| MOQ: | 10 |
| Price: | $20~$32 |
| Standard Packaging: | 40 × 11 × 7 Cm, Gross Weight: 0.38 kg |
| Delivery Period: | 5-8 work days |
| Payment Method: | L/C,D/A,D/P,T/T,Western Union |
| Supply Capacity: | 100000 piece/per month |
Shockproof Rear Fog Lamp For BYD Tang No Drilling Dual Layer Silicone Sealing
Technical Specs
| Parameter | Details |
|---|---|
| Product Type | Rear Bumper Of Vehicle |
| Fitment Model | BYD tang |
| Lumen | 300-500LM |
| Anti-Fog Sealing Process | Dual-Layer Silicone Sealing |
| Power | 18W |
| Voltage | 12V |
| High Temperature Resistance | ≤ 85°C |
| Cold Resistance | ≥ -40°C |
| Lens Material | UV Resistant PMMA Lens |
| IP Rating | IP67 Waterproof & Dustproof |
| Shock & Vibration Resistance | Shockproof & Vibration-Resistant |
BYD Tang (2022–2026): Active Rear Fog Illumination & Safety Upgrade Assembly
Operating a vehicle in severe weather conditions such as dense atmospheric fog, torrential rain, or winter snow poses distinct visibility challenges for the BYD Tang platform, especially on highway routes and during nocturnal transit. On specific base trim configurations equipped primarily with passive, non-illuminated rear bumper reflective strips, standard trailing signaling indicators may lack the necessary photometric penetration required to establish early vehicle tracking for motorists following from behind, which can increase rear-end proximity risks on wet or unpredictable road surfaces.
This tailored rear fog lamp engineering assembly addresses passive signaling limitations by converting passive bumper markers into an active technical safety asset. Developed to serve either as a hardware upgrade for base trims or as a direct functional replacement for degraded factory lamps, this component integrates directly into the rear bumper factory mounting pockets to maintain original body lines and exterior panel margins. The internal electrical networks are calibrated to sync with the vehicle's secondary power routing, coordinating safely with onboard control systems to deliver a focused, low-glare rear warning signal that establishes clear vehicle tracking without projecting blinding retro-reflection toward following traffic.
BYD Tang (2022–2026): Active Rear Signaling Assembly & Technical Parameters
Bumper Aperture Integration & Mechanical Interface Conformance
This active rear warning light assembly is dimensionally calibrated for the rear bumper fascia apertures of the 2022–2026 BYD Tang model series, including DM hybrid and EV powertrain variants. The structural housing profile aligns with the original lower bumper center cutouts. For high-trim service replacements, the casing utilizes native mechanical retention tabs to secure original factory panel margins without requiring structural body cutting or modification. For base trim configurations utilizing non-powered passive reflective panels, the housing occupies the identical physical footings to preserve the original vehicle design lines.
Photometric Red Penetration & Rear Trailing Warning Efficiency
The internal emitter arrays project 300–500 lumens of focused, high-contrast red illumination engineered specifically to establish early trailing vehicle tracking. Unlike standard wide-angle tail lamps, the specialized reflector optics project a targeted beam path calibrated to penetrate dense fog, heavy rain, and winter snow barriers. This controlled distribution ensures immediate rear visibility on high-speed routes and dark highways without directing uncontrolled back-glare into the sightlines of following motorists.
Hermetic Polymer Sealing & Thermal Range Stabilization
Engineered to withstand severe rear-end road spray and turbulent environments, the assembly features a certified IP67 ingress protection perimeter. A specialized dual-layer internal silicone barrier isolates the circuit pathways against high-pressure wash systems, continuous water exposure, and fine road grime. The entire physical matrix is certified to maintain structural integrity across a validated thermal operating envelope spanning from -40°C to 85°C, resisting low-temperature structural cracking and high-temperature housing warping.
Optoelectronic Polymer Shielding & Impact Resisting Matrix
The outer lens is manufactured from specialized optical-grade polymethyl methacrylate (PMMA), treated with a dedicated anti-UV surface barrier to retard solar photo-oxidation and prevent long-term lens yellowing or clouding. This optical shield is matched with a flame-retardant acrylonitrile butadiene styrene and polycarbonate (ABS+PC) structural backing case, engineered to absorb persistent road vibrations and impact energy from flying stones or highway debris without micro-fracturing.
Low-Voltage Bus Architecture Matching & Power Grid Synchronization
The internal electrical load is engineered to match the BYD Tang 12V low-voltage auxiliary power distribution and Body Control Module (BCM) network specifications. Featuring integrated Electromagnetic Compatibility (EMC) anti-interference circuitry, the component operates safely alongside sensitive high-voltage New Energy Vehicle (NEV) electronics. Base-model hardware upgrades require standard secondary wiring integration to native tail lamp power feeds, drawing nominal current to eliminate dashboard diagnostic trouble codes, check-light alerts, or high-voltage traction battery power drainage.
Post-Purchase Technical Assurances & Risk Mitigation
Protocol Alpha: Factory-Backed Material Defect Coverage
This rear signaling assembly is accompanied by a standard twelve-month structural and optical integrity coverage framework, tracking strictly from the date of logistics delivery. This engineering alignment accounts for specialized component anomalies, including structural micro-cracking of the PMMA lens under validated thermal loads, severe premature photolytic yellowing from solar exposure, and moisture ingress tracking that bypasses the dual-layer silicone sealing parameters. This coverage handles direct component failure under standard operational envelopes but excludes physical impact damage sustained from road debris, off-road collisions, or non-standard electrical overloading during DIY circuit splicing.
Protocol Beta: Technical Installation & Engineering Alignment Support
Because integrating an active illumination matrix into base-trim passenger configurations requiring secondary wiring routing introduces distinct vehicle bus coordination factors, our engineering desk remains accessible for technical guidance. We provide documentation mapping for proper circuit integration alongside native body control networks to prevent localized system resistance faults or dashboard alert triggers. Should an unexpected interface discrepancy manifest post-transit, buyers have access to standard return or replacement tracking, provided the component remains free from physical mounting scars, altered factory terminals, or structural housing modifications.
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| MOQ: | 10 |
| Price: | $20~$32 |
| Standard Packaging: | 40 × 11 × 7 Cm, Gross Weight: 0.38 kg |
| Delivery Period: | 5-8 work days |
| Payment Method: | L/C,D/A,D/P,T/T,Western Union |
| Supply Capacity: | 100000 piece/per month |
Shockproof Rear Fog Lamp For BYD Tang No Drilling Dual Layer Silicone Sealing
Technical Specs
| Parameter | Details |
|---|---|
| Product Type | Rear Bumper Of Vehicle |
| Fitment Model | BYD tang |
| Lumen | 300-500LM |
| Anti-Fog Sealing Process | Dual-Layer Silicone Sealing |
| Power | 18W |
| Voltage | 12V |
| High Temperature Resistance | ≤ 85°C |
| Cold Resistance | ≥ -40°C |
| Lens Material | UV Resistant PMMA Lens |
| IP Rating | IP67 Waterproof & Dustproof |
| Shock & Vibration Resistance | Shockproof & Vibration-Resistant |
BYD Tang (2022–2026): Active Rear Fog Illumination & Safety Upgrade Assembly
Operating a vehicle in severe weather conditions such as dense atmospheric fog, torrential rain, or winter snow poses distinct visibility challenges for the BYD Tang platform, especially on highway routes and during nocturnal transit. On specific base trim configurations equipped primarily with passive, non-illuminated rear bumper reflective strips, standard trailing signaling indicators may lack the necessary photometric penetration required to establish early vehicle tracking for motorists following from behind, which can increase rear-end proximity risks on wet or unpredictable road surfaces.
This tailored rear fog lamp engineering assembly addresses passive signaling limitations by converting passive bumper markers into an active technical safety asset. Developed to serve either as a hardware upgrade for base trims or as a direct functional replacement for degraded factory lamps, this component integrates directly into the rear bumper factory mounting pockets to maintain original body lines and exterior panel margins. The internal electrical networks are calibrated to sync with the vehicle's secondary power routing, coordinating safely with onboard control systems to deliver a focused, low-glare rear warning signal that establishes clear vehicle tracking without projecting blinding retro-reflection toward following traffic.
BYD Tang (2022–2026): Active Rear Signaling Assembly & Technical Parameters
Bumper Aperture Integration & Mechanical Interface Conformance
This active rear warning light assembly is dimensionally calibrated for the rear bumper fascia apertures of the 2022–2026 BYD Tang model series, including DM hybrid and EV powertrain variants. The structural housing profile aligns with the original lower bumper center cutouts. For high-trim service replacements, the casing utilizes native mechanical retention tabs to secure original factory panel margins without requiring structural body cutting or modification. For base trim configurations utilizing non-powered passive reflective panels, the housing occupies the identical physical footings to preserve the original vehicle design lines.
Photometric Red Penetration & Rear Trailing Warning Efficiency
The internal emitter arrays project 300–500 lumens of focused, high-contrast red illumination engineered specifically to establish early trailing vehicle tracking. Unlike standard wide-angle tail lamps, the specialized reflector optics project a targeted beam path calibrated to penetrate dense fog, heavy rain, and winter snow barriers. This controlled distribution ensures immediate rear visibility on high-speed routes and dark highways without directing uncontrolled back-glare into the sightlines of following motorists.
Hermetic Polymer Sealing & Thermal Range Stabilization
Engineered to withstand severe rear-end road spray and turbulent environments, the assembly features a certified IP67 ingress protection perimeter. A specialized dual-layer internal silicone barrier isolates the circuit pathways against high-pressure wash systems, continuous water exposure, and fine road grime. The entire physical matrix is certified to maintain structural integrity across a validated thermal operating envelope spanning from -40°C to 85°C, resisting low-temperature structural cracking and high-temperature housing warping.
Optoelectronic Polymer Shielding & Impact Resisting Matrix
The outer lens is manufactured from specialized optical-grade polymethyl methacrylate (PMMA), treated with a dedicated anti-UV surface barrier to retard solar photo-oxidation and prevent long-term lens yellowing or clouding. This optical shield is matched with a flame-retardant acrylonitrile butadiene styrene and polycarbonate (ABS+PC) structural backing case, engineered to absorb persistent road vibrations and impact energy from flying stones or highway debris without micro-fracturing.
Low-Voltage Bus Architecture Matching & Power Grid Synchronization
The internal electrical load is engineered to match the BYD Tang 12V low-voltage auxiliary power distribution and Body Control Module (BCM) network specifications. Featuring integrated Electromagnetic Compatibility (EMC) anti-interference circuitry, the component operates safely alongside sensitive high-voltage New Energy Vehicle (NEV) electronics. Base-model hardware upgrades require standard secondary wiring integration to native tail lamp power feeds, drawing nominal current to eliminate dashboard diagnostic trouble codes, check-light alerts, or high-voltage traction battery power drainage.
Post-Purchase Technical Assurances & Risk Mitigation
Protocol Alpha: Factory-Backed Material Defect Coverage
This rear signaling assembly is accompanied by a standard twelve-month structural and optical integrity coverage framework, tracking strictly from the date of logistics delivery. This engineering alignment accounts for specialized component anomalies, including structural micro-cracking of the PMMA lens under validated thermal loads, severe premature photolytic yellowing from solar exposure, and moisture ingress tracking that bypasses the dual-layer silicone sealing parameters. This coverage handles direct component failure under standard operational envelopes but excludes physical impact damage sustained from road debris, off-road collisions, or non-standard electrical overloading during DIY circuit splicing.
Protocol Beta: Technical Installation & Engineering Alignment Support
Because integrating an active illumination matrix into base-trim passenger configurations requiring secondary wiring routing introduces distinct vehicle bus coordination factors, our engineering desk remains accessible for technical guidance. We provide documentation mapping for proper circuit integration alongside native body control networks to prevent localized system resistance faults or dashboard alert triggers. Should an unexpected interface discrepancy manifest post-transit, buyers have access to standard return or replacement tracking, provided the component remains free from physical mounting scars, altered factory terminals, or structural housing modifications.
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