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Cree XLamp XHP35 High Density LED Star

Cree XLamp XHP High Density LED Star
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Sale Price: $7.75
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PART #: CREEXHP35
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Product Details


Features

Cree's Top Platform: SC5 Silicone Carbide Technology Colors: Cool-White (6500K)
Max Drive Current: Up to 1050mA Wide Viewing Angle: 125°
Secondary Optics: Compatible with Carclo Optics Binned: White Binned @ 85°C
Thermal Resistance: Super Low at 1.8°C/W Max. Junction Temp.: 150°C
Compliant: RoHS, UL (E349212) XHP35 Emitter Size: 3.45mm X 3.45mm

 


Description

50 percent more light output than Cree’s previous highest-performing single-die LED!

The Cree XLamp® XHP35 LED brings the high performance of Cree's High Power LEDs to the XP footprint, yet again setting a new standard for performance delivered in a 3.45 x 3.45mm emitter. This upgrade is made possible by utilizing the breakthrough 12V monolithic power die built on Cree's innovative architecture and enabled by the SC5 Technology Platform. This high density emitter is optimized to enable new designs and lower system costs significantly.

1-up led star optic versus 3-up led star optic

LED Star MCPCB

We offer the XHP35 in our standard two metal core printed circuit board (MCPCB) versions: a single (1-Up: 1 LED) and triple (3-Up: 3 LEDs) MCPCB. The 1- Up is a single XHP35 LED reflow soldered to a 20mm hexagonal (LED Star) MCPCB. The board makes connecting power and multiple LEDs together easier by including four large solder pads for easy solder connections. The 3-Up version includes three (3) XHP35 LEDs reflow soldered in-series to a 20mm hexagonal MCPCB. The 3-Up board has two solder pads for connections, mounting holes for secondary carclo optics and a center hole for wires or securing the LED star to a heat sink. Take note that if you wish for the LEDs to be in parallel, you may request this, and we will remove the jumpers on the star so that each of the 3 LEDs is individually addressable. 

Colors

The XHP35 LED is offered here in Cool-White at a color temperature of 6500K.

1-up led star optic versus 3-up led star optic

Secondary Optics

The XHP35 is optimized to deliver maximum candela through secondary optics. Both versions (1-Up & 3-Up) of the XHP35  are designed to work with secondary optics from Carclo; Carclo is a leader in molded poly-carbonate lens systems. The 1-Up secondary lens system combines a plastic holder and lens that sits on top of the 1-Up MCPCB, while the 3- Up optic is a one-piece system with three legs that sit down into corresponding holes on the 3-Up MCPCB. These secondary optics focus light into narrow, medium, wide and elliptical patterns. More information is available on optics that are compatible with the XHP35 diode on this page under the Accessories tab above.

12V Monolithic Power Die + Cree's SC5 Technology Platform

The XHP35 LED Family is one of a kind! Unlike other existing high power LEDs, the XHP35 uses a new 12 volt monolithic power die. This die can deliver extremely high power performance at drive currents at or less than 1 Amp. This breakthrough is all made possible by Cree's SC5 Technology Platform which is built on Cree's industry-leading silicon carbide technology. This improved platform offers advances in chip architecture along with an advanced light conversion system optimized for best thermal and optical performance.

 


Technical Documentation

FLUX CHARACTERISTICS (TJ= 85° C)

Color CCT Range Base Order Codes
Min. Luminous Flux (lm) @ 350mA
Calculated Minimum
Luminous Flux (lm)
@ 85°C
Cree Order CodeLEDSupply Part #
Min.Typ. Max. GroupFlux (lm)
@ 85°C
Flux (lm)
@ 25°C
525mA 700mA 1050mA1-Up3-Up
Cool White 5000 K 6500 K 8300 K E4 635 717 1000 1300 1720 XHP35A-00-0000-0D00E40E1 CREEXHP35-765-1 CREEXHP35-765-3

 

Characteristics
Unit
Min.
Typical
Max.
Thermal Resistance, junction to solder point
°C/W
1.8
Viewing Angle (FWHM)
°Degree
125
Temperature coefficient of voltage
mV/°C
-8
ESD withstand voltage (HBM per Mil-Std-883D)
V
8000
DC Forward Current
mA
1050
Reverse Voltage
V
-5
Forward Voltage (@ 350 mA, 85°C)
V
11.3
11.9
LED Junction Temperature
°C
150

 


Full Documentation

 

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