Optodot Corporation

Applications

Optodot's energy and security products are derived from our two advanced materials platforms possessing broad and diverse commercialization capabilities covered by numerous patents.

 

Advanced Energy Components
High Performance Components to Power the Future
Lithium ion batteries
Hybrid Electric Vehicle
Optodot's SuperSafe™ Battery Separators


SuperSafe™ Battery Separators

  • Safer, thinner, cheaper separators for lithium batteries
  • Fast-growing and large million lithium battery separator market
  • Funded by the Department of Energy's Small Business Innovation Research (SBIR) program for battery separator development


Premium Energy Conserving Window Films

  • High visual transparency
  • Blocks at least 80% of the sun's infrared heat
  • Non-metallic with low visual reflectance and high infrared reflectance
  • Excellent stability to sunlight and heat


Organic Photovoltaics (OPVs)

  • More efficient solar energy conversion by better utilization of the infrared portion of sunlight
  • Excellent stability to sunlight and heat
  • Low materials cost
   
Advanced Infrared (IR) Optical Components
High Performance Components for Security and Communications
 
Organic Photovoltaics
Optical Communications


Fraud-Proof Security Markings

As crime, fraud and terrorism become a growing international concern, it is important to adopt new security features that will make it impossible to engage in illegal activity with false documents. Optodot's infrared (IR) optical coating and laser writing technology creates unique security markings that are machine-readable by existing IR scanners and provide instant authentication, eliminating human error. These novel security markings can be incorporated into ID cards, paper documents, retail tags, and other documents by a variety of coating and laminating methods.


Custom IR Optical Films

Optodot has the ability to custom design IR optical films for a variety of applications requiring one or more of the following properties:

  • IR blocking ranging from 30% to 99% across a wide optical band of 800 to 1450 nm
  • High visual transparency and low visible color
  • Low power IR laser digital imaging capabilities for machine-readable markings


Optical Communications

  • Integrated electro-optic transceivers at the nanoscale level utilize the performance of organic semiconductor materials for optical communications
  • Sub-micron integrated photonic interconnects, including modulators and photodetectors
   
   
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