
460nm+660nm+1064nm
460nm LED / 660nm VCSEL / 1064nm VCSEL SMD 3227
460nm LED / 660nm VCSEL / 1064nm VCSEL 3227 SMD for independently driven multi-wavelength OEM optical-system integration and custom evaluation support.
Specifications
- Product Type
- Three-Channel LED + VCSEL SMD
- Wavelength Channels
- 460nm LED; 660nm VCSEL; 1064nm VCSEL
- Optical Output Power
- 460nm LED: 400-1000mcd (test current not stated); 660nm VCSEL: 4-6mW (IF=15mA); 1064nm VCSEL: 15-20mW (IF=25mA)
- Emitter Configuration
- One 460nm LED channel, one 660nm VCSEL channel and one 1064nm VCSEL channel
- Operating Mode
- Continuous-wave (CW), source table at 25°C
- Optical Emission Profile
- Refer to the supplied datasheet; no emission-angle value is listed in the supplied source table
- SMD Package Options
- 3227 SMD package
1. 460nm LED / 660nm VCSEL / 1064nm VCSEL SMD 3227 for Custom Optical-System Development
This 3227 SMD combines a 460nm LED channel, a 660nm VCSEL channel and a 1064nm VCSEL channel for compact, independently driven multi-wavelength optical-source development. It is a component-level emitter configuration for OEM integration, not a finished optical system.
The three source channels use different optical measurement bases and test conditions. Evaluate channel drive, optical coupling, thermal conditions and the completed optical architecture as a system-specific engineering task.
2. Multi-Wavelength Optical Output and Operating Conditions
In the supplied source table, the 660nm VCSEL channel is specified at 4-6mW with IF=15mA across 655-670nm, and the 1064nm VCSEL channel is specified at 15-20mW with IF=25mA across 1054-1074nm. The 460nm LED channel is specified at 400-1000mcd; the supplied table does not state its test current.
These source-stated values apply to the supplied CW and 25°C table conditions. They should not be converted into a system-level output, detection or application-performance claim.
3. Package, Driver, PCB and Thermal Integration
The source identifies a 3227 SMD configuration and separately lists 660nm VCSEL anode/cathode pins 2/6, 460nm LED pins 3/7 and 1064nm VCSEL pins 4/8. This supports channel-level driver planning and PCB routing review.
Final driver design, channel sequencing, ESD protection, thermal path and optical coupling must be validated for the completed assembly.
4. System-Level Optical, Safety and Custom Configuration Evaluation
Use this three-channel LED and VCSEL SMD where an OEM project requires a source-bounded 460nm, 660nm and 1064nm channel combination with independently addressed electrical connections. Provide the target optical path, operating sequence, PCB constraints and integration conditions for engineering review.
5. Evaluation, Documentation and Custom Development Support
This 460nm LED / 660nm VCSEL / 1064nm VCSEL SMD 3227 is available as an Evaluation Kit with 10 pcs / KIT for early-stage review of channel drive, PCB routing, optical coupling and system integration.
For component-level project evaluation, an Initial Product Report covering the Laser Diode Series and VCSEL Laser Diode Chip Series has been filed with the U.S. FDA CDRH. This filing supports technical documentation and product evaluation.
For applicable products, CE, EMC, EN 60825, LVD, RoHS, REACH and halogen-free certification and compliance documents are available. Documentation depends on the corresponding product model and does not represent certification of the customer's finished device.
6. Frequently Asked Questions
Are all three channels lasers?
No. The supplied configuration contains one 460nm LED channel and two VCSEL channels at 660nm and 1064nm. The channel type and its stated test conditions should be preserved during system evaluation.
What output values are stated for the VCSEL channels?
The supplied source table states 4-6mW for the 660nm VCSEL at IF=15mA and 15-20mW for the 1064nm VCSEL at IF=25mA, under the supplied CW and 25°C table conditions.
Does the supplied source table state a 460nm LED test current?
No. It lists the 460nm LED at 400-1000mcd but does not state a test current in the supplied table. Confirm the applicable drive condition during engineering evaluation.
