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The ATP fluorescence detector is based on the principle of firefly luminescence, using the
"luciferase luciferin system" to quickly detect adenosine triphosphate (ATP). ATP swabs
contain reagents that can lyse cell membranes, which can release ATP from cells and react
with specific enzymes contained in the reagents to produce light. The luminescence value is
then detected using a fluorescence lux meter, and the number of microorganisms is proportional
to the luminescence value. Since all living cells contain a constant amount of ATP, the ATP content
can clearly indicate the amount of residual microorganisms and other organisms in the sample,
which is used to determine the hygiene condition.
ATP fluorescence detector is widely used in various industries such as bacterial and microbial
detection, medical and health, food safety, market law enforcement, surface cleanliness testing,
medical and epidemic prevention, water quality and water management, production line hygiene,
industrial water treatment, environmental protection testing, customs entry and exit quarantine,
and other law enforcement departments.
1. Practicality: upper and lower limits can be set according to environmental detection requirements,
achieving rapid data evaluation and warning, and rapid screening of surface cleanliness.
2. High sensitivity: 10–15 to 10–18 mol.
3. Fast speed: conventional cultivation methods require 18-24 hours or more,
while ATP only takes a dozen seconds.
4. Feasibility: There is a clear correlation between the number of microorganisms and the ATP content
in microorganisms. By detecting ATP content, the number of microorganisms involved in the reaction can
be indirectly determined
5. Operability: Traditional cultivation methods require trained technicians to operate in the laboratory;
The ATP rapid cleanliness detection operation is very simple, and only simple training is needed for on-site
operation by general staff.
6. Better Experience: The test tube adopts a flexible plug-in design, which can be regularly cleaned and used
for a long time, extending the lifespan of the instrument.
Model | ATP-I |
Display Screen | 3.5-inch high-precision graphic touch screen |
Processor | 32-bit high-speed data processing chip |
Detection Accuracy | 1×10⁻¹⁸ mol ATP |
Coliform Bacteria | 1–106 CFU |
Detection Range | 0 to 999999 RLU |
Detection Time | 15 s |
Detection Interference | ± 5% or ± 5 RLU |
Operating Temperature Range | 5–40 ℃ |
Operating Humidity Range | 20–85% |
ATP Recovery Rate | 90–110% |
Detection Mode | RLU, Escherichia coli screening |
Output Interface | Equipped with a mini USB interface, the results can be uploaded to a PC |
Power Supply | 5 V, 2 A |
External Size (W×D×H) | 188×77×37 mm |
Shipping Size (W×D×H) | 330×280×220 mm |
N.W./G.W. | 0.25/2.3 kg |
The ATP fluorescence detector is based on the principle of firefly luminescence, using the
"luciferase luciferin system" to quickly detect adenosine triphosphate (ATP). ATP swabs
contain reagents that can lyse cell membranes, which can release ATP from cells and react
with specific enzymes contained in the reagents to produce light. The luminescence value is
then detected using a fluorescence lux meter, and the number of microorganisms is proportional
to the luminescence value. Since all living cells contain a constant amount of ATP, the ATP content
can clearly indicate the amount of residual microorganisms and other organisms in the sample,
which is used to determine the hygiene condition.
ATP fluorescence detector is widely used in various industries such as bacterial and microbial
detection, medical and health, food safety, market law enforcement, surface cleanliness testing,
medical and epidemic prevention, water quality and water management, production line hygiene,
industrial water treatment, environmental protection testing, customs entry and exit quarantine,
and other law enforcement departments.
1. Practicality: upper and lower limits can be set according to environmental detection requirements,
achieving rapid data evaluation and warning, and rapid screening of surface cleanliness.
2. High sensitivity: 10–15 to 10–18 mol.
3. Fast speed: conventional cultivation methods require 18-24 hours or more,
while ATP only takes a dozen seconds.
4. Feasibility: There is a clear correlation between the number of microorganisms and the ATP content
in microorganisms. By detecting ATP content, the number of microorganisms involved in the reaction can
be indirectly determined
5. Operability: Traditional cultivation methods require trained technicians to operate in the laboratory;
The ATP rapid cleanliness detection operation is very simple, and only simple training is needed for on-site
operation by general staff.
6. Better Experience: The test tube adopts a flexible plug-in design, which can be regularly cleaned and used
for a long time, extending the lifespan of the instrument.
Model | ATP-I |
Display Screen | 3.5-inch high-precision graphic touch screen |
Processor | 32-bit high-speed data processing chip |
Detection Accuracy | 1×10⁻¹⁸ mol ATP |
Coliform Bacteria | 1–106 CFU |
Detection Range | 0 to 999999 RLU |
Detection Time | 15 s |
Detection Interference | ± 5% or ± 5 RLU |
Operating Temperature Range | 5–40 ℃ |
Operating Humidity Range | 20–85% |
ATP Recovery Rate | 90–110% |
Detection Mode | RLU, Escherichia coli screening |
Output Interface | Equipped with a mini USB interface, the results can be uploaded to a PC |
Power Supply | 5 V, 2 A |
External Size (W×D×H) | 188×77×37 mm |
Shipping Size (W×D×H) | 330×280×220 mm |
N.W./G.W. | 0.25/2.3 kg |