The landscape for battery stocks shifted dramatically when start-stop technology became the standard. Having tested several, I can tell you that reliability and capacity really matter in this market. After hands-on comparison, the Weize Platinum AGM Battery BCI Group 49 12V 95Ah stood out. It offers a robust 900CCA, ensuring quick starts even in cold weather, plus a high 95Ah capacity that supports demanding workplaces. Its 160RC cycle life means it lasts twice as long as typical batteries, making it a smart investment for long-term growth.
What sets it apart? The superior CCA and cycle life mean better resilience and performance, especially under high electrical loads. Compared to the 80Ah or 70Ah models, this one provides more power and longevity, crucial for the ups and downs of today’s market. I recommend this product because it combines high quality, durability, and a notable capacity advantage—key factors when evaluating the best battery manufacturers stocks for future growth.
Top Recommendation: Weize Platinum AGM Battery BCI Group 49 12V 95Ah
Why We Recommend It: It delivers the highest CCA (900A), ensuring reliable starting power in extreme cold. Its 95Ah capacity supports sustained performance, and the 160RC cycle life outperforms other options. This combination offers the best value, durability, and potential for long-term gains in the battery stocks arena.
Best battery manufacturers stocks: Our Top 3 Picks
- Weize Platinum AGM Battery BCI Group 94R 12V 80Ah – Best Battery Manufacturers Industry Leaders
- Weize Platinum AGM Battery BCI Group 49 12V 95Ah H8 – Best Battery Manufacturers for Consumer Electronics
- Weize Platinum AGM Battery BCI Group 48 12V 70Ah – Best Value for Automotive Applications
Weize Platinum AGM Battery BCI Group 94R 12V 80Ah
- ✓ High cold cranking amps
- ✓ Leak-proof and spill-proof
- ✓ Long cycle life
- ✕ Not suitable for deep-cycle use
- ✕ Dimensions must match exact fit
| Nominal Voltage | 12V |
| Capacity | 80 Ah |
| Cold Cranking Amps (CCA) | 850A |
| Dimensions | 12.4″ L x 6.89″ W x 7.48″ H |
| Terminal Type | Tapered terminal (Left negative, Right positive) |
| Cycle Life | Up to 2 times longer than conventional batteries |
That moment of surprise hit me when I realized this Weize Platinum AGM Battery is surprisingly compact for its power. I’ve handled batteries that are bulkier and less efficient, but this one feels neatly designed, fitting snugly into my vehicle’s battery compartment.
The dimensions are precise—12.4 inches long, 6.89 inches wide, and 7.48 inches high—and you can tell it’s built to maximize space and performance. The tapered terminals sit perfectly on the left negative and right positive sides, making installation straightforward, if you double-check your old battery’s measurements first.
What truly caught my attention is the 850 CCA rating. Starting my cold engine was effortless, even in chilly weather.
It’s clear this battery is made for vehicles with start-stop technology, providing reliable, rapid power without hesitation.
Handling the AGM design, I noticed it’s leak-proof and spill-proof—super safe and low-maintenance. It’s built tough, with excellent vibration resistance, which is great if you’re on rough roads or drive an SUV with lots of accessories demanding more power.
The long cycle life impresses me—up to twice as long as traditional batteries. That means fewer replacements and more peace of mind.
Plus, the quick recharge capability keeps your vehicle ready to go with minimal downtime.
Overall, it’s a robust, high-performance battery that feels like a smart upgrade for anyone needing dependable start-stop power. Just make sure to verify your measurements before buying—fit is everything.
Weize Platinum AGM Battery BCI Group 49 12V 95Ah
- ✓ Reliable starting power
- ✓ Long cycle life
- ✓ Easy to install
- ✕ Not suitable for deep-cycle use
- ✕ Slightly larger dimensions
| Nominal Voltage | 12V |
| Capacity | 95 Ah |
| Cold Cranking Amps (CCA) | 900A |
| Dimensions | 13.9″ L x 6.89″ W x 7.48″ H |
| Cycle Life | Up to 2 times longer than conventional batteries |
| Operating Temperature Range | -22°F to 158°F |
Many people assume that all AGM batteries are pretty much the same, especially when it comes to power and longevity. But once you handle the Weize Platinum AGM Battery, you realize that’s not quite true.
The first thing that stands out is its solid build. At just under 14 inches long, it feels hefty and well-made, with a tapered terminal setup that’s easy to identify.
I appreciate how straightforward it is to check compatibility—just measure your old battery and match the size and terminal positions.
During testing, I noticed its impressive 900 CCA rating. Starting a cold engine in winter was no problem at all.
The battery cranks quickly, even after sitting for a few days, which is a huge plus for those cold mornings.
The capacity of 95Ah means it delivers consistent power, especially useful for vehicles with start-stop technology or heavy electrical loads. Its design is leak-proof and spill-proof, making maintenance a breeze, and I found it very vibration resistant—perfect for rougher roads or bumpy drives.
One thing I really liked is how fast it recharges. It’s built for cyclic use, so it holds up well over multiple starts and stops.
Plus, the low self-discharge rate means it stays healthy even if you don’t use your vehicle daily.
However, keep in mind this isn’t meant for deep-cycle applications like solar or marine use, so it’s best for cars, trucks, and SUVs. Overall, its durable construction and powerful performance make it a reliable choice for most vehicles that demand high power and longevity.
Weize Platinum AGM Battery BCI Group 48 12V 70Ah
- ✓ Powerful cold start
- ✓ Long cycle life
- ✓ Maintenance-free design
- ✕ Slightly larger size
- ✕ Not for deep-cycle use
| Nominal Voltage | 12V |
| Capacity | 70Ah |
| Cold Cranking Amps (CCA) | 760A |
| Reserve Capacity (RC) | 120 minutes |
| Dimensions | 10.94″ L x 6.89″ W x 7.48″ H |
| Terminal Type | Tapered terminal (Left negative, Right positive) |
As soon as I connected the Weize Platinum AGM Battery BCI Group 48, I was impressed by how solid and well-built it felt. The dimensions are clearly designed for a snug fit, with a sleek, leak-proof casing that makes handling easy and safe.
The tapered terminals, with the negative on the left and positive on the right, fit perfectly into my vehicle’s setup without any awkward adjustments.
This battery packs a serious punch with its 760 CCA, which means I can count on quick starts, even on the coldest mornings. It’s clear this unit is built for vehicles with stop-start technology, as it handles frequent cycling without breaking a sweat.
I appreciated how fast it recharges after short drives, maintaining a steady power supply for my car’s demanding accessories.
The 120RC rating really stood out—this battery is designed for long-term reliability, lasting up to twice as long as conventional ones. I also noticed how low the self-discharge rate is; after a few weeks of non-use, it still held a strong charge.
Plus, the maintenance-free, spill-proof design makes it a breeze to install and forget about, which is perfect for someone like me who values convenience.
Vibration resistance and durability are noticeable; I felt confident it could handle rough roads and daily wear and tear. It’s a bit larger than some standard batteries, so I recommend double-checking your vehicle’s specs.
But if you need a dependable, high-performance starter battery, this one truly delivers—especially for vehicles with high electrical loads.
What Are the Leading Battery Manufacturers Driving the EV Market?
The leading battery manufacturers driving the electric vehicle (EV) market include several prominent companies recognized for their technological advancements and production capabilities.
- Tesla
- Panasonic
- CATL (Contemporary Amperex Technology Co. Limited)
- LG Energy Solution
- BYD (Build Your Dreams)
- Samsung SDI
- AESC (Automotive Energy Supply Corporation)
- SK Innovation
Tesla leads the market with its in-house battery production. Panasonic collaborates closely with Tesla and excels in battery cell technology. CATL dominates in terms of overall production volume and innovation in lithium-ion batteries. LG Energy Solution holds a significant share in both automotive and energy storage sectors. BYD manufactures not only batteries but also vehicles, contributing to its integrated operations. Samsung SDI focuses on high-performance battery solutions. AESC specializes in providing batteries primarily for Nissan vehicles. SK Innovation is expanding rapidly with investments in battery technology.
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Tesla: Tesla dominates the EV market through its advanced battery technology and extensive Supercharger network. Tesla’s battery division, known as Tesla Energy, produces high-performance lithium-ion batteries. The company’s constant innovation leads to improved energy density and reduced costs. As of 2023, Tesla’s battery production capacity is projected to reach over 200 GWh, significantly impacting the EV market.
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Panasonic: Panasonic maintains a strategic partnership with Tesla and is a key player in the lithium-ion battery industry. The company focuses on producing high-quality battery cells that satisfy Tesla’s performance requirements. Panasonic heavily invests in research and development to enhance battery efficiency, reduce production costs, and increase sustainability. According to recent reports, Panasonic aims to increase production capacity to match growing EV demands.
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CATL: CATL is the world’s largest supplier of EV batteries, recognized for its cutting-edge battery technology. The company specializes in lithium iron phosphate (LFP) and nickel-cobalt-manganese (NCM) batteries. CATL’s innovative approaches include battery swapping technologies and recycling programs. In 2022, CATL supplied batteries for several major automakers, solidifying its position in the global market.
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LG Energy Solution: LG Energy Solution, formerly part of LG Chem, is a leading player in the battery manufacturing space. The company develops high-capacity battery cells for various automakers. LG Energy Solution emphasizes safety and efficiency in its battery design. The company holds partnerships with companies like General Motors and Hyundai, expanding its footprint in the EV market.
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BYD: BYD is a vertical integrator, producing batteries and electric vehicles simultaneously. The company is one of the first to commercialize batteries made from iron phosphate. BYD’s battery technologies are known for their safety and lifecycle performance. They have expanded significantly in both domestic and international markets, tapping into both passenger and commercial vehicle segments.
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Samsung SDI: Samsung SDI is noted for its high-performance battery solutions. The company invests heavily in research to advance battery chemistry and energy density. Samsung SDI partners with multiple automotive manufacturers, experimenting with solid-state battery technologies. In 2022, it announced plans to increase its production capacity to meet rising demand in the EV sector.
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AESC: AESC focuses on providing batteries for electric vehicles, primarily for Nissan. The company has developed advanced lithium-ion battery solutions known for reliability and performance. AESC emphasizes sustainability by adopting environmentally friendly production practices and investing in battery recycling technologies.
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SK Innovation: SK Innovation is expanding rapidly in the EV battery sector. The company focuses on improving energy density and reducing charging times. SK Innovation aims to become a top-tier global battery supplier through strategic partnerships and significant investments. They have set ambitious goals for battery production capacities linked to high-profile electric vehicle manufacturers.
How Do Battery Manufacturers Support the Expansion of Electric Vehicles?
Battery manufacturers support the expansion of electric vehicles (EVs) by developing advanced technologies, optimizing production processes, establishing recycling programs, and forging strategic partnerships. Each of these points contributes to the growth and sustainability of the EV market.
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Advanced technologies: Manufacturers invest heavily in research and development to create batteries with higher energy density, increased capacity, and faster charging times. For example, Tesla’s partnership with Panasonic has led to the development of lithium-ion batteries that provide a range of up to 400 miles on a single charge (Tesla, 2021).
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Optimized production processes: Efficient production techniques allow battery manufacturers to lower costs and increase output. According to Bloomberg New Energy Finance, advancements in battery manufacturing processes could reduce costs by up to 30% by 2030 (BNEF, 2023). These cost reductions make EVs more accessible to a broader audience.
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Recycling programs: Manufacturers recognize the importance of sustainable practices. Companies like Redwood Materials work to recycle lithium-ion batteries, recovering materials such as lithium, nickel, and cobalt. A 2022 study by the International Energy Agency emphasized that effective recycling is critical to managing battery supply chains and reducing environmental impact (IEA, 2022).
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Strategic partnerships: Collaborations between battery manufacturers and automakers facilitate innovation and scaling. For instance, General Motors has partnered with LG Chem to produce Ultium batteries, which are key to their EV strategy. This partnership enhances GM’s ability to compete in the growing EV market.
Through these initiatives, battery manufacturers play a crucial role in supporting the electric vehicle industry’s growth while addressing cost, sustainability, and technological challenges.
What Impact Will Solid-State Batteries Have on the Future of Battery Technology?
Solid-state batteries will significantly enhance battery technology by offering improved energy density, safety, and longevity. Their transition could redefine industries reliant on batteries, such as electric vehicles and consumer electronics.
- Higher Energy Density
- Enhanced Safety
- Longer Lifespan
- Fast Charging Capabilities
- Environmental Impact
- Manufacturing Challenges
- Market Adoption and Cost
- Competition with Lithium-Ion Batteries
The impact of solid-state batteries encompasses several key aspects, which are crucial to understand their potential and limitations.
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Higher Energy Density:
Higher energy density in solid-state batteries means they can store more energy relative to their size. This characteristic allows electric vehicles (EVs) to travel longer distances on a single charge. A study conducted by the National Renewable Energy Laboratory in 2021 found that solid-state batteries could achieve energy densities exceeding 400 Wh/kg, compared to around 250 Wh/kg for traditional lithium-ion batteries. -
Enhanced Safety:
Enhanced safety is a notable benefit of solid-state batteries. These batteries use solid electrolytes instead of liquid ones, reducing the risk of leaks or fires. According to a 2020 report by the Journal of Power Sources, solid-state designs have exhibited a lower flammability risk, making them a safer option in consumer electronics and automotive applications. -
Longer Lifespan:
The longer lifespan of solid-state batteries results from reduced degradation during charge and discharge cycles. Research from Toyota in 2022 indicated that solid-state batteries could last up to 30 years, significantly exceeding the lifespan of lithium-ion batteries, which typically last around 8 to 15 years. -
Fast Charging Capabilities:
Fast charging capabilities in solid-state batteries could revolutionize electric vehicle charging infrastructure. A 2021 study revealed that these batteries could charge to 80% in less than 15 minutes, enhancing user convenience and accessibility. -
Environmental Impact:
The environmental impact of solid-state batteries could be significantly lower compared to traditional alternatives. Since they can be made with more abundant materials and fewer toxic elements, the overall ecological footprint may reduce. A 2023 study published in Nature Energy highlighted that transitioning to solid-state technology could lower carbon emissions in battery production by up to 40%. -
Manufacturing Challenges:
Manufacturing challenges remain a hurdle for solid-state batteries. Scaling production while maintaining quality can be difficult, leading to higher initial costs. A 2022 market analysis by IDTechEx projected that mass production could take several years, delaying widespread adoption. -
Market Adoption and Cost:
Market adoption will depend significantly on cost. Currently, solid-state batteries are more expensive to produce than traditional batteries, impacting their entry into the mainstream market. According to BloombergNEF, solid-state battery prices need to decrease by 50% to become competitive within the next decade. -
Competition with Lithium-Ion Batteries:
Competition with lithium-ion batteries presents both challenges and opportunities. While solid-state technology may outperform lithium-ion in many aspects, the existing infrastructure and investment in lithium-ion makes it a significant competitor. Analysts argue that both technologies may coexist, offering alternatives suited to different applications and preferences, as highlighted in a 2021 report by McKinsey & Company.
Which Battery Manufacturers Are Prioritizing Sustainability in Their Practices?
Several battery manufacturers are prioritizing sustainability in their practices.
- Tesla
- Panasonic
- LG Chem
- CATL (Contemporary Amperex Technology Co. Limited)
- Samsung SDI
- A123 Systems
The focus on sustainability varies among these companies, leading to diverse approaches and initiatives in their operations.
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Tesla:
Tesla emphasizes sustainability by promoting electric vehicles (EVs) powered by batteries that minimize carbon footprints. The company aims to source materials responsibly, enhancing recycling processes, and reduce manufacturing waste. Tesla’s Gigafactories operate with renewable energy, significantly reducing emissions. -
Panasonic:
Panasonic works towards sustainable battery production by collaborating with Tesla to improve battery recycling technologies. The company has set targets to reduce the environmental impact of its manufacturing processes. Panasonic aims to use renewable resources in its battery production, which includes collaborative efforts with suppliers to ensure sustainability across the supply chain. -
LG Chem:
LG Chem focuses on sustainability by investing in the development of eco-friendly battery materials. The company has announced plans to achieve carbon neutrality in its production by 2050. LG Chem is also engaged in research for battery recycling and promoting a circular economy. -
CATL:
CATL is committed to eco-friendly practices in battery manufacturing. The company integrates renewable energy into its production processes and creates a closed-loop system for battery recycling. CATL has also invested significantly in developing sustainable lithium extraction technologies. -
Samsung SDI:
Samsung SDI prioritizes sustainability by using eco-friendly materials in its battery production. The company aims to reduce carbon emissions by improving the energy efficiency of its manufacturing plants. Samsung SDI has introduced battery recycling initiatives to enhance its sustainability efforts. -
A123 Systems:
A123 Systems emphasizes the use of alternative, non-toxic materials in its battery technologies. The company focuses on reducing energy consumption during manufacturing and is committed to recycling outdated batteries. A123 Systems strives to provide cleaner energy solutions for a sustainable future.
How Do Battery Stocks Compare to Broader Tech Stocks in Terms of Performance?
Battery stocks and broader tech stocks can be compared based on several performance metrics such as year-to-date (YTD) returns, volatility, and market capitalization. The following table illustrates these comparisons for a selection of battery stocks versus a broader tech index.
| Category | Battery Stocks | Broader Tech Stocks |
|---|---|---|
| YTD Returns (%) | 45% | 30% |
| Volatility (30-day) | 6% | 4% |
| Market Capitalization (Billion USD) | 50 | 1,500 |
| Average P/E Ratio | 25 | 20 |
| Dividend Yield (%) | 1.5% | 2% |
This table shows that battery stocks have outperformed broader tech stocks in YTD returns but exhibit higher volatility. In terms of market capitalization, broader tech stocks dominate significantly. Additionally, battery stocks have a higher average P/E ratio and a slightly lower dividend yield compared to broader tech stocks.
What Market Trends Are Currently Influencing Battery Manufacturer Stock Prices?
Battery manufacturer stock prices are currently influenced by several market trends, including rising demand for electric vehicles (EVs), technological advancements, supply chain disruptions, and government policies promoting sustainability.
- Rising demand for electric vehicles (EVs)
- Technological advancements in battery technology
- Supply chain disruptions
- Government policies promoting sustainability
The trends affecting battery manufacturer stocks stem from various sources, which guide the battery industry’s trajectory and investor sentiment.
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Rising Demand for Electric Vehicles (EVs): The rising demand for electric vehicles (EVs) significantly influences battery manufacturer stock prices. Increased environmental awareness, coupled with the shift toward sustainable transportation, fuels this demand. According to a report by BloombergNEF (2022), global EV sales reached 6.6 million units in 2021, marking a 108% increase from the previous year. Companies like Tesla and Ford have expanded their electric vehicle offerings, creating a parallel rise in battery production needs.
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Technological Advancements in Battery Technology: The technological advancements in battery technology also impact stock valuations. Innovations such as solid-state batteries and faster charging capabilities enhance performance and safety. The U.S. Department of Energy reported that lithium-sulfur batteries could have a higher energy density than lithium-ion batteries, leading to potential cost reductions for manufacturers. Companies that adopt cutting-edge technology tend to attract investor interest, thereby affecting their stock prices positively.
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Supply Chain Disruptions: The supply chain disruptions have resulted in shortages of critical materials like lithium and cobalt, which negatively impact production. The COVID-19 pandemic and geopolitical tensions have exacerbated these supply chain issues. According to S&P Global Market Intelligence (2023), the price of lithium surged by 500% in 2022, squeezing profit margins for battery manufacturers. This uncertainty can lead to fluctuations in stock prices as investors react to potential impacts on production capability.
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Government Policies Promoting Sustainability: Government policies promoting sustainability and clean energy are shaping battery manufacturer stock landscapes. Legislation supporting renewable energy and electric vehicle adoption provides significant incentives for manufacturers. For instance, the Inflation Reduction Act in the U.S. includes tax credits for EV buyers, stimulating demand. Therefore, battery manufacturers compliant with these policies often see increases in stock prices due to favorable market conditions and enhanced sales forecasts.
What Are the Key Risks and Opportunities When Investing in Battery Manufacturer Stocks?
Investing in battery manufacturer stocks presents both key risks and significant opportunities due to the evolving energy landscape.
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Key Risks:
– Market volatility
– Supply chain disruptions
– Regulatory changes
– Technology obsolescence
– Raw material price fluctuations -
Opportunities:
– Growing demand for electric vehicles (EVs)
– Advancements in battery technology
– Expansion into renewable energy storage
– Government incentives and subsidies
– Strategic partnerships and collaborations
The risks and opportunities associated with battery manufacturers are influenced by many factors, including technological innovations and market dynamics.
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Market Volatility:
Market volatility refers to fluctuations in stock prices caused by unpredictable events. Battery stocks can experience sudden shifts due to changes in consumer preferences or global economic conditions. For instance, during the COVID-19 pandemic, many battery manufacturers saw stock prices drop significantly due to supply chain issues. -
Supply Chain Disruptions:
Supply chain disruptions occur when industries cannot obtain necessary materials or components. For battery manufacturers, disruptions in sourcing lithium or cobalt can impact production timelines and costs. A notable example is the global semiconductor shortage that affected many electric vehicle manufacturers, which rely on batteries. -
Regulatory Changes:
Regulatory changes involve new laws or policies that can affect operational processes. Governments worldwide are increasingly focusing on sustainability and could impose stricter regulations on battery production and recycling. Any sudden changes could lead to increased compliance costs for manufacturers. -
Technology Obsolescence:
Technology obsolescence occurs when advancements render existing technologies outdated. The rapid pace of innovation in battery technology, such as solid-state batteries, poses a risk to companies that rely on older technologies. Companies must continually invest in research and development to stay competitive. -
Raw Material Price Fluctuations:
Raw material price fluctuations relate to changes in the costs of essential battery components like lithium and nickel. Prices can vary due to geopolitical tensions or changes in mining regulations. These fluctuations can significantly affect profit margins for manufacturers. -
Growing Demand for Electric Vehicles (EVs):
The growing demand for electric vehicles (EVs) drives the need for high-performance batteries. As governments promote EV adoption to combat climate change, battery manufacturers may see considerable revenue growth. Reports suggest that the global EV market is projected to grow by over 20% annually through 2027. -
Advancements in Battery Technology:
Advancements in battery technology refer to innovations that enhance battery efficiency and performance. Innovations like solid-state batteries promise greater energy density and quicker charging. Companies investing in these technologies could gain a competitive edge in the market. -
Expansion into Renewable Energy Storage:
Expansion into renewable energy storage means increasing capacity to store energy generated from renewable sources. The integration of battery storage with solar and wind energy systems could become a significant revenue stream as the world shifts toward greener energy solutions. -
Government Incentives and Subsidies:
Government incentives and subsidies are financial benefits provided to encourage electric vehicle adoption and renewable energy technologies. Companies can benefit from tax credits, grants, or other financial support, enhancing profitability in the sector. -
Strategic Partnerships and Collaborations:
Strategic partnerships and collaborations involve alliances between companies for mutual benefits. Joint ventures with automakers or technology firms can enhance research and development efforts. Collaborations can enable manufacturers to access new markets and improve product offerings.