Xmart publishes selected third-party test reports, in-house verification records and engineering development data for LED strip products and related components. Each evidence record identifies the tested configuration, method, conditions, sample quantity, result and limitation where the information is available.
Important: Test results apply only to the identified sample or configuration. Buyers should confirm model coverage before using a result for product selection, certification or project approval.
A test result applies to the identified construction, sample and test conditions. It does not automatically cover every LED strip in the same product category.
Each record states whether the test was conducted by a third-party laboratory, the Xmart in-house team or a component supplier.
Test duration, sample quantity, equipment, acceptance criteria and known limitations are disclosed where the records support them.
Customer names, private-label brands and proprietary model numbers may be removed while the tested construction and relevant conditions are retained.
These evidence pages present selected test methods and results that have completed document review. Additional records will be linked after technical data, model coverage and public-use permissions are confirmed.
Selected IP20 and IP65 flexible LED strip configurations were evaluated for pull force, torque, repeated bending and low-temperature impact under IEC 60598-2-21 test conditions.
Limitation: Results apply only to the configurations identified in the test reports.
View Mechanical Strength EvidenceSelected IP20 and IP65 LED strip configurations were evaluated to IK03, while the tested neon flex configuration was evaluated to IK10 under IEC 62262 test conditions.
Limitation: The IK level is construction-specific and must not be applied to untested LED strip or neon flex models.
View Impact Resistance EvidenceMeasured input and end-of-run voltage data are used to compare selected 24V LED strip configurations and determine when shorter runs, dual-end feed or power injection should be considered.
Limitation: Measured results depend on power, PCB construction, current, run length and test setup.
View Voltage Drop EvidenceThe following categories organize Xmart test records by the buyer decision they support. Individual evidence pages will be activated after the corresponding record has completed technical review and NDA redaction.
Third-party evaluation of selected flexible LED strip configurations under specified pull, torque, bending and low-temperature impact conditions.
Impact resistance verification for the tested unprotected LED strip construction at 0.35 J.
Impact resistance verification for the tested transparent silicone-tube LED strip construction at 0.35 J.
Impact resistance verification for the tested neon flex construction at 20 J.
In-house evaluation of selected LED strip samples under repeated twisting and controlled winding conditions.
Internal verification used to examine intermittent connection, FPC damage and functional changes after repeated movement.
Verification of selected sealed LED strip assemblies using the documented nozzle diameter, water flow, distance, duration and post-test inspection method.
Note: Only records using the correct documented IPX5 test conditions may be linked to this card.
Evaluation of selected LED strip, silicone, adhesive and endcap assemblies under repeated transitions between low and high temperatures.
Powered or unpowered high-temperature and high-humidity exposure used to evaluate structural condition, function and selected optical measurements.
UVA-340 exposure records used to inspect yellowing, cracking, powdering, deformation, adhesion and functional condition.
Salt spray exposure used to evaluate corrosion risk on selected solderless connector terminals and metallic contact areas.
A selected adhesive and endcap assembly was evaluated through water-jet exposure, thermal shock and UVA weathering.
Limitation: Results apply only to the tested adhesive, sleeve and endcap construction.
Measured voltage at defined run lengths supports power-feed and maximum-run decisions for selected LED strip configurations.
Temperature measurements at the LED, resistor, solder pad, silicone surface and ambient location are used to review thermal operating conditions.
Selected samples are operated for a defined duration and measured before and after testing to review function and short-duration lumen change.
Limitation: Short-duration aging must not be presented as a 50,000-hour lifetime claim.
Repeated on-and-off cycling is used to identify intermittent operation, delayed start, flicker or component connection failure.
Selected low-voltage LED strip constructions are checked for electrical breakdown under the documented test voltage and duration.
CCT, Duv and SDCM measurements are used to evaluate color consistency for selected samples, production lots and repeat orders.
Component-level photobiological documentation may be available for selected LED packages. Component results do not automatically establish the risk group of a finished Xmart LED strip or lighting system.
Limitation: Finished-product photobiological classification requires verification of the complete light source or system under the applicable operating and measurement conditions.
Selected board-to-board and wire-to-board connector assemblies were evaluated through humidity, salt spray, UV exposure, repeated movement and pull testing.
Limitation: One tested configuration recorded a pull-test failure and requires corrective-action and retest evidence before a final reliability conclusion is published.
Selected sealed connector assemblies were evaluated for environmental exposure, mechanical movement, pull strength and sealing performance.
Limitation: Water-test classification must be confirmed against the recorded nozzle diameter and flow rate before publication.
Pull testing examines whether the connector, solder joint and FPC pad remain mechanically secure and electrically continuous under the defined load and duration.
Testing focuses on water ingress, adhesive cracking, debonding, detachment and visible material change after environmental exposure.
A defined bonded length, mounting surface, applied load and test duration are used to evaluate adhesive holding performance.
Packaged samples are exposed to a defined vibration condition before inspection of product appearance, structure and function.
Packaged LED strip products are tested using defined corner, edge and face drop sequences based on package weight.
Limitation: Packaging test results apply to the tested carton, internal protection, product quantity and total package weight.
Customer names, private-label brands and proprietary model numbers may be redacted under NDA. Redaction must not change the tested condition, measured value or technical conclusion.
No. LED strip performance can change with voltage, power, PCB width, copper construction, LED density, waterproof structure, connector type, adhesive, run length and installation condition. A result should only be applied to another model after Xmart confirms that the relevant construction and operating conditions are covered.
Buyer provides product and application requirements.
Xmart identifies the relevant configuration.
Existing test evidence is checked for applicability.
Additional verification is arranged when the configuration is not covered.
The confirmed evidence is linked to the approved order specification.
Test evidence is configuration-specific. OEM and private-label buyers can provide the required voltage, wattage, LED density, PCB width, IP construction, run length, connector type and intended application so Xmart can confirm which records apply and whether additional verification is required.
Reviewed by Xmart Engineering and Quality Team
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