EB H11 LEDr Review: Construction, Beam Pattern, Illuminance, Temperature and Noise

This article records the packaging, construction, optical performance, temperature and operating noise of one EB H11 LEDr sample under the stated bench conditions.

Test conditions

Illuminance was recorded at the defined E-Mark measurement-panel points at a distance of 3.5 m. The lamp operated at 13.2 V in a 26 degrees C room and was warmed for 30 minutes before the illuminance readings were taken. Emitting-area surface temperature was recorded after 20 minutes. Operating noise was measured 3.5 cm from the fan.

What this review found

The review follows the product from the outside in: packaging and included parts, the H11 interface and lamp structure, the opposing LED emitting surfaces, the Box system, beam pattern, illuminance distribution, temperature and operating noise.

The package uses environmentally responsible materials made to the latest EU PPWR requirements and retains an integrated hanging tab for retail display.

The lamp uses an H11-specific PGJ19-2 keyed base. A metal clamping spring presses the lamp into the V support, stabilising its axial and rotational position so the opposing LED emitting surfaces sit in the correct optical position.

The two opposing LED emitting surfaces are 1.154 mm apart. This is not chip thickness. With the same emitting area and brightness, a smaller separation concentrates the light more tightly and produces higher illuminance.

Recorded illuminance was 1,646 lux at 50R and 1,131 lux at 75R. The rainbow-map hotspot was concentrated in the central-right area. EMAX was 1,741 lux and B50L was 34.4 lux.

After 20 minutes, the emitting-area surface temperature was 67.3 degrees C. Operating noise was 54.6 dBA at 3.5 cm from the fan.

Packaging and included parts

The package is marked H11 LEDr, 12 V and 15 W. One set contains two lamps, two external drivers and an accessory bag. The box measures 118 x 55 x 120 mm and the empty package weighs 51 g.

The packaging uses recyclable, low-impact materials and retains an integrated hanging tab for supermarket and automotive retail hanging racks.

EB H11 LEDr package and included contents
Package and included contents supplied with the reviewed EB H11 LEDr.
External package dimensions of the EB H11 LEDr: 118 x 55 x 120 mm
External package dimensions: 118 x 55 x 120 mm.
Empty-package weight of the EB H11 LEDr: 51 g
Empty-package weight: 51 g.

H11-specific PGJ19-2 interface and lamp construction

The lamp uses an H11 interface and a dedicated PGJ19-2 keyed base, with an orange waterproof sealing ring, metal clamping spring, aluminium heat sink and rear cooling fan. IEC lamp-base specifications,define PGJ19-2 for H11, including defined locating keys and keyed interface geometry.

Some H11 LED products use a generic base. A generic base may physically fit, but it does not comply with the specified H11 keyed interface structure.The related ECE R37 background explains why the specified interface and reference geometry matter.

EB H11 LEDr H11-specific PGJ19-2 interface and lamp constructio
EB H11 LEDr lamp and external driver. The lamp marking is E8 0106 and the driver marking is E8 10R-0617720.
EB H11 LEDr H11-specific PGJ19-2 interface
H11-specific PGJ19-2 interface.
EB H11 LEDr keyed PGJ19-2 base with the large metal locating spring oriented at the top
H11-specific keyed PGJ19-2 base with the large metal locating spring facing upward
Outer-diameter measurement of the EB H11 LEDr base locating section with the digital caliper reading oriented for normal reading
Outer diameter of the base installation and locating section.
Metal clamping spring on the EB H11 LEDr base
Metal clamping spring on the base.

The H11 mounting opening includes assembly clearance, so the lamp is not positioned by the wall of the opening alone. The metal spring presses the lamp into the V support. Once clamped, it stabilises the axial and rotational position of the lamp and places the opposing LED emitting surfaces in the correct optical position.

Opposing LED emitting surfaces: 1.154 mm separation

The 1.154 mm measurement is not chip thickness. One lamp has two opposing LED emitting sides, and the measurement is the distance between the two LED emitting surfaces.

With the same emitting area and brightness, a smaller separation concentrates the light more tightly and produces higher illuminance. A larger separation allows the light to spread.

R.E.5 H11 LEDr Configuration-2 specifies that distance z between the opposing emitting surfaces must not exceed 2.9 mm. The measured separation on this lamp was 1.154 mm.

Close-up of one EB H11 LEDr emitting surface
Close-up of one LED emitting surface.
Micrometer measurement of the 1.154 mm separation between opposing EB H11 LEDr emitting surfaces
Distance between the two opposing LED emitting surfaces: 1.154 mm.

Core inspection: Box system emitting area

The Box system is a core H11 LEDr construction check. It confirms the position of the LED emitting area relative to the reference axis and reference plane.

Valid emission must remain within the combined A, B1, B2, B3 and C boundaries. Emission outside the specified boundaries is non-compliant.

The lower D area is the glare-control zone. Light entering the D zone, or a reflective object present in the D zone, can create glare directed toward oncoming drivers.

In the illuminated EB image, the emitting area remains within the A, B and C framework while the D zone remains dark.

R.E.5 requires at least 90% of the luminous flux in the total box area, at least 72% in area B, no more than 10% in area A, and no more than 22% in area C.

EB H11 LEDr Box system reference-frame check
EB H11 LEDr Box system reference-frame check.
EB H11 LEDr Box system with the emitting area illuminated
EB H11 LEDr Box system with the emitting area illuminated.

White-wall beam pattern

The white-wall image shows a brighter central-right area and lower illuminance on the left. The overall direction matches a low-beam pattern that places more light on the right side for right-hand traffic.

EB H11 LEDr white-wall low-beam pattern
White-wall low-beam pattern produced by the reviewed EB H11 LEDr.

Rainbow map and hotspot distribution

The red area in the rainbow map is the strongest illuminance hotspot. The hotspot is concentrated in the central-right area. This distribution matches a right-hand-traffic beam pattern and is consistent with the 50R and 75R readings.

The rainbow colours show where the light is concentrated. Under the applicable beam pattern, the light should be concentrated around 75R or 50R.

EB H11 LEDr rainbow map showing the central-right hotspot and illuminance distribution
Rainbow map showing the central-right hotspot and illuminance distribution of the reviewed EB H11 LEDr.

Complete nine-point illuminance results

EB H11 LEDr E-Mark measurement-panel composite showing the recorded illuminance points
E-Mark measurement-panel composite showing the recorded illuminance points.
PointMeasured illuminanceReading area
25L278 luxLeft-side point
50L402.3 luxLeft-side point
B50L34.4 luxGlare-control point
50V1,085 luxCentre point
25V1,006 luxCentre point
75R1,131 luxRight-side point
50R1,646 luxRight-side point
25R422.3 luxRight-side point
EMAX1,741 luxPeak reference

The nine-point results recorded 1,646 lux at 50R and 1,131 lux at 75R. The rainbow-map hotspot was also concentrated in the central-right area. 50R and 75R are standard measurement-panel point names.

B50L is related to glare control. Lower is better. The recorded B50L value was 34.4 lux.

EMAX was 1,741 lux and is the peak reference. It does not replace the complete nine-point table or the beam images.

Temperature and operating noise

After 20 minutes, the thermal image recorded a maximum emitting-area surface temperature of 67.3 degrees C. The reference point shown in the image was 34.8 degrees C. The 67.3 degrees C reading is the emitting-area surface temperature; chip junction temperature was not measured.

Operating noise was 54.6 dBA at a distance of 3.5 cm from the fan. This is a close-range bench reading. Installed perception depends on enclosure, distance and vehicle background noise.

EB H11 LEDr emitting-area surface temperature after 20 minutes
Emitting-area surface temperature after 20 minutes: 67.3 degrees C.
EB H11 LEDr operating noise at 3.5 cm from the fan
Operating noise at 3.5 cm from the fan: 54.6 dBA.

Keep this section factual. Do not convert the temperature into a lifespan claim.

EB H11 LEDr FAQ

EMAX was 1,741 lux. It is the peak reference; the complete nine-point table and beam images show the full distribution.

B50L is related to glare control. Lower is better. The recorded value was 34.4 lux.

It is not chip thickness. It is the distance between the two opposing LED emitting surfaces. With the same emitting area and brightness, a smaller separation concentrates the light more tightly and produces higher illuminance.

The emitting-area surface temperature was 67.3 degrees C after 20 minutes. Operating noise was 54.6 dBA at 3.5 cm from the fan.

The lamp marking is E8 0106 and the driver marking is E8 10R-0617720.