IFA 2026 HARDWARE BENCH

BoostSolid Semi-Solid-State Battery & Power Profiler

Belkin BoostSolid™ Polymer-Gel vs Liquid Li-ion Electrolyte Heat & Power Simulator
STATUS: NOMINAL ACTIVE LOAD

1. Hardware Model Selection

BoostSolid™ Credit-Card 5K $70
5,000mAh | 3.85V | 19.25Wh | 20W PD | Ultra-Slim 7.2mm
BoostSolid™ Dual USB-C 10K $90
10,000mAh | 3.85V | 38.5Wh | 60W Dual PD | 13.5mm Card
UltraCharge™ Retractable 22K $100
22,000mAh | 3.7V | 81.4Wh | 65W Integrated Cable | High Density

2. Dynamic Load Demand

55W
25°C
Pocket environment = ~35°C; Direct sun / heavy load = ~42°C

3. Telemetry Export

Stored Capacity 38.5 Wh
Continuous Runtime 42.0 min
Volume Savings 38.4%
BoostSolid Peak T 39.8°C
Liquid Li-Ion Peak T 54.2°C
ELECTROLYTE ION TRANSPORT UNDER LOAD (LITHIUM FLUX SIMULATION) LOAD: 55W (0.92C)
Left: BoostSolid Non-Flammable Semi-Solid Matrix (Low Internal R) Right: Traditional Liquid Flammable Electrolyte (Thermal Throttled)

Comparative Thermal Performance Under 55W Continuous Output

Belkin BoostSolid™ (Semi-Solid-State)

Polymer-gel matrix prevents dendrite formation and eliminates volatile organic solvents. Joule heating stays distributed evenly across cross-sectional area.

Peak Temp: 39.8°C (Delta: +14.8°C)
THROTTLING: PREVENTED (100% SUSTAINED)

Standard Liquid Li-Ion Pouch / 21700

Higher internal impedance under >45W loads triggers rapid localized thermal accumulation. Standard safety firmware enforces heavy current step-down.

Peak Temp: 54.2°C (Delta: +29.2°C)
THROTTLING: ACTIVE (CURRENT DROPPED 40%)

Aviation Compliance & Volumetric Packing

TSA Airline Carry-On Limit Progress: COMPLIANT (<100Wh)
0 Wh 100 Wh (Unrestricted Carry-on) 160 Wh (Airline Approval Req.)
Volumetric Comparison: The semi-solid polymer-gel construction packs electrodes with negligible separator slack, yielding 38.4% volumetric reduction compared to standard 21700-based cylindrical power bricks.
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