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Home/Blog/KAS Up About 70% in a Month: A Kaspa Mining Profitability Window?
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KAS Up About 70% in a Month: A Kaspa Mining Profitability Window?

Mining GuideSeptember 28, 202611 min read
September 28, 202611 minutes readUpdated September 28, 2026

Calculate today’s KS7 45T output from Kaspa network data, compare electricity costs and static payback, then check current LeedMiner KAS miner prices.

By LeedMiner Editorial
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LeedMiner editorial cover showing power infrastructure in warm light beside the title KAS Rallies, Rethink Mining ROI.

Table Of Contents

1. Price rose faster than sampled network hashrate—but emission still mattersThe metric to watch is hashprice2. What a KS7 45T can produce todayThe network inputs and formulaElectricity decides how much revenue remainsPayback is not a return guarantee3. Stress-test the window before buyingWhat if the KAS price changes first?What if competition increases?Where is the electricity-only shutdown line?Current LeedMiner KAS miner pricesBitmain Antminer KS7 (45Th)IceRiver KS7 (30Th)Bitmain Antminer KS5 Pro (21Th)Bitmain Antminer KS5 (20Th)Calculate your KAS mining ROI before ordering

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Kaspa is back on miners’ screens. During our September 28, 2026 review, CoinGecko showed a roughly 70% gain over 30 days. For a miner, however, the useful question is not simply how far KAS has rallied. It is whether revenue per unit of hashrate has improved enough to justify running—or buying—a machine. Market reference: CoinGecko.

The short answer: today’s network snapshot gives an Antminer KS7 45T theoretical output of approximately 244.75 KAS per day, worth $11.65 before fees. At $0.05/kWh and the 3,465W specification listed by LeedMiner, that leaves about $7.49 per day after electricity alone.

These figures are calculated from current network inputs. This article also includes current LeedMiner sale-option prices and a calculator link so buyers can replace the snapshot with their own operating assumptions.

Data timestamp: September 28, 2026, 07:13 UTC / 15:13 China Standard Time. Market and network figures are point-in-time observations; future prices, difficulty and payouts will change. Cover: AI-generated infrastructure concept, not a photograph of a specific mine or product.

1. Price rose faster than sampled network hashrate—but emission still matters

A mining profitability window opens when the dollar value earned by a fixed amount of computing power improves faster than its operating costs. A higher token price helps, but network competition and the subsidy schedule determine how many tokens a machine receives.

Three drivers of KAS mining revenue: token price, competing network hashrate and monthly subsidy reductions.
Direction of impact with other inputs held constant. A stronger coin price is only one part of the calculation.

Kaspa’s public network history recorded approximately 321.29 PH/s on August 29 at 05:19 UTC, compared with 351.22 PH/s on September 28 at 06:07 UTC: an increase of about 9.3% between those daily samples. That is substantially less than the roughly 70% 30-day price gain shown during the market review. These are sampled endpoints, not monthly averages or proof that hashrate stayed flat. Explore Kaspa network data.

The latest hashrate reading used in the calculation below was 346.74 PH/s. Its difference from the earlier daily sample illustrates why a mining article needs timestamps: network estimates fluctuate throughout the day.

The metric to watch is hashprice

For this article, hashprice means gross USD revenue per TH/s per day. Ignoring transaction fees and reward-allocation differences, the relationship is:

Revenue per TH/s ≈ network subsidy per day ÷ network TH/s × KAS price.

A higher KAS price increases revenue. More competing hashrate reduces the share earned by an unchanged machine. Lower scheduled issuance reduces the subsidy available to everyone. The current calculation gives approximately $0.2588 per TH/s per day, before pool fees and operating costs.

Kaspa reduces its subsidy monthly by a factor of 2^(−1/12), about 5.61% per month, equivalent to halving over twelve reductions. Even with unchanged price and competition, subsidy-driven coin output declines over time. Kaspa tokenomics.

A rally may encourage idle machines to restart and new equipment to ship, while sellers may reprice inventory. That is a possible economic response, not evidence that every such step has already happened. The useful takeaway is to recalculate promptly rather than assume that today’s margin will last.

2. What a KS7 45T can produce today

The calculation uses the 45 TH/s, 3,465W configuration currently listed by LeedMiner, equivalent to 77 J/TH. Power ratings vary across listings and configurations: this article uses the exact product being quoted, rather than combining a 45T price with another configuration’s electricity consumption. KS7 45T product specifications.

Today's KS7 45T estimate shows daily surplus after electricity of $9.15 at $0.03 per kWh, $7.49 at $0.05, and $3.33 at $0.10.
September 28, 07:13 UTC snapshot: approximately 244.75 KAS/day, $0.04758974/KAS and 3,465W. Fees and other operating costs are excluded.

The network inputs and formula

InputValue used
Miner hashrate45 TH/s
Estimated network hashrate346,738.217753 TH/s, or 346.738 PH/s
Subsidy per block2.18267645 KAS
Target block rate10 blocks/second
Seconds per day86,400
KAS price, same capture window$0.04758974
Uptime / pool fee in base calculation100% / 0%

The public network feed supplied hashrate, subsidy and price within the same two-second capture window. Kaspa’s documented block rate is 10 blocks per second. The network feed may cache individual fields, so this is a closely timed snapshot rather than an atomic market-and-chain observation. Kaspa network explorer, Kaspa protocol overview.

Daily theoretical subsidy = (45 ÷ 346,738.217753) × 2.18267645 × 10 × 86,400 ≈ 244.745 KAS.

Daily gross revenue = 244.745 × $0.04758974 ≈ $11.65.

This is an estimate of a full day at the captured network conditions—not coins already mined today, a pool-account payout record or a guaranteed daily result. It excludes transaction fees and assumes the miner earns its proportional share of the subsidy. Accepted shares, stale or rejected work, uptime, pool rules and reward variance affect realized output. A simple 2% pool-fee adjustment reduces the estimate to approximately 239.85 KAS/day, before other differences.

Electricity decides how much revenue remains

At 3.465 kW, uninterrupted operation uses 83.16 kWh/day. Subtracting electricity from unrounded gross revenue gives:

Electricity ratePower cost/dayGross revenue/daySurplus after electricity/dayStatic equipment payback at $1,900
$0.03/kWh$2.49$11.65$9.15208 days
$0.05/kWh$4.16$11.65$7.49254 days
$0.07/kWh$5.82$11.65$5.83326 days
$0.10/kWh$8.32$11.65$3.33570 days

The $1,900 equipment input is the LeedMiner KS7 45T “In Stock” sale option checked for this article. A cheaper, unavailable batch is not used for the purchase calculation. Shipping, duties, setup, financing, pool fees, hosting charges, cooling overhead, repairs and downtime are excluded. The surplus is therefore not all-in net profit. Calculations use unrounded inputs; displayed amounts are rounded independently.

At $0.05/kWh, adding a 2% pool fee reduces electricity-after-fee surplus to about $7.26/day, extending this still-static equipment payback to approximately 262 days.

Payback is not a return guarantee

Equipment price divided by daily surplus measures a static payback period, not an ROI percentage. It freezes price, competition, emissions and performance at today’s values. A 254-day result does not promise recovery of the purchase price in 254 calendar days.

Use total installed cost rather than the machine invoice alone when evaluating a real deployment. Where a hosting tariff already includes electricity, separate its components to avoid counting the same power charge twice. Low electricity prices help both daily margins and resilience, but do not remove token-price or hardware risk.

3. Stress-test the window before buying

A sound purchase decision should survive more than today’s optimistic-looking screenshot. Test price and network competition together, then account for future subsidy reductions separately.

Downside scenario: a 20 percent KAS price decline and 20 percent network hashrate increase reduce gross revenue to two-thirds of baseline; the $0.10 per kWh case falls below electricity cost.
Scenario, not a forecast. Baseline uses the September 28 snapshot; this isolated test keeps the subsidy and machine performance unchanged.

What if the KAS price changes first?

Holding today’s estimated 244.745 KAS/day constant isolates price sensitivity:

KAS priceTheoretical gross revenue/day
$0.030$7.34
$0.040$9.79
$0.04758974 snapshot$11.65
$0.050$12.24
$0.060$14.68
$0.070$17.13

These are scenarios, not price targets. For a fixed power draw, run time and electricity tariff, the electricity bill does not rise merely because KAS becomes more expensive. That makes the surplus especially sensitive to price near the shutdown threshold. The same effect works in reverse when KAS falls.

What if competition increases?

If network hashrate rises 30% while machine performance and subsidy remain unchanged, coin output is divided by 1.30: a decline of about 23.1%, not 30%.

Now combine a 20% price fall with a 20% hashrate increase. Revenue becomes 0.80 ÷ 1.20 = 66.7% of baseline, or approximately $7.76/day. That leaves about $3.61/day at $0.05/kWh, but approximately −$0.55/day at $0.10/kWh, before other costs. A subsequent monthly subsidy reduction would compress those figures further.

A separate conservative scenario of $0.035/KAS and 20% more network hashrate produces approximately $7.14/day gross, leaving $2.98/day after electricity at $0.05/kWh. Under a $0.06 price scenario with unchanged competition and subsidy, gross revenue would instead be about $14.68/day. Neither scenario predicts the future.

Where is the electricity-only shutdown line?

At today’s theoretical coin output, the break-even KAS price is daily electricity cost divided by estimated KAS/day:

Electricity rateElectricity-only break-even KAS price
$0.03/kWh$0.01019
$0.05/kWh$0.01699
$0.07/kWh$0.02378
$0.10/kWh$0.03398

These thresholds rise when output declines or additional costs are included. They are operating-cost markers, not investment break-even prices. A machine may cover electricity while still failing to recover its purchase cost.

Bottom line: the recent price move and the more modest increase between sampled network-hashrate readings support revisiting Kaspa mining economics. The opportunity is conditional. Price determines the dollar value of rewards; competition and emissions determine the coin allocation; power costs determine operating headroom; the exact purchase price determines how much capital must be recovered.

Current LeedMiner KAS miner prices

Selected sale options checked September 28, 2026. USD per unit; MOQ 1. These are the prices of the named configurations/options—not an average across batches and not a promise of future availability. Open the product page and select the named option; a parent listing or unavailable option may display a different price. Final order confirmation governs delivery, shipping, taxes and warranty.

MinerHashrateListed powerSale optionPriceCatalog availability
Bitmain Antminer KS745 TH/s3,465WIn Stock$1,900In stock
IceRiver KS730 TH/s3,500W5 days$2,000In stock; confirm dispatch
Bitmain Antminer KS5 Pro21 TH/s3,150WIn Stock$1,199In stock
Bitmain Antminer KS520 TH/s3,000WUSA-In Stock$4001 unit shown in catalog

All four use KHeavyHash. A low purchase price alone does not imply a superior return: lower-efficiency machines may lose their apparent advantage at higher electricity rates. The KS7 revenue and payback figures above apply only to the 45T example; they are not shared across this table.

Bitmain Antminer KS7 (45Th)

Bitmain Antminer KS7 (45Th)
Approved LeedMiner catalog image.

Air cooling · 3,465W · 77 J/Th · See selected option and stock on product page

View current configuration and price

IceRiver KS7 (30Th)

IceRiver KS7 (30Th)
Approved LeedMiner catalog image.

Air cooling · 3,500W · 116.67 J/Th · See selected option and stock on product page

View current configuration and price

Bitmain Antminer KS5 Pro (21Th)

Bitmain Antminer KS5 Pro (21Th)
Approved LeedMiner catalog image.

Air cooling · 3,150W · 150 J/Th · See selected option and stock on product page

View current configuration and price

Bitmain Antminer KS5 (20Th)

Bitmain Antminer KS5 (20Th)
Approved LeedMiner catalog image.

Air cooling · 3,000W · 150 J/Th · See selected option and stock on product page

View current configuration and price

Calculate your KAS mining ROI before ordering

Start with your actual electricity rate, the exact miner configuration and the selected batch price—not somebody else’s payback screenshot.

Use the LeedMiner KAS ROI & Profit Calculator to review current revenue inputs, power costs, pool fees and equipment cost. Start with KS7 45T, verify 3,465W, and enter the $1,900 sale-option price. Compare your actual tariff with a higher-cost case. Run a separate downside case for lower KAS prices, stronger competition and declining subsidies; a static calculator result is not a forecast of future cash flows.

Open the KAS ROI Calculator →

Need a deployment quote? Contact LeedMiner with your model, quantity, delivery destination and electricity rate. For hosted deployment, review the hosting options and confirm what the quoted tariff includes.

Methodology: proportional subsidy-share calculation using Kaspa public network data captured at 07:13:20–07:13:22 UTC on September 28, 2026; 10 blocks/second; no transaction fees; 100% uptime and zero pool fee unless otherwise stated. Product specifications, sale-option prices and approved images were checked against LeedMiner’s catalog. Market performance context is from CoinGecko and is separate from the same-window calculation inputs. This is a dated operating-economics analysis, not a guaranteed return or a recommendation to borrow to buy mining equipment.

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