected results.