Promotional price valid on web orders only. Your contract pricing may differ. Interested in signing up for a dedicated account number?
Learn More

Thermo Scientific™ Cyto-Cal™ Alignment Particles

Achieve exceptional accuracy and feedback on laser power, alignment and noise in excitation and emission optics with Thermo Scientific™ Cyto-Cal™ Alignment Particles.

$231.00

Specifications

Additive 0.05% Tween-20 Dispersant/Surfactant with 2 mM Sodium Azide preservative
Certifications/Compliance Each package of standards contains a Certificate of Calibration and Traceability to NIST which includes a description of the calibration method and its uncertainty, and a table of chemical and physical properties.
Content And Storage Unless otherwise stated, refrigerate (2° to 8°C) product when not in use but do not freeze. Store upright and keep bottle tightly sealed. Mix product with gentle inversion by hand or vortex mixer.
Contents Dyed polymer microspheres in water
Material Polystyrene
View More Specs

Alert:

Contains sodium azide.


Products 2
Catalog Number Mfr. No. Description Price Quantity & Availability  
Catalog Number Mfr. No. Description Price Quantity & Availability  
09-980-697
View Documents
Thermo Scientific™
FA3R
633 laser alignment beads
Each for $231.00
Add to Cart
 
09-980-696
View Documents
Thermo Scientific™
FA3O
488 laser alignment beads
Each for $231.00
Add to Cart
 
Description

Description

Achieve exceptional accuracy and feedback on laser power, alignment and noise in excitation and emission optics with Thermo Scientific™ Cyto-Cal™ Alignment Particles. Cyto-Cal Alignment Particles provide a superior method for optical alignment and flow cell focusing of flow cytometers. The 3μm particles are of the highest quality in size and fluorescence uniformity to permit the best possible optimization of each parameter being measured. These particles are internally dyed with chemically stable dyes and therefore have excellent signal stability.

  • Superior bead size and uniform dye intensity provide exceptional accuracy when performing the alignment of flow cytometer optics to give a high level of confidence in the instrument results
  • Polystyrene 3μm microspheres contain encapsulated dye
  • Superior bead size and uniform dye intensity provide exceptional accuracy
  • Particles are internally dyed with chemically stable dyes for excellent signal stability
  • Cyto-Cal™ 488 Alignment beads are excited by the 488nm spectral line of the argon laser and have broad emission, allowing them to be used to align the FL1 (FITC), FL2 (PE) and FL3 (PE-Cy5) channels simultaneously
  • Cyto-Cal™ 633 Alignment beads are optimally excited with the 633nm He-Ne laser (635nm diode laser) and have a maximum emission at 700nm; they are designed to align the FL4 (APC) channel


Contains sodium azide.

Specifications

Specifications

0.05% Tween-20 Dispersant/Surfactant with 2 mM Sodium Azide preservative
Unless otherwise stated, refrigerate (2° to 8°C) product when not in use but do not freeze. Store upright and keep bottle tightly sealed. Mix product with gentle inversion by hand or vortex mixer.
Polystyrene
1.05g/cm³
Stable for a minimum of 12 months
3 mL
Each package of standards contains a Certificate of Calibration and Traceability to NIST which includes a description of the calibration method and its uncertainty, and a table of chemical and physical properties.
Dyed polymer microspheres in water
Alignment Particle
3 mL
<3%
3 μm
SDS
Documents

Documents

Product Certifications
Provide Content Correction

We continue to work to improve your shopping experience and your feedback regarding this content is very important to us. Please use the form below to provide feedback related to the content on this product.

Product Title

By clicking Submit, you acknowledge that you may be contacted by Fisher Scientific in regards to the feedback you have provided in this form. We will not share your information for any other purposes. All contact information provided shall also be maintained in accordance with our Privacy Policy.

Cancel Submit