Microplate Reader FM-MPR-A104

Microplate Reader FM-MPR-A104

Microplate Reader FM-MPR-A104 offers a wavelength range of 200 to 1000 nm, with 1 nm steps, ensuring precise absorbance measurements. It features an automatic calibration system for light source, grating and detector, providing reliable operation. Its independent cuvette slot allows for simultaneous detection and incubation. It is equipped with powerful software for data analysis and multiple export options. Our microplate reader is designed for accurate data analysis in laboratory settings.

  •  High-quality data and stable performance
  •  User authority classification
  •  Printer connectivity via PC
  •  Optional double beam system
  •  Optional u-Nano Ultra-Micro Plate

Cuvette Mode Yes
Microplate Type 96/384 wells
Detection Mode Absorbance
Light Source Xenon flash lamp/number of flashes > 109
Wavelength Range 200 to 1000 nm
Wavelength Accuracy 2 nm
Wavelength Repeatability 0.2 nm
Optical System Monochromator, 1 nm step
Reading Range 0 to 4.0 OD
Bandwidth < 2.5 nm
Detection System 2 silicon photodetectors, one for measurement, one for reference
Linear at 450nm R2 ≥ 0.999, (0.0 to 3.0 Abs)
Absorbance Accuracy at 450nm ± (1.0 % + 0.003 Abs), (0 to 2.0 Abs); ± 2.0 %, (2.0 to 2.5 Abs)
Absorbance Repeatability at 450nm CV < 0.5 % or SD < 0.003 accurate mode; CV < 1.0% fast mode
Measuring Speed 96 well plate: fast mode < 8 seconds, accurate mode < 28 seconds (end point method)
Shaking Linear, 3 speeds adjustable
Temperature Range RT + 4℃ to 45℃
Temp. Accuracy & Uniformity ±0.5℃ at 37℃, ±0.5℃ at 37℃
User Interface Built-in software, independent use
Operation Display 10-inch LCD display
Internal Storage 16 G storage, can store more than 20,000 data files
Port 1 type B USB interface, 2 type A USB interfaces, 1 network port
Robotic Arm Compatibility Temporarily incompatible
Electricity DC 24 V, 6.67 A
External Dimension (W × D × H) 300 × 500 × 260 mm
Package Dimension (W × D × H) 690 × 490 × 480 mm
Net Weight 15.5 kg
Gross Weight 21 kg

Microplate Reader is used for high-throughput sample analysis in fields like drug discovery and diagnostics. It is widely used in research labs, pharmaceutical companies, hospitals, and academic institutions.