DENO LED Lighting

Multi-Line Two-Row Large width LED LED Strip Light (#16702)

18mm · 24V · 320LEDs · 50mm/cut

Model: 16702

16702 wide pcb led strip — 24V, cuttable every 50mm, 18mm FPCB width, 2835 LEDs, 320 LEDs/m

Overview

18mm | 24V | 320LEDs | 50mm/cut | #16702 | Multi-Line Two-Row Large width LED LED Strip Light is part of the DENO Wide SMD Strips series, engineered around wide PCB LED strip. Key specifications: 2835, 320, DC 24V, 18 PCB, 3oz copper FPCB, cuttable 16LEDs/50mm. Every reel is produced on DENO's roll-to-roll line with 99.9% pure copper FPCB and ships CE, UL and RoHS compliant for architectural, retail and hospitality projects. OEM and ODM configurations of length, colour temperature and waterproofing are available on request.

Description

18mm | 24V | 320LEDs | 50mm/cut | #16702 | Multi-Line Two-Row Large width LED LED Strip Light This Large width LED light strip features a high-density 2-row 2835 LED design with a 18mm wide FPC, delivering excellent luminous uniformity and high brightness output. It is specifically designed to pair with large-sized aluminum profiles, ensuring efficient heat dissipation and soft, even lighting effects. Applications: retail displays, hospitality environments, hotel decor, office spaces, exhibition centers, and artistic venues.

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

Specifications

LED QTY320
PART NODL-F28A160V24-16702–*
SMD TYPE2835
CUTTABLE UNIT16LEDs/50mm
DIMMABLEYes
LED PITCH6.25mm
PCB WIDTH18
BEAM ANGLE120°
LENGTH MAX7m
COPPER FOIL3oz
CIRCUIT TYPEC.V.
INPUT VOLTAGEDC 24V
OPERATING TEMPERATURE-25~40°C;Tc:75°C(max)

Applications

  • Cove, wall-wash & perimeter lighting — Coves, recesses, wall-wash details and ceiling perimeters where a continuous, uniform line of light is required.
  • Showroom & hospitality display lighting — Shelving, display cases, reception desks and signage backlighting in shops, showrooms and hospitality spaces.
  • Kitchen & wardrobe under-cabinet lighting — Kitchen, wardrobe and furniture task lighting where the strip stays hidden and only the light is seen.

Request a quotation for #16702

DENO LED is a Shenzhen-based LED strip manufacturer with its own Foshan production base. Send the run length, voltage, CCT/CRI and IP rating you need and our engineering team replies with a specification sheet, wiring plan and price — OEM/ODM and fully custom builds included.

  • Warranty: 5 years
  • Compliance: CE · UL · RoHS
  • Bonding wire: 99.99% pure gold
  • Copper foil: 99.9% pure copper FPCB

Contact DENO LED engineers · OEM / ODM capability

Photometric Performance — CCT × CRI Efficacy Matrix

Peak measured luminous efficacy: 206.6 lm/W at 4000K, Ra 80, ErP energy class B (Grade DN (1st Tier) · 7.2W/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) · 7.2W/m

Grade DL (2nd Tier) · 7.2W/m — measured at 7.2 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 K150.4 lm/W1082.7 lm/mD120.6 lm/W868.1 lm/mE
2300 K167.5 lm/W1205.8 lm/mC134.3 lm/W967 lm/mE109.3 lm/W786.6 lm/mE
2700 K176.9 lm/W1273.7 lm/mC145.4 lm/W1046.6 lm/mD117.8 lm/W848 lm/mE
3000 K188.4 lm/W1356.7 lm/mB152.9 lm/W1101.1 lm/mD124.4 lm/W895.8 lm/mE
3500 K191.2 lm/W1376.8 lm/mB155.7 lm/W1121.2 lm/mD128.1 lm/W922.6 lm/mE
4000 K197.4 lm/W1421.2 lm/mB159.4 lm/W1148 lm/mD131.6 lm/W947.7 lm/mE
5000 K197.2 lm/W1419.5 lm/mB159.3 lm/W1147.2 lm/mD130.3 lm/W938.3 lm/mE
6500 K180.6 lm/W1300.5 lm/mC152.9 lm/W1101.1 lm/mD126.4 lm/W909.8 lm/mE

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 K147.9 lm/W1419.4 lm/mD118.6 lm/W1138.2 lm/mE
2300 K164.7 lm/W1580.9 lm/mC132.1 lm/W1267.8 lm/mE107.4 lm/W1031.3 lm/mE
2700 K173.9 lm/W1669.9 lm/mC142.9 lm/W1372.2 lm/mD115.8 lm/W1111.8 lm/mE
3000 K185.3 lm/W1778.7 lm/mB150.4 lm/W1443.6 lm/mD122.3 lm/W1174.4 lm/mE
3500 K188 lm/W1805 lm/mB153.1 lm/W1469.9 lm/mD126 lm/W1209.6 lm/mE
4000 K194.1 lm/W1863.3 lm/mB156.8 lm/W1505.1 lm/mD129.4 lm/W1242.5 lm/mE
5000 K193.9 lm/W1861.1 lm/mB156.7 lm/W1504 lm/mD128.1 lm/W1230.1 lm/mE
6500 K177.6 lm/W1705.1 lm/mC150.4 lm/W1443.6 lm/mD124.3 lm/W1192.8 lm/mE

Grade DL (2nd Tier) · 14.4W/m

Grade DL (2nd Tier) · 14.4W/m — measured at 14.4 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 K143 lm/W2058.5 lm/mD114.6 lm/W1650.6 lm/mE
2300 K159.2 lm/W2292.7 lm/mD127.7 lm/W1838.7 lm/mE103.9 lm/W1495.7 lm/mE
2700 K168.2 lm/W2421.8 lm/mC138.2 lm/W1990 lm/mD112 lm/W1612.4 lm/mE
3000 K179.1 lm/W2579.5 lm/mC145.4 lm/W2093.6 lm/mD118.3 lm/W1703.2 lm/mE
3500 K181.8 lm/W2617.8 lm/mC148 lm/W2131.8 lm/mD121.8 lm/W1754.2 lm/mE
4000 K187.7 lm/W2702.2 lm/mB151.6 lm/W2182.8 lm/mD125.1 lm/W1802 lm/mE
5000 K187.4 lm/W2699 lm/mB151.5 lm/W2181.2 lm/mD123.9 lm/W1784 lm/mE
6500 K171.7 lm/W2472.8 lm/mC145.4 lm/W2093.6 lm/mD120.1 lm/W1729.9 lm/mE

Grade DN (1st Tier) · 7.2W/m

Grade DN (1st Tier) · 7.2W/m — measured at 7.2 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 K161.9 lm/W1165.6 lm/mD136.4 lm/W982.1 lm/mE
2300 K176.6 lm/W1271.2 lm/mC152.2 lm/W1096.1 lm/mD122.4 lm/W881.2 lm/mD
2700 K190.3 lm/W1370.1 lm/mC164.7 lm/W1185.7 lm/mD133.5 lm/W961.2 lm/mE
3000 K199.8 lm/W1438.8 lm/mB173.9 lm/W1251.9 lm/mC141.4 lm/W1018.1 lm/mE
3500 K202.7 lm/W1459.7 lm/mB177.6 lm/W1278.7 lm/mC146.2 lm/W1052.5 lm/mD
4000 K206.6 lm/W1487.4 lm/mB178.7 lm/W1286.3 lm/mC147.5 lm/W1061.7 lm/mD
5000 K206.2 lm/W1484.9 lm/mB179.8 lm/W1294.7 lm/mC146 lm/W1051.1 lm/mD
6500 K197.7 lm/W1423.7 lm/mC171.8 lm/W1236.8 lm/mD141.6 lm/W1019.2 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 K159.2 lm/W1528.2 lm/mD134.1 lm/W1287.6 lm/mE
2300 K173.6 lm/W1666.6 lm/mC149.7 lm/W1437 lm/mD120.3 lm/W1155.3 lm/mE
2700 K187.1 lm/W1796.2 lm/mC161.9 lm/W1554.5 lm/mD131.3 lm/W1260.1 lm/mE
3000 K196.5 lm/W1886.3 lm/mC171 lm/W1641.3 lm/mD139 lm/W1334.8 lm/mE
3500 K199.4 lm/W1913.8 lm/mC174.6 lm/W1676.5 lm/mC143.7 lm/W1379.9 lm/mE
4000 K203.1 lm/W1950 lm/mB175.7 lm/W1686.4 lm/mC145 lm/W1391.9 lm/mE
5000 K202.8 lm/W1946.7 lm/mB176.8 lm/W1697.4 lm/mC143.5 lm/W1378 lm/mE
6500 K194.4 lm/W1866.5 lm/mC168.9 lm/W1621.6 lm/mD139.2 lm/W1336.3 lm/mE

Grade DN (1st Tier) · 14.4W/m

Grade DN (1st Tier) · 14.4W/m — measured at 14.4 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 K153.9 lm/W2216.3 lm/mD129.7 lm/W1867.3 lm/mE
2300 K167.8 lm/W2417 lm/mD144.7 lm/W2084 lm/mE116.4 lm/W1675.5 lm/mE
2700 K180.9 lm/W2605 lm/mC156.6 lm/W2254.5 lm/mD126.9 lm/W1827.5 lm/mE
3000 K190 lm/W2735.7 lm/mC165.3 lm/W2380.4 lm/mD134.4 lm/W1935.8 lm/mE
3500 K192.7 lm/W2775.5 lm/mC168.8 lm/W2431.4 lm/mD139 lm/W2001.2 lm/mE
4000 K196.4 lm/W2828.1 lm/mC169.8 lm/W2445.7 lm/mD140.2 lm/W2018.7 lm/mE
5000 K196.1 lm/W2823.3 lm/mC170.9 lm/W2461.6 lm/mD138.8 lm/W1998.5 lm/mE
6500 K188 lm/W2707 lm/mC163.3 lm/W2351.7 lm/mD134.6 lm/W1937.9 lm/mE

Grade KE (3rd Tier) · 7.2W/m

Grade KE (3rd Tier) · 7.2W/m — measured at 7.2 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 K126.7 lm/W912.5 lm/mE101.5 lm/W730.7 lm/mF
2300 K141.3 lm/W1017.3 lm/mD113.1 lm/W814.5 lm/mE92.5 lm/W666.3 lm/mE
2700 K152.3 lm/W1096.9 lm/mD122.7 lm/W883.2 lm/mE99.5 lm/W716.5 lm/mF
3000 K159.9 lm/W1151.4 lm/mD129.7 lm/W933.5 lm/mE105.4 lm/W759.2 lm/mF
3500 K162.4 lm/W1169 lm/mC132.2 lm/W951.9 lm/mE108.8 lm/W783.5 lm/mF
4000 K167.1 lm/W1203.3 lm/mC135 lm/W972 lm/mD111.5 lm/W802.8 lm/mE
5000 K166.9 lm/W1201.6 lm/mC135 lm/W972 lm/mD110.4 lm/W794.7 lm/mE
6500 K159.9 lm/W1151.4 lm/mD129.7 lm/W933.5 lm/mE107 lm/W770.7 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 K124.6 lm/W1196.4 lm/mE99.8 lm/W958 lm/mF
2300 K138.9 lm/W1333.7 lm/mD111.2 lm/W1067.9 lm/mE91 lm/W873.6 lm/mF
2700 K149.8 lm/W1438.1 lm/mD120.6 lm/W1157.9 lm/mE97.8 lm/W939.3 lm/mF
3000 K157.2 lm/W1509.5 lm/mD127.5 lm/W1223.9 lm/mE103.7 lm/W995.3 lm/mF
3500 K159.6 lm/W1532.6 lm/mD130 lm/W1248 lm/mE107 lm/W1027.2 lm/mF
4000 K164.3 lm/W1577.6 lm/mC132.7 lm/W1274.4 lm/mE109.6 lm/W1052.5 lm/mF
5000 K164.1 lm/W1575.4 lm/mC132.7 lm/W1274.4 lm/mE108.5 lm/W1041.9 lm/mF
6500 K157.2 lm/W1509.5 lm/mD127.5 lm/W1223.9 lm/mE105.2 lm/W1010.4 lm/mF

Grade KE (3rd Tier) · 14.4W/m

Grade KE (3rd Tier) · 14.4W/m — measured at 14.4 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 K120.5 lm/W1735.1 lm/mE96.5 lm/W1389.3 lm/mF
2300 K134.3 lm/W1934.2 lm/mE107.5 lm/W1548.7 lm/mF88 lm/W1266.9 lm/mF
2700 K144.8 lm/W2085.6 lm/mD116.6 lm/W1679.3 lm/mE94.6 lm/W1362.3 lm/mF
3000 K152 lm/W2189.2 lm/mD123.3 lm/W1774.9 lm/mE100.2 lm/W1443.5 lm/mF
3500 K154.3 lm/W2222.6 lm/mD125.7 lm/W1810 lm/mE103.5 lm/W1489.7 lm/mF
4000 K158.9 lm/W2288 lm/mD128.3 lm/W1848.2 lm/mE106 lm/W1526.4 lm/mF
5000 K158.7 lm/W2284.8 lm/mD128.3 lm/W1848.2 lm/mE104.9 lm/W1511.1 lm/mF
6500 K152 lm/W2189.2 lm/mD123.3 lm/W1774.9 lm/mE101.8 lm/W1465.3 lm/mF

Related models in this series

See every model in SMD LED Strip Series or narrow to Wide. Compare wattage, lumen output and run length in the ProCalc parameter library, or request OEM/ODM pricing on the custom manufacturing page.

Frequently Asked Questions

What are the key specifications of 16702?

16702: 2835, 320, DC 24V, 18 PCB, 3oz copper FPCB, cuttable 16LEDs/50mm. Full photometric data, wiring diagrams and test reports are available in the downloads section of this page.

How long can a single run of this wide PCB LED strip be?

Maximum single run for this model is 7m. Feeding from both ends or using a mid-point tap halves the effective distance per segment, so a wide PCB LED strip can cover twice that length on one circuit when wired accordingly.

Can DENO customise this wide PCB LED strip for a project?

Yes. DENO manufactures the Wide SMD Strips series as an OEM and ODM supplier: reel length, colour temperature, CRI grade, PCB width, waterproofing and private labelling can all be specified. Request a quote for lead time and project pricing.

How many LEDs per metre does a dotless LED strip need?

Visible dots depend on LED pitch, diffuser distance and transmittance. Above roughly 480 LEDs/m most diffusers give a continuous line at 10 mm depth, and the 700 LEDs/m high density LED strip stays dot free even behind a shallow, highly transmissive lens.

Why use a wide LED strip PCB?

A 15 or 20 mm LED strip gives more copper area, so it dissipates heat better and carries more current. That is what allows high power builds above 25 W/m to run cooler, keep lumen maintenance high and support longer single feeds than a narrow board.

How much can a high efficacy LED strip cut energy use?

Moving from a typical 100 lm/W strip to a 180 to 200 lm/W high lumen LED strip roughly halves the wattage needed for the same lumen output. Over a long commercial run this also lowers the required driver size and helps the installation reach a better ErP energy class.

High Density LED Strip — Buyer Questions

What counts as a high density LED strip?

Anything above roughly 120 LEDs per metre is normally sold as a high density LED strip. DENO builds high-density boards from 240 up to 700 LEDs/m, which puts the LED pitch between 4.2 mm and 1.4 mm — tight enough to read as a continuous line behind a shallow diffuser instead of a row of dots.

Is a 24V high density LED strip better than 12V?

For dense boards, yes in most cases. A 24V high density LED strip draws half the current of a 12V board at the same wattage, so voltage drop is far lower and single runs of 5–10 m stay even in brightness. DENO supplies 12V, 24V, 48V and mains-voltage versions of the same high-density layout; 12V is normally reserved for short cabinet runs or low-voltage furniture requirements.

Do you make a 5V high density LED strip?

Yes. 5V dense LED tape is built for USB-powered displays, shelving and addressable pixel projects where the controller is 5V-native. Because 5V boards lose voltage quickly, DENO limits standard runs to 1–2 m per feed, uses 2 oz or 35+70 μm copper, and adds per-segment constant-current ICs so the far end does not dim.

Can a high density RGB LED strip stay dot-free?

It can, but the pitch has to be tighter than a white board because each RGB package mixes three separate dies. DENO's high density RGB and RGBW builds place emitters at 2.1 mm–4.2 mm pitch so colour mixing completes within a few millimetres of the diffuser, which removes both the dot pattern and the rainbow fringing seen on standard 60 LEDs/m RGB tape.

What is a high density addressable LED strip used for?

High density addressable LED strip (pixel tape) is used for signage, media facades, stair effects and studio lighting where each LED or short segment must be controlled individually. DENO offers addressable builds with up to 700 pixels per metre in SPI protocols such as WS2812B, WS2815 and SK6812, with breakout points every cut unit for reliable data injection on long runs.

What makes the best high density LED strip lights?

Density alone is not enough. The best high density LED strip lights combine tight LED pitch with a 3-SDCM binning window, Ra 90+ (Ra 95+ for full-spectrum), 2 oz or heavier copper for thermal spreading, flicker-free constant-current drive and an FPCB rated for repeated bending. DENO ships photometric data, LM-80 chip data and a full test report with every OEM order so specifiers can verify these claims instead of trusting a datasheet number.

Can I order a custom high density LED strip?

Yes — LED count, pitch, CCT, CRI, PCB width from 3 mm, copper weight, cut unit and IP rating are all configurable on a custom high density LED strip. DENO is a manufacturer, not a reseller, so a non-standard density or a mixed-CCT dense board can be tooled from an existing FPCB stack-up without a new production line.

Is high density LED tape the same as a high density LED strip?

They are the same product under two names: “high density led tape” is the common UK/EU term for what North America calls a high density LED strip. DENO ships the identical dense FPCB boards to both markets — 240 to 700 LEDs/m, 3 mm to 12 mm widths, CE/UL/RoHS documentation — so the tape you specify in a UK cove detail is the same board as the strip specified in a US one.

Which dense LED tape suits under-cabinet lighting?

For under-cabinet work choose a dense board at 240–420 LEDs/m in a 5 mm to 8 mm width, 12V or 24V, with a short cut unit so the board matches each cabinet run exactly. At that density a 10 mm deep aluminium channel with a frosted diffuser already reads dot-free at normal worktop viewing distance.

What power supply do I need for a dense LED strip run?

Size the driver from the board wattage: multiply the W/m figure on the datasheet by the run length, then add 20–30 % headroom, so a 20 W/m board over 5 m needs a 100 W load on a 120–130 W constant-voltage driver. Match the driver voltage exactly (24V board, 24V driver), keep it constant-voltage rather than constant-current unless the board carries its own CC ICs, and check that the dimming protocol — TRIAC, 0–10V, DALI or PWM — is supported on both sides before ordering.

Does more LEDs per metre mean a brighter strip?

Not on its own. Brightness is lumens per metre, which is drive current times die count times efficacy — doubling the LED count while halving the current per die gives the same output with a smoother line, not twice the light. Read lm/m and W/m together: DENO dense boards run 8–24 W/m and 700–2600 lm/m, so pick the density for dot-free appearance and the wattage for the light level you actually need.

Can dense LED tape run on 36V or 48V supplies?

Yes. 36V and 48V builds exist specifically for long uninterrupted runs: at 48V the same wattage draws a quarter of the current of a 12V board, so a single feed can cover 15–20 m with even brightness and far fewer injection points. They need a matching SELV driver and, in most territories, the same low-voltage installation rules as 24V; DENO supplies 36V and 48V versions of the standard dense layouts on request.

High Efficiency LED Strip — Buyer Questions

Does a high efficiency LED strip run cooler and last longer?

Yes. Fewer watts per lumen means less heat into the FPCB, so junction temperature drops and L70 lifetime extends. Combined with 2 oz copper and a 99.9% pure copper foil the same brightness can be produced at 20-30% lower wattage, which also lets a single driver feed a longer run and keeps aluminium profiles below the touch-temperature limits used in hospitality projects.

How much energy does a high efficiency LED strip save on a large project?

Take 500 m of cove lighting at 10 hours a day. A 130 lm/W board delivering 1000 lm/m draws about 7.7 W/m; a 190 lm/W board delivers the same output at about 5.3 W/m. Across 500 m that is 1.2 kW saved, roughly 4,380 kWh a year, and it usually removes one driver and one circuit from the electrical schedule as well.

Can I get a high efficiency LED strip in 12V, 24V, 36V or 48V?

24V is the efficiency sweet spot and carries the full binned range. 12V is available where fixture space or existing drivers dictate it, at the cost of shorter single-feed runs. 36V and 48V constant-current boards keep the same lm/W while extending a single feed well past 20 m, which is where the real system efficiency gain shows up on long architectural lines.