BXRC-35G2000-C-23 Equivalent & Substitute Parts

Part Overview

The BXRC-35G2000-C-23 is a Bridgelux Vero® 13 Array Chip On Board (COB) LED module designed for warm white lighting applications at 3500K color temperature. This component is classified as Obsolete, making identification of suitable substitute parts essential for ongoing production and maintenance requirements. The module features integrated connector capability, round configuration, and is RoHS Compliant with unlimited moisture sensitivity rating.

Substiute Parts

BXRC-35G2000-C-23
BridgeluxIn Stock: 1144BXRC-35G2000-C-23 Datasheet
BXRC-35G2000-C-23
Current Part
BXRC-35G2000-D-73
BridgeluxIn Stock: 904BXRC-35G2000-D-73 Datasheet
BXRC-35G2000-D-73
Direct

Key Parameters

Parameter Value
Manufacturer Part Number BXRC-35G2000-C-23
Manufacturer Bridgelux
Series Vero® 13 Array
Product Status Obsolete
Type Chip On Board (COB)
Color White, Warm
CCT (K) 3500K 3-Step MacAdam Ellipse
Configuration Round
Size / Dimension 36.20mm Dia
Height 1.90mm
Light Emitting Surface (LES) 13.20mm Dia
Lens Type Flat
Features With Connector
CRI (Color Rendering Index) 90
Viewing Angle 120°
RoHS Status RoHS Compliant
Moisture Sensitivity Level (MSL) 1 (Unlimited)

Substitute Part Grouping Explanation

Substitution of the BXRC-35G2000-C-23 is determined by strict alignment of the following critical parameters:

Mechanical Compatibility:

  • Identical physical dimensions (36.20mm diameter, 1.90mm height)
  • Matching Light Emitting Surface diameter (13.20mm)
  • Identical round configuration and flat lens type
  • Connector integration requirement

Optical & Thermal Specifications:

  • Color temperature matching at 3500K with 3-Step MacAdam Ellipse tolerance
  • White, warm color specification
  • Viewing angle of 120°
  • CRI of 90

Electrical Operating Range:

  • Forward voltage tolerance within acceptable system design parameters
  • Maximum current rating compatibility
  • Luminous flux output suitable for application requirements

Regulatory & Environmental:

  • RoHS compliance status
  • Moisture Sensitivity Level 1 (Unlimited)
  • REACH Unaffected status

The substitute part BXRC-35G2000-D-73 meets all mechanical, optical, and regulatory requirements while offering improved electrical efficiency and active product status.

Parameter Comparison

Parameter BXRC-35G2000-C-23 (Main) BXRC-35G2000-D-73 (Substitute)
Manufacturer Bridgelux Bridgelux
Series Vero® 13 Array Gen 7 Vero® 13 Array
Product Status Obsolete Active
Type Chip On Board (COB) Chip On Board (COB)
Color White, Warm White, Warm
CCT (K) 3500K 3-Step MacAdam Ellipse 3500K 3-Step MacAdam Ellipse
Configuration Round Round
Size / Dimension 36.20mm Dia 36.20mm Dia
Height 1.90mm 1.90mm
Light Emitting Surface (LES) 13.20mm Dia 13.20mm Dia
Lens Type Flat Flat
Features With Connector With Connector
CRI (Color Rendering Index) 90 90
Viewing Angle 120° 120°
Luminous Flux @ Current/Temperature 1868lm (Typ) @ 500mA, 25°C 1907lm (Typ) @ 500mA, 85°C
Voltage - Forward (Vf) (Typ) 32.3V 30.9V
Lumens/Watt @ Current - Test 116 lm/W 123 lm/W
Current - Max 1.05A 1.0A
RoHS Status RoHS Compliant ROHS3 Compliant
Moisture Sensitivity Level (MSL) 1 (Unlimited) 1 (Unlimited)
REACH Status REACH Unaffected REACH Unaffected

Engineering Selection Recommendations

The BXRC-35G2000-D-73 is the direct substitute for the obsolete BXRC-35G2000-C-23 based on the following engineering criteria:

Mechanical Compatibility: Both parts share identical physical dimensions, connector integration, and optical surface specifications, ensuring direct mechanical interchangeability in existing designs.

Regulatory Compliance: The substitute part maintains RoHS compliance (upgraded to ROHS3 standard) and REACH Unaffected status, meeting current environmental and safety requirements.

Optical Performance: Both parts deliver matching color temperature (3500K), CRI (90), and viewing angle (120°), ensuring consistent lighting characteristics in applications.

Electrical Performance: The substitute part operates at lower forward voltage (30.9V vs. 32.3V) and delivers improved luminous efficacy (123 lm/W vs. 116 lm/W), resulting in reduced power consumption and heat generation.

Product Status: The substitute part is Active, ensuring long-term availability and continued manufacturer support, addressing the obsolescence of the main part.

Frequently Asked Questions (FAQ)

Q: Can BXRC-35G2000-D-73 be used as a direct replacement for BXRC-35G2000-C-23?

A: Yes. Both parts share identical mechanical dimensions (36.20mm diameter, 1.90mm height), matching optical specifications (3500K, CRI 90, 120° viewing angle), and connector integration. The substitute part is mechanically and optically interchangeable.

Q: What are the key differences between these two parts?

A: The primary differences are product status (Obsolete vs. Active), series designation (Vero® 13 Array vs. Gen 7 Vero® 13 Array), forward voltage (32.3V vs. 30.9V), and luminous efficacy (116 lm/W vs. 123 lm/W). The substitute part demonstrates improved electrical efficiency.

Q: Are there packaging differences between these parts?

A: Yes. The main part uses standard packaging, while the substitute part is supplied in Tray packaging. Both maintain identical MSL rating of 1 (Unlimited), ensuring equivalent handling and storage requirements.

Q: Does the lower forward voltage of the substitute part affect circuit design?

A: The forward voltage difference of 1.4V (32.3V to 30.9V) must be evaluated within the context of the specific power supply and circuit design. Systems designed for the main part may require adjustment to accommodate the lower voltage characteristic of the substitute part.

Q: Are both parts RoHS compliant?

A: Yes. The main part is RoHS Compliant, and the substitute part is ROHS3 Compliant, representing an upgrade to the current RoHS standard. Both parts meet environmental compliance requirements.

Q: What is the significance of the improved luminous efficacy in the substitute part?

A: The substitute part delivers 123 lm/W compared to 116 lm/W in the main part, representing a 6% improvement in light output per watt. This results in reduced power consumption and lower thermal output for equivalent luminous flux delivery.

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