Certificate of Analysis
HEMP QUALITY ASSURANCE TEST

Sample Name:

50mg Full Spectrum CBD Softgels

Other

Date Issued:

07/13/2026

Total THC 1.614 mg/unit
Total CBD 50.941 mg/unit
Sum Cannabinoids 53.803 mg/unit
Total Cannabinoids 53.801 mg/unit

Sample Information

Sample Details

Sample ID:260710N031

Batch Number:CLFSCBDSG50

Cultivator / Manufacturer

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Distributor / Tested For

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Cannabinoid Analysis - Summary

Total THC: 1.614 mg/unit

Total CBD: 50.941 mg/unit

Sum of Cannabinoids: 53.803 mg/unit

Total Cannabinoids: 53.801 mg/unit

Total THC/CBD is calculated using the following formulas to take into account the loss of a carboxyl group during the decarboxylation step:
Total THC = Δ9-THC + (THCa (0.877))
Total CBD = CBD + (CBDa (0.877))

Sum of Cannabinoids = Δ9-THC + THCa + CBD + CBDa + CBG + CBGa + THCV + THCVa + CBC + CBCa + CBDV + CBDVa + Δ8-THC + CBL + CBN

Total Cannabinoids = (Δ9-THC+0.877*THCa) + (CBD+0.877*CBDa) + (CBG+0.877*CBGa) + (THCV+0.877*THCVa) + (CBC+0.877*CBCa) + (CBDV+0.877*CBDVa) + Δ8-THC + CBL + CBN

Sum of Cannabinoids: The concentration of each individual cannabinoid added together as they are, without accounting for decarboxylation. This measurement is of particular importance for certain cannabis products that are not intended to be heated prior to application or consumption.

Total Cannabinoids: The concentration of each acidic cannabinoid, multiplied by 0.877 to account for the loss of molecular mass that happens as it is converted to a neutral cannabinoid when heated. Then this calculated concentration is added to the concentrations of the corresponding neutral cannabinoid already present. This corrected data is of particular importance to both producers and consumers of products intended to be heated prior to application or consumption.

Safety Analysis - Summary

Residual Solvents: Pass

View Complete Test Results:

Tested by high-performance liquid chromatography with diode-array detection (HPLC-DAD).

Method: QSP 1157 - Analysis of Cannabinoids by HPLC-DAD

Summary

Total THC: 1.614 mg/unit

9-THC+0.877*THCa)

Total CBD: 50.941 mg/unit

(CBD+0.877*CBDa)

Total Cannabinoids: 53.801 mg/unit

Total CBG: 0.486 mg/unit

Total CBG (CBG+0.877*CBGa)

Total THCV: ND

Total THCV (THCV+0.877*THCVa)

Total CBC: 0.022 mg/unit

Total CBC (CBC+0.877*CBCa)

Total CBDV: 0.330 mg/unit

Total CBDV (CBDV+0.877*CBDVa)

Learn more

The cannabis plant contains dozens of active compounds called cannabinoids. These compounds are the primary contributors to the psychoactive effects of cannabis.

Cannabinoid testing determines the potency of a sample to aid in dosage considerations.

Cannabinoid Test Results

07/13/2026

Result Views

Swipe left on table to see additional columns

Compound LOD/LOQ
(mg/g)
Measurement
Uncertainty
(mg/g)
Result
(mg/g)
Result
(%)
Cannabidiol (CBD) 0.004 / 0.011 ±2.4677 66.157 6.6157
Δ9 Tetrahydrocannabinol (Δ9THC) 0.002 / 0.014 ±0.1142 2.081 0.2081
Cannabigerol (CBG) 0.002 / 0.006 ±0.0306 0.631 0.0631
Cannabidivarin (CBDV) 0.002 / 0.012 ±0.0175 0.429 0.0429
Cannabinol (CBN) 0.001 / 0.007 ±0.0101 0.352 0.0352
Cannabicyclol (CBL) 0.003 / 0.010 ±0.0066 0.178 0.0178
Cannabichromene (CBC) 0.003 / 0.010 ±0.0009 0.029 0.0029
Tetrahydrocannabinolic Acid (THCa) 0.001 / 0.005 ±0.0003 0.017 0.0017
Cannabichromenic Acid (CBCa) 0.001 / 0.015 N/A ND ND
Cannabidiolic Acid (CBDa) 0.001 / 0.026 N/A ND ND
Cannabigerolic Acid (CBGa) 0.002 / 0.007 N/A ND ND
Tetrahydrocannabivarin (THCV) 0.002 / 0.012 N/A ND ND
Cannabidivarinic Acid (CBDVa) 0.001 / 0.018 N/A ND ND
Tetrahydrocannabivarinic Acid (THCVa) 0.002 / 0.019 N/A ND ND
∆8 Tetrahydrocannabinol (Δ8THC) 0.01 / 0.02 N/A ND ND
SUM OF CANNABINOIDS 69.874 mg/g 6.9874%
Unit Mass:

0.77 gram

Swipe left on table to see additional columns

Δ9-THC per Unit 1.602 mg/unit
Total THC per Unit 1.614 mg/unit
CBD per Unit 50.941 mg/unit
Total CBD per Unit 50.941 mg/unit
Sum of Cannabinoids per Unit 53.803 mg/unit
Total Cannabinoids per Unit 53.801 mg/unit
Learn more

The cannabis plant contains dozens of active compounds called cannabinoids. These compounds are the primary contributors to the psychoactive effects of cannabis.

Cannabinoid testing determines the potency of a sample to aid in dosage considerations.

Residual Solvent analysis utilizing gas chromatography-mass spectrometry (GC-MS).

Method: QSP 1204 - Analysis of Residual Solvents by GC-MS

Residual Solvents Test Results

07/13/2026

PASS

Swipe left on table to see additional columns

Compound LOD/LOQ
(μg/g)
Action Limit
(μg/g)
Measurement
Uncertainty
(μg/g)
Result
(μg/g)
Result
Propane 0.234 / 0.781 5000 N/A ND Pass
2-Methylpropane (Isobutane) 0.052 / 0.173 N/A ND
n-Butane 0.019 / 0.063 5000 N/A ND Pass
Total Butanes ± ND
n-Pentane 0.310 / 1.033 5000 N/A ND Pass
n-Hexane 0.110 / 0.366 290 N/A ND Pass
2,2-Dimethylpentane (Neoheptane) 0.493 / 1.642 N/A ND
2,3-Dimethylpentane 1.009 / 3.365 N/A ND
2,4-Dimethylpentane 0.737 / 2.458 N/A ND
3,3-Dimethylpentane 0.198 / 0.660 N/A ND
2,2,3-Trimethylbutane (Triptane) 0.521 / 1.738 N/A ND
2-Methylhexane (Isoheptane) 0.610 / 2.034 N/A ND
3-Methylhexane 0.235 / 0.785 N/A ND
3-Ethylpentane 0.304 / 1.012 N/A ND
n-Heptane 13.12 / 43.72 5000 N/A ND Pass
Total Heptanes ± ND
Benzene 0.089 / 0.295 1 N/A ND Pass
Toluene 0.115 / 0.382 890 N/A ND Pass
1,3-Dimethylbenzene (m-Xylene) / 1,4-Dimethylbenzene (p-Xylene) 0.451 / 1.502 N/A ND
1,2-Dimethylbenzene (o-Xylene) 0.387 / 1.289 N/A ND
Total Xylenes 2170 ± ND Pass
Methanol 53.92 / 163.4 3000 N/A ND Pass
Ethanol 8.984 / 27.23 5000 N/A ND Pass
2-Propanol (Isopropyl Alcohol) 8.421 / 25.52 5000 N/A ND Pass
Acetone 10.59 / 32.08 5000 N/A ND Pass
Ethyl Acetate 1.123 / 3.745 5000 N/A ND Pass

Total Butanes = n-Butane + 2-Methylpropane (Isobutane)

Total Heptanes = 2,2-Dimethylpentane (Neoheptane) + 2,3-Dimethylpentane + 2,4-Dimethylpentane + 3,3-Dimethylpentane + 2,2,3-Trimethylbutane (Triptane) + 2-Methylhexane (Isoheptane) + 3-Methylhexane + 3-Ethylpentane + n-Heptane

Total Xylenes = 1,2-Dimethylbenzene (o-Xylene) + 1,3-Dimethylbenzene (m-Xylene) / 1,4-Dimethylbenzene (p-Xylene)

Notes

COA Notes:

Sample unit mass provided by client.

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