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XPGBWT-H1-0000-00CE7 Equivalent & Substitute Parts
Part Overview
The XPGBWT-H1-0000-00CE7 is an XLamp® XP-G2 warm white LED from CreeLED, Inc., rated at 3000K color temperature with 2.72V forward voltage and 350mA test current. This surface mount LED is designed for general illumination applications requiring warm white light output. The part is currently active in production with full RoHS compliance and REACH unaffected status. Substitute parts may be required due to inventory availability, specific color temperature requirements, or application-driven performance needs while maintaining electrical and mechanical compatibility.
Substiute Parts
Key Parameters
| Parameter | Value |
|---|---|
| Manufacturer | CreeLED, Inc. |
| Series | XLamp® XP-G2 |
| Color Temperature (CCT) | 3000K |
| Forward Voltage (Vf) | 2.72V (Typical) |
| Test Current | 350mA |
| Maximum Current | 1.5A |
| Flux @ 85°C | 104lm (100-107lm range) |
| Lumens/Watt @ Test Current | 109 lm/W |
| CRI (Color Rendering Index) | 80 |
| Viewing Angle | 115° |
| Package / Case | 1414 (3535 Metric) |
| Mounting Type | Surface Mount |
| Size / Dimension | 0.136" L x 0.136" W (3.45mm x 3.45mm) |
| Height - Seated (Max) | 0.094" (2.39mm) |
| Thermal Resistance | 4°C/W |
| Packaging | Tape & Reel (TR) |
| RoHS Status | RoHS Compliant |
| REACH Status | REACH Unaffected |
Substitute Part Grouping Explanation
Substitution eligibility for the XPGBWT-H1-0000-00CE7 is determined by the following critical parameters:
Electrical Compatibility Requirements:
- Forward voltage (Vf): 2.72V (Typical)
- Test current: 350mA
- Maximum current: 1.5A
- Lumens/Watt efficiency: 109 lm/W
Mechanical Compatibility Requirements:
- Package / Case: 1414 (3535 Metric)
- Mounting Type: Surface Mount
- Size / Dimension: 0.136" L x 0.136" W (3.45mm x 3.45mm)
- Height - Seated (Max): 0.094" (2.39mm)
- Thermal Resistance: 4°C/W
Optical & Performance Requirements:
- Series: XLamp® XP-G2
- Color: White, Warm
- CRI (Color Rendering Index): 80
- Viewing Angle: 115°
- Flux @ 85°C, Current - Test: 104lm (100-107lm range)
Compliance Requirements:
- RoHS Status: RoHS Compliant
- REACH Status: REACH Unaffected
- Manufacturer: CreeLED, Inc.
Substitute parts must maintain identical electrical characteristics, mechanical footprint, and compliance certifications. Variations in color temperature (CCT) are permissible within the XLamp® XP-G2 warm white product line when all other parameters remain constant.
Parameter Comparison
| Parameter | XPGBWT-H1-0000-00CE7 (Main) | XPGBWT-H1-0000-00CZ8 (Substitute) |
|---|---|---|
| Manufacturer | CreeLED, Inc. | CreeLED, Inc. |
| Series | XLamp® XP-G2 | XLamp® XP-G2 |
| Color Temperature (CCT) | 3000K | 2700K |
| Forward Voltage (Vf) | 2.72V (Typical) | 2.72V (Typical) |
| Test Current | 350mA | 350mA |
| Maximum Current | 1.5A | 1.5A |
| Flux @ 85°C | 104lm (100-107lm) | 104lm (100-107lm) |
| Lumens/Watt @ Test Current | 109 lm/W | 109 lm/W |
| CRI (Color Rendering Index) | 80 | 80 |
| Viewing Angle | 115° | 115° |
| Package / Case | 1414 (3535 Metric) | 1414 (3535 Metric) |
| Mounting Type | Surface Mount | Surface Mount |
| Size / Dimension | 0.136" L x 0.136" W (3.45mm x 3.45mm) | 0.136" L x 0.136" W (3.45mm x 3.45mm) |
| Height - Seated (Max) | 0.094" (2.39mm) | 0.094" (2.39mm) |
| Thermal Resistance | 4°C/W | 4°C/W |
| Packaging | Tape & Reel (TR) | Tape & Reel (TR) |
| Product Status | Active | Active |
| RoHS Status | RoHS Compliant | RoHS Compliant |
| REACH Status | REACH Unaffected | REACH Unaffected |
Engineering Selection Recommendations
Both the XPGBWT-H1-0000-00CE7 and XPGBWT-H1-0000-00CZ8 are active production parts from CreeLED, Inc., with full RoHS compliance and REACH unaffected status. The parts are electrically and mechanically identical, with the primary distinction being color temperature: 3000K versus 2700K. Selection between these parts depends on application-specific color temperature requirements. Both parts maintain identical forward voltage, test current, maximum current, luminous flux, efficiency, CRI, viewing angle, and thermal characteristics. The mechanical footprint and surface mount package are identical, ensuring direct substitution capability at the PCB assembly level. Compliance certifications are equivalent across both parts.
Frequently Asked Questions (FAQ)
Q: Can XPGBWT-H1-0000-00CZ8 be used as a direct replacement for XPGBWT-H1-0000-00CE7?
A: Yes, XPGBWT-H1-0000-00CZ8 is a direct electrical and mechanical substitute. The primary difference is color temperature: XPGBWT-H1-0000-00CE7 operates at 3000K while XPGBWT-H1-0000-00CZ8 operates at 2700K. All electrical parameters, mechanical dimensions, thermal characteristics, and compliance certifications are identical. Selection depends on whether your application requires 3000K or 2700K warm white light output.
Q: Are the forward voltage and current ratings identical between these parts?
A: Yes. Both parts have a typical forward voltage of 2.72V, test current of 350mA, and maximum current of 1.5A. They deliver identical luminous flux of 104lm at 85°C and maintain the same 109 lm/W efficiency at test current.
Q: Do these parts have the same mechanical footprint?
A: Yes. Both parts use the 1414 (3535 Metric) surface mount package with identical dimensions of 0.136" L x 0.136" W (3.45mm x 3.45mm) and maximum seated height of 0.094" (2.39mm). They are packaged in Tape & Reel format and have identical thermal resistance of 4°C/W.
Q: Are both parts RoHS compliant?
A: Yes. Both XPGBWT-H1-0000-00CE7 and XPGBWT-H1-0000-00CZ8 are RoHS compliant and REACH unaffected. Compliance certifications are equivalent.
Q: What is the difference in color rendering between 3000K and 2700K?
A: Both parts maintain a CRI (Color Rendering Index) of 80. The difference is in correlated color temperature: 3000K produces a slightly warmer appearance than 2700K. Both are classified as warm white light suitable for general illumination applications.
Q: Can these parts be used interchangeably in existing designs?
A: Electrical and mechanical interchangeability is complete. However, the color temperature difference (3000K versus 2700K) may produce a perceptible visual difference in the final application. Verify that your application can accommodate the specific color temperature of the substitute part before implementation.
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