Skip to content
KStart free
AI InfrastructureDefenseQuantumAll studies →

DFLI US Equity

Dragonfly Energy Holdings Corp.Information Technology · Miscellaneous Electrical Machinery, Equipment & Supplies · CIK 1847986 · FY ends Dec 31
$1.20
+0.07 (+6.19%)
USD · as of 2026-08-21 · marketstack

DFLI · 10-K · period ended 2024-12-31

← all DFLI documents
filed 2025-03-31 · EDGAR original ↗

Our rendering of the filing — original pagination and typography are not reproduced, and tables are reduced to their short label cells (the figures live on FA). Nothing is summarized: every line below is the filing's own text.

blocks 1600 of 5,370440k characters rendered

UNITED

STATES

SECURITIES

AND EXCHANGE COMMISSION

Washington,

D.C. 20549

FORM

10-K

(Mark

One)

☒ANNUAL REPORT PURSUANT TO SECTION

13 OR 15(d) OF THE SECURITIES EXCHANGE ACT OF 1934

For

the fiscal year ended December 31, 2024

OR

☐TRANSITION REPORT PURSUANT TO SECTION

13 OR 15(d) OF THE SECURITIES EXCHANGE ACT OF 1934

For

the transition period from _______ to _______

Commission

file number 001-40730

DRAGONFLY

ENERGY HOLDINGS CORP.

(Exact

name of registrant as specified in its charter)

(Address of Principal Executive Offices) (Zip Code)

(775)622-3448

Registrant’s

telephone number, including area code

Securities

registered pursuant to Section 12(b) of the Act:

Title of each class Trading Symbol(s) Name of each exchange on which registered

Common stock, par value $0.0001 per share DFLI The Nasdaq Capital Market

Securities

registered pursuant to Section 12(g) of the Act: None.

Indicate

by check mark if the registrant is a well-known seasoned issuer, as defined in Rule 405 of the Securities Act. Yes ☐ No ☒

Indicate

by check mark if the registrant is not required to file reports pursuant to Section 13 or Section 15(d) of the Act. Yes ☐ No ☒

Indicate

by check mark whether the registrant: (1) has filed all reports required to be filed by Section 13 or 15(d) of the Securities Exchange

Act of 1934 during the preceding 12 months (or for such shorter period that the registrant was required to file such reports); and (2)

has been subject to such filing requirements for the past 90 days. Yes ☒ No ☐

Indicate

by check mark whether the registrant has submitted electronically every Interactive Data File required to be submitted pursuant to

Rule 405 of Regulation S-T during the preceding 12 months (or for such shorter period that the registrant was required to submit

such files). Yes ☒ No ☐

Indicate

by check mark whether the registrant is a large accelerated filer, an accelerated filer, a non-accelerated filer, or a smaller reporting

company. See the definitions of “large accelerated filer,” “accelerated filer” and “smaller reporting company”

in Rule 12b-2 of the Exchange Act. (Check one):

If

an emerging growth company, indicate by check mark if the registrant has elected not to use the extended transition period for complying

with any new or revised financial accounting standards provided pursuant to Section 13(a) of the Exchange Act. ☐

Emerging growth company ☒

Large accelerated filer ☐ Accelerated filer ☐

Non-accelerated filer ☒ Smaller reporting company ☒

Indicate

by check mark whether the registrant has filed a report on and attestation to its management’s assessment of the effectiveness

of its internal control over financial reporting under Section 404(b) of the Sarbanes-Oxley Act (15 U.S.C. 7262(b)) by the registered

public accounting firm that prepared or issued its audit report. ☐

If

securities are registered pursuant to Section 12(b) of the Act, indicate by check mark whether the financial statements of the registrant

included in the filing reflect the correction of an error to previously issued statements. ☐

Indicate

by check mark whether any of those error corrections are restatements that required a recovery analysis of incentive-based compensation

received by any of the registrant’s executive officers during the relevant recovery period pursuant to Section 240.10D-1(b). ☐

Indicate

by check mark whether the registrant is a shell company (as defined in Rule 12b-2 of the Act). Yes ☐ No ☒

The

aggregate market value of voting stock held by non-affiliates of the Registrant on June 30, 2024, based on the closing price of $7.61

for shares of the registrant’s common stock as reported by the Nasdaq Capital Market, was approximately $37.5 million.

As

of March 27, 2025, there were 7,589,642 shares of the registrant’s common stock, par value $0.0001 per share, issued and outstanding.

Documents

incorporated by reference:

None.

TABLE

OF CONTENTS

Page

Part I 1

Item 1. Business 1

Item 1A. Risk Factors 16

Item 1B. Unresolved Staff Comments 38

Item 1C. Cybersecurity 38

Item 2. Properties 38

Item 3. Legal Proceedings 38

Item 4. Mine Safety Disclosures 38

Item 6. [Reserved] 39

Item 7A. Quantitative and Qualitative Disclosures about Market Risk 54

Item 8. Financial Statements and Supplementary Data 54

Item 9A. Controls and Procedures 54

Item 9B. Other Information 55

Item 9C. Disclosure Regarding Foreign Jurisdiction that Prevent Inspections 55

Part III 56

Item 10. Directors, Executive Officers and Corporate Governance 56

Item 11. Executive Compensation 60

Item 14. Principal Accountant Fees and Services 69

Item 15. Exhibit and Financial Statement Schedules 70

SIGNATURES 75

On

November 22, 2024, we effected a 1-for-9 reverse stock split of our outstanding shares of common stock. Unless specifically provided

otherwise herein, all share and per share information in this Annual Report on Form 10-K has been adjusted to reflect the reverse stock

split.

i

CAUTIONARY

NOTE REGARDING FORWARD-LOOKING STATEMENTS

This

Annual Report on Form 10-K contains forward-looking statements made pursuant to the safe harbor provisions of the Private Securities

Litigation Reform Act of 1995 under Section 27A of the Securities Act of 1933, as amended (the “Securities Act”),

and Section 21E of the Securities Exchange Act of 1934, as amended. Forward-looking statements include statements with respect to our

beliefs, plans, objectives, goals, expectations, anticipations, assumptions, estimates, intentions and future performance, and involve

known and unknown risks, uncertainties and other factors, which may be beyond our control, and which may cause our actual results, performance

or achievements to be materially different from future results, performance or achievements expressed or implied by such forward-looking

statements. All statements other than statements of historical fact are statements that could be forward-looking statements. You can

identify these forward-looking statements through our use of words such as “may,” “can,” “anticipate,”

“assume,” “should,” “indicate,” “would,” “believe,” “contemplate,”

“expect,” “seek,” “estimate,” “continue,” “plan,” “point to,”

“project,” “predict,” “could,” “intend,” “target,” “potential”

and other similar words and expressions of the future.

There

are a number of important factors that could cause the actual results to differ materially from those expressed in any forward-looking

statement made by us. These factors include, but are not limited to:

● our ability to raise additional capital to fund our operations;

● our ability to successfully increase market penetration into target markets;

● the addressable markets that we intend to target do not grow as expected;

● the loss of any members of our senior management team or other key personnel;

● the loss of any relationships with key customers;

● our ability to protect our patents and other intellectual property;

● developments relating to our competitors and our industry;

● our current dependence on one manufacturing facility; and

The

foregoing does not represent an exhaustive list of matters that may be covered by the forward-looking statements contained herein or

risk factors that we are faced with that may cause our actual results to differ from those anticipated in such forward-looking statements.

Please see “Part I—Item 1A—Risk Factors” for additional risks which could adversely impact our business

and financial performance.

All

forward-looking statements are expressly qualified in their entirety by this cautionary notice. You are cautioned not to place undue

reliance on any forward looking statements, which speak only as of the date of this report or the date of the document incorporated by

reference into this report. We have no obligation, and expressly disclaims any obligation, to update, revise or correct any of the forward-looking

statements, whether as a result of new information, future events or otherwise. We have expressed our expectations, beliefs and projections

in good faith and believe they have a reasonable basis. However, we cannot assure you that our expectations, beliefs or projections will

result or be achieved or accomplished.

ii

Part

I

Item

1. Business

All

references in this report to “Dragonfly,” the “Company,” “we,” “us,” or “our”

mean Dragonfly Energy Holdings Corp. and its subsidiaries unless stated otherwise or the context otherwise indicates.

Overview

We

are a manufacturer of non-toxic deep cycle lithium-ion batteries that caters to customers in the consumer industry (including the recreational

vehicle (“RV”), marine vessel, solar and off-grid residence industries), and trucking, industrial and energy storage

markets, with proprietary, patented and disruptive battery cell manufacturing and non-flammable solid-state cell technology currently

under development. Our goal is to develop technology to deliver environmentally impactful solutions for energy storage to everyone globally.

We believe that the innovative design of our lithium-ion batteries is ideally suited for the demands of modern customers who rely on

consumer electronics, connected devices and smart appliances that require continuous, reliable electricity, regardless of location.

Our

deep cycle lithium iron phosphate (“LFP”) batteries provide numerous advantages compared to incumbent products, such

as lead-acid batteries. LFP batteries are non-toxic and environmentally friendly, do not rely on scarce or controversial metals and are

a highly cost-effective storage solution. LFP batteries use lithium iron phosphate (“LiFePO4”) as the cathode material

for lithium-ion cells rather than nickel or cobalt. Although the energy density of LFP batteries is lower, they have a longer cycle life

and experience a slower rate of capacity loss. LFP is also intrinsically safer than sulfide gases due to its thermal and chemical stability,

meaning our LFP batteries are less flammable than alternative products. As we develop our proprietary solid-state cell technology, we

believe our use of LFP will continue to provide significant advantages over the lithium-ion technology in development by most other companies

that still incorporate less stable components in their chemistries (such as sulfide gases, which are chemically unstable and form hydrogen

sulfide when exposed to air).

We

have a dual-brand strategy for battery products, Dragonfly Energy (“Dragonfly Energy”) and Battle Born Batteries (“Battle

Born”). Battle Born branded products are primarily sold direct-to-consumers (“DTC”), while the Dragonfly

Energy brand is primarily sold to original equipment manufacturers (“OEMs”). However, with the growing popularity

and brand recognition of Battle Born, these batteries have become increasingly popular with our OEM customers. Based on the extensive

research and optimization undertaken by our team, we have developed a line of products with features including a proprietary battery

management system and an internal battery heating feature for cold temperatures, and we have recently launched our unique battery communication

system. We currently source the LFP cells incorporated into our batteries from a limited number of carefully selected suppliers that

can meet our demanding quality standards and with whom we have developed long-term relationships.

Reflecting

the strength of our DTC brand, we signed a brand licensing contract in July of 2024 with Stryten Energy for the Battle Born brand to

be deployed in B2B sales within Stryten’s target market. The contract is expected to bring $30 million of licensing revenues within

a seven year period. Additionally, we signed a contract manufacturing agreement that allows for us to assemble battery packs to be sold

by Stryten under the Battle Born label. Both licensing and contract manufacturing revenues from these contracts are expected to come

in throughout 2025, and we believe will represent a significant portion of our total revenues beginning in 2026.

Founded

as an aftermarket-focused company, we initially targeted direct-to-consumer (DTC) sales within the recreational vehicle (RV) market.

Since our inception in 2020, we have successfully sold over 330,000 batteries. For the fiscal years ended December 31, 2024, and December

31, 2023, we sold 42,447 and 64,906 batteries, respectively, generating revenues of $50.6 million and $64.5 million for each year.

Our

innovative battery products have disrupted the traditional lead-acid battery markets. The strong DTC demand, combined with our efforts

to educate and market to original equipment manufacturers (OEMs), has facilitated significant penetration into the OEM sector. Historically,

we have driven total sales growth through several strategies:

3. OEM Partnerships: Supplying batteries to RV OEMs.

5. Accessory Sales: Reselling accessories for our battery systems.

Our

valued RV OEM partners currently include industry leaders such as Airstream, Tiffin Motorhomes, Forest River, nuCamp RV, Triple E RV,

REV Group, Keystone, and THOR Industries (“THOR”). Notably, THOR has made a strategic investment in our business,

which we believe underscores our strong industry relationships.

For

the year ended December 31, 2024, we experienced a period of sustained market correction characterized by ongoing inflation and historically

high interest rates, which posed challenges to our DTC markets. While there were small increases in retail registrations and wholesale

shipments within the RV industry, much of this growth was concentrated in the price-sensitive entry-level segment. These entry-level

RVs typically do not incorporate our battery products, resulting in a decline in our overall sales due to the limited growth in segments

aligned with our offerings.

However,

we did observe increased OEM adoption of our products outside the entry-level segment, marked by the acquisition of new customers and

enhanced market share within existing customer product lines. As a result, a higher proportion of our revenue was generated through the

OEM channel compared to the DTC market.

We

successfully entered into two significant distribution agreements with Keystone Automotive Group (a division of LKQ) and Meyer Distribution.

These partnerships are expected to expand our reach within the RV and marine dealer networks and support continued growth in our DTC

channels.

In

2024, RV dealers continued to optimize their inventory levels, resulting in relatively flat sales after a substantial 36% correction

in 2023. The industry’s pivot towards entry-level RVs, which do not typically utilize our batteries, contributed to the decline

in total revenue for the year ended December 31, 2024, compared to the prior year.

Based

on our ongoing discussions with customers and current unit forecast projections, we anticipate an increase in revenue within the RV market

for 2025. We remain committed to expanding our market presence, leveraging strategic partnerships, and driving innovation to sustain

our growth trajectory.

We

currently offer several lines of batteries across our two brands, each differentiated by size, power and capacity, consisting of seven

different models, which come with an option for internal heat for cold temperature operation or an option for wireless communication

using our Dragonfly IntelLigence feature. To supplement our battery offerings, we are also a reseller of accessories for battery systems.

These include chargers, inverters, monitors, controllers and other system accessories from brands such as Victron Energy, Progressive

Dynamics, Magnum Energy and Sterling Power.

Our

battery packs are designed and assembled in-house in the United States. In November 2024, we relocated from our 99,000 square foot facility

in Reno, Nevada to our new 390,240 square foot facility also in Reno, Nevada, which has allowed us to increase our production capacity

and gives us the ability to increase sales to existing customers and penetrate new markets. Our 390,240 square foot facility provides

a streamlined, partially autonomous production process for our current batteries, which comprises module assembly and battery assembly,

with the availability to expand the number of lines to handle increased volumes and the additional battery modules we intend to introduce

in the near future. We also entered into a lease for use of an approximately 64,000 square foot facility to further increase our capacity

to produce our patented dry electrode process (the “Fernley Lease Agreement”).

Through

our Battle Born Batteries and Wakespeed brands, we operate in three primary consumer end markets: RVs, marine vessels, and off-grid storage

systems. We are strategically expanding into additional markets, with a focus on trucking – including heavy-duty trucks and work

trucks – and industrial markets – including oil and gas and industrial solar integration. Within our core markets, we focus

on displacing lead-acid batteries with our technologically advanced and greener lithium-ion solutions. Our Battle Born Batteries portfolio

is designed to provide customers with a reliable, long-lasting, and highly efficient off-grid power source.

We

continue to leverage our proven sales and marketing strategy to efficiently penetrate our target end markets. We prioritize customer

education through various channels, highlighting the distinct advantages of lithium-ion batteries over traditional lead-acid alternatives.

Tradeshows, rallies, and industry events serve as key platforms for direct customer engagement, featuring product demonstrations, educational

seminars, and opportunities for interaction with knowledgeable sales and technical experts. We further amplify our reach through a robust

social media program, strategically partnering with content creators and industry influencers to disseminate product benefits to targeted

audiences. Additionally, we cultivate relationships with industry publications to secure editorial coverage that informs and educates

potential customers. We also employ a targeted pay-per-click (“PPC”) advertising campaigns across various platforms,

including search engines, social media, and connected TV to efficiently convert high-intent customers at the bottom of the purchase funnel.

Drawing

upon our success in collaborating with RV and marine OEMs, we have begun expanding into the heavy-duty trucking market. We are leveraging

our expertise in designing and supporting lithium-ion storage systems to tailor solutions meeting specific requirements for fleets. These

solutions have been adopted as factory options, demonstrating their value proposition for truck fleets seeking to:

This

strategic approach has resulted in successful pilot programs with fleets representing over 15% of the North American heavy-duty trucking

market, and has already resulted in several new arrangements, including Stevens Transport and Highway Transport.

In

the Fall of 2024, a partnership with Alegacy – a packager of natural gas compression equipment – led to a successful demonstration

of an uninterruptible battery powered vapor recovery unit (VRU) that exhibited methane leakage mitigation in a large (greater than 3000

hp) gas compression unit. We believe that this successful demonstration will pave the way for the aftermarket and OEM deployments of

these lithium battery powered VRUs, beginning in 2025. The opportunity leverages our expertise in combining alternator charging and battery

cycling, as well as our Class 1 Div 2 battery classification, which allows our battery systems to be deployed in the vicinity of oil

& gas pipelines.

To

augment our core lithium-ion battery pack business, we rely on our research and development department. The team has successfully developed

innovative manufacturing processes for dry-electrode manufacturing of lithium-ion cells, and continues development efforts relating to

next-generation solid-state technology. Since our inception, we have built a comprehensive patent portfolio around our proprietary dry-electrode

battery manufacturing process, which eliminates the use of harmful solvents and energy-intensive drying ovens compared to traditional

methods. This translates to significant environmental and cost benefits, including reduced energy consumption, smaller space requirements,

and a lower carbon footprint.

Moreover,

our solid-state technology in development removes the need for a liquid electrolyte, thereby addressing safety concerns related to flammability.

Our unique competitive edge lies in the combination of solid-state technology with its scalable dry-electrode manufacturing process.

This enables the rapid production of cells having an intercalation anode (like graphite or silicon), unlike many competitors reliant

on less stable lithium metal anodes. We believe this design offers superior cyclability and safety, serving as a key differentiator in

the energy storage market. Furthermore, internal production of both conventional and solid-state cells streamlines our supply chain and

enables vertical integration, ultimately driving down production costs.

Industry

Background

For

decades, lead-acid batteries have been the dominant player in power and energy markets worldwide. Since the introduction of the absorbed

glass mat (“AGM”) lead-acid battery in the mid-1970s, the technological advancements in lead-acid battery technology

have been limited. LFP batteries have numerous advantages over the incumbent lead-acid batteries used in today’s markets:

End

Markets

Current

Markets

According

to a Frost and Sullivan report commissioned by us in 2021 (“Frost & Sullivan”), the total addressable market (“TAM”)

of our three current end markets was estimated to be approximately $12 billion by 2025.

Addressable

Adjacent Markets

Our

addressable markets are areas with significant growth potential that we will be positioned to penetrate as customers turn towards LFP

and other lithium-ion batteries as replacements for traditional lead-acid batteries. As these medium- and long-term markets mature, we

intend to deploy our solid-state technology, once developed, while concurrently continuing to further displace the incumbent lead-acid

technology.

Our

Competitive Strengths

We

believe that we possess the largest share in the markets we operate in due to our following business strengths, which distinguish us

in this competitive landscape and position us to capitalize on the anticipated continued growth in the energy storage market:

Our

Growth Strategy

We

intend to leverage our competitive strengths, technology leadership and market share position to pursue our growth strategy through the

following:

Our

Products and Technology

Chemistry

Comparison

Lead-acid

batteries were the first form of rechargeable battery to be developed and modified across different platforms for a variety of uses,

from powering small electronics to use for energy storage in back-up power supplies in cell phone towers. Since the development in the

1970s of AGM lead-acid batteries, a form of sealed lead-acid battery that enables operation in any position, there has been limited innovation

in lead-acid battery technology. The push to develop longer-lasting, lower-cost, more environmentally-friendly and faster-charging batteries

has led to the development of lithium-ion batteries and, within the lithium-ion battery market, different chemistries.

There

are several dominant battery chemistries in the lithium-ion market that can be used for different purposes. Two widely adopted chemistries

found in the market today are nickel manganese cobalt (“NMC”), and nickel cobalt aluminum (“NCA”).

The higher energy density and shorter cycle life found in NMC and NCA batteries are suitable for markets where fast charging and high

energy density are required, such as electric vehicle (“EV”) powertrains and consumer electronics. LFP batteries are

best suited for energy storage markets where long life and affordability are paramount, such as RV, marine vessel, off-grid storage,

onboard tools, material handling, utility-grade storage, telecom, rail and data center markets.

NMC

batteries are highly dependent on two metals that present significant constraints — nickel, which is facing an industry-wide

shortage, and cobalt, a large percentage of which comes from conflict-ridden countries. According to an article by McKinsey & Company

titled “Lithium and Cobalt: A tale of two commodities”, global forecasts for cobalt show supply shortages arising

as early as 2022, slowing down NMC battery growth. Both of these elements are also subject to commodity price fluctuations, making NMC

and NCA batteries less cost-effective than LFP batteries. LFP batteries do not contain these elements and materials can be sourced domestically,

and are therefore not subject to these shortages, geopolitical concerns or commodity price fluctuations. In fact, LFP batteries have

no toxic elements, offering a much safer environmental alternative. The temperature threshold for thermal runaway (i.e., lithium-ion

battery overheating that can result in an internal chemical reaction) is higher for LFP batteries as compared to NMC and NCA batteries,

making LFP batteries less flammable and safer.

LFP

batteries have a useful life of approximately 10 to 15 years compared to one to two years for lead-acid batteries, and typically charge

up to five times faster. LFP batteries are also not constrained by weight (having the same energy capacity at one-fifth of the weight)

or temperature (having the ability to generate power even in low temperatures and to not swell or heat up when charging or discharging)

and are generally maintenance free.

In

the electric vehicle market, the race to provide the highest energy density facilitating frequent, rapid acceleration, greatest range

and fastest charging battery — all while competing on cost — is where many new battery companies

are prioritizing their efforts. Success in the electric vehicle market requires use of chemistries capable of optimization to these requirements.

In our targeted stationary storage markets, the ideal solution requires a safe, long-lasting battery in terms of discharge/charge cycles

with a focus on providing a steady power stream. LFP batteries are better suited for the stationary storage market compared to NMC and

NCA batteries, as LFP batteries are safer and have a significantly longer life cycle making them more cost-effective. The market for

utility grade storage, particularly for clean energy projects, and the related adoption of lithium-ion batteries (including LFP batteries)

is expected to increase as the fully loaded cost of energy (production and storage) approaches cost parity with inexpensive fossil fuel

energy provided through the electric grid. Compared to NMC and NCA batteries, LFP batteries are at or much closer to grid parity.

Dry

Electrode Cell Manufacturing Technology

Since

our inception, we have been developing proprietary dry-electrode manufacturing processes for which we have issued patents and pending

patent applications, where appropriate. Dry-electrode manufacturing eliminates the use of toxic and expensive solvents and energy-intensive

drying ovens in the cell manufacturing process. This in turn reduces the energy usage, space requirements, carbon footprint, and overall

cost as compared to conventional slurry-based methods. Furthermore, the manufacturing technology is chemistry agnostic – meaning

it can produce battery cells across a variety of different chemistries and application use cases. In 2023, we completed the construction

of our dry-electrode manufacturing pilot line, demonstrated the ability to produce Anode and Cathode electrode tapes at scale using this

manufacturing process. We have developed sample cells for prospective customers across a variety of chemistries and end-markets and are

designing equipment for scaled production of full cells.

Solid-State

Cells

LFP

batteries are not without their disadvantages. While less flammable than other chemistries, the existence of a flammable liquid electrolyte

still poses safety risks. Like all liquid-based lithium-ion batteries, LFP batteries have a potential to produce solid lithium dendrites,

icicle-like formations which can pierce the physical separators in LFP batteries, which are necessary in LFP batteries to separate the

positively charged liquid electrolyte from the negatively charged liquid electrolyte, and which, over time, will degrade the performance

of LFP batteries and potentially result in fire-related risks. The next phase in the development of lithium-ion batteries is solid-state

cell development, which contains a solid, rather than a liquid, electrolyte, eliminating many of the current disadvantages to LFP batteries

while increasing the safety of the battery cells. We believe that the development of our solid-state technology will provide us with

a unique competitive advantage.

Compared

to current lithium-ion technology, where lithium-ions cross a liquid electrolyte barrier between a battery’s anode (negative electrode)

and cathode (positive electrode), solid-state batteries aim to use a solid electrolyte to regulate the lithium-ions. As a battery charges

and discharges, an electrochemical reaction occurs creating a flow of electrical energy between the cathode, electrolyte and anode as

the electrodes lose and reacquire electrons. In addition to the use of non-toxic electrode components, the removal of a liquid electrolyte

will eliminate the risk of fire, making solid-state cells inherently safe. The move to a non-liquid electrolyte also means that solid-state

batteries will be, on average, smaller and lighter than existing lithium-ion batteries. The process for manufacturing our solid-state

cells is described below under “— Research and Development”.

Our

Products

We

provide various industries with clean, reliable, and efficient power solutions through our comprehensive product portfolio. These products

and solutions are sold to both OEMs and retail customers.

Our

lead product line is Battle Born Batteries product line, respected for its exceptional performance and durability. When compared to traditional

lead-acid options, Battle Born Batteries deliver two to three times the power in the same physical space, one-fifth the weight for equal

usable power, and up to five times faster charging. Additionally, these batteries have extended lifespans of 3,000-5,000 cycles, translating

to ten to fifteen years of reliable use under typical conditions. This longevity is backed by our 10-year warranty, showcasing our commitment

to quality. The Battle Born Batteries product line currently features various sizes and configurations including models with proprietary

built-in heating for cold weather charging and Dragonfly IntelLigenceTM, a communication technology that unlocks real-time monitoring,

instant notifications, various protocol integration and superior battery protection. A focus on safety is central to our products, and

all Battle Born Battery products utilize LiFePO4 chemistry, the safest lithium-ion chemistry available on the market. Additionally, our

battery products undergo rigorous testing under stringent industry standards like UL Standard 2054, IEC 62133, UN 38.3 and IP65 to ensure

safety and reliability.

Looking

beyond batteries, we also offer a diverse range of power products.

Additionally,

as a distributor of leading brands like Victron, Schneider, and REDARC, we act as a one-stop shop for full system integration, catering

to both OEMs and retail customers. Our complete offering allows customers to benefit from clean and sustainable power, extended lifespans,

reduced costs, increased efficiency, and seamless integration - all backed by expert service and support.

Battery

Management System

Our

proprietary battery management system is developed and tested in-house. It offers a complete solution for monitoring and controlling

our complex battery systems and is designed to protect battery cells from damage in various scenarios. We believe our battery management

system is industry-leading for a number of reasons:

● it enables batteries to recharge even if completely drained;

Battery

Communication System

We

have developed a complete communication system branded Dragonfly IntelLigence, for which a U.S. non-provisional patent application and

an international PCT patent application have been filed, to be used with Dragonfly Energy OEM systems and Battle Born batteries and bundles.

This communication system will enable end customers to monitor each battery in real time, providing information on energy input and output

and current or voltage imbalances. The communication system will be able to communicate with up to 24 batteries in a bank at one time

and aggregate the data received from these batteries into a central system such as a phone or tablet. We began offering the Dragonfly

IntelLigence product line to OEMs in the third quarter of 2024, and to retail consumers in the fourth quarter of 2024.

Alternator

Regulation

Charging

batteries in a vehicle, such as a boat or RV, often requires pulling electrical current off of the vehicle’s alternator. Alternator

regulation is important to ensure that the alternator does not get unduly stressed during the current delivery to the batteries, and

that the current delivery remains within the operating limits of the onboard battery bank. The acquisition of the assets of Wakespeed

has allowed us to deliver our own proprietary solution to alternator regulation while also leveraging an established brand name. Wakespeed

is especially popular in the marine industry, and our ability to offer this complete solution sets the stage for further penetration

into marine markets.

Product

Pipeline

Beyond

our current battery modules, we have several LFP products in development that will enable us to access additional end markets.

Research

and Development

Our

research and development team has built up its efforts to support two main initiatives – (1) scale up of our patented dry electrode

process for cell manufacturing and (2) the advanced manufacturing of solid-state lithium-ion batteries. We believe the dry electrode

process can be leveraged to help us vertically integrate from a pack supplier to a cell supplier – positioning ourselves for long-term

competitiveness in the given geopolitical, economic, and technological landscapes. Our innovations in dry electrode processing result

in reduced manufacturing costs, CO2 equivalents, and factory footprint while eliminating the need for solvents like N-Methyl-2-pyrrolidone

(“NMP”). A third-party assessment conducted by Sphere Energy confirming these benefits has been completed in the first

quarter of 2024 relating to cost effectiveness and sustainability of our dry electrode battery manufacturing process (the “Sphere

Energy Assessment”).

The

Sphere Energy Assessment concluded that our dry electrode battery manufacturing process resulted in a 9% reduced carbon footprint of

cell manufacturing with no toxic NMP solvent required, resulting in a significantly more sustainable process. This sustainability advantage

is further augmented by a 71% reduction in energy usage during electrode manufacturing using our process (spray drying, coating, calendaring)

compared to standard cell manufacturing operations (slurry casting, drying, calendaring). By removing the need for large and expensive

drying ovens, our manufacturing process requires 22% less square footage. The culmination of these advantages results in a 25% reduction

in emissions from energy use, making our manufacturing process more sustainable and much more environmentally friendly as compared to

conventional manufacturing methods.

In

addition to the energy savings, the cost assessment found our process to be highly cost-effective with an estimated 5% savings (depending

on cell chemistry) on process-related costs compared to conventional methods. Importantly, these savings were calculated without the

additional cost benefits provided by domestically manufacturing battery cells such as Inflation Reduction Act tax credits (issued by

the IRS), tariffs, and shipping.

The

dry electrode battery manufacturing process we employ uses a patented spray coating technology to adhere the anode and cathode electrodes,

eliminating the need for large, energy-intensive equipment such as slurry coaters, conveyor dryers, and NMP processing equipment. This

process is chemistry agnostic, allowing for the various applications, such as electric vehicles, consumer electronics, and energy storage,

which is expected to enable us to expand into new markets and to achieve our goal of domestically producing nonflammable all-solid-state

battery cells.

We

have successfully produced anode and cathode electrode reels at scale using the dry electrode process and are now qualifying prototype

cells for the core business and potential partners. When compared to slurry cast electrode tapes, which is the conventional manufacturing

method, electrode tapes produced using the dry electrode process match or surpass mechanical integrity and electrochemical performance.

We are considering joint development agreements, licensing agreements, and offtake agreements as instruments of partnership with interested

parties.

In

comparison with traditional manufacturing methods, our patented process leverages two off-the-shelf technologies to deliver the

stated cell manufacturing benefits – spray drying and electrostatic powder coating. Technical risk is reduced by using

off-the-shelf equipment and both unit operations continue to be optimized in 2025. A new set of spray dryers have arrived

at our facility in the second quarter of 2024, enabling us to produce larger volumes of material for the electrode coating lines.

However, we have delayed the deployment of these spray dryers until at least the third quarter of 2025 as we focus on designing

larger-scale electrode coating equipment.

We

have developed our patented to be chemistry agnostic and capable of producing current cell chemistries (graphite, LCO, LFP, LTO, NCA,

NMC, LTO, silicon, etc.) and next generation cell chemistries (sodium-ion, solid-state, ionic liquid electrolytes, etc.). We believe

this flexibility and our robust intellectual property protection internationally positions us well for potential partnerships with cell

manufacturers, EV companies, and other pack suppliers in need of cell capacity. The next stage in technical development is to produce

larger volumes of sample cells for qualification. These production runs will be completed with partners in the United States and at our

own facilities . We have invested significant resources into developing an in-house comprehensive understanding of cell manufacturing

– raw material qualification, quality control such as, cell failure diagnostics, aging, and formation processes. Our research and

development Lab is equipped with over $20 million in research infrastructure to support the development of new cell chemistries, process

quality control, failure diagnostics, and more. This equipment includes quality control instruments (ex. moisture analysis, particle

size analysis, peel testing and titrations) and cutting-edge research instrumentation such as en operando nuclear magnetic resonance

(“NMR”), electron microscopes with lithium-tracking capabilities, and en operando x-ray diffraction. This infrastructure

has allowed us to optimize the dry-electrode process, allowing our team to match or surpass traditional electrode tape performance and

mechanical integrity. Because our process is dry and the active material is coated directly onto the current collector, interfacial and

composite resistivity of the electrode tapes often surpass the quality of slurry cast equivalents.

Our

solid-state technology continues to progress as we qualify new chemistries and refine the dry electrode process for solid-state applications.

Currently, we are cycling solid-state coin cells, although we have delayed the production of prototype pouch cells until at least the

beginning of 2026. These cell chemistries are nonflammable, solid-state, and an LFP/graphite cell chemistry. We believe these cells will

be a pivotal technology in grid storage applications once fully deployed. We intend to integrate our conventional and solid-state cells

produced using our dry-electrode process into the existing Dragonfly Energy and Battle Born Batteries product portfolios.

Headquarters,

Manufacturing, and Production

On

February 8, 2022, we entered into a 124-month lease for an additional 390,240 square foot warehouse. In November 2024, we relocated our

headquarters from our 99,000 square foot facility in Reno, Nevada to our new 390,240 square foot facility also in Reno, Nevada, which

has allowed us to increase our production capacity and gives us the ability to increase sales to existing customers and penetrate new

markets. Our 390,240 square foot facility provides a streamlined, partially autonomous production process for our current batteries,

which comprises module assembly and battery assembly, with the availability to expand the number of lines to handle increased volumes

and the additional battery modules we intend to introduce in the near future. We do not own any real estate property. We currently have

two production lines with another line currently in construction. We continue to have the capability to expand our production volumes

and line quantities to support increased volumes of new products we intend to introduce soon.

On

April 12, 2024, we entered into the Fernley Lease Agreement pursuant to which we agreed to lease an approximately 64,000 square foot

facility (the “Premises”) in Fernley, Nevada, to be used for general, warehousing, assembly/light manufacturing, painting

of products, storage fulfillment, distribution of our products, and other uses as permitted under in the Fernley Lease Agreement.

Our

manufacturing process is divided into two aspects – (1) module assembly and (2) battery assembly. We use a combination of trained

employees and automated processes to increase production capacity and lower costs while maintaining the same level of quality our customers

expect from our products. Module assembly is a significantly automated process, implementing custom-designed equipment and systems to

suit our production needs. This includes cycling of individual cells to detect faulty components and to enable sorting by capacity. Our

custom-designed automated welders spot weld individual cells that are assembled into specified module jigs based on the desired amp hour.

Completed modules are then fully discharged, recharged fully, and sorted by capacity. Battery assembly is performed largely by hand by

our trained employees, although we continue to look for innovative ways to integrate automation into this process. Our proprietary battery

management system is thoroughly tested for quality cutoffs, then mounted onto individual modules, before the modules are bolted into

its casing. We aim to automate the battery management system testing and installation process, which we expect could increase production

capacity fourfold. We are currently implementing an automated process for the gluing and sealing process, which would incorporate a two-robot

system for gluing and epoxying, as well as a glue pallet system to move finished batteries. After the assembled batteries are tested

and sealed, they are processed for outbound distribution.

Supplier

Relationships

We

have a well-established, global supply chain that underlies the sourcing of the components for our products, although we source domestically

wherever possible. We aim to maintain approximately six months’ worth of all components, other than cells, which we pre-order in

advance for the year to ensure adequate supply. For nearly all of our components, other than our battery management system, we ensure

that we have alternative suppliers available. Our battery management system is sourced from a single supplier based in China who we have

a nearly 10-year relationship with and who manufactures this component exclusively for us based on our proprietary design. Our cells

are sourced from two different, carefully selected cell manufacturers in China who are able to meet our demanding quality standards.

As a result of our long-standing relationships with these suppliers, we are able to source LFP cells on favorable terms and within reasonable

lead-times.

As

we look toward the production of our traditional and solid-state cells, we have signed a Commercial Offtake Agreement with a lithium

mining company and a lithium recycling company, both located in Nevada for the supply of lithium.

Customers;

RV OEM Strategic Arrangements

We

currently serve more than 23,000 customers in North America. Our existing customers consist of leading OEMs (such as Keystone, THOR,

REV Group and Airstream); distributors (who purchase large quantities of batteries from us and sell to consumers); upfitters (who augment

or customize vehicles for specific needs); and retail customers (who purchase from us directly). For the years ended December 31, 2024

and 2023, OEM sales represented 54.5% and 42.7% of our total revenues, respectively.

We

have deep, long-standing relationships with many of our customers. We also have a diverse customer base, with our top 10 customers accounting

for 47.4% of our revenue for the year ended December 31, 2024, in which only one customer accounted for more than 10% of our revenue.

Our customers primarily utilize our products for RVs, marine vessels and off-grid residences. We work directly with OEMs to ensure compatibility

with existing designs and also collaborate on custom designs for new applications.

The

RV market is characterized by low barriers to entry. In North America, there are two large publicly traded RV companies, THOR Industries

and REV Group, in addition to a number of independent RV OEMs. THOR and REV each own a number well-known RV OEM brands and their related

companies. These brands compete on a number of factors such as format (e.g., motorized or towable), price, design, value, quality and

service. On November 19, 2021, we entered into a long-term Manufacturing Supply Agreement with Keystone, a member of the THOR group and

the largest towable RV OEM in North America (the “Supply Agreement”). Under the Supply Agreement, we will be the exclusive

supplier to Keystone for certain of its future LFP battery requirements, solidifying our long standing relationship with Keystone.

In

July 2022, we strengthened our ties with the THOR group of RV OEMs when (i) THOR Industries made a $15,000,000 strategic investment in

us and (ii) we agreed to enter into a future, mutually agreed distribution arrangement and joint IP development arrangement. This arrangement

helps facilitate our ongoing efforts to drive adoption of our products (leveraging the trend of LFP batteries increasingly replacing

lead-acid batteries) by, among other things, increasing the number of RV OEMs that “design in” our batteries as original

equipment and entering into arrangements with members of the various OEM dealer networks to stock our batteries for service and for aftermarket

replacement sales. Once the distribution agreement has been negotiated and signed, during a to-be-agreed transition period, we will use

commercially reasonable efforts to cease marketing and selling our products to other RV OEMs and suppliers to RV OEMs in North America.

Although the full distribution agreement with THOR has not been executed and is subject to negotiation in the future, its terms are expected

to include: (i) an initial term of 24 months, which THOR may renew for successive one-year periods; (ii) a requirement that we be the

sole provider of lithium-ion batteries to the US-based THOR family of companies for THOR sales in the United States, subject to agreed

exceptions; (iii) favored pricing for products and negotiated rebates or other incentives; (iv) a requirement that THOR and its North

American OEMs be our exclusive RV OEM customers for our products in North America, subject to agreed exceptions; and (v) agreeable terms

with respect to registered and unregistered intellectual property rights and technology rights (which do not include our existing intellectual

property, including our solid-state battery technologies and related IP rights), including necessary licenses between the parties, third

party licenses, and allocation of ownership of any intellectual property rights and/or technology rights developed as a result of development

efforts jointly undertaken between THOR and us, subject to certain limitations.

We

continue to seek to grow our customer base within our existing segments; however, we also believe that our products are well suited to

address the needs in additional segments, including residential, commercial and/or industrial standby power, long-haul trucking, industrial

vehicles (such as forklifts, material handling equipment and compact construction equipment) and specialty vehicles (such as emergency

vehicles, utility vehicles and municipal vehicles) and we will seek to expand our market share in these segments in the future.

Sales

and Marketing

Our

proven sales and marketing strategy has allowed us to penetrate our current end markets efficiently. We have established a highly efficient

sales and marketing strategy, to penetrate targeted end markets and ensuring prominent visibility for our Battle Born Batteries and Wakespeed

brands. We prioritize educating our customer base about the benefits of LFP batteries as a superior investment compared to traditional

lead-acid options. Informational videos published on our website and social media platforms highlight these advantages, complemented

by written guides that assist customers in configuring, installing, and utilizing battery systems and accessories. This messaging is

further reinforced through our active presence at tradeshows, live webinars, and other in-person training events with dealers and customers,

fostering direct engagement and ensuring comprehensive product understanding. Participation in these events fosters strong relationships

with both OEMs and retail customers, keeping us attuned to evolving preferences. By leveraging this customer feedback, we collaborate

with major OEMs to design solutions tailored to new and existing applications.

In

addition to traditional print and digital advertising, we harness the significant influence of social media platforms like YouTube, Instagram,

and Facebook, through affiliate marketing. We partner with established content creators and influencers to cultivate lasting relationships

that showcase product performance organically, beyond mere one-off promotions. Organic integration of our products in television shows,

podcasts and other similar sponsorships further amplifies brand awareness. Additionally, we foster relationships with key industry publications,

securing valuable editorial coverage that showcases our innovative power solutions and how they are used. We believe these strategic

collaborations position our brands as industry leaders within our markets and to the general public as a whole, further strengthening

brand awareness and consumer confidence.

We

also leverage targeted pay-per-click advertising campaigns across various platforms, including search engines, social media, and connected

TV. This data driven approach ensures efficient conversion of high-intent customers at the bottom of the purchase funnel, maximizing

Source: SEC EDGAR (public domain) · 10-K for the period ended 2024-12-31, filed 2025-03-31 · accession 0001641172-25-001755

Filing HTML rendered to line-structured narrative text by the shipped reducer (datafeeds.edgar_fulltext.visible_text, keep_table_headers=True): scripts and inline-XBRL headers are dropped, and table content is reduced to its short label cells — numeric table data is not rendered and is therefore not counted. The same rendering is used for every year, so a year-over-year comparison is like for like.

The text is our rendering of the filing, not a facsimile: original pagination, typography and tables are not reproduced, and the numbers live in the financial statements (FA).

The outline locates item HEADINGS in this document. Only Items 1A and 7 have certified boundaries elsewhere in the terminal (the redline and the narrative-overlap number); every span here runs from one heading found to the next heading found.

How the outline was chosen. It is the longest chain of item headings that runs forward through both the document and the standard item order: 17 headings are on that chain and 1 further heading-shaped lines are not — the table-of-contents echo of every item, cross-references and exhibit-list mentions. Each entry's length is measured from its heading to the next heading on the chain.