Cylindrical 26120 Cell
EVE Energy 26120
Cylindrical 26120 cell delivering 12.7 Ah capacity with 286 Wh/kg energy density and 88.9 A maximum discharge rate.
Overview
The EVE Energy INR26120 is a lithium-ion cylindrical 26120 cell designed for applications that demand reliable performance across a broad range of load conditions. With the manufacturer based in China, this cylindrical 26120 cell delivers 12.7 Ah capacity and 45.72 Wh of energy at a nominal voltage of 3.6 V, with a maximum continuous discharge capability of 88.9 A, making it suitable for applications that balance runtime against peak power demand.
Key Features
Discharge rate: 88.9 A continuous (7.0 C)
Energy density: 286 Wh/kg
Power density: 2000 W/kg
Cathode: Ni-based
Applications: drones, aviation, e-mobility

Technical Specifications from the Manufacturer
Parameter
Manufacturer
EVE Energy
Model
INR26120
Type
Li-ion
Form factor
Cylindrical 26120
Country of origin
China
Release year
Nominal voltage
3.6
Energy capacity [Wh]
45.72
Capacity [Ah]
12.7
Gravimetric energy density [Wh/kg]
286
Gravimetric power density [W/kg]
2000
Max continuous discharge [A]
88.9
Volume [cm³]
63.7492
Mass [g]
160
Positive electrode (cathode)
Ni-based
Negative electrode (anode)
Value

Applications & Use‑Cases
The EVE Energy 26120 is well suited to the following applications due to its cylindrical 26120 form factor and balanced performance.
Drones: Demands high gravimetric power density for thrust and payload capacity, rapid current response for flight control, and stable voltage delivery across dynamic flight profiles.
Aviation: Requires high specific energy for extended flight duration, high power-to-weight ratio for climb performance, and reliable operation across wide temperature ranges at altitude.
E-Mobility: Requires balanced energy and power density for range and acceleration, high cycle life for daily use, and robust calendar life to ensure long-term reliability.
General Applications: Suitable for applications requiring reliable lithium-ion performance with proven cycle life, consistent capacity delivery, and operational safety across diverse use cases.
Performance & Model Data
Below are modelled performance metrics for the EVE Energy 26120 across key indicators, including constant current behaviour, rate capability, temperature dependence, and available power under representative drive cycle conditions.
Constant Current Voltage

Access EVE Energy 26120 constant-current discharge curves in Voltt to size your pack against the voltage window your system actually needs. (Chart shown is illustrative, not 26120 data.)
Constant Current Temperature

Access EVE Energy 26120 thermal discharge data in Voltt to specify cooling and cell spacing before you commit to a pack layout. (Chart shown is illustrative, not 26120 data.)
Pulse Power Behaviour

Access EVE Energy 26120 pulse power maps in Voltt to set peak current limits and parallel count for your worst-case load. (Chart shown is illustrative, not 26120 data.)
Dynamic Profile Response

Access EVE Energy 26120 mission profile simulations in Voltt to prove the pack holds up over a real duty cycle before you build it. (Chart shown is illustrative, not 26120 data.)
Case Studies
See how we helped McMurtry reduce cell evaluation time by 70% through data driven testing and modelling.

Motorsports
McMurtry Automotive: Faster cell evaluation
McMurtry Automotive used The Voltt and validated cell models to evaluate the transition from the Molicel P45B to P50B during early pack concept development.
Side by side modelling enabled rapid comparison of electrical and thermal behaviour, avoiding lengthy physical test campaigns. This approach reduced cell evaluation time by seven months, allowing the team to lock in cell selection and pack assumptions earlier while lowering technical risk and accelerating vehicle development.
Comparison with Related Cells
Compare the EVE Energy 26120 with other cells offering comparable capacity and performance characteristics.
Model
Capacity
Max Discharge
Typical Use
Access Cell Data
Manufacturer Background
EVE Energy
EVE Energy is a Chinese lithium-ion cell manufacturer producing cylindrical and prismatic formats
EVE Energy was founded in 2001 in Huizhou, China, and produces lithium-ion cylindrical and prismatic cells alongside a long-established primary lithium business. Its range covers lithium iron phosphate and nickel-based chemistries, with cylindrical 21700 and large-format prismatic cells serving electric vehicles, stationary storage, power tools and consumer products. The company operates plants across several Chinese provinces and has added capacity in Hungary, Malaysia and the United States to supply customers closer to their end markets. Its cylindrical range spans high-power and energy-led variants built on shared production lines. EVE is one of the broadest Chinese suppliers by application, rather than one concentrated on a single market.
Frequently Asked Questions
What is the capacity and voltage of the EVE Energy 26120?
The EVE Energy 26120 has a nominal capacity of 12.7 Ah and a nominal voltage of 3.6 V, providing 45.72 Wh of energy per cell.
What is the maximum continuous discharge capability of the EVE Energy 26120?
The EVE Energy 26120 supports continuous discharge rates up to 88.9 A, delivering a power density of 2,000 W/kg.
How much does the EVE Energy 26120 weigh and what is its volume?
The cell has a mass of 160 g and a volume of 63.75 cm³.
In which industries is the EVE Energy 26120 commonly used?
The EVE Energy 26120 is used across drones, aviation and e-mobility, applications that demand reliable performance and balanced energy and power.
What is The Voltt and how does it accelerate cell evaluation?
The Voltt holds 500+ verified commercial cell datasheets alongside validated simulation models built from cells characterised in About:Energy's own lab. Engineers screen candidates against their real duty cycle before buying hardware, which cut cell evaluation time by seven months for McMurtry Automotive and reduces evaluation cycles by up to 70%.
What data can be extracted using The Voltt?
Constant-current discharge curves at multiple C-rates, DC internal resistance against state of charge and temperature, pulse power maps, thermal response, and full mission-profile simulation with user-defined pack configurations. Models are available as equivalent circuit, thermal, physics-based and degradation formats, exportable for use in MATLAB, Simulink and Python workflows.



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