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BTX™ ECM™ 630 High Throughput Electroporation System, 96-well with HT-200

ECM™ 630 High Throughput Electroporation System, 96-well with HT-200 is ideal for efficient transformation of bacteria, yeast and other microorganisms.

Brand:  BTX™ 45-0658


Additional Details : Weight : 17.00000kg

Product Code. 16893760

  • £17375.00 / Each
Estimated Shipment: 10-06-2024
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Description

Description

  • Wide and accurate voltage, capacitance, and internal resistance settings
  • Preset protocols for common bacteria, yeast, and microorganism types
  • Unlimited ability to add and modify user defined protocols
  • Data logs of delivered pulses and sample resistance for QC and troubleshooting
  • Simple to use large 7 inch touchscreen interface
  • Multiple Exponential Decay pulsing capabilities
  • Connection Type: Positive and Negative 4 mm Banana Cables
  • Includes: ECM™ 630 Generator, Cuvette Safety Dome, Cuvettes (10 Ea. of 1 mm, 2 mm, 4 mm), Cuvette Rack 660, 2 x 96-well Plates (2 mm gap), Plate Seals, HT-200 Automatic Plate Handler and Plate Adaptor
Specifications

Specifications

Transformation of Bacteria, Yeast, Microorganisms; Transfection of Some Mammalian Cell Types
50/60 Hz
Electroporator
505 to 3000 V (in 5 V steps)
Color Touchscreen
8.5 in.
12.75 in.
32.4 cm
40°F to 104°F
Exponential Decay Wave Time constant 0.5 ms to 133.875 ms
80% max. when operating at 25°C
16 lb.
11.3 in.
100 to 240 VAC
10, 25, 35, 50, 60, 75, 85 μF
Banana Cables
Touch Screen Display, Footswitch, Remote
Yes
Cuvette Safety Dome, Cuvette Safety Stand, HT-100 High-Throughput Electroporation Plate Handler, HT-200 Automatic High-Throughput Electroporation Plate Handler
BTX Electroporation
5 to 3000 V
5 to 500 V (in 1 V steps)
CE Marking, ETL Marking (UL, CSA), CB Scheme, EU RoHS, WEEE
21.5 cm
Positive and Negative
Generator, Cuvette Safety Dome, Cuvettes, Cuvette Rack, 96-well Plates, Plate Seals, HT-200 Automatic Plate Handler, Plate Adaptor
1 to 2 Pulses/Sample
4°C to 40°C
35 W (idle), 350 W (pulsing)
7.3 kg
28.6 cm
Non-sterile
25 to 3275 μF (in 25 μF steps)
<7 sec. (LV), <4 sec. (HV)
Exponential Decay Wave
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