DENO LED Lighting

2835 High-Efficiency Full Spectrum LED Strip Light (#3015-FS)

10mm · 24V · 128LEDs · 62.5mm/cut

Model: 3015-FS

3015-FS 2835 High-Efficiency Full Spectrum LED Strip Light | 10mm | 24V | 128LEDs | 62.5mm/cut | #3015-FS — 24V, cuttable every 62.5mm, 10mm FPCB width, 2835 LEDs, 128 LEDs/m

Description

2835 High-Efficiency Full Spectrum LED Strip Light | 10mm | 24V | 128LEDs | 62.5mm/cut | #3015-FS The long-reel LED strip light is designed with high-density LED placement (128 LEDs/m) and advanced optical technology. This particular long-reel LED strip light model offers exceptional brightness while maintaining energy efficiency. For installation flexibility, the long-reel LED strip light supports continuous runs up to 50 meters without interruption. The durability of this long-reel LED strip light makes it suitable for various commercial and residential applications. When selecting a long-reel LED strip light, consider the specific requirements of your project to ensure optimal performance.

We use 99.99% gold wire, large-size chips, and thickened FPCB, backed by a 5-year warranty.

Specifications

LED QTY128
PART NODL-F28D64V24-3015-FS-*
SMD TYPE2835
CUTTABLE UNIT8LEDs/62.5mm
DIMMABLEYes
LED PITCH7.8mm
PCB WIDTH10
BEAM ANGLE120°
LENGTH MAX5m
COPPER FOIL3oz
POWER RANGE2~23W
CIRCUIT TYPEC.V.
INPUT VOLTAGE24V
OPERATING TEMPERATURE-25~40°C;Tc:75°C(max)

Photometric Performance — CCT × CRI Efficacy Matrix

Peak measured luminous efficacy: 159.7 lm/W at 4000K, Full Spectrum (Ra 95+), ErP energy class D (Grade DN (1st Tier) · 4.8W/m).

All values are measured at the stated power density and ambient 25 °C, reported as luminous efficacy in lumens per watt (lm/W), luminous flux per metre (lm/m) and the corresponding EU ErP (2019/2015) energy class.

Grade DL (2nd Tier) · 4.8W/m

Grade DL (2nd Tier) · 4.8W/m — measured at 4.8 W/m: luminous efficacy (lm/W), luminous flux (lm/m) and ErP energy class per CCT and CRI grade.
CCT (K)Ra 80 — Luminous Efficacy (lm/W)Ra 80 — Luminous Flux (lm/m)Ra 80 — ErP Energy ClassRa 90 — Luminous Efficacy (lm/W)Ra 90 — Luminous Flux (lm/m)Ra 90 — ErP Energy ClassFull Spectrum (Ra 95+) — Luminous Efficacy (lm/W)Full Spectrum (Ra 95+) — Luminous Flux (lm/m)Full Spectrum (Ra 95+) — ErP Energy Class
1800 K
2300 K120.8 lm/W579.7 lm/mD
2700 K130.2 lm/W625 lm/mE
3000 K137.5 lm/W659.9 lm/mD
3500 K141.7 lm/W680 lm/mD
4000 K145.5 lm/W698.4 lm/mD
5000 K144.1 lm/W691.5 lm/mD
6500 K139.7 lm/W670.5 lm/mD

Grade DL (2nd Tier) · 9.6W/m

Grade DL (2nd Tier) · 9.6W/m — measured at 9.6 W/m: luminous efficacy (lm/W), luminous flux (lm/m) and ErP energy class per CCT and CRI grade.
CCT (K)Ra 80 — Luminous Efficacy (lm/W)Ra 80 — Luminous Flux (lm/m)Ra 80 — ErP Energy ClassRa 90 — Luminous Efficacy (lm/W)Ra 90 — Luminous Flux (lm/m)Ra 90 — ErP Energy ClassFull Spectrum (Ra 95+) — Luminous Efficacy (lm/W)Full Spectrum (Ra 95+) — Luminous Flux (lm/m)Full Spectrum (Ra 95+) — ErP Energy Class
1800 K
2300 K116.8 lm/W1121 lm/mD
2700 K125.9 lm/W1208.6 lm/mE
3000 K132.9 lm/W1276.1 lm/mE
3500 K137 lm/W1314.8 lm/mD
4000 K140.7 lm/W1350.6 lm/mD
5000 K139.3 lm/W1337.1 lm/mD
6500 K135.1 lm/W1296.5 lm/mD

Grade DL (2nd Tier) · 15W/m

Grade DL (2nd Tier) · 15W/m — measured at 15 W/m: luminous efficacy (lm/W), luminous flux (lm/m) and ErP energy class per CCT and CRI grade.
CCT (K)Ra 80 — Luminous Efficacy (lm/W)Ra 80 — Luminous Flux (lm/m)Ra 80 — ErP Energy ClassRa 90 — Luminous Efficacy (lm/W)Ra 90 — Luminous Flux (lm/m)Ra 90 — ErP Energy ClassFull Spectrum (Ra 95+) — Luminous Efficacy (lm/W)Full Spectrum (Ra 95+) — Luminous Flux (lm/m)Full Spectrum (Ra 95+) — ErP Energy Class
1800 K
2300 K112.4 lm/W1686.3 lm/mD
2700 K121.2 lm/W1818.1 lm/mE
3000 K128 lm/W1919.7 lm/mE
3500 K131.9 lm/W1977.9 lm/mE
4000 K135.4 lm/W2031.7 lm/mD
5000 K134.1 lm/W2011.4 lm/mD
6500 K130 lm/W1950.4 lm/mD

Grade DL (2nd Tier) · 19.2W/m

Grade DL (2nd Tier) · 19.2W/m — measured at 19.2 W/m: luminous efficacy (lm/W), luminous flux (lm/m) and ErP energy class per CCT and CRI grade.
CCT (K)Ra 80 — Luminous Efficacy (lm/W)Ra 80 — Luminous Flux (lm/m)Ra 80 — ErP Energy ClassRa 90 — Luminous Efficacy (lm/W)Ra 90 — Luminous Flux (lm/m)Ra 90 — ErP Energy ClassFull Spectrum (Ra 95+) — Luminous Efficacy (lm/W)Full Spectrum (Ra 95+) — Luminous Flux (lm/m)Full Spectrum (Ra 95+) — ErP Energy Class
1800 K
2300 K109.2 lm/W2095.7 lm/mE
2700 K117.7 lm/W2259.5 lm/mE
3000 K124.3 lm/W2385.7 lm/mE
3500 K128 lm/W2458.1 lm/mE
4000 K131.5 lm/W2525 lm/mE
5000 K130.2 lm/W2499.7 lm/mE
6500 K126.2 lm/W2424 lm/mE

Grade DL (2nd Tier) · 23W/m

Grade DL (2nd Tier) · 23W/m — measured at 23 W/m: luminous efficacy (lm/W), luminous flux (lm/m) and ErP energy class per CCT and CRI grade.
CCT (K)Ra 80 — Luminous Efficacy (lm/W)Ra 80 — Luminous Flux (lm/m)Ra 80 — ErP Energy ClassRa 90 — Luminous Efficacy (lm/W)Ra 90 — Luminous Flux (lm/m)Ra 90 — ErP Energy ClassFull Spectrum (Ra 95+) — Luminous Efficacy (lm/W)Full Spectrum (Ra 95+) — Luminous Flux (lm/m)Full Spectrum (Ra 95+) — ErP Energy Class
1800 K
2300 K106.3 lm/W2444.4 lm/mE
2700 K114.6 lm/W2635.4 lm/mE
3000 K121 lm/W2782.6 lm/mE
3500 K124.7 lm/W2867.1 lm/mE
4000 K128 lm/W2945 lm/mE
5000 K126.8 lm/W2915.6 lm/mE
6500 K122.9 lm/W2827.2 lm/mE

Grade DN (1st Tier) · 4.8W/m

Grade DN (1st Tier) · 4.8W/m — measured at 4.8 W/m: luminous efficacy (lm/W), luminous flux (lm/m) and ErP energy class per CCT and CRI grade.
CCT (K)Ra 80 — Luminous Efficacy (lm/W)Ra 80 — Luminous Flux (lm/m)Ra 80 — ErP Energy ClassRa 90 — Luminous Efficacy (lm/W)Ra 90 — Luminous Flux (lm/m)Ra 90 — ErP Energy ClassFull Spectrum (Ra 95+) — Luminous Efficacy (lm/W)Full Spectrum (Ra 95+) — Luminous Flux (lm/m)Full Spectrum (Ra 95+) — ErP Energy Class
1800 K
2300 K132.6 lm/W636.4 lm/mD
2700 K144.7 lm/W694.3 lm/mE
3000 K153.1 lm/W734.9 lm/mD
3500 K158.3 lm/W760.1 lm/mD
4000 K159.7 lm/W766.7 lm/mD
5000 K158.1 lm/W759.1 lm/mD
6500 K153.3 lm/W736.1 lm/mD

Grade DN (1st Tier) · 9.6W/m

Grade DN (1st Tier) · 9.6W/m — measured at 9.6 W/m: luminous efficacy (lm/W), luminous flux (lm/m) and ErP energy class per CCT and CRI grade.
CCT (K)Ra 80 — Luminous Efficacy (lm/W)Ra 80 — Luminous Flux (lm/m)Ra 80 — ErP Energy ClassRa 90 — Luminous Efficacy (lm/W)Ra 90 — Luminous Flux (lm/m)Ra 90 — ErP Energy ClassFull Spectrum (Ra 95+) — Luminous Efficacy (lm/W)Full Spectrum (Ra 95+) — Luminous Flux (lm/m)Full Spectrum (Ra 95+) — ErP Energy Class
1800 K
2300 K128.2 lm/W1230.6 lm/mD
2700 K139.9 lm/W1342.6 lm/mE
3000 K148 lm/W1421.1 lm/mD
3500 K153.1 lm/W1469.7 lm/mD
4000 K154.4 lm/W1482.6 lm/mD
5000 K152.9 lm/W1467.8 lm/mD
6500 K148.3 lm/W1423.3 lm/mD

Grade DN (1st Tier) · 15W/m

Grade DN (1st Tier) · 15W/m — measured at 15 W/m: luminous efficacy (lm/W), luminous flux (lm/m) and ErP energy class per CCT and CRI grade.
CCT (K)Ra 80 — Luminous Efficacy (lm/W)Ra 80 — Luminous Flux (lm/m)Ra 80 — ErP Energy ClassRa 90 — Luminous Efficacy (lm/W)Ra 90 — Luminous Flux (lm/m)Ra 90 — ErP Energy ClassFull Spectrum (Ra 95+) — Luminous Efficacy (lm/W)Full Spectrum (Ra 95+) — Luminous Flux (lm/m)Full Spectrum (Ra 95+) — ErP Energy Class
1800 K
2300 K123.4 lm/W1851.2 lm/mD
2700 K134.7 lm/W2019.8 lm/mE
3000 K142.5 lm/W2137.8 lm/mE
3500 K147.4 lm/W2211 lm/mD
4000 K148.7 lm/W2230.4 lm/mD
5000 K147.2 lm/W2208.1 lm/mD
6500 K142.7 lm/W2141.2 lm/mD

Grade DN (1st Tier) · 19.2W/m

Grade DN (1st Tier) · 19.2W/m — measured at 19.2 W/m: luminous efficacy (lm/W), luminous flux (lm/m) and ErP energy class per CCT and CRI grade.
CCT (K)Ra 80 — Luminous Efficacy (lm/W)Ra 80 — Luminous Flux (lm/m)Ra 80 — ErP Energy ClassRa 90 — Luminous Efficacy (lm/W)Ra 90 — Luminous Flux (lm/m)Ra 90 — ErP Energy ClassFull Spectrum (Ra 95+) — Luminous Efficacy (lm/W)Full Spectrum (Ra 95+) — Luminous Flux (lm/m)Full Spectrum (Ra 95+) — ErP Energy Class
1800 K
2300 K119.8 lm/W2300.7 lm/mE
2700 K130.7 lm/W2510.1 lm/mE
3000 K138.4 lm/W2656.8 lm/mE
3500 K143.1 lm/W2747.8 lm/mE
4000 K144.4 lm/W2771.9 lm/mE
5000 K142.9 lm/W2744.2 lm/mE
6500 K138.6 lm/W2661 lm/mE

Grade DN (1st Tier) · 23W/m

Grade DN (1st Tier) · 23W/m — measured at 23 W/m: luminous efficacy (lm/W), luminous flux (lm/m) and ErP energy class per CCT and CRI grade.
CCT (K)Ra 80 — Luminous Efficacy (lm/W)Ra 80 — Luminous Flux (lm/m)Ra 80 — ErP Energy ClassRa 90 — Luminous Efficacy (lm/W)Ra 90 — Luminous Flux (lm/m)Ra 90 — ErP Energy ClassFull Spectrum (Ra 95+) — Luminous Efficacy (lm/W)Full Spectrum (Ra 95+) — Luminous Flux (lm/m)Full Spectrum (Ra 95+) — ErP Energy Class
1800 K
2300 K116.7 lm/W2683.4 lm/mE
2700 K127.3 lm/W2927.7 lm/mE
3000 K134.7 lm/W3098.8 lm/mE
3500 K139.3 lm/W3204.9 lm/mE
4000 K140.6 lm/W3233 lm/mE
5000 K139.2 lm/W3200.7 lm/mE
6500 K134.9 lm/W3103.7 lm/mE

Grade KE (3rd Tier) · 4.8W/m

Grade KE (3rd Tier) · 4.8W/m — measured at 4.8 W/m: luminous efficacy (lm/W), luminous flux (lm/m) and ErP energy class per CCT and CRI grade.
CCT (K)Ra 80 — Luminous Efficacy (lm/W)Ra 80 — Luminous Flux (lm/m)Ra 80 — ErP Energy ClassRa 90 — Luminous Efficacy (lm/W)Ra 90 — Luminous Flux (lm/m)Ra 90 — ErP Energy ClassFull Spectrum (Ra 95+) — Luminous Efficacy (lm/W)Full Spectrum (Ra 95+) — Luminous Flux (lm/m)Full Spectrum (Ra 95+) — ErP Energy Class
1900 K
2300 K105.3 lm/W505.5 lm/mE
2700 K113.3 lm/W543.9 lm/mE
3000 K120 lm/W576.2 lm/mE
3500 K123.9 lm/W594.7 lm/mE
4000 K126.9 lm/W609.1 lm/mE
5000 K125.6 lm/W603 lm/mE
6500 K121.8 lm/W584.7 lm/mE

Grade KE (3rd Tier) · 9.6W/m

Grade KE (3rd Tier) · 9.6W/m — measured at 9.6 W/m: luminous efficacy (lm/W), luminous flux (lm/m) and ErP energy class per CCT and CRI grade.
CCT (K)Ra 80 — Luminous Efficacy (lm/W)Ra 80 — Luminous Flux (lm/m)Ra 80 — ErP Energy ClassRa 90 — Luminous Efficacy (lm/W)Ra 90 — Luminous Flux (lm/m)Ra 90 — ErP Energy ClassFull Spectrum (Ra 95+) — Luminous Efficacy (lm/W)Full Spectrum (Ra 95+) — Luminous Flux (lm/m)Full Spectrum (Ra 95+) — ErP Energy Class
1900 K
2300 K101.8 lm/W977.5 lm/mE
2700 K109.5 lm/W1051.7 lm/mF
3000 K116.1 lm/W1114.2 lm/mE
3500 K119.8 lm/W1150 lm/mE
4000 K122.7 lm/W1177.8 lm/mE
5000 K121.5 lm/W1166 lm/mE
6500 K117.8 lm/W1130.7 lm/mE

Grade KE (3rd Tier) · 15W/m

Grade KE (3rd Tier) · 15W/m — measured at 15 W/m: luminous efficacy (lm/W), luminous flux (lm/m) and ErP energy class per CCT and CRI grade.
CCT (K)Ra 80 — Luminous Efficacy (lm/W)Ra 80 — Luminous Flux (lm/m)Ra 80 — ErP Energy ClassRa 90 — Luminous Efficacy (lm/W)Ra 90 — Luminous Flux (lm/m)Ra 90 — ErP Energy ClassFull Spectrum (Ra 95+) — Luminous Efficacy (lm/W)Full Spectrum (Ra 95+) — Luminous Flux (lm/m)Full Spectrum (Ra 95+) — ErP Energy Class
1900 K
2300 K98 lm/W1470.6 lm/mE
2700 K105.5 lm/W1582 lm/mF
3000 K111.7 lm/W1676.2 lm/mE
3500 K115.3 lm/W1729.9 lm/mE
4000 K118.1 lm/W1771.8 lm/mE
5000 K116.9 lm/W1754 lm/mE
6500 K113.4 lm/W1700.9 lm/mE

Grade KE (3rd Tier) · 19.2W/m

Grade KE (3rd Tier) · 19.2W/m — measured at 19.2 W/m: luminous efficacy (lm/W), luminous flux (lm/m) and ErP energy class per CCT and CRI grade.
CCT (K)Ra 80 — Luminous Efficacy (lm/W)Ra 80 — Luminous Flux (lm/m)Ra 80 — ErP Energy ClassRa 90 — Luminous Efficacy (lm/W)Ra 90 — Luminous Flux (lm/m)Ra 90 — ErP Energy ClassFull Spectrum (Ra 95+) — Luminous Efficacy (lm/W)Full Spectrum (Ra 95+) — Luminous Flux (lm/m)Full Spectrum (Ra 95+) — ErP Energy Class
1900 K
2300 K95.2 lm/W1827.6 lm/mE
2700 K102.4 lm/W1966.1 lm/mF
3000 K108.5 lm/W2083.1 lm/mF
3500 K112 lm/W2149.9 lm/mE
4000 K114.7 lm/W2201.9 lm/mE
5000 K113.5 lm/W2179.9 lm/mE
6500 K110.1 lm/W2113.9 lm/mE

Grade KE (3rd Tier) · 23W/m

Grade KE (3rd Tier) · 23W/m — measured at 23 W/m: luminous efficacy (lm/W), luminous flux (lm/m) and ErP energy class per CCT and CRI grade.
CCT (K)Ra 80 — Luminous Efficacy (lm/W)Ra 80 — Luminous Flux (lm/m)Ra 80 — ErP Energy ClassRa 90 — Luminous Efficacy (lm/W)Ra 90 — Luminous Flux (lm/m)Ra 90 — ErP Energy ClassFull Spectrum (Ra 95+) — Luminous Efficacy (lm/W)Full Spectrum (Ra 95+) — Luminous Flux (lm/m)Full Spectrum (Ra 95+) — ErP Energy Class
1900 K
2300 K92.7 lm/W2131.6 lm/mE
2700 K99.7 lm/W2293.2 lm/mF
3000 K105.6 lm/W2429.7 lm/mF
3500 K109 lm/W2507.6 lm/mF
4000 K111.7 lm/W2568.2 lm/mE
5000 K110.5 lm/W2542.6 lm/mE
6500 K107.2 lm/W2465.5 lm/mE

Full Spectrum LED Strip — Buyer Questions

What makes a full spectrum LED strip different from a normal high CRI strip?

A high CRI board raises the average of eight pastel test colours; a full spectrum LED strip reproduces a continuous 380–780 nm curve with no cyan gap and a low blue peak. DENO builds them at Ra 95+ with R9 above 90, so saturated reds, timber and skin tones render as they do in daylight rather than simply scoring well on a datasheet.

Is a violet-excited full spectrum LED better than a blue-chip white LED?

For colour fidelity, yes. A violet-excited LED pumps a multi-phosphor blend with a ~405 nm die, filling the 420–500 nm region that a 450 nm blue chip leaves as a spike and a dip. The trade-off is efficacy: expect 80–110 lm/W instead of 130–150 lm/W. Blue-pump Ra 95 remains the better choice where lumens per watt drive the energy calculation.

What CRI and R9 values do your full spectrum LED strip lights reach?

Standard production is Ra 95+ with R9 greater than 90, typically TM-30 Rf 93 and Rg around 100. Every reel ships with spectral test data, and 1-SDCM binning is available when several reels must match visually in the same room. Ra 98 selections can be produced for gallery and film work on a project basis.

Which full spectrum model should I choose for a shallow cove?

Pick density by mounting depth: with 6–12 mm between board and diffuser the 8 mm 256 LEDs/m 2216 build at 3.9 mm pitch stays dot-free, while the 10 mm 128 LEDs/m board is the efficient choice behind deeper profiles. For runs that must not drift in brightness, the 12 mm constant-current board regulates each segment independently.

Are full spectrum LED strips available in 24V and are they dimmable?

All five DENO full spectrum boards are 24V, which keeps current low enough for 5 m single-feed runs and 10 m with dual feed. They dim on PWM, 0–10V, DALI and TRIAC drivers down to 1% without colour shift, because the phosphor blend is fixed rather than mixed from separate colour channels.

Can full spectrum LED strip lights be used for plants or human-centric lighting?

Yes for both, within limits. The continuous spectrum supports supplementary horticulture and human-centric schemes where a magenta grow bar would be unacceptable, and melanopic content is tuned by CCT rather than by adding a channel. For dedicated high-PPFD growing, a purpose-built horticultural board is still the more efficient option.

Can I order a custom full spectrum LED strip — width, CCT or IP class?

Board width from 8 mm to 20 mm, 1800K–6500K including dual-CCT tunable white, 2 oz or 3 oz copper, free-cut segmentation and IP20 to IP68 protection are all configurable on the existing full spectrum stack-ups, so a non-standard build is a production setup rather than new tooling. MOQ and lead time are quoted per specification.

What wavelength range does the spectrum actually cover, and is the cyan gap really filled?

Emission runs continuously from 380 nm to 780 nm. On a violet-pump board the 405 nm die feeds a three-phosphor blend, so the 480–500 nm cyan region sits within roughly 15% of the neighbouring bands instead of collapsing into the dip a 450 nm blue chip leaves. Measured SPD files (5 nm resolution), TM-30 Rf/Rg and the duv figure ship with each production lot, so the curve can be verified rather than assumed.

Which colour temperatures are available, and can the CCT be tuned after installation?

Fixed CCT options run 1800K, 2200K, 2400K, 2700K, 3000K, 3500K, 4000K, 5000K and 6500K, all held inside a 3-SDCM ellipse and 1 SDCM on request. For adjustable schemes a dual-channel tunable board mixes two full-spectrum phosphor sets, so 2700K–6500K tuning keeps Ra 95 across the whole travel — unlike RGB-based tuning, which loses fidelity away from its calibration point.

Where is a continuous-spectrum board worth the efficacy penalty?

Museums and galleries (low UV, faithful pigment rendering), fashion and jewellery retail where saturated reds decide a purchase, dermatology and dental rooms, food halls, colour-grading suites and photo studios, plus high-end residential where timber and skin tones dominate. In warehouses, car parks and back-of-house corridors the 30–40% efficacy gap is not justified — a blue-pump Ra 80 board is the correct specification there.

How does the spectrum affect flicker, UV and blue-light exposure?

A 405 nm pump sits below the 450 nm blue-hazard peak, so the RG0 exempt-group rating is easier to hold at the same lux; UV-A leakage beyond the die is filtered by the phosphor layer and measures below 2 µW/lm, which suits archival display. Flicker is a driver property, not a spectral one: on constant-current segments DENO measures Pst LM below 1.0 and SVM below 0.4, so the same board stays camera-safe.

Can a continuous-spectrum board be built waterproof or in long outdoor runs?

Yes. IP65 silicone coating, IP67 extrusion and IP68 filled builds are all available, and the phosphor blend is unaffected by the encapsulation because it sits under the LED lens. For long façade or landscape lines the 12 mm and 20 mm constant-current versions hold brightness across 10 m per feed, and 48V variants extend that further where trenching cost dominates.