MV5752 Red LED T-1 3/4 Through Hole Equivalent & Substitute Parts

Part Overview

The MV5752 is a red LED indicator from onsemi, configured as a T-1 3/4 (5mm) through-hole radial component with a clear lens. This part is classified as obsolete, making equivalent and substitute parts necessary for ongoing design support and procurement. The MV5752 operates at 2V forward voltage with a 20mA test current, delivering 100mcd brightness with a 28° viewing angle and 635nm peak wavelength.

Substiute Parts

MV5752
onsemiIn Stock: 1047MV5752 Datasheet
MV5752
Current Part
4302H1-12V
Visual Communications Company - VCCIn Stock: 20274302H1-12V Datasheet
4302H1-12V
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4302H1-5V
Visual Communications Company - VCCIn Stock: 27094302H1-5V Datasheet
4302H1-5V
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HLMP-D155
Broadcom LimitedIn Stock: 9365HLMP-D155 Datasheet
HLMP-D155
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LTL-307EE-012
Lite-On Inc.In Stock: 1097LTL-307EE-012 Datasheet
LTL-307EE-012
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LTL-4214
Lite-On Inc.In Stock: 803LTL-4214 Datasheet
LTL-4214
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LTL-4224-002
Lite-On Inc.In Stock: 880LTL-4224-002 Datasheet
LTL-4224-002
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LTL-4294-012
Lite-On Inc.In Stock: 755LTL-4294-012 Datasheet
LTL-4294-012
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SLR-56VC3F
Rohm SemiconductorIn Stock: 3145SLR-56VC3F Datasheet
SLR-56VC3F
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SLR-56VCT32
Rohm SemiconductorIn Stock: 1029SLR-56VCT32 Datasheet
SLR-56VCT32
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Z-212R
JKL Components Corp.In Stock: 1034Z-212R Datasheet
Z-212R
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MV5752
onsemiIn Stock: 1047MV5752 Datasheet
MV5752
Parametric Equivalent
MV6752
onsemiIn Stock: 967MV6752 Datasheet
MV6752
Parametric Equivalent

Key Parameters

Parameter MV5752 Value
Manufacturer onsemi
Color Red
Lens Transparency Clear
Lens Size 5mm, T-1 3/4
Voltage - Forward (Vf) (Typ) 2V
Current - Test 20mA
Millicandela Rating 100mcd
Wavelength - Peak 635nm
Viewing Angle 28°
Mounting Type Through Hole
Package / Case Radial
Height (Max) 8.89mm
Product Status Obsolete

Substitute Part Grouping Explanation

Substitution for the MV5752 is determined by the following critical parameters:

  • Mechanical Compatibility: Lens size (5mm T-1 3/4), mounting type (through hole), and package style (radial) must match
  • Electrical Compatibility: Forward voltage (Vf) and test current must be compatible with circuit design
  • Optical Characteristics: Peak wavelength (635nm red spectrum), lens transparency (clear), and brightness (millicandela rating) determine functional equivalence
  • Physical Dimensions: Height and form factor must fit within PCB layout constraints

Substitute parts are grouped into two categories:

Category A - Direct Electrical Equivalents (2V, 20mA, Clear Lens, 635nm Peak) These parts maintain the same forward voltage, test current, and optical characteristics as the MV5752, ensuring drop-in compatibility with minimal circuit modification.

Category B - Functional Alternatives (Different Vf or Current, Clear Lens, Red Spectrum) These parts operate at different forward voltages or test currents but maintain the same physical form factor and red spectrum wavelength. Circuit design modifications may be required.

Parameter Comparison

Part Number Manufacturer Color Lens Transparency Vf (Typ) Current - Test mcd Rating Peak Wavelength Viewing Angle Height (Max) Product Status
MV5752 onsemi Red Clear 2V 20mA 100mcd 635nm 28° 8.89mm Obsolete
LTL-307EE-012 Lite-On Inc. Red Clear 2V 20mA 90mcd 635nm 40° 9.85mm Active
LTL-4224-002 Lite-On Inc. Red Clear 2V 20mA 90mcd 635nm 16° 9.85mm Active
SLR-56VC3F Rohm Semiconductor Red Clear 2V 10mA 25mcd 630nm 40° 8.90mm Active
SLR-56VCT32 Rohm Semiconductor Red Clear 2V 10mA 25mcd 630nm 40° 8.90mm Active
LTL-4214 Lite-On Inc. Red Clear 2.1V 10mA 19mcd 697nm 16° 8.60mm Active
HLMP-D155 Broadcom Limited Red Clear 1.7V 1mA 10mcd 660nm 24° 12.44mm Active
4302H1-5V Visual Communications Company - VCC Red Diffused 5V 10mA 8mcd 635nm 60° 10.08mm Active
4302H1-12V Visual Communications Company - VCC Red Diffused 12V 13mA 8mcd 635nm 60° 10.08mm Active
Z-212R JKL Components Corp. Red Clear 1.7V 10mA 2.5mcd 660nm 16° 14.60mm Active
LTL-4294-012 Lite-On Inc. Red-Orange Clear 2V 20mA 90mcd 630nm 16° 9.85mm Active

Engineering Selection Recommendations

Primary Substitutes (Recommended for Direct Replacement)

LTL-307EE-012 and LTL-4224-002 from Lite-On Inc. are the closest electrical equivalents to the MV5752. Both operate at 2V forward voltage with 20mA test current and deliver 90mcd brightness at 635nm peak wavelength. Both parts are active products with RoHS3 compliance. The primary difference is viewing angle: LTL-307EE-012 provides 40° viewing angle versus 16° for LTL-4224-002. Selection depends on circuit viewing angle requirements.

Secondary Substitutes (Functional Alternatives)

SLR-56VC3F and SLR-56VCT32 from Rohm Semiconductor maintain 2V forward voltage and clear lens characteristics but operate at 10mA test current with 25mcd brightness. These parts are suitable for applications where lower brightness is acceptable. Both are active products with RoHS3 compliance and identical optical specifications.

Conditional Substitutes (Application-Dependent)

HLMP-D155 from Broadcom Limited operates at 1.7V forward voltage with significantly lower test current (1mA) and brightness (10mcd). This part is suitable only for low-power indicator applications. Height is 12.44mm, exceeding the MV5752 by 4.65mm.

Z-212R from JKL Components Corp. operates at 1.7V with 10mA test current and 2.5mcd brightness. RoHS compliance status is non-compliant. Height is 14.60mm, significantly exceeding the MV5752.

Not Recommended for Direct Substitution

4302H1-5V and 4302H1-12V from Visual Communications Company feature diffused lens transparency (not clear) and operate at 5V and 12V respectively. These parts are suitable only for applications requiring higher voltage operation and diffused lens characteristics. LTL-4294-012 is red-orange (not pure red) and should be selected only when color shift is acceptable.

Frequently Asked Questions (FAQ)

Q: Can LTL-307EE-012 replace MV5752 without circuit modification?

A: LTL-307EE-012 matches the MV5752 in forward voltage (2V), test current (20mA), and peak wavelength (635nm). No circuit modification is required. The viewing angle difference (40° vs 28°) may affect optical performance depending on application requirements.

Q: What is the difference between LTL-307EE-012 and LTL-4224-002?

A: Both parts operate at identical electrical parameters (2V, 20mA, 635nm). The primary difference is viewing angle: LTL-307EE-012 provides 40° viewing angle for wider light distribution, while LTL-4224-002 provides 16° viewing angle for more focused light output.

Q: Can SLR-56VC3F be used as a direct replacement?

A: SLR-56VC3F maintains 2V forward voltage and clear lens characteristics but operates at 10mA test current (half the MV5752) with 25mcd brightness (one-quarter the MV5752). Circuit design modifications are required to accommodate the lower current and brightness specifications.

Q: Why are 4302H1-5V and 4302H1-12V not recommended?

A: These parts feature diffused lens transparency (not clear) and operate at 5V and 12V forward voltages respectively. They are fundamentally different from the MV5752 and require complete circuit redesign. Selection is appropriate only for applications specifically requiring higher voltage operation and diffused lens characteristics.

Q: What is the impact of height differences on PCB layout?

A: The MV5752 has a maximum height of 8.89mm. Substitute parts range from 8.60mm (LTL-4214) to 14.60mm (Z-212R). Height differences may affect PCB clearance and component density. Verify physical fit within your specific PCB layout before final selection.

Q: Are all substitute parts RoHS compliant?

A: Most active substitute parts are RoHS3 compliant. Z-212R is RoHS non-compliant. Verify compliance requirements for your specific application and regulatory jurisdiction before final selection.

Q: What is the difference between clear and diffused lens transparency?

A: Clear lens transparency provides sharper light output with defined viewing angles. Diffused lens transparency scatters light for wider, more uniform illumination. The MV5752 uses clear lens; substitutes with diffused lenses (4302H1 series) will produce visually different light distribution patterns.

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