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As AI data centers hit power limits, Peak XV backs Indian startup C2i to fix the bottleneck | TechCrunch

As AI data centers hit power limits, Peak XV backs Indian startup C2i to fix the bottleneck | TechCrunch

Power, rather than compute, is fast becoming the limiting factor in scaling AI data centers. That shift has prompted Peak XV Partners to back C2i Semiconductors, an Indian startup building plug-and-play, system-level power solutions designed to cut energy losses and improve the economics of large-scale AI infrastructure.

C2i (which stands for control conversion and intelligence) has raised $15 million in a Series A round led by Peak XV Partners, with participation from Yali Deeptech and TDK Ventures, bringing the two-year-old startup’s total funding to $19 million.

The investment comes as data-center energy demand accelerates worldwide. Electricity consumption from data centers is projected to nearly triple by 2035, per a December 2025 report from BloombergNEF, while Goldman Sachs Research estimates data-center power demand could surge 175% by 2030 from 2023 levels — the equivalent of adding another top-10 power-consuming country.

Much of that strain comes not from generating electricity but from converting it efficiently inside data centers, where high-voltage power must be stepped down thousands of times before it reaches GPUs. This process currently wastes about 15% to 20% of energy, C2i’s co-founder and CTO Preetam Tadeparthy said in an interview.

“What used to be 400 volts has already moved to 800 volts, and will likely go higher,” Tadeparthy told TechCrunch.

Founded in 2024 by former Texas Instruments power executives Ram Anant, Vikram Gakhar, Preetam Tadeparthy, and Dattatreya Suryanarayana, along with Harsha S. B and Muthusubramanian N. V, C2i is redesigning power delivery as a single, plug-and-play “grid-to-GPU” system spanning the data-center bus to the processor itself.

C2i co-founders Vikram Gakhar, Preetam Tadeparthy, Ram Anant, and Dattatreya Suryanarayana (Left to right)Image Credits:C2i

By treating power conversion, control and packaging as an integrated platform, C2i estimates it can cut end-to-end losses by around 10% — roughly 100 kilowatts saved for every megawatt consumed — with knock-on effects for cooling costs, GPU utilisation and overall data-center economics.

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“All that translates directly to total cost of ownership, revenue, and profitability,” Tadeparthy said.

For Peak XV Partners (which split from Sequoia Capital in 2023), the attraction lies in how power costs shape the economics of AI infrastructure at scale. Rajan Anandan, the venture firm’s managing director, told TechCrunch that after the upfront capital investment in servers and facilities, energy costs become the dominant ongoing expense for data centers, making even incremental efficiency gains highly valuable.

“If you can reduce energy costs by, call it, 10 to 30%, that’s like a huge number,” Anandan said. “You’re talking about tens of billions of dollars.”

The claims will be tested quickly. C2i expects its first two silicon designs to return from fabrication between April and June, after which the startup plans to validate performance with data-center operators and hyperscalers that have asked to review the data, according to Tadeparthy.

The Bengaluru-based startup has built a team of about 65 engineers and is setting up customer-facing operations in the U.S. and Taiwan as it prepares for early deployments.

Power delivery is one of the most entrenched parts of the data-center stack, long dominated by large incumbents with deep balance sheets and years-long qualification cycles. While many newer companies focus on improving individual components, redesigning power delivery end-to-end requires coordinating silicon, packaging, and system architecture simultaneously — a capital-intensive approach that few startups attempt and one that can take years to prove in production environments.

Anandan said the real question now is execution, noting that all startups face technology, market, and team risks when betting on how industries evolve. In C2i’s case, he said, the feedback loop should be relatively short. “We’ll know in the next six months,” said Anandan, pointing to upcoming silicon and early customer validation as the moment when the thesis will be tested.

The bet also reflects how India’s semiconductor design ecosystem has matured in recent years.

“The way you should look at semiconductors in India is, this is like 2008 e-commerce,” said Anandan. “It’s just getting started.”

He pointed to the depth of engineering talent — with a growing share of global chip designers based in the country — alongside government-backed design-linked incentives that have lowered the cost and risk of tape-outs, making it increasingly viable for startups to build globally competitive semiconductor products from India rather than operate only as captive design centers.

Whether those conditions translate into a globally competitive product will become clearer over the coming months, as C2i begins validating its system-level power solutions with customers.

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#data #centers #hit #power #limits #Peak #backs #Indian #startup #C2i #fix #bottleneck #TechCrunch


The Pixel Watch 4 proved Google could make a truly great Android smartwatch, so for this year’s Pixel Watch 5, the company apparently doesn’t plan to change much. According to a Google Play Console listing spotted by 9to5Google, the Pixel Watch 5 may end up using the exact same Qualcomm chip as the Pixel Watch 4, just with a smidge more RAM.

The listing specifically names a device called “google godric_btwifi” using a “Qualcomm SW5100” with a 4x ARM Cortex-A53 CPU and a Qualcomm Adreno 702. That suggests Google is using a chip in the same Snapdragon W5 family as it did on its smartwatches starting with the Pixel Watch 2. It may even be the exact same Snapdragon W5 Gen 2 chip as the Pixel Watch 4 if the yet-to-be-listed co-processor hasn’t been changed. That’s a notable difference from early leaks that suggested Google might introduce its own Tensor chip for the Pixel Watch 5.

One place the smartwatch could be different is memory: the listing shows the Pixel Watch 5 as having 3GB of RAM, a 1GB increase over the Pixel Watch 4. This might not change the day-to-day experience of using the smartwatch, but it could enable new Gemini Intelligence features Google has planned.

Combined with leaked renders of the Pixel Watch 5, which show the wearable as looking more or less like the Pixel Watch that came before it, Google’s new smartwatch seems like not much of an upgrade. It’ll reportedly be available in new “Dark Anthracite” (dark gray) and “Pyrite” (green) colors, and Google will likely introduce new bands, but nothing about what’s leaked so far suggests the watch will do anything different than it did before.

Google could still wow in the software department—for example, the company patented technology for measuring arterial stiffness that could show up on a future watch—but it’ll still have an uphill battle selling the smartwatch. Dealabs reported earlier this month that the Pixel Watch 5 will likely start at $400, $50 more than the Pixel Watch 4. That price might be harder to swallow if the watch also looks nearly identical to last year’s model.

Increasingly, it seems like the Pixel Watch story Google will be telling at its upcoming Made by Google event will be focused on software. That’s one of the company’s strengths, but it remains to be seen whether the Pixel Watch 5 will be worth the upgrade.

#Temper #Excitement #Pixel #WatchGoogle,Google Pixel,smart watch,Wearables">You Might Want to Temper Your Excitement for the Pixel Watch 5
                The Pixel Watch 4 proved Google could make a truly great Android smartwatch, so for this year’s Pixel Watch 5, the company apparently doesn’t plan to change much. According to a Google Play Console listing spotted by 9to5Google, the Pixel Watch 5 may end up using the exact same Qualcomm chip as the Pixel Watch 4, just with a smidge more RAM. The listing specifically names a device called “google godric_btwifi” using a “Qualcomm SW5100” with a 4x ARM Cortex-A53 CPU and a Qualcomm Adreno 702. That suggests Google is using a chip in the same Snapdragon W5 family as it did on its smartwatches starting with the Pixel Watch 2. It may even be the exact same Snapdragon W5 Gen 2 chip as the Pixel Watch 4 if the yet-to-be-listed co-processor hasn’t been changed. That’s a notable difference from early leaks that suggested Google might introduce its own Tensor chip for the Pixel Watch 5. One place the smartwatch could be different is memory: the listing shows the Pixel Watch 5 as having 3GB of RAM, a 1GB increase over the Pixel Watch 4. This might not change the day-to-day experience of using the smartwatch, but it could enable new Gemini Intelligence features Google has planned.

 Combined with leaked renders of the Pixel Watch 5, which show the wearable as looking more or less like the Pixel Watch that came before it, Google’s new smartwatch seems like not much of an upgrade. It’ll reportedly be available in new “Dark Anthracite” (dark gray) and “Pyrite” (green) colors, and Google will likely introduce new bands, but nothing about what’s leaked so far suggests the watch will do anything different than it did before.

 Google could still wow in the software department—for example, the company patented technology for measuring arterial stiffness that could show up on a future watch—but it’ll still have an uphill battle selling the smartwatch. Dealabs reported earlier this month that the Pixel Watch 5 will likely start at 0,  more than the Pixel Watch 4. That price might be harder to swallow if the watch also looks nearly identical to last year’s model. Increasingly, it seems like the Pixel Watch story Google will be telling at its upcoming Made by Google event will be focused on software. That’s one of the company’s strengths, but it remains to be seen whether the Pixel Watch 5 will be worth the upgrade.      #Temper #Excitement #Pixel #WatchGoogle,Google Pixel,smart watch,Wearables

Pixel Watch 4 proved Google could make a truly great Android smartwatch, so for this year’s Pixel Watch 5, the company apparently doesn’t plan to change much. According to a Google Play Console listing spotted by 9to5Google, the Pixel Watch 5 may end up using the exact same Qualcomm chip as the Pixel Watch 4, just with a smidge more RAM.

The listing specifically names a device called “google godric_btwifi” using a “Qualcomm SW5100” with a 4x ARM Cortex-A53 CPU and a Qualcomm Adreno 702. That suggests Google is using a chip in the same Snapdragon W5 family as it did on its smartwatches starting with the Pixel Watch 2. It may even be the exact same Snapdragon W5 Gen 2 chip as the Pixel Watch 4 if the yet-to-be-listed co-processor hasn’t been changed. That’s a notable difference from early leaks that suggested Google might introduce its own Tensor chip for the Pixel Watch 5.

One place the smartwatch could be different is memory: the listing shows the Pixel Watch 5 as having 3GB of RAM, a 1GB increase over the Pixel Watch 4. This might not change the day-to-day experience of using the smartwatch, but it could enable new Gemini Intelligence features Google has planned.

Combined with leaked renders of the Pixel Watch 5, which show the wearable as looking more or less like the Pixel Watch that came before it, Google’s new smartwatch seems like not much of an upgrade. It’ll reportedly be available in new “Dark Anthracite” (dark gray) and “Pyrite” (green) colors, and Google will likely introduce new bands, but nothing about what’s leaked so far suggests the watch will do anything different than it did before.

Google could still wow in the software department—for example, the company patented technology for measuring arterial stiffness that could show up on a future watch—but it’ll still have an uphill battle selling the smartwatch. Dealabs reported earlier this month that the Pixel Watch 5 will likely start at $400, $50 more than the Pixel Watch 4. That price might be harder to swallow if the watch also looks nearly identical to last year’s model.

Increasingly, it seems like the Pixel Watch story Google will be telling at its upcoming Made by Google event will be focused on software. That’s one of the company’s strengths, but it remains to be seen whether the Pixel Watch 5 will be worth the upgrade.

#Temper #Excitement #Pixel #WatchGoogle,Google Pixel,smart watch,Wearables">You Might Want to Temper Your Excitement for the Pixel Watch 5You Might Want to Temper Your Excitement for the Pixel Watch 5
                The Pixel Watch 4 proved Google could make a truly great Android smartwatch, so for this year’s Pixel Watch 5, the company apparently doesn’t plan to change much. According to a Google Play Console listing spotted by 9to5Google, the Pixel Watch 5 may end up using the exact same Qualcomm chip as the Pixel Watch 4, just with a smidge more RAM. The listing specifically names a device called “google godric_btwifi” using a “Qualcomm SW5100” with a 4x ARM Cortex-A53 CPU and a Qualcomm Adreno 702. That suggests Google is using a chip in the same Snapdragon W5 family as it did on its smartwatches starting with the Pixel Watch 2. It may even be the exact same Snapdragon W5 Gen 2 chip as the Pixel Watch 4 if the yet-to-be-listed co-processor hasn’t been changed. That’s a notable difference from early leaks that suggested Google might introduce its own Tensor chip for the Pixel Watch 5. One place the smartwatch could be different is memory: the listing shows the Pixel Watch 5 as having 3GB of RAM, a 1GB increase over the Pixel Watch 4. This might not change the day-to-day experience of using the smartwatch, but it could enable new Gemini Intelligence features Google has planned.

 Combined with leaked renders of the Pixel Watch 5, which show the wearable as looking more or less like the Pixel Watch that came before it, Google’s new smartwatch seems like not much of an upgrade. It’ll reportedly be available in new “Dark Anthracite” (dark gray) and “Pyrite” (green) colors, and Google will likely introduce new bands, but nothing about what’s leaked so far suggests the watch will do anything different than it did before.

 Google could still wow in the software department—for example, the company patented technology for measuring arterial stiffness that could show up on a future watch—but it’ll still have an uphill battle selling the smartwatch. Dealabs reported earlier this month that the Pixel Watch 5 will likely start at $400, $50 more than the Pixel Watch 4. That price might be harder to swallow if the watch also looks nearly identical to last year’s model. Increasingly, it seems like the Pixel Watch story Google will be telling at its upcoming Made by Google event will be focused on software. That’s one of the company’s strengths, but it remains to be seen whether the Pixel Watch 5 will be worth the upgrade.      #Temper #Excitement #Pixel #WatchGoogle,Google Pixel,smart watch,Wearables

The Pixel Watch 4 proved Google could make a truly great Android smartwatch, so for this year’s Pixel Watch 5, the company apparently doesn’t plan to change much. According to a Google Play Console listing spotted by 9to5Google, the Pixel Watch 5 may end up using the exact same Qualcomm chip as the Pixel Watch 4, just with a smidge more RAM.

The listing specifically names a device called “google godric_btwifi” using a “Qualcomm SW5100” with a 4x ARM Cortex-A53 CPU and a Qualcomm Adreno 702. That suggests Google is using a chip in the same Snapdragon W5 family as it did on its smartwatches starting with the Pixel Watch 2. It may even be the exact same Snapdragon W5 Gen 2 chip as the Pixel Watch 4 if the yet-to-be-listed co-processor hasn’t been changed. That’s a notable difference from early leaks that suggested Google might introduce its own Tensor chip for the Pixel Watch 5.

One place the smartwatch could be different is memory: the listing shows the Pixel Watch 5 as having 3GB of RAM, a 1GB increase over the Pixel Watch 4. This might not change the day-to-day experience of using the smartwatch, but it could enable new Gemini Intelligence features Google has planned.

Combined with leaked renders of the Pixel Watch 5, which show the wearable as looking more or less like the Pixel Watch that came before it, Google’s new smartwatch seems like not much of an upgrade. It’ll reportedly be available in new “Dark Anthracite” (dark gray) and “Pyrite” (green) colors, and Google will likely introduce new bands, but nothing about what’s leaked so far suggests the watch will do anything different than it did before.

Google could still wow in the software department—for example, the company patented technology for measuring arterial stiffness that could show up on a future watch—but it’ll still have an uphill battle selling the smartwatch. Dealabs reported earlier this month that the Pixel Watch 5 will likely start at $400, $50 more than the Pixel Watch 4. That price might be harder to swallow if the watch also looks nearly identical to last year’s model.

Increasingly, it seems like the Pixel Watch story Google will be telling at its upcoming Made by Google event will be focused on software. That’s one of the company’s strengths, but it remains to be seen whether the Pixel Watch 5 will be worth the upgrade.

#Temper #Excitement #Pixel #WatchGoogle,Google Pixel,smart watch,Wearables

The world could face the strongest El Niño since recordkeeping began, increasing the likelihood of extreme weather events and significant, long-term economic impacts globally.

A new analysis by Berkeley Earth climate scientist Zeke Hausfather paints a worrying picture of the climate phenomenon developing in the Pacific Ocean. Models have consistently forecast that this year’s El Niño—characterized by hotter than normal waters in the eastern tropical Pacific—could be among the strongest on records. Hausfather’s analysis using the El Niño forecast based on 14 climate models through July indicates that “this year’s El Niño is not only very likely to be the strongest event since reliable records began—it may end up the strongest by a truly mind-blowing margin.”

Climate researchers measure the strength of El Niño by looking at the temperatures in a region of the Pacific known as Niño 3.4, which covers the eastern and central part of the ocean basin. The new analysis relies on 667 simulations and compares them with historical records of the most intense El Niño events since 1877. It also disentangles El Niño’s intensity from the background warming driven by fossil fuels, making it easier to draw comparisons between super El Niños.

The model average shows that heat in the Niño 3.4 region could peak at 3.6 degrees Celsius (6.5 degrees Fahrenheit) above normal levels. This figure would exceed the previous record—set during the 2015-2016 El Niño episode—by approximately 0.8 degrees Celsius. It’s rare for records to fall by such a wide spread.

“For context, the gap between the strongest and the fifth strongest El Niño of the past 150 years is only about 0.5C. The models are forecasting something outside the envelope of anything we have ever observed,” Hausfather writes.

Of course, what happens in the tropical Pacific doesn’t stay in the tropical Pacific. El Niño rearranges the atmosphere, changing weather patterns around the world. The more intense the El Niño, the more intense the impacts (usually).

Record-breaking ocean heat in the Pacific combined with warming driven by carbon emissions could send the global temperature to new highs. But it takes a while for the extra heat released by El Niño to work its way through the vast climate system, meaning that next year is when we’ll see the full impact of this year’s Pacific heat wave on the global average temperature. According to his projections, global temperatures in 2027 could reach up to 1.7 degrees Celsius above the preindustrial average, well above the 1.5 degrees Celsius threshold that’s been dubbed a relatively safe level of global warming.

But the world won’t have to wait until 2027 to feel the heat of El Niño. A separate analysis by Carbon Brief shows that the odds are increasing for 2026 to set an annual heat record, with the likelihood up from 19 percent in April to 35 percent as of July. And the forecasters are expecting extreme weather associated with El Niño to impact various parts of the globe in the coming months. In fact, some impacts are already here: Fisheries in the eastern Pacific are seeing lower catches, with the Peruvian government setting up a ban for catching anchovies this spring.

Hausfather’s analysis also revealed that the phenomenon is developing faster than usual. According to the comparison, this year’s El Niño is intensifying more rapidly than the 1997-1998 event, another super El Niño. It also differs significantly from the 2015 event, which began when the ocean was already showing signs of prior warming—in other words, it had a running start. That’s particularly striking because this year began with La Niña, the cooler-than-normal cousin of El Niño, so it had a bit of work to do before it even got going.

#Niño #Track #Strongest #Recordclimate,environment,weather,el nino">The 2026 El Niño Is on Track to Be the Strongest on RecordThe world could face the strongest El Niño since recordkeeping began, increasing the likelihood of extreme weather events and significant, long-term economic impacts globally.A new analysis by Berkeley Earth climate scientist Zeke Hausfather paints a worrying picture of the climate phenomenon developing in the Pacific Ocean. Models have consistently forecast that this year’s El Niño—characterized by hotter than normal waters in the eastern tropical Pacific—could be among the strongest on records. Hausfather’s analysis using the El Niño forecast based on 14 climate models through July indicates that “this year’s El Niño is not only very likely to be the strongest event since reliable records began—it may end up the strongest by a truly mind-blowing margin.”Climate researchers measure the strength of El Niño by looking at the temperatures in a region of the Pacific known as Niño 3.4, which covers the eastern and central part of the ocean basin. The new analysis relies on 667 simulations and compares them with historical records of the most intense El Niño events since 1877. It also disentangles El Niño’s intensity from the background warming driven by fossil fuels, making it easier to draw comparisons between super El Niños.The model average shows that heat in the Niño 3.4 region could peak at 3.6 degrees Celsius (6.5 degrees Fahrenheit) above normal levels. This figure would exceed the previous record—set during the 2015-2016 El Niño episode—by approximately 0.8 degrees Celsius. It’s rare for records to fall by such a wide spread.“For context, the gap between the strongest and the fifth strongest El Niño of the past 150 years is only about 0.5C. The models are forecasting something outside the envelope of anything we have ever observed,” Hausfather writes.Of course, what happens in the tropical Pacific doesn’t stay in the tropical Pacific. El Niño rearranges the atmosphere, changing weather patterns around the world. The more intense the El Niño, the more intense the impacts (usually).Record-breaking ocean heat in the Pacific combined with warming driven by carbon emissions could send the global temperature to new highs. But it takes a while for the extra heat released by El Niño to work its way through the vast climate system, meaning that next year is when we’ll see the full impact of this year’s Pacific heat wave on the global average temperature. According to his projections, global temperatures in 2027 could reach up to 1.7 degrees Celsius above the preindustrial average, well above the 1.5 degrees Celsius threshold that’s been dubbed a relatively safe level of global warming.But the world won’t have to wait until 2027 to feel the heat of El Niño. A separate analysis by Carbon Brief shows that the odds are increasing for 2026 to set an annual heat record, with the likelihood up from 19 percent in April to 35 percent as of July. And the forecasters are expecting extreme weather associated with El Niño to impact various parts of the globe in the coming months. In fact, some impacts are already here: Fisheries in the eastern Pacific are seeing lower catches, with the Peruvian government setting up a ban for catching anchovies this spring.Hausfather’s analysis also revealed that the phenomenon is developing faster than usual. According to the comparison, this year’s El Niño is intensifying more rapidly than the 1997-1998 event, another super El Niño. It also differs significantly from the 2015 event, which began when the ocean was already showing signs of prior warming—in other words, it had a running start. That’s particularly striking because this year began with La Niña, the cooler-than-normal cousin of El Niño, so it had a bit of work to do before it even got going.#Niño #Track #Strongest #Recordclimate,environment,weather,el nino

strongest El Niño since recordkeeping began, increasing the likelihood of extreme weather events and significant, long-term economic impacts globally.

A new analysis by Berkeley Earth climate scientist Zeke Hausfather paints a worrying picture of the climate phenomenon developing in the Pacific Ocean. Models have consistently forecast that this year’s El Niño—characterized by hotter than normal waters in the eastern tropical Pacific—could be among the strongest on records. Hausfather’s analysis using the El Niño forecast based on 14 climate models through July indicates that “this year’s El Niño is not only very likely to be the strongest event since reliable records began—it may end up the strongest by a truly mind-blowing margin.”

Climate researchers measure the strength of El Niño by looking at the temperatures in a region of the Pacific known as Niño 3.4, which covers the eastern and central part of the ocean basin. The new analysis relies on 667 simulations and compares them with historical records of the most intense El Niño events since 1877. It also disentangles El Niño’s intensity from the background warming driven by fossil fuels, making it easier to draw comparisons between super El Niños.

The model average shows that heat in the Niño 3.4 region could peak at 3.6 degrees Celsius (6.5 degrees Fahrenheit) above normal levels. This figure would exceed the previous record—set during the 2015-2016 El Niño episode—by approximately 0.8 degrees Celsius. It’s rare for records to fall by such a wide spread.

“For context, the gap between the strongest and the fifth strongest El Niño of the past 150 years is only about 0.5C. The models are forecasting something outside the envelope of anything we have ever observed,” Hausfather writes.

Of course, what happens in the tropical Pacific doesn’t stay in the tropical Pacific. El Niño rearranges the atmosphere, changing weather patterns around the world. The more intense the El Niño, the more intense the impacts (usually).

Record-breaking ocean heat in the Pacific combined with warming driven by carbon emissions could send the global temperature to new highs. But it takes a while for the extra heat released by El Niño to work its way through the vast climate system, meaning that next year is when we’ll see the full impact of this year’s Pacific heat wave on the global average temperature. According to his projections, global temperatures in 2027 could reach up to 1.7 degrees Celsius above the preindustrial average, well above the 1.5 degrees Celsius threshold that’s been dubbed a relatively safe level of global warming.

But the world won’t have to wait until 2027 to feel the heat of El Niño. A separate analysis by Carbon Brief shows that the odds are increasing for 2026 to set an annual heat record, with the likelihood up from 19 percent in April to 35 percent as of July. And the forecasters are expecting extreme weather associated with El Niño to impact various parts of the globe in the coming months. In fact, some impacts are already here: Fisheries in the eastern Pacific are seeing lower catches, with the Peruvian government setting up a ban for catching anchovies this spring.

Hausfather’s analysis also revealed that the phenomenon is developing faster than usual. According to the comparison, this year’s El Niño is intensifying more rapidly than the 1997-1998 event, another super El Niño. It also differs significantly from the 2015 event, which began when the ocean was already showing signs of prior warming—in other words, it had a running start. That’s particularly striking because this year began with La Niña, the cooler-than-normal cousin of El Niño, so it had a bit of work to do before it even got going.

#Niño #Track #Strongest #Recordclimate,environment,weather,el nino">The 2026 El Niño Is on Track to Be the Strongest on Record

The world could face the strongest El Niño since recordkeeping began, increasing the likelihood of extreme weather events and significant, long-term economic impacts globally.

A new analysis by Berkeley Earth climate scientist Zeke Hausfather paints a worrying picture of the climate phenomenon developing in the Pacific Ocean. Models have consistently forecast that this year’s El Niño—characterized by hotter than normal waters in the eastern tropical Pacific—could be among the strongest on records. Hausfather’s analysis using the El Niño forecast based on 14 climate models through July indicates that “this year’s El Niño is not only very likely to be the strongest event since reliable records began—it may end up the strongest by a truly mind-blowing margin.”

Climate researchers measure the strength of El Niño by looking at the temperatures in a region of the Pacific known as Niño 3.4, which covers the eastern and central part of the ocean basin. The new analysis relies on 667 simulations and compares them with historical records of the most intense El Niño events since 1877. It also disentangles El Niño’s intensity from the background warming driven by fossil fuels, making it easier to draw comparisons between super El Niños.

The model average shows that heat in the Niño 3.4 region could peak at 3.6 degrees Celsius (6.5 degrees Fahrenheit) above normal levels. This figure would exceed the previous record—set during the 2015-2016 El Niño episode—by approximately 0.8 degrees Celsius. It’s rare for records to fall by such a wide spread.

“For context, the gap between the strongest and the fifth strongest El Niño of the past 150 years is only about 0.5C. The models are forecasting something outside the envelope of anything we have ever observed,” Hausfather writes.

Of course, what happens in the tropical Pacific doesn’t stay in the tropical Pacific. El Niño rearranges the atmosphere, changing weather patterns around the world. The more intense the El Niño, the more intense the impacts (usually).

Record-breaking ocean heat in the Pacific combined with warming driven by carbon emissions could send the global temperature to new highs. But it takes a while for the extra heat released by El Niño to work its way through the vast climate system, meaning that next year is when we’ll see the full impact of this year’s Pacific heat wave on the global average temperature. According to his projections, global temperatures in 2027 could reach up to 1.7 degrees Celsius above the preindustrial average, well above the 1.5 degrees Celsius threshold that’s been dubbed a relatively safe level of global warming.

But the world won’t have to wait until 2027 to feel the heat of El Niño. A separate analysis by Carbon Brief shows that the odds are increasing for 2026 to set an annual heat record, with the likelihood up from 19 percent in April to 35 percent as of July. And the forecasters are expecting extreme weather associated with El Niño to impact various parts of the globe in the coming months. In fact, some impacts are already here: Fisheries in the eastern Pacific are seeing lower catches, with the Peruvian government setting up a ban for catching anchovies this spring.

Hausfather’s analysis also revealed that the phenomenon is developing faster than usual. According to the comparison, this year’s El Niño is intensifying more rapidly than the 1997-1998 event, another super El Niño. It also differs significantly from the 2015 event, which began when the ocean was already showing signs of prior warming—in other words, it had a running start. That’s particularly striking because this year began with La Niña, the cooler-than-normal cousin of El Niño, so it had a bit of work to do before it even got going.

#Niño #Track #Strongest #Recordclimate,environment,weather,el nino

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