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BXEB-L0560Z-40S2000-C-C3

BXEB-L0560Z-40S2000-C-C3

  • 厂商:

    BRIDGELUX

  • 封装:

  • 描述:

  • 详情介绍
  • 数据手册
  • 价格&库存
BXEB-L0560Z-40S2000-C-C3 数据手册
Bridgelux EB Series™ Gen 3 Thrive ® Product Data Sheet DS133 Lengths: 280mm, 560mm, 1120mm CRI: 98 Thrive CCTs: 2700K, 3000K, 3500K, 4000K, 5000K, 5700K, 6500K Product Feature Map Bridgelux EB Series Thrive modules are fully engineered devices that provide consistent thermal and optical performance on an engineered mechanical platform. The linear products incorporate several features to simplify design integration and assembly. Please visit www.bridgelux.com for more information on the EB Series family of products. Multiple case temperature measurement points Label containing part number and lot codes is attached on the front of the module where shown Re-usable connector Designed to comply with global safety standards for creepage and clearance distances Zhaga compatible mounting holes Product Nomenclature The part number designation for Bridgelux EB Series Gen 3 Thrive is explained as follows: 1 2 3 4 - 5 6 7 8 9 10 - 11 12 13 14 15 16 - 17 – 18 BXEB – L0280Z – 30 S 2000 – C – C3 Product Family Nominal Dimensions L= Linear 0280 = 280 mm 0560 = 560 mm 1120 = 1120 mm Z= Zhaga compatible width (24 mm) Module Version C = Gen 3 3 = 3 SDCM Module Configuration Nominal CCT 27 = 2700K 30 = 3000K 35 = 3500K 40 = 4000K 50 = 5000K 57 = 5700K 65 = 6500K CRI S = 98 (Thrive) Flux Indicator 1000 = 1000 lm 2000 = 2000 lm 4000 = 4000 lm 2 Product Selection Guide Table 1: Product Performance at 480mA/960mA nominal (Tc = 25° C) Part Number Nominal CCT1 (K) Typical CRI Typical Flux2,3 (lm) Nominal Drive Current (mA) Typical Vf (V) Typical Power (W) Typical Efficacy (lm/W) BXEB-L0280Z-27S1000-C-C3 2700 1185 122 BXEB-L0280Z-30S1000-C-C3 3000 1235 127 BXEB-L0280Z-35S1000-C-C3 3500 BXEB-L0280Z-40S1000-C-C3 4000 BXEB-L0280Z-50S1000-C-C3 5000 1345 98 1345 138 480 20.3 9.7 1345 138 138 BXEB-L0280Z-57S1000-C-C3 5700 1345 138 BXEB-L0280Z-65S1000-C-C3 6500 1345 138 BXEB-L0560Z-27S2000-C-C3 2700 2370 122 BXEB-L0560Z-30S2000-C-C3 3000 2470 127 BXEB-L0560Z-35S2000-C-C3 3500 2690 138 BXEB-L0560Z-40S2000-C-C3 4000 BXEB-L0560Z-50S2000-C-C3 5000 2690 138 BXEB-L0560Z-57S2000-C-C3 5700 2690 138 BXEB-L0560Z-65S2000-C-C3 6500 2690 138 98 2690 960 20.3 19.5 138 BXEB-L1120Z-27S4000-C-C3 2700 4740 122 BXEB-L1120Z-30S4000-C-C3 3000 4940 127 BXEB-L1120Z-35S4000-C-C3 3500 5380 138 BXEB-L1120Z-40S4000-C-C3 4000 BXEB-L1120Z-50S4000-C-C3 5000 98 5380 960 40.6 39.0 138 5380 138 BXEB-L1120Z-57S4000-C-C3 5700 5380 138 BXEB-L1120Z-65S4000-C-C3 6500 5380 138 Notes for Table 1: 1. Nominal CCT as defined by ANSI C78.377-2011. 2. Data is at nominal test current where temperature of center case temperature point Tc= 25° C. 3. Bridgelux maintains a ± 7% tolerance on typical flux data (typical SMD flux bins) 3 Product Selection Guide Table 2: Product Performance at 350mA/700mA nominal (Tc = 25° C) Part Number Nominal CCT1 (K) Typical CRI Typical Flux2,3 (lm) Nominal Drive Current (mA) Typical Vf (V) Typical Power (W) Typical Efficacy (lm/W) BXEB-L0280Z-27S1000-C-C3 2700 890 128 BXEB-L0280Z-30S1000-C-C3 3000 930 134 BXEB-L0280Z-35S1000-C-C3 3500 BXEB-L0280Z-40S1000-C-C3 4000 BXEB-L0280Z-50S1000-C-C3 5000 1010 98 1010 145 350 19.9 7.0 145 1010 145 BXEB-L0280Z-57S1000-C-C3 5700 1010 145 BXEB-L0280Z-65S1000-C-C3 6500 1010 145 BXEB-L0560Z-27S2000-C-C3 2700 1780 128 BXEB-L0560Z-30S2000-C-C3 3000 1860 134 BXEB-L0560Z-35S2000-C-C3 3500 2020 145 BXEB-L0560Z-40S2000-C-C3 4000 BXEB-L0560Z-50S2000-C-C3 5000 2020 145 BXEB-L0560Z-57S2000-C-C3 5700 2020 145 BXEB-L0560Z-65S2000-C-C3 6500 2020 145 BXEB-L1120Z-27S4000-C-C3 2700 3560 128 BXEB-L1120Z-30S4000-C-C3 3000 3720 134 BXEB-L1120Z-35S4000-C-C3 3500 4040 145 BXEB-L1120Z-40S4000-C-C3 4000 BXEB-L1120Z-50S4000-C-C3 5000 98 98 2020 4040 700 700 4040 19.9 39.8 13.9 27.8 145 145 145 BXEB-L1120Z-57S4000-C-C3 5700 4040 145 BXEB-L1120Z-65S4000-C-C3 6500 4040 145 Notes for Table 2: 1. Nominal CCT as defined by ANSI C78.377-2011. 2. Data is at nominal test current where temperature of center case temperature point Tc= 25° C. 3. Bridgelux maintains a ± 7% tolerance on typical flux data (typical SMD flux bins) 4 Thrive Color Metrics Table 3: Average Spectral Difference & Color Rendering TM-30 CRI CCT ASD Rf Rg Ra R1 R2 R3 R4 R5 R6 R7 R8 R9 R10 R11 R12 R13 R14 R15 2700K 11% 96 100 98 97 98 99 96 96 94 98 98 95 96 93 92 96 99 99 3000K 10% 97 100 98 97 98 98 97 97 96 99 99 97 98 94 96 97 98 99 3500K 11% 97 101 98 99 98 95 98 98 97 98 97 92 94 97 93 99 96 98 4000K 9% 97 100 98 99 99 96 98 99 98 99 99 97 96 97 94 99 97 99 5000K 10% 97 101 98 98 98 100 97 98 97 97 98 96 98 99 90 98 99 96 5700K 9% 97 100 98 99 99 99 98 98 98 99 98 95 98 97 97 98 99 98 6500K 8% 97 100 98 99 99 99 99 99 99 99 99 97 98 99 98 99 99 99 Notes for Table 3: 1. All values are typical measurements at Tsp=85C, with module drive current of 480mA (280mm) or 960mA (560mm/1120mm) 2. Bridgelux maintains a tolerance of ± 3 on Color Rendering Index R1-R15 measurements and TM-30 measurements 3. ASD (Average Spectral Difference) is a metric developed by Bridgelux that quantifies the naturalness of a light source by summing the differences between any SPD and a standardized natural light source SPD. For further information, please visit www.bridgelux.com/products/thrive and view the Bridgelux ASD White Paper. TM-30 Color Sample Fidelity The following seven figures show the 99 Color Evaluation Samples (CES) defined by TM-30 for each module CCT. These are typical measurements at Tsp=85C, with module drive current of 480mA (280mm) or 960mA (560mm/1120mm) Figure 1: 2700K TM-30 Color Sample Fidelity 100 70 60 50 40 30 20 10 0 CES01 CES03 CES05 CES07 CES09 CES11 CES13 CES15 CES17 CES19 CES21 CES23 CES25 CES27 CES29 CES31 CES33 CES35 CES37 CES39 CES41 CES43 CES45 CES47 CES49 CES51 CES53 CES55 CES57 CES59 CES61 CES63 CES65 CES67 CES69 CES71 CES73 CES75 CES77 CES79 CES81 CES83 CES85 CES87 CES89 CES91 CES93 CES95 CES97 CES99 Color Sample Fidelity (Rf,CESi) 90 80 Color Evaluation Sample 5 CES01 CES03 CES05 CES07 CES09 CES11 CES13 CES15 CES17 CES19 CES21 CES23 CES25 CES27 CES29 CES31 CES33 CES35 CES37 CES39 CES41 CES43 CES45 CES47 CES49 CES51 CES53 CES55 CES57 CES59 CES61 CES63 CES65 CES67 CES69 CES71 CES73 CES75 CES77 CES79 CES81 CES83 CES85 CES87 CES89 CES91 CES93 CES95 CES97 CES99 Color Sample Fidelity (Rf,CESi) CES01 CES03 CES05 CES07 CES09 CES11 CES13 CES15 CES17 CES19 CES21 CES23 CES25 CES27 CES29 CES31 CES33 CES35 CES37 CES39 CES41 CES43 CES45 CES47 CES49 CES51 CES53 CES55 CES57 CES59 CES61 CES63 CES65 CES67 CES69 CES71 CES73 CES75 CES77 CES79 CES81 CES83 CES85 CES87 CES89 CES91 CES93 CES95 CES97 CES99 Color Sample Fidelity (Rf,CESi) CES01 CES03 CES05 CES07 CES09 CES11 CES13 CES15 CES17 CES19 CES21 CES23 CES25 CES27 CES29 CES31 CES33 CES35 CES37 CES39 CES41 CES43 CES45 CES47 CES49 CES51 CES53 CES55 CES57 CES59 CES61 CES63 CES65 CES67 CES69 CES71 CES73 CES75 CES77 CES79 CES81 CES83 CES85 CES87 CES89 CES91 CES93 CES95 CES97 CES99 Color Sample Fidelity (Rf,CESi) Thrive Color Metrics Figure 2: 3000K TM-30 Color Sample Fidelity 100 80 90 60 70 40 50 30 20 10 0 Color Evaluation Sample Figure 3: 3500K TM-30 Color Sample Fidelity 100 80 90 60 70 40 50 30 20 10 0 Color Evaluation Sample Figure 4: 4000K TM-30 Color Sample Fidelity 100 80 90 60 70 40 50 30 20 10 0 Color Evaluation Sample 6 CES01 CES03 CES05 CES07 CES09 CES11 CES13 CES15 CES17 CES19 CES21 CES23 CES25 CES27 CES29 CES31 CES33 CES35 CES37 CES39 CES41 CES43 CES45 CES47 CES49 CES51 CES53 CES55 CES57 CES59 CES61 CES63 CES65 CES67 CES69 CES71 CES73 CES75 CES77 CES79 CES81 CES83 CES85 CES87 CES89 CES91 CES93 CES95 CES97 CES99 Color Sample Fidelity (Rf,CESi) CES01 CES03 CES05 CES07 CES09 CES11 CES13 CES15 CES17 CES19 CES21 CES23 CES25 CES27 CES29 CES31 CES33 CES35 CES37 CES39 CES41 CES43 CES45 CES47 CES49 CES51 CES53 CES55 CES57 CES59 CES61 CES63 CES65 CES67 CES69 CES71 CES73 CES75 CES77 CES79 CES81 CES83 CES85 CES87 CES89 CES91 CES93 CES95 CES97 CES99 Color Sample Fidelity (Rf,CESi) CES01 CES03 CES05 CES07 CES09 CES11 CES13 CES15 CES17 CES19 CES21 CES23 CES25 CES27 CES29 CES31 CES33 CES35 CES37 CES39 CES41 CES43 CES45 CES47 CES49 CES51 CES53 CES55 CES57 CES59 CES61 CES63 CES65 CES67 CES69 CES71 CES73 CES75 CES77 CES79 CES81 CES83 CES85 CES87 CES89 CES91 CES93 CES95 CES97 CES99 Color Sample Fidelity (Rf,CESi) Thrive Color Metrics Figure 5: 5000K TM-30 Color Sample Fidelity 100 80 90 60 70 40 50 30 20 10 0 Color Evaluation Sample Figure 6: 5700K TM-30 Color Sample Fidelity 100 80 90 60 70 40 50 30 20 10 0 Color Evaluation Sample Figure 7: 6500K TM-30 Color Sample Fidelity 100 80 90 60 70 40 50 30 20 10 0 Color Evaluation Sample 7 Electrical Characteristics Table 4: Electrical Characteristics Forward Voltage Tc2 Part Number Driver Selection Typical Coefficient of Forward = 25º C (V) 1, 2,3 Drive Current (mA) Voltages5 (V) Voltage4 Minimum Typical Maximum 350 18.5 19.9 21.3 480 18.9 20.3 21.7 BXEB-L0280Z-xxS1000-C-C3 ∆Vf/∆T (mV/º C) Vf Min, Hot Tc2 = 85º C (V) Vf Max, Cold Tc2 = -40º C (V) 18.0 21.8 18.4 22.3 -8.5 700 19.4 20.9 22.4 18.9 22.9 960 19.9 21.4 22.9 19.4 23.5 700 18.5 19.9 21.3 18.0 21.8 960 18.9 20.3 21.7 18.4 22.3 BXEB-L0560Z-xxS2000-C-C3 -8.5 1400 19.4 20.9 22.4 18.9 22.9 1920 19.9 21.4 22.9 19.4 23.5 700 37.0 39.8 42.6 36.0 43.7 960 37.8 40.6 43.4 36.7 44.5 BXEB-L1120Z-xxS4000-C-C3 -17.0 1400 39.0 41.9 44.8 37.9 45.9 1920 39.9 42.9 45.9 38.9 47.0 Notes for Table 4: 1. Voltage minimum and maximum are provided for reference only and are not a guarantee of performance. 2. Bridgelux maintains a tolerance of ± 0.1 V on forward voltage data. 3. This product has been designed and manufactured per IEC 62031:2018. The working voltage designated for the insulation is 60 V d.c. The maximum allowable voltage across the module must be determined in the end product application. 4. Typical coefficient of forward voltage tolerance is ± 0.1 mV for nominal current. 5. Vf min hot and max cold values are provided as reference only and are not guaranteed. These values are provided to aid in driver design and selection over the operating range of the product. 8 Absolute Maximum Ratings Table 5: Maximum Ratings Parameter Maximum Rating Storage Temperature -40°C to +85°C Operating Case Temperature2 (Tc) 85°C Soldering Temperature 350°C or lower for a maximum of 5 seconds Maximum Reverse Voltage Modules are not designed to be driven in reverse bias Maximum Drive Current BXEB-L0280Z-xxS1000-C-C3 BXEB-L0560Z-xxS2000-C-C3 BXEB-L1120Z-xxS4000-C-C3 960 mA 1920 mA 1920 mA Notes for Table 5 1. For IEC 62717 requirement, please consult your Bridgelux sales representative. 2. Lumen maintenance (L70) and lifetime predictions are valid for drive current and case temperature conditions used for LM-80 testing as included in the applicable LM-80 test report for the SMDs used in the modules. Contact your Bridgelux sales representatives for LM-80 report. 9 Performance Curves Figure 8: 280mm Current vs. Forward Voltage, Tc=25°C Figure 9: 280mm Relative Flux vs. Current, Tc=25°C 200% 180% 1000 160% 800 Relative Flux Forward Current (mA) 1200 600 400 140% 120% 100% 80% 60% 40% 200 20% 0 0% 18.5 19.0 19.5 20.0 20.5 21.0 Forward Voltage (V) 21.5 22.0 Figure 10: 560mm Current vs. Forward Voltage, Tc=25°C 0 200 400 600 Forward Current (mA) 800 1000 Figure 11: 560mm Relative Flux vs. Current, Tc=25°C 2500 200% 2000 160% Relative Flux Forward Current (mA) 180% 1500 1000 500 140% 120% 100% 80% 60% 40% 20% 0 0% 18.5 19.0 19.5 20.0 20.5 21.0 Forward Voltage (V) 21.5 22.0 Figure 12: 1120mm Current vs. Forward Voltage, Tc=25°C 0 500 1000 1500 Forward Current (mA) 2000 Figure 13: 1120mm Relative Flux vs. Current, Tc=25°C 2500 200% 2000 160% Relative Flux Forward Current (mA) 180% 1500 1000 500 140% 120% 100% 80% 60% 40% 20% 0 37.0 0% 38.0 39.0 40.0 41.0 42.0 Forward Voltage (V) 43.0 44.0 0 500 1000 1500 Forward Current (mA) 2000 10 Performance Curves Figure 14: Relative Voltage vs. Case Temperature Figure 15: Relative Flux vs. Case Temperature 101% 102% 25°C Pulsed 98% 100% Relative Flux Relative Voltage 25°C Pulsed 100% 99% 98% 96% 94% 92% 90% Warm White 88% Neutral/Cool White 86% 84% 97% 0 20 40 60 Case Temperature (C) 80 100 0 20 40 60 Case Temperature (C) 80 100 11 Typical Radiation Pattern Figure 16: Typical Spatial Radiation Pattern 120% Relative Intensity 100% 80% 60% 40% 20% 0% -100 -80 -60 -40 -20 0 20 40 60 80 100 Angle (°) Notes for Figure 16: 1. Typical viewing angle is 120⁰. 2. The viewing angle is defined as the off axis angle from the centerline where Iv is ½ of the peak value. 12 Typical Color Spectrum Figure 17: Typical Spectral Power Distribution 100% 90% Relative Intensity 80% 70% 2700K 60% 3000K 50% 3500K 40% 4000K 30% 5000K 20% 5700K 10% 6500K 0% 380 480 580 680 780 Wavelength (nm) Note for Figure 17: 1. Color spectra measured at nominal current for TC = 65°C 13 Mechanical Dimensions Figure 18: Drawing Overview for 280mm Figure 19: Drawing Overview for 560mm Figure 20: Drawing Overview for 1120mm Notes for Figures 18-20: 1. Solder pads are labeled “+” to denote positive polarity, and “-” to denote negative polarity. 2. Drawing dimensions are in millimeters. 3. Refer to Bridgelux assembly drawing 15-000682, 15-000683, and 15-000684 for complete product configuration Table 6: Module Dimensions & Connector Wiring Parameter BXEB-L0280Z-xxS1000-C-C3 BXEB-L0560Z-xxS2000-C-C3 BXEB-L1120Z-xxS4000-C-C3 Linear length 280.0 mm 560.0 mm 1120.0 mm Linear width 24 mm Overall thickness 6.1 mm PCB thickness 1.6 mm Input wire cross-section 18-24 AWG Wire strip length 7-9 mm 14 Color Binning Information Figure 21: 3 SDCM Color Bins in CIE 1931 xy Color Space 0.44 0.42 CIE y 0.40 0.38 0.36 0.34 0.32 0.30 0.30 0.32 0.34 0.36 0.38 0.40 0.42 0.44 0.46 0.48 0.50 CIE x Table 7: Bin Coordinates and Associated Typical CCT CCT Color Consistency CIE Center Point (x, y) Corresponding CCT Range 2700K 3 SDCM (0.458, 0.410) 2651K - 2794K 3000K 3 SDCM (0.434, 0.403) 2968K - 3136K 3500K 3 SDCM (0.407, 0.392) 3369K - 3586K 4000K 3 SDCM (0.382, 0.380) 3851K - 4130K 5000K 3 SDCM (0.3445, 0.355) 4835K - 5215K 5700K 3 SDCM (0.329, 0.342) 5490K - 5820K 6500K 3 SDCM (0.312, 0.328) 6250K - 6745K Notes for Table 7: 1. Color binning at solder point temperature Tsp of SMDs at 85°C. 2. Bridgelux maintains a tolerance of ± 0.007 on x and y color coordinates in the CIE 1931 color space. 15 Packaging and Labeling Figure 22: EB Series Packaging and Labeling Note: This label & packaging diagram is for illustration only and may differ from actual product label and packaging for this product Table 8: Packaging Structure Box Parameter BXEB-L0280Z-xxS1000-C-C3 BXEB-L0560Z-xxS2000-C-C3 BXEB-L1120Z-xxS4000-C-C3 Module Quantity 200 100 100 Dimensions 34.6 cm x 29.6 cm x 16.9 cm 60.0 cm x 19.4 cm x 16.9 cm 115.9 cm x 19.4 cm x 16.9 cm Weight 7.9 kg 7.9 kg 15.6 kg Product Labeling Bridgelux EB Series modules contain a label on the front to help with product identification. In addition to the product identification markings, Bridgelux EB Series modules also contain markings for internal Bridgelux manufacturing use only. The image below shows which markings are for customer use and which ones are for Bridgelux internal use only. The Bridgelux internal manufacturing markings are subject to change without notice, however these will not impact the form, function or performance of the module. EB Series Thrive 1ft 2000lm 960mA Customer Use- 2D Barcode Scannable barcode provides product part number and other Bridgelux internal production information. 16 Design Resources Application Notes 3D CAD Models Bridgelux has developed a comprehensive set of application notes and design resources to assist customers in successfully designing with the EB Series product family. For a list of resources under development, visit www.bridgelux.com. Three dimensional CAD models depicting the product outline of all Bridgelux EB Series LED linears are available in both IGES and STEP formats. Please contact your Bridgelux sales representative for assistance. Optical Source Models Optical source models and ray set files are available for all Bridgelux products. For a list of available formats, visit www.bridgelux.com. Precautions CAUTION: CHEMICAL EXPOSURE HAZARD Exposure to some chemicals commonly used in luminaire manufacturing and assembly can cause damage to the LED linear. Please consult Bridgelux Application Note for additional information. CAUTION: EYE SAFETY Eye safety classification for the use of Bridgelux EB Series is in accordance with IEC/TR62778: Application of IEC 62471 for the assessment of blue light hazard to light sources and luminaires. EB Series linears are classified as Risk Group 1 when operated at or below the maximum drive current. Please use appropriate precautions. It is important that employees working with LEDs are trained to use them safely. CAUTION CONTACT WITH LIGHT EMITTING SURFACE (LES) Avoid any contact with the LES. Do not touch the LES of the linear or apply stress to the LES (yellow phosphor resin area). Contact may cause damage to the linear. Optics and reflectors must not be mounted in contact with the LES (yellow phosphor resin area). Optical devices may be mounted on the top surface of the EB Series linear. Use the mechanical features of the linear housing, edges and/or mounting holes to locate and secure optical devices as needed. CAUTION: RISK OF BURN Do not touch the EB Series linears during operation. Allow the linear to cool for a sufficient period of time before handling. The EB Series linears may reach elevated temperatures such that could burn skin when touched. Disclaimers STANDARD TEST CONDITIONS MINOR PRODUCT CHANGE POLICY Unless otherwise stated, linear testing is performed at the nominal drive current. The rigorous qualification testing on products offered by Bridgelux provides performance assurance. Slight cosmetic changes that do not affect form, fit, or function may occur as Bridgelux continues product optimization. 17 About Bridgelux: Bridging Light and Life™ At Bridgelux, we help companies, industries and people experience the power and possibility of light. Since 2002, we’ve designed LED solutions that are high performing, energy efficient, cost effective and easy to integrate. Our focus is on light’s impact on human behavior, delivering products that create better environments, experiences and returns—both experiential and financial. And our patented technology drives new platforms for commercial and industrial luminaires. For more information about the company, please visit: bridgelux.com twitter.com/Bridgelux facebook.com/Bridgelux youtube.com/user/Bridgelux linkedin.com/company/bridgelux WeChat ID: BridgeluxInChina 46430 Fremont Blvd Fremont, CA 94538 USA Tel (925) 583-8400 Fax (925) 583-8401 www.bridgelux.com © 2020 Bridgelux, Inc. All rights reserved. Product specifications are subject to change without notice. Bridgelux and the Bridgelux stylized logo design and Thrive are registered trademarks of Bridgelux, Inc. EB Series and Bridging Light and Life are trademarks of Bridgelux, Inc. All other trademarks are the property of their respective owners. Bridgelux EB Series Gen 3 Thrive Data Sheet DS133 Rev. A (08/2020) 18
BXEB-L0560Z-40S2000-C-C3
1. 物料型号:文档中列出了多个型号,例如BXEB-L0280Z-27S1000-C-C3、BXEB-L0560Z-27S2000-C-C3和BXEB-L1120Z-27S4000-C-C3等。这些型号遵循特定的命名规则,包括产品家族、模块版本、尺寸、配置、色温和CRI值。

2. 器件简介:Bridgelux EB Series Thrive模块是完全工程化的设备,提供一致的热和光学性能,并简化了设计集成和组装。它们具有多种特性,如多个案例温度测量点、可重复使用的连接器,并且符合全球安全标准。

3. 引脚分配:文档中提到了模块的连接器,但未提供详细的引脚分配图。通常,正极和负极焊盘分别标记为“+”和“-”。

4. 参数特性:文档提供了详细的电气特性,包括驱动电流、正向电压、典型系数以及驱动选择电压。还包括了绝对最大额定值,如存储温度、操作案例温度、焊接温度和最大反向电压。

5. 功能详解:文档中描述了模块的多种功能特性,包括热性能、光学性能和机械特性。例如,它们设计有多个案例温度测量点,并且标签上包含部件编号和批次代码。

6. 应用信息:Bridgelux EB Series模块适用于多种应用,文档提供了关于如何使用这些模块的指导,包括光学源模型和应用说明。

7. 封装信息:文档提供了详细的机械尺寸和连接器接线信息,包括线性长度、线性宽度、整体厚度、PCB厚度、输入电线截面积和剥线长度。
BXEB-L0560Z-40S2000-C-C3 价格&库存

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