TITANSHIELD Pro - Solid-State Power Bank

TITANSHIELD Pro

Power without fire. Safety you can hear.

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The flagship, at a glance.

World-first safety alarm

If something is wrong, it speaks up

Wireless fast charging

Snap it on and it charges. A real top-up in 10 minutes

25WWPC Qi2.2 certified

10,000 mAh semi-solid-state cell

Dropped, hammered, run over by a car. No thermal runaway

Internal teardown of the power bank

TFT smart display

Charge, temperature and power at a glance

Close-up of the TFT smart display showing temperature, charge and output power

N52 magnets + hidden stand

Snaps into place. Watch hands-free

Hidden stand holding the power bank in landscape

Six-way protection + NTC temperature control

One chip watching the whole time

OvervoltageOverheatingOverloadOverchargeShort circuitFOD foreign-object detection

Semi-solid-state cell

Stability starts at the cell.

The same steel nail, two very different cells. Keep scrolling to see what happens.

The nail goes in and nothing happens. That is the best possible reaction. Liquid electrolyte held below 5%, structure intact. In the one-hour nail test at CHEMITOX Japan: no fire, no smoke, no rupture.

Extreme testing

Dropped. Hammered.
See for yourself.

Drop test 00:18-00:24

Video courtesy of the YouTube channel iamIRONPAWatch the full video ↗

Third-party testing

Not just the nail test.
Six tests. No fire in any of them.

Cell safety tests run by CHEMITOX Japan and SGS Taiwan: push the battery to its limit and see what happens. Every figure below is taken straight from the reports.

Nail penetration, 60 minutes

CHEMITOX Japan: a 3 mm steel nail is driven through the cell and left in place for 60 minutes, with current and voltage measured throughout.

0fires, smoke or ruptures

Completed on both 10,000 and 5,000 mAh cells

Puncture

A 32-degree conical steel pin, 4.0 mm across, driven all the way through the cell at 40 mm per second.

44.0°C

No fire, no explosion

Thermal abuse

Fully charged, then heated in a chamber at 5°C per minute up to 130°C and held there for 60 minutes.

130°C for 60 min

No fire, no explosion

Overcharge

Charged continuously at 5 A all the way to 4.7 V, for more than an hour without stopping.

32.0°C

No fire, no explosion

Over-discharge

Discharged continuously at 5 A for 1.5 hours, until the cell is completely drained.

58.4°C

No fire, no explosion

External short circuit

The terminals are shorted directly through a 15.14 mOhm external resistance. The cell tab fuses itself and opens the circuit.

23.4°C

No fire, no explosion

The nail penetration test was performed by CHEMITOX Japan. The remaining tests were performed by the SGS Taiwan reliability laboratory, report numbers HE40037/2026 (overcharge, over-discharge, external short circuit, thermal abuse) and HE50024/2026 (puncture), on the semi-solid-state cell used in this product (model 486578). Each figure is the highest surface temperature recorded in the report and represents the tested samples only.

World-first safety alarm

If something is wrong, it speaks up first.

When a power bank goes wrong, most people are the last to know. TITANSHIELD Pro has a built-in alarm: it sounds the moment it detects a fault, so you can move away right away. You can also set the alarm off yourself, to learn what it sounds like.

If your phone is on silent, switch the ringer back on to hear it

1 Test it any time, so you know the sound 2 It detects a fault and sounds right away 3 Hear it, move away, take it somewhere ventilated. What it buys you is reaction time

You are asleep.
It is not.

Charging overnightFault alarm and six-way protection on watch

Smart protection chip

Six-way protection,
one chip watching it all.

Every second of charging and discharging, the protection chip watches voltage, current and temperature, and acts the moment something goes wrong, before you notice.

Voltage Time

Cross the line and output cuts out at once.

TITANSHIELD Pro in Graphite Black, angled close-up

NTC precision temperature control

It monitors temperature, current and voltage in real time and adjusts power on the fly. Instead of cutting charging off when it warms up, it lowers the power and keeps going, so it stays cool to the touch and charging never stalls.

Temperature risesWattage drops automaticallyFull power returns once it cools

Cooling

Cooling starts with the material.

A unibody aluminum shell with a phone-grade graphene heat-spreading layer inside. It spreads the heat out first, then carries it away across the whole metal body.

Under the same charging conditions a standard plastic shell shows a concentrated hot spot, while heat spreads more evenly across TITANSHIELD Pro
Standard plastic shellTITANSHIELD Pro

Thermal comparison

Heat should not linger.

Under the same 25W fast-charge conditions, a plastic shell forms a concentrated hot spot. The aluminum body and graphene layer spread the heat outward far more evenly.

≤ 45°CTarget surface temperature during 25W fast charging
Actual results vary with environment and measurement point

Material comparison

Three lines.
One clear difference.

Graphene flattens the hot spot, then the aluminum body carries it away.
By thermal conductivity, that is more than 6,000 times a plastic shell.

Relative heat dissipation
Material and structure, step by step
TITANSHIELD ProGraphene heat spreader
About 1,200W/mK
TITANSHIELD AirAluminum body
About 200W/mK
Standard plastic shellABS / PC
0.2W/mK

A full day of power,
packed light.

In the pocket, out the pocket10,000 mAh you can carry every day