Everything You Need to Know About Nickel-Zinc Batteries (FAQ)

March 19, 2026
ZincFive Monobloc 90Ah

As data centers navigate the explosive growth of AI and e-commerce alongside tightening sustainability mandates, the need for a superior Uninterruptible Power Supply (UPS) backup solution has never been more urgent. While legacy lead-acid batteries are hindered by excessive weight and short lifespans, and lithium-ion alternatives face persistent safety risks like thermal runaway, nickel-zinc (NiZn) has emerged as the definitive modern standard. Over the last decade, NiZn has challenged these traditional chemistries by delivering a high-power-dense technology that fulfills the rigorous uptime demands of critical infrastructure while offering unmatched safety, cost-efficiency, and environmental benefits.

How Nickel-Zinc Batteries Work

NiZn batteries are a combination of a stable and long-lasting nickel positive electrode and a lightweight zinc negative electrode, capable of high discharge rates. When combined with a highly conductive electrolyte, these rechargeable cells offer high power and energy density with low impedance and no risk of thermal runaway. A key technical advantage of NiZn is its “fail-safe” characteristic: unlike other chemistries that might develop high-resistance open circuits, NiZn cells typically maintain a conductive path even if a cell becomes weak, ensuring the entire battery string remains operational.

Data Center Batteries: Why Nickel-Zinc is the Best Choice

Higher Power, Smaller Footprint

As power demands scale, spatial efficiency becomes a critical metric for profitability. NiZn delivers up to three times the power density of legacy chemistries while requiring only half the physical footprint and one-third of the weight. This drastic reduction in size and mass allows data center operators to maximize their existing facilities, packing more backup capacity into tighter spaces. By minimizing the area dedicated to power infrastructure, NiZn ultimately enables data centers to reallocate valuable square footage toward revenue-generating servers and high-density compute racks.

Safety and Reliability at a Lower TCO

NiZn chemistry provides unparalleled operational flexibility by maintaining stability across a much wider temperature range than traditional lead-acid or lithium-ion batteries. Because NiZn is inherently safe and non-toxic, it eliminates the risk of cell-level thermal runaway, which significantly reduces the need for intensive, energy-heavy cooling systems. This not only lowers long-term operational costs but also provides data center operators with critical peace of mind regarding facility safety.

Furthermore, NiZn systems prioritize uptime without compromising on security. Unlike lithium-based solutions, which often rely on complex Battery Management Systems (BMS) to force total shutdowns during thermal events, NiZn batteries remain operational even if individual cells become weak or depleted. This “fail-safe” characteristic ensures uninterrupted performance and minimal downtime. Even during cooling failures or temperature spikes up to 50°C, NiZn remains warrantied and reliable, offering a durable solution that data centers can depend on year after year.

Sustainability & Low Carbon

Sustainability has moved from a secondary concern to a primary driver in power system procurement. According to the 2025 Data Center Energy Storage Industry Insights Report, 87% of professionals now prioritize sustainability in their buying decisions, with 72% reporting that green initiatives have directly led to cost reductions. ZincFive’s NiZn technology meets this demand by offering a recyclable backup power solution for data centers with a significantly lower climate impact than lead-acid and lithium, as validated by third-party analysis. NiZn’s lifetime greenhouse gas emissions are 25-50% lower than lead-acid or lithium-ion alternatives, making it a safer, more environmentally responsible choice. 

Beyond its carbon footprint, NiZn is a champion of resource efficiency. It boasts an operating life up to three times longer than lead-acid, drastically reducing waste and the frequency of replacements. The chemistry utilizes highly available, conflict-free materials—nickel and zinc are four to five times more abundant in the Earth’s crust than lithium and lead. By choosing NiZn, organizations opt for a safer, more environmentally responsible energy storage path that aligns with global ESG goals.

Scalability

NiZn batteries are uniquely suited for scalability because their high-power density allows data centers to expand compute capacity without requiring a proportional increase in physical infrastructure. As facilities transition to high-density AI and GPU clusters, space becomes the ultimate constraint; NiZn’s ability to deliver three times the power of lead-acid in half the footprint means operators can support massive power upgrades within their existing floor plan and avoid overbuild (especially in AI data centers).

Beyond physical space, NiZn is operationally scalable due to its wide temperature tolerance and superior safety. Because it doesn’t require the same level of intensive, specialized cooling or the complex, restrictive fire suppression systems mandated by lithium-ion installations, it is much simpler and more cost-effective to scale power modules across diverse global sites. This modular flexibility, combined with a highly abundant supply chain, ensures that NiZn can meet the growing energy demands of the industry without the logistical or safety bottlenecks of legacy chemistries.

For a deeper look at what makes nickel-zinc uniquely suited for modern data center infrastructure, explore our dedicated BC Series FAQ.

Nickel-Zinc vs Other Data Center Battery Technology

NiZn vs Lead-Acid

While lead-acid batteries have long been the industry standard due to their low initial cost and established supply chain, NiZnbatteries offer a significant leap in performance and efficiency for modern data centers. NiZn delivers up to three times the power density of lead-acid, allowing for a much smaller physical footprint and roughly one-third the weight for the same power output. This power-to-weight advantage is critical in high-density environments where floor loading and space are at a premium. Furthermore, NiZn boasts a service life up to three times longer than lead-acid, thriving in higher temperatures where lead-acid performance would rapidly degrade. From a maintenance perspective, NiZn’s ability to remain operational even with a weak cell provides a level of reliability that the high-resistance failure modes of lead-acid simply cannot match. 

NiZn vs Lithium-Ion

While lithium-ion batteries are often praised for their high energy density, NiZn offers a compelling alternative by addressing lithium’s two greatest liabilities: safety and stability. Lithium-ion systems are prone to thermal runaway, a condition where cell failure can lead to thermal incidents and the release of toxic gases, often requiring complex battery management systems (BMS) that may shut down the entire UPS to prevent an incident. In contrast, NiZn does not exhibit risk of thermal runaway and remains stable even under extreme stress, operating safely at higher temperatures without the risk of fire. Furthermore, NiZn provides a more resilient “fail-safe” architecture; while a single failing lithium cell can compromise a whole string, NiZn cells continue to conduct power even when weakened, ensuring uninterrupted backup. From a sustainability standpoint, NiZn also avoids the ethical and environmental complexities of lithium extraction, utilizing more abundant, highly recyclable materials to deliver similar performance with much lower risk. 

Frequently Asked Questions

FAQ: Nickel-Zinc Chemistry and Technology

What is ZincFive’s nickel-zinc (NiZn) battery technology?

ZincFive’s NiZn battery technology uses a unique alkaline battery chemistry that combines a nickel positive electrode with a zinc negative electrode. Unlike lead-acid or lithium-ion, it uses a non-flammable, aqueous (water-based) electrolyte. This combination creates a high-power, high-reliability energy storage solution specifically designed for mission-critical applications like traditional and AI data centers, intelligent transportation, industrial engine starting, and more.

How does NiZn differ from lead-acid (VRLA) and lithium-ion (Li-ion)?

The primary differences lie in power density, safety, and lifespan.

  • Vs. Lead-Acid: NiZn offers up to 3x the power density and can last up to 3x longer (15-year design life vs. 3–5 years).
  • Vs. Lithium-Ion: NiZn does not exhibit thermal runaway at the cell level. It also lacks the “conflict mineral” concerns associated with cobalt and the environmental intensity of lithium extraction.

What is “Power Density,” and why is it important for data centers?

Power density refers to how much power (measured in watts) a battery can deliver rapidly relative to its size. NiZn delivers exceptional high-rate discharge performance. In data centers, this means you can provide the same backup power in half the footprint and one-third the weight of legacy systems, freeing up expensive floor space for revenue-generating servers.

What are Immediate Power Solutions (IPS)?

Immediate Power Solutions (IPS) is a specialized category defined by instantaneous, high-rate, and short-duration power delivery. While traditional Energy Storage Systems (ESS) focus on “energy density” (storing large amounts of power for hours or days), IPS focuses on “power density”—the ability to discharge a massive burst of electricity in seconds or minutes to bridge critical gaps.

Why is nickel-zinc such a powerful solution for AI data center power challenges?

AI workloads demand a fundamentally different kind of power support. GPU-driven environments create rapid, unpredictable surges that occur in milliseconds and repeat continuously. Solving this challenge isn’t about adding more capacity—it’s about delivering immediate, precise power response exactly when and where it’s needed.

NiZn excels because it is engineered for high-power delivery and rapid cycling. It can absorb sharp power spikes in real time, stabilize load before it propagates through the UPS and grid, and recharge quickly between events. Unlike legacy battery chemistries, NiZn maintains performance under frequent, high-intensity cycling without accelerated degradation—making it uniquely suited for both daily AI volatility and traditional backup requirements.

NiZn also eliminates tradeoffs that data center operators have historically been forced to accept. The chemistry is safe, with no thermal-runaway or flammability risk, reducing cooling and fire-suppression complexity. Its high-power density supports a compact footprint, helping operators avoid inefficient overbuild strategies while lowering total cost of ownership. Over its lifecycle, NiZn delivers 25–50% lower greenhouse gas emissions and uses highly recyclable materials, aligning performance with sustainability and regulatory priorities.

These advantages are purposefully integrated into ZincFive’s BC 2 AI UPS Battery Cabinet—an AI-optimized, dual-purpose solution designed to deliver immediate power for dynamic AI workloads while providing reliable runtime protection, all in a compact, safe, and sustainable platform.


FAQ: Nickel-Zinc Performance & Reliability

What are the charge and discharge capabilities of NiZn batteries?

NiZn batteries are designed for high-rate power performance, meaning NiZn can deliver and accept currents that are several times higher than lithium-ion UPS cabinets. They can discharge very large amounts of current almost instantly, which provides strong ride-through capability during short outages, supports high load spikes, and often allow fewer cabinets to meet the same power requirement. NiZn batteries also have high charge acceptance, enabling much faster recharge after an event and reducing the time a system operates at reduced protection. By comparison, most lithium-ion UPS batteries are optimized more for energy density than power, so they typically charge at lower currents and cannot deliver the same level of instantaneous discharge, which can mean longer recharge times and more cabinets needed for high-power applications.

Can NiZn batteries handle the power surges associated with AI workloads?

Yes. This is a standout feature of NiZn. AI-driven GPU clusters create frequent, rapid power spikes. While lead-acid batteries struggle to cycle this frequently and lithium-ion can experience performance degradation under extreme load fluctuations, NiZn is “pulse-ready.” It offers near-instantaneous response times and can handle high bursts of power without compromising the battery’s health or the grid’s stability.

What happens if a single cell fails in a NiZn string?

In most battery chemistries, a single weak or depleted cell can create an “open circuit,” shutting down the entire string. However, NiZn cells remain conductive even when depleted. This allows the battery string to continue operating, ensuring uninterrupted power and allowing maintenance to be scheduled rather than treated as an emergency.

How do NiZn batteries perform in high-temperature environments?

NiZn chemistry has a broader operational temperature window than lead-acid or lithium-ion. They are warrantied to perform reliably even during occasional excursions up to 50°C (122°F). This allows data center operators to raise the ambient temperature in the white space, significantly improving Power Usage Effectiveness (PUE).


FAQ: Safety of Nickel-Zinc Battery Chemistry

Is there a risk of thermal runaway with ZincFive batteries? Is explosion mitigation necessary?

No. ZincFive’s NiZn batteries have been rigorously tested and passed UL 9540A method at the cell level. One of the inherit characteristics of the battery chemistry is that it cannot exhibit thermal runaway. Because the electrolyte is aqueous and non-flammable, the chemistry is inherently safe.


FAQ: Sustainability & Environmental Impact of Nickel-Zinc Batteries

What types of sustainability endorsements does NiZn carry?

NiZn technology, specifically within the ZincFive BC Series, is highly decorated with third-party sustainability endorsements that validate its environmental benefits from production through disposal.

Formal Certifications & Registrations

  • UL Environmental Declaration: The BC Series features a “cradle-to-grave” Life Cycle Assessment (LCA) certified to the UL EPD standard. This UL Environmental stamp validates the total environmental impact of the product throughout its entire lifespan, ensuring our data is transparent and verified.
  • PEP EcoPassport: The products are registered in this prestigious international database, which provides a standardized “Environmental Product Profile” (EPD) specifically for electrical and electronic equipment.

Superior Circularity (End-of-Life)

  • Material Recovery: Unlike lithium-ion systems, which face significant scaling challenges in recycling, NiZn systems allow for the vast majority of materials to be recovered and reused.
  • Recycling Volume: Each BC 2 UPS battery cabinet directs over 600 kg of material back into recycling streams rather than landfills.

Quantifiable Carbon & Energy Savings

The environmental “credits” earned at the end of the BC Series life are substantial:

  • CO₂ Offset: Recycling a single cabinet offsets more than 2 metric tons of CO₂-equivalent emissions.
  • Energy Conservation: Material recovery reduces fossil energy demand by approximately 26,800 MJ per cabinet.

How does the embodied carbon compare to alternatives?

The embodied carbon of BC 2 Battery Cabinets is roughly 40% lower than alternatives.

What is NiZn’s lifetime greenhouse gas profile?

Nickel-zinc’s lifetime greenhouse gas (GHG) emissions are 25–50% lower than those of lead-acid or lithium-ion. Furthermore, ZincFive batteries offset the carbon emitted during their production (carbon payback time) up to four times faster than lithium-ion alternatives.

Are the materials in NiZn batteries sustainable and conflict-free?

Yes. Nickel and zinc are common, highly available, and four to five times more abundant in the Earth’s crust than lithium or lead. ZincFive uses conflict-free materials, avoiding the ethical and supply-chain risks associated with cobalt and other rare minerals.

Are NiZn batteries recyclable?

Yes, they are highly recyclable. 100% of the nickel and zinc can be recovered and reused without losing their physical or chemical properties. Because the materials are non-toxic, the recycling process is also less energy-intensive than the high-heat smelting required for lead-acid batteries.

How does ZincFive help with “Scope 3” emissions?

Scope 3 emissions include the carbon footprint of the equipment a company buys. By choosing a battery with a 25–50% lower lifetime carbon footprint, data center operators can significantly lower their reported Scope 3 emissions, helping them reach net-zero goals faster.

What is the “Climate Impact Score” for ZincFive?

ZincFive’s technology received a 9.4 out of 10 score from Boundless Impact Research and Analytics. This third-party validation confirms that NiZn has the highest positive climate impact compared to lead-acid and lithium-ion.


FAQ: Deployment & Maintenance of Nickel-Zinc Batteries

Do NiZn batteries require special maintenance?

NiZn batteries are virtually maintenance-free. Unlike lead-acid batteries, they do not require “watering” or frequent testing for sulfation. Because they are stable across a wide temperature range and the cells remain conductive, the need for emergency onsite repairs is drastically reduced.

What is the typical lifespan of a ZincFive battery?

ZincFive batteries have a design life of 10 to 15 years in a typical data center environment. This is up to three times the life of traditional VRLA batteries, which usually require replacement every 3 to 5 years.


FAQ: Myths and Truths About Nickel-Zinc Technology 

Myth: Ground faults and thermal runaway are the same thing.  

Truth: They are fundamentally different events. 

Nickel-zinc batteries do NOT go into thermal runaway.  

Thermal runaway is an exothermic chemical reaction associated with certain volatile battery chemistries that can result in rapid temperature escalation and propagation between cells. Nickel-zinc chemistry does not exhibit thermal runaway, as validated through UL 9540A testing. 

A ground fault, by contrast, is an unintended electrical connection between stored electrochemical potential and ground. Ground faults can occur in any battery chemistry and are addressed through proper electrical system and cabinet-level safety design. 

Misinterpreting ground faults as thermal runaway can lead to incorrect conclusions about battery safety characteristics. 

Myth: Battery Management System alarms are just nuisance alerts.  

Truth: Modern BMS platforms provide critical operational intelligence. 

Advanced battery systems generate meaningful analytics, alarming, diagnostics, and historical performance data designed to help operators maintain uptime and identify potential issues before they escalate. 

The ZincFive BMS provides real-time visibility into cabinet status, battery health, alarm conditions, and operational trends, helping support more proactive facility operations and faster diagnostics. 

Myth: Nickel-zinc batteries take too long to recharge.  

Truth: Nickel-zinc batteries recharge differently, not slower. 

ZincFive systems intentionally delay recharge initiation until battery temperatures stabilize below defined thresholds. Once recharge begins, nickel-zinc batteries can charge at rates comparable to or faster than alternative technologies while maintaining operational capability at low states of charge. 

Additionally, nickel-zinc batteries can continue delivering maximum power output even at low state-of-charge levels, allowing systems to remain operationally effective before recharge is fully completed. 

Myth: Nickel-zinc battery systems are more expensive.  

Truth: Cabinet cost alone does not reflect total system economics. 

Because ZincFive systems deliver extremely high power density, operators typically require fewer cabinets to achieve the same power requirement compared to alternative technologies. Combined with reduced cooling demands, simplified fire suppression requirements, lower infrastructure complexity, and space savings, the total cost of ownership (TCO) can be significantly lower at the system level. 

Sustainable Backup Power with Uncompromised Safety and Reliability

January 4, 2024

As AI becomes mainstream, rack server density demands are increasing more than ever before – just as growing climate awareness is putting pressure on data centers to become more sustainable. How can operators balance all these challenges without compromising uptime? 

ZincFive’s Aaron Schott joined Carsten Baumann, the Director of Strategic Initiatives of Schneider Electric, and Alex Dickins of Datacenter Dynamics (DCD), to discuss this very question in the DCD event, “Choosing sustainable backup power without compromising on safety & reliability.” They dove into solutions that can help data centers both provide reliable increased server rack density and meet sustainability goals. 

Listen to the entire session to explore how robust battery solutions can allow data centers to navigate market pressures to advance towards net-zero, and read on for our chief insights and takeaways: 

Sustainability Is a Top Priority for Data Center Customers

The data center industry is confronting a sustainability imperative as capacity expands rapidly. Currently, data centers consume around 2% of global energy demand.

By 2040, just 16 years from now, global data center capacity will double. If we double capacity, this becomes a bigger portion, so creating a more sustainable data center is critical.” 

Schneider Electric’s Carsten Baumann

In response, leading companies, including Schneider Electric, are evaluating their entire supply chain and product lifecycles. Baumann disclosed that in 2022, over 99% of Schneider Electric’s 61 million tonnes of emissions stemmed from scope three, or supply chain, emissions. In response, they initiated a Zero Carbon Project with their top thousand suppliers, encouraging them to review and reduce emissions by 50% by 2025 for Schneider Electric to continue sourcing from them. Such initiatives indicate that large clients are seeking ESG-conscious suppliers – including data centers – that can prove lower emissions.  

Standard ISO sustainability metrics are also emerging to drive improvements. “Having an internationally standardized framework to measure against is very valuable, since we can evaluate suppliers based on the same consistent ISO standards,” said  Baumann.  

If we make sustainability metrics easy and standardized, data centers will optimize and compete to be the most sustainable, and quickly move the industry forward.”  

ZincFive’s Aaron Schott

Nickel-Zinc Batteries Can Help Quantify Sustainability from Cradle to Grave 

One area in which data centers can prove greater sustainability to clients lies in their UPS battery sourcing. For instance, Baumann noted that while lead-acid and lithium batteries rely on materials with limited supply chains and intensive, controversial mining practices (including cobalt and lithium), ZincFive batteries rely on abundant metals like nickel and zinc.  

Schott added that ZincFive batteries score well – literally – across their full lifetime environmental impact, from sourcing to manufacturing to deployment. A third-party study analyzed ZincFive batteries’ climate impact metrics, including greenhouse gas production, water usage in manufacturing, volatile organic compounds, and other sustainability factors. He pointed out that, with 10 representing the highest positive environmental impact, ZincFive’s NiZn batteries scored a 9.4 – significantly higher than lead-acid and lithium-ion batteries. 

Closing the Emissions Gap: Data Center Sustainability

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More Than Sustainable: Reliable and Space-Efficient 

Of course, sustainability isn’t the only priority for data centers considering UPS solutions. To be competitive, batteries must also address other concerns as well: safety, reliability, and – as data centers try to pack more capacity to support growing client needs – efficient use of space.  

Fortunately, nickel-zinc batteries specialize in those areas too. Nickel-zinc chemistry enables power-dense designs, which enables fewer, smaller cabinets and footprint – bolstering sustainability while maintaining backup time. 

“As data centers scale up with 1.5-2MW+ UPS units, we increased battery power density in our recently expanded BC 2 battery cabinet line,” Schott shared. “This reduces their installation size while continuing to support growing UPS power. With increased cabinet power density, our footprint can now be 50% of lithium-ion batteries’, which is already 40-50% less than lead acid.”  

2023 Recap

“Safe Enough” is not Safe: Assessing Battery Tradeoffs in Data Centers

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These higher-density designs reduce batteries’ data center footprint, materials, and costs all at once. As facilities grow larger, examining aspects to cut size helps greatly. “For a 100MW facility with 50 modular UPS buildings, even stacked for space efficiency – if we can shrink each one by a foot, we save substantial materials,” shared Schott. 

Nickel-zinc batteries are not only incapable of thermal runaway, but can also reliably operate at higher temperatures than lead-acid and lithium batteries – reducing cooling costs. “It’s advantageous to design data centers to safely run hotter without warranty concerns,” said Schott. “This efficiency gained from higher battery operating temperatures enables more free cooling.” 

One consideration for data centers when choosing batteries is that UPS batteries generally only need to operate for a few minutes at a time. Aaron recommended matching higher power density batteries to this shorter runtime need. This helps them meet runtime needs with fewer cabinets, preventing oversized solutions and improving efficiency. 

Holistic Metrics Show the Way to Net Zero 

All three panelists agreed that achieving more sustainable data centers requires a holistic approach.

We need to address the sustainability challenge collectively across disciplines – batteries, UPS, cement, steel, IT equipment, etc. Looking at all these components can get us closer to net zero data centers,” said  Baumann. “Collectively we’re setting data center baselines now. Once established, we can make incremental improvements towards a net zero future.” 

Schneider Electric’s Carsten Baumann
  • AI, 
  • batteries, 
  • data centers, 
  • nickel-zinc, 
  • reliability, 
  • safety, 
  • sustainability

2023 Highlights: Product Launches, Partnerships and Good Chemistry  

December 21, 2023
2023 recap

Across the data center industry, 2023 brought sustainable backup power solutions into the spotlight. Industry-wide conversations and events placed renewed priority on technologies that balance safety, cost efficiencies, and environmental impact. As the effects of climate change become more severe, milestones from COP28 to rising private sector commitments gave momentum to accelerate the adoption of cleaner, safer backup capacity.  

As 2023 comes to a close, we want to take this opportunity to highlight ZincFive’s major achievements, milestones, and collaborations that made the year such a success!   

Breakthrough Products Offer Unmatched Power Density 

This year, we proudly launched two new product offerings within the BC Series UPS Battery Cabinet lineup: the BC 2 – 500 and the BC 2 – 300X. We also announced a new ultra-high-rate battery, the Z5 13-90, which will power the new battery cabinet models.   

The latest BC 2 – 500 and BC 2 – 300X products demonstrate our unwavering commitment to delivering the most compact footprint per kilowatt, showcasing consistent advancements with each new release, and surpassing the already industry-leading footprint of ZincFive’s original BC 2 battery cabinet.

Both new models are powered by a new ultra-high-rate monobloc battery from ZincFive – the Z5 13-90. This ultra-high-rate battery, while maintaining the same case size as its predecessor, now delivers even greater energy and power thanks to a boost in both amp-hour capacity and a remarkable 50% increase in maximum current carrying capability.


We also expanded our presence in the electric vehicle (EV) charging and microgrid markets through our EV Charging solution collaborations with Kaizen Clean Energy (KCE) and Advanced Power & Energy (AP&E).  

Joining Forces with Industry Leaders 

This year cemented ZincFive’s status as the go-to provider for sustainable backup power solutions as we formed major partnerships with globally recognized leaders across critical industries. In October, electrification and automation technology leader ABB added ZincFive as an approved supplier, allowing ABB to deliver UPS systems that include safe, green ZincFive NiZn battery solutions.  

ABB adds ZincFive as an approved supplier

ZincFive and ABB Work Together to Bring Safe, Sustainable Energy Storage to the Data Center UPS Market 

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ZincFive also signed an agreement to license our nickel-zinc-based UPS technology to Econolite, part of Umovity and the leader in One-Stop-Shop advanced traffic management solutions. Econolite will have worldwide rights to manufacture, sell, and service ZincFive’s industry-leading nickel-zinc based UPS technology to the intelligent transportation market. This global reach will use our safe, reliable, and sustainable technology to improve mobility worldwide 

Industry Awards Honor Pioneering Innovation 

This year, we were honored to have our technology, innovations and sustainability leadership recognized by awards from Mission Critical Magazine and S&P Global. We won the 2023 Mission Critical Magazine Top Tier Product Award in the UPS Systems category for our BC 2 UPS Battery Cabinet. The BC 2 Battery Cabinet was selected for the unparalleled power density, reliability, industry-leading footprint, and unmatched safety it offers in UPS applications for data centers and other mission-critical environments.   

ZinFive wins Mission Critical Top Tier Product Award for BC 2 Battery Cabinet

ZincFive Wins Mission Critical 2023 Top Tier Product Award in the UPS Category

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We were also named a finalist for the S&P Global 2023 Platts Global Energy Awards, with our BC Series Battery Cabinets competing for the title of Commercial Technology of the Year. As we continue our work to pioneer safer, cleaner backup power solutions, accolades like these validate our progress and push us to keep raising the bar to realize our vision of a more sustainable future. 

Growth  

This year, we announced a strategic partnership with Orion Infrastructure Capital (OIC). The capital investment will provide ZincFive up to $80 million via a term loan to fuel the company’s global commercial adoption in existing and new markets, including mission-critical applications in data centers, industrial engine starting, and other high-power energy storage markets. This collaboration will accelerate global channel development, advance the company’s new product pipeline, and expedite the establishment of US-based high-volume production capacity to meet customer demand.  

zincfive press release thumbnail

ZincFive Closes an $80 Million Capital Partnership with Orion Infrastructure Capital

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ZincFive also expanded in two ways: geographically into Europe, and as a team ending the year with many more faces than it began! We’re thrilled to have added so many talented, enthusiastic professionals to our mission this year. We’re growing fast – if you’re interested in an exciting career that helps make the world more sustainable, check out our open positions. Watch what our team has to say about life at ZincFive! 


In conclusion, 2023 was an incredible year for ZincFive, and we couldn’t have done it without support from our partners, customers, and of course, our growing team. This is a testament to the Power of Good Chemistry, and we can’t wait to see what 2024 holds!  

  • Good Chemistry, 
  • Immediate Power Solutions, 
  • nickel-zinc, 
  • partners

How ABB and Their Customers Future-Proof Construction Supply Chain with NiZn Technology

November 27, 2023

A key challenge in the data center environment is the need to future-proof and scale operations. As organizations strive to remain at the cutting edge of technology, having a comprehensive plan for procurement helps ensure that their supply chains can meet current and future demand.

Strengthening this process was crucial for Corscale Data Centers and KW Mission Critical Engineering, who partnered with ZincFive and ABB to bring a data center in Northern Virginia to completion. This project was discussed in detail during a panel at the 7×24 Spring 2023 Conference, moderated by Harry Handlin, ABB U.S. Data Center Manager. The discussion featured Aaron Schott, Director of Product Management of Data Center Solutions at ZincFive, Nic Bustamante, Chief Technology Officer at Corescale, and Gary Russinko, Managing Pricipal at KW Mission Critical Engineering.

Corscale’s main project goal was to focus on improving sustainability, which becomes even more of a challenge when supply chains are constrained. 

The project is a five-building campus providing 300-400 megawatts on a 130-acre property. The data center was designed to use modular equipment for generators and UPS rooms in order to have flexibility in their function, which would allow the data center to rapidly scale its capacity and services in order to meet any changes in customer demands. Corscale chose ZincFive’s nickel-zinc batteries for their impressive sustainability benefits in addition to reliability and unparalleled safety.  

Why Data Center Operators Prefer Nickel-Zinc Batteries

Procurement is an important step in navigating supply chain challenges, as organizations must source components that are aligned with their project goals and are reliable and compatible with their existing infrastructure, without compromising project timelines. Circularity was a common theme of this project, in terms of the design, equipment, and use of materials. ZincFive’s nickel-zinc batteries use materials that are more commonly sourced from the Earth and do not use conflict minerals. 

At the scale that Corescale plays at, circularity becomes a central theme for us. Looking at ZincFive, we’re using materials that are far more common in the Earth, designing a battery that in itself is easy to recycle. The fact that the product also lasts longer for us means that the life cycle model gets much better for us.

Nic Bustamante, Chief Technology Officer at Corescale

The teams looked into ways to reduce waste and optimize processes throughout the supply chain. ZincFive’s batteries have higher recyclability, and longer life cycles, which are favorable features for operators to minimize maintenance times. They also weigh less, which makes it easier to transport via roadways, and they are safe for air freight. In this case, Nic Bustamante explains one of the most important characteristics of nickel-zinc batteries: 

“A big thing for customers is that [NiZn batteries] fail closed. Which I think is something people don’t talk about enough; almost all batteries fail open, so we love that.” 

Failing closed allows other batteries in the cell to continue to discharge. This poses the question: what do data centers really need? To make sure their batteries can sustain high currents, safely, reliably, and consistently for long periods of time. 

The inherent safety of ZincFive’s battery technology provides an additional layer of flexibility during the construction phase. 

That’s the neat thing about having a chemistry that is inherently safe. You can take the chemistry and design it for maximum output power and push the limits of what batteries can do.

Aaron Schott, Director of Product Management at ZincFive

UPS battery cabinets can be populated before they even leave the factory, and can be shipped to a container manufacturer. This saves time on assembly and allows the containers to be shipped to the project site fully assembled.

“One of the drawbacks that is perceived of factory witness testing is that we have to ship all this equipment to one place, then when we’re done take it all apart, ship it to the site, and reinstall it,” Gary Russinko explains. 

The ability to install all components in the container, test it, and then ship it tested to the project site avoids the traditional factory witness testing process, significantly reducing delivery timelines.

Transparency Between Suppliers and Customers

Data centers must have optimized and transparent inventory planning, as well as enhanced workflow processes. This ensures that all equipment is up to date and functioning properly, ensuring maximum efficiency and uptime. To ensure compatibility, teams should research and invest in components from reputable vendors and should factor future expansions into their purchasing plans to minimize disruption during upgrades and expansions. 

Organizations should also ensure that their suppliers are adhering to industry standards and proactively managing risks in the supply chain. This includes evaluating components for quality and compatibility, verifying compliance with safety regulations, developing relationships with trusted vendors, and performing regular audits of suppliers.

The completed property features an expanded electric infrastructure to minimize downtime, optimize uptime, and maximize sustainability goals. The end result is a highly efficient, flexible data center that can support numerous applications with reliability and scalability. By taking these procurement steps, the teams at Corscale and KW Mission Critical ensured they were making smart investments in their supply chain management and created a more reliable system for their customer. 

ZincFive BC 2 - 500 UPS Battery Cabinets

A reliable data center is essential to any organization’s success. ZincFive ensures all necessary steps are taken to create a secure and dependable UPS battery system. Future-proofing the supply chain is critical in an environment where the demand for data centers is growing exponentially.

BC 2 – 500 Blog Post
  • batteries, 
  • data centers, 
  • nickel-zinc, 
  • safety, 
  • supply chain, 
  • sustainability