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EXPLORATION UPDATE: TARON CESIUM DRILL WILL TURN FEBRUARY 28th The Company has received a report that the amount of rehabilitation work required at Taron may be another two days to complete. G rupo AGV, located in Salta City, is the contactor

Exploration Programs

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CASCADERO COPPER CORPORATION

(TSXV: CCD)

FEBRUARY 24th 2017

EXPLORATION UPDATE: TARON CESIUM DRILL WILL TURN FEBRUARY 28th

The Company has received a report that the amount of rehabilitation work required at

Taron may be another two days to complete. G rupo AGV, located in Salta City, is the contactor

and it will mobilize the necessary equipment to complete the rehab ilitation of infrastructure

which was destroyed in a series of floods in the past 3years.

The camp for 18 workers should be on site within 5 days and the drill is expected to be

on site and running on Feb 28th.

The company plans to drill 29 vertical HQ3 core holes to a planned depth of 75 metres

for a total of 2,175 metres in completing a grid style pattern that will test an area of about 1.6

kms2 of the property. The area was drilled in seven previous drill holes in 2009, and the

geological model is based on 5,600 metres of trenches and over 6,000 assays from 2005 to

2007. The program is expected to take 50 days to complete.

The Company’s geologists and consultants have decided on the location of the first drill

holes TAR-17-1 to TAR 17-11 and shown in F igure 1. This drill sequence is intended to test the

geometry and mineralization of the Taron showing its southern 500 metres . The geologi cal

model is interpreted as a synclin al fold, the east limb of which may be present for an additional

750 metres to the north. The system at its widest point in the drill grid is estimated to be 375

metres east to west. There are two parallel zones of mine ralization close to to the east of the

main body that will also be drill tested , which is believed to be the core of a corresponding

anticlinal fold.

The system is open to the east, north and south. It is covered by overburden to the

east, a distance grea ter than 3,000 metres , where it disappears under the contact with the

Cambrian Puncoviscana shale. This is supported by one pit and 2006 trench excavation near the

shale contact that assayed 3,400 ppm cesium. The system has also been trenched to the south

of the proposed drill grid where anomalous cesium mineralization was encountered at intervals

for over 3 kms.

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AGV will use a Boyles 6C Trailer mounted drill rig to minimize the environmental

footprint of the work . (Figure 2) The Taron rocks are very fria ble and the drill program is

focused on maximizing core recovery. The vertical holes will be drilled with polymers designed

for these types of friable, loosely cemented rock types that should yield a more accurate assay

of the cesium values in the drill holes. In addition each drill hole sediment pond will be sampled

and assayed to determine if the cesium mineralization is being flushed up to the ponds.

Some holes may be deepened beyond 75 metres subject to onsite study of the

mineralization. The holes wil l also be surveyed by downhole devices but are not expect ed to

have a problem with deviation.

The area of anticipated surface disturbance in total is about 0.16 square kms or less

than 10% of the property, and it will be rehabilitated concurrently with the drilling.

About Cesium

Cesium (chemical symbol Cs) is a rare metal best known for its extreme chemical reactivity.

Cesium hydroxide forms the start point of myriad end uses, including Cesium Formate

(CsCHO2), the industries premium drilling and comp letion fluid. Cesium Formate is an

environmentally benign solution with a high -density and low -viscosity used to control

formation pressures and temperatures in drilling of deep oil wells (HPHT). As a dense medium,

cesium formate is used to separate DNA and in metallurgical testing and is also well known for

artificially produced radioactive isotopes used to treat various types of cancer. Cesium

compounds and chemicals are used in photo -emissive devices, experimental magneto -

hydrodynamic electricity generation, atomic clocks for telecommunications and GPS navigation

systems, catalysts in plastic manufacturing, specialty glasses, ion propulsion rocket motors,

high-density alkaline batteries, coatings for solar cells, and petroleum refining. Research

continues to generate new applications for cesium compounds.

The Company has retained GeoSim Services Inc. who will act as the Qualified Person

(QP) for the program. This news release and its technical content has been read and approved

by Dr. David Trueman who is a qualified person acting for the Company.

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Figure 1: TARON PLAN VIEW

2017 DRILL COLLAR LOCATIONS

TAR-17- 01 to TAR – 17- 11

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Figure 2: BOYLES 6C Trailer mounted core drilling rig

Bill McWilliam

CEO

Cascadero Copper Corporation

Email = [email protected]

O = 604.924.5504

C = 604.999.0391

Neither the TSX Venture Exchange nor its Regulation Service Provider (as that term is defined in the policies of

the TSX Venture Exchange) accepts responsibility for the adequacy or accuracy of this release.