Advanced Energy Storage Solution

Engineered for performance, safety, and scalability

Next-Generation Energy Solution

Advance Capacitive Energy Solution (ACES) represents a major leap forward in energy storage, combining the best attributes of batteries and supercapacitors while greatly reducing their usual limitations. Built around a lithium carbon capacitor (LCC) architecture, ACES stores energy mainly through electrostatic adsorption rather than deep chemical reactions, delivering high energy density, rapid charge and discharge, extremely long cycle life, and enhanced safety.

ACES systems can be configured as pure LCC or as hybrid solutions alongside conventional batteries, providing reliable, safe, and largely maintenance‑free performance across a wide range of demanding environments

How ACES Technology Works

Electrostatic adsorption mechanism. No chemical reaction

6U Technology Advantages

Ultra-High Energy Density

140-160 Wh/kg – Close to LFP, ~30x higher than conventional supercapacitor

Ultra-High Safety Performance

Explosion and fire-proof, anti-freezing

Ultra-Long Cycle Life

50,000 – 500,000 cycles -> more than 10x longer than lithium batteries

Ultra-High Charge and Discharge

Up to 30C charge/discharge rates – instant power delivery

Ultra-High and Low Temperature Range

-40°C to +70°C operation

Ultra-Low Capacity Attenuation

Minimal degradation over lifespan

6U Technology Advantages

Ultra-High Energy Density

140-160 Wh/kg – Close to LFP, ~30x higher than conventional supercapacitor

Ultra-High Safety Performance

Explosion and fire-proof, anti-freezing

Ultra-High Charge and Discharge

Up to 30C charge/discharge rates – instant power delivery

Ultra-Long Cycle Life

50,000 – 500,000 cycles -> more than 10x longer than lithium batteries

Ultra-High and Low Temperature Range

-40°C to +70°C operation

Ultra-Low Capacity Attenuation

Minimal degradation over lifespan

Technical Comparisons

Features
MiNiCo
LiFePO4
LTO
Lead Acid
ACES (LCC)
LIC
EDLC
Energy Density (Wh/kg)
200 ~ 280
160 ~ 180
50 ~ 100
40
140 ~ 160
25
5
Cell Voltage Range
3.0V ~ 4.2V
2.0V ~ 3.6V
1.5V ~ 2.8V
1.7V ~ 2.1V
2.5V ~ 4.2V
2.2V ~ 3.8V
0 ~ 2.7V
Charging Current
1C
1C
6C
0.2C
5C ~ 30C
50C ~ 100C
100C ~ 200C
Discharging Current
1C
1C ~ 2C
6C
1C
5C ~ 30C
50C ~ 100C
100C ~ 200C
Peak Current
2C
5C
8C
5C ~ 8C
50C
100C
500C
Cycle Life
0.5k ~ 2k
3k ~ 8k
10k ~ 20k
0.3k ~ 0.5k
50k ~ 500k
500k
1000k
Safety
Extremely Low
Moderate
High
Average
Extremely High
Extremely High
Extremely High
Charging Temperature
0 ~ 45°C
0 ~ 45°C
-40°C ~ 65°C
0 ~ 45°C
-40°C ~ 70°C
-30°C ~ 70°C
-40°C ~ 70°C
Discharging Temperature
-20°C ~ 60°C
-20°C ~ 60°C
-40°C ~ 65°C
-20°C ~ 45°C
-40°C ~ 70°C
-30°C ~ 70°C
-40°C ~ 70°C

*Safety rating reflects relative risk of thermal runaway and fire in typical use, not an absolute guarantee

ACES (LCC) balances energy and power between conventional Li‑ion batteries and supercapacitor technologies, offering much higher energy than supercapacitors (LIC, EDLC) with far longer life and safety than typical Li‑ion batteries (MiNiCo, LiFePO4, LTO).

Technical Comparisons

Features

Energy Density (Wh/kg)

Cell Voltage Range

Charging Current

Discharging Current

Peak Current

Cycle Life

Safety

Charging Temperature

Discharging Temperature

MiNiCo

200 ~ 280

3.0V ~ 4.2V

1C

1C

2C

0.5k ~ 2k

Extremely Low

0 ~ 45°C

-20°C ~ 60°C

LiFePO4

160 ~ 180

2.0V ~ 3.6V

1C

1C ~ 2C

5C

3k ~ 8k

Moderate

0 ~ 45°C

-20°C ~ 60°C

LTO

50 ~ 100

1.5V ~ 2.8V

6C

6C

8C

10k ~ 20k

High

-40°C ~ 65°C

-40°C ~ 65°C

Lead Acid

40

1.7V ~ 2.1V

0.2C

1C

5C ~ 8C

0.3k ~ 0.5k

Average

0 ~ 45°C

-20°C ~ 45°C

ACES (LCC)

140 ~ 160

2.5V ~ 4.2V

5C ~ 30C

5C ~ 30C

50C

50k ~ 500k

Extremely High

-40°C ~ 70°C

-40°C ~ 70°C

LIC

25

2.2V ~ 3.8V

50C ~ 100C

50C ~ 100C

100C

500k

Extremely High

-30°C ~ 70°C

-30°C ~ 70°C

EDLC

5

0 ~ 2.7V

100C ~ 200C

100C ~ 200C

500C

1000k

Extremely High

-40°C ~ 70°C

-40°C ~ 70°C

Ready to Transform Your Energy?

Discover how ACES delivers unmatched power, safety, and lifespan.

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