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MX6SWT-H1-0000-000BE6 Equivalent & Substitute Parts
Part Overview
The MX6SWT-H1-0000-000BE6 is an XLamp® MX-6S warm white LED (3500K) designed for surface mount applications. This part operates at 20V forward voltage with a test current of 60mA, delivering 97 lumens at 25°C with a color rendering index of 80. The component features a 120° viewing angle and is housed in a 2-SMD gull wing package measuring 5.00mm × 5.00mm.
The MX6SWT-H1-0000-000BE6 is classified as obsolete. Identifying equivalent substitute parts is necessary to maintain design continuity and ensure component availability for production and maintenance applications.
Substiute Parts
Key Parameters
| Parameter | Value |
|---|---|
| Color / CCT | White, Warm / 3500K |
| Voltage - Forward (Vf) (Typ) | 20V |
| Current - Test | 60mA |
| Flux @ 25°C, Current - Test | 97lm (94lm ~ 100lm) |
| Lumens/Watt @ Current - Test | 81 lm/W |
| CRI (Color Rendering Index) | 80 |
| Viewing Angle | 120° |
| Package / Case | 2-SMD, Gull Wing |
| Size / Dimension | 5.00mm × 5.00mm |
| Height - Seated (Max) | 1.48mm |
| Thermal Resistance of Package | 5°C/W |
| Moisture Sensitivity Level (MSL) | 2A (4 Weeks) |
Substitute Part Grouping Explanation
The MX6AWT-H1-0000-000BE6 is identified as an equivalent substitute based on the following criteria:
Matching Parameters:
- Color and CCT: Both parts are warm white LEDs at 3500K
- Flux output: Both deliver 97 lumens at 25°C (94lm ~ 100lm range)
- CRI: Both maintain a color rendering index of 80
- Viewing angle: Both provide 120° viewing angle
- Package footprint: Both use 2-SMD gull wing configuration with identical 5.00mm × 5.00mm dimensions
- Height: Both have maximum seated height of 1.48mm
- Thermal resistance: Both specify 5°C/W package thermal resistance
- Moisture sensitivity: Both rated at MSL 2A (4 Weeks)
Differing Parameters: The substitute part operates at 3.3V forward voltage with a 300mA test current, compared to the main part's 20V and 60mA specifications. The substitute achieves 98 lm/W efficiency versus 81 lm/W for the main part. The substitute is classified as active product status with RoHS compliance, whereas the main part is obsolete.
Parameter Comparison
| Parameter | MX6SWT-H1-0000-000BE6 | MX6AWT-H1-0000-000BE6 |
|---|---|---|
| Manufacturer | CreeLED, Inc. | CreeLED, Inc. |
| Series | XLamp® MX-6S | XLamp® MX-6 |
| Product Status | Obsolete | Active |
| Color / CCT | White, Warm / 3500K | White, Warm / 3500K |
| Voltage - Forward (Vf) (Typ) | 20V | 3.3V |
| Current - Test | 60mA | 300mA |
| Flux @ 25°C, Current - Test | 97lm (94lm ~ 100lm) | 97lm (94lm ~ 100lm) |
| Lumens/Watt @ Current - Test | 81 lm/W | 98 lm/W |
| CRI (Color Rendering Index) | 80 | 80 |
| Current - Max | 175mA | 1A |
| Viewing Angle | 120° | 120° |
| Package / Case | 2-SMD, Gull Wing | 2-SMD, Gull Wing Exposed Pad |
| Size / Dimension | 5.00mm × 5.00mm | 5.00mm × 5.00mm |
| Height - Seated (Max) | 1.48mm | 1.48mm |
| Thermal Resistance of Package | 5°C/W | 5°C/W |
| Moisture Sensitivity Level (MSL) | 2A (4 Weeks) | 2A (4 Weeks) |
| RoHS Status | Not specified | RoHS Compliant |
| REACH Status | REACH Unaffected | REACH Unaffected |
| ECCN | EAR99 | EAR99 |
| HTSUS | 8541.41.0000 | 8541.41.0000 |
Engineering Selection Recommendations
The MX6AWT-H1-0000-000BE6 is the identified substitute for the obsolete MX6SWT-H1-0000-000BE6. Both parts share identical photometric output (97 lumens at 25°C), color temperature (3500K), color rendering index (80), and mechanical dimensions (5.00mm × 5.00mm, 1.48mm height).
The substitute part is classified as active product status, ensuring ongoing availability and supply chain continuity. The MX6AWT-H1-0000-000BE6 carries RoHS compliance certification, whereas the main part does not specify RoHS status. Both parts maintain REACH unaffected status and EAR99 export classification.
Circuit design modifications are required when substituting these parts. The main part operates at 20V with 60mA test current, while the substitute operates at 3.3V with 300mA test current. Power supply voltage and current limiting circuitry must be adjusted accordingly. The substitute achieves higher luminous efficacy (98 lm/W versus 81 lm/W), resulting in improved energy efficiency at equivalent light output.
Both parts feature identical thermal resistance (5°C/W) and moisture sensitivity level (MSL 2A, 4 Weeks), ensuring compatible thermal management and handling requirements.
Frequently Asked Questions (FAQ)
Q: Can the MX6AWT-H1-0000-000BE6 be used as a direct drop-in replacement for the MX6SWT-H1-0000-000BE6?
A: No. While both parts deliver identical photometric output and share the same mechanical footprint, they operate at different voltage and current levels. The main part requires 20V at 60mA, while the substitute requires 3.3V at 300mA. Circuit redesign is necessary to accommodate these electrical differences.
Q: What are the key parameters that determine substitution compatibility?
A: Substitution compatibility is determined by color temperature (3500K), luminous flux (97 lumens at 25°C), color rendering index (80), viewing angle (120°), package type (2-SMD gull wing), and physical dimensions (5.00mm × 5.00mm). Both parts meet these criteria.
Q: Does the substitute part have better performance characteristics?
A: The substitute part achieves higher luminous efficacy at 98 lm/W compared to 81 lm/W for the main part, indicating improved energy efficiency. Both parts deliver the same light output at their respective test currents.
Q: Are there compliance differences between the two parts?
A: The substitute part carries RoHS compliance certification. The main part does not specify RoHS status. Both parts maintain REACH unaffected status and EAR99 export classification.
Q: What packaging format is available for the substitute part?
A: The MX6AWT-H1-0000-000BE6 is supplied in Tape & Reel (TR) packaging. The main part packaging format is not specified in the provided data.
Q: Are the thermal and moisture handling requirements identical?
A: Yes. Both parts specify identical thermal resistance (5°C/W) and moisture sensitivity level (MSL 2A, 4 Weeks), ensuring compatible thermal management and storage handling procedures.
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