Optomistic Products
Optomistic Products' Universal LightProbes™ are small, highly versatile sensors and fiber-optic probes for reliable LED test of color (including white LEDs) and LED intensity, on printed-circuit boards using in-circuit test (ICT) fixtures and automatic test equipment (ATE) for production testing of circuit boards and their components.
- (207) 865-9181
- (207) 510-8039
- info@optomisticproducts.com
- PO Box 751
S. Freeport, ME 04078
United States of America
-
Product
Small Aperture Fiber-Optic Probes
Fiber-optic Probe
Small-aperture Fiber-optic Probes are best for testing closely-spaced LEDs. With an aperture of 1mm, and a diameter of 1.2mm/0.050 inches, they can test LEDs spaced as close as 0.050 inches on center. Small-aperture Fiber-optic Probes are available with straight or right-angle stainless-steel tips as shown below. This allows for precise customization to your mechanical constraints.
-
Product
Fiber-Optic Probes
Fiber-optic Probe
Designed with an unparalleled optical quality finish, Optomistic Products has developed a wide array of Fiber-optic Probes to accommodate your specific LED test requirement and mechanical constraints.
-
Product
Accessories
-
Universal LightProbes are easily installed with one-hole fixing. Optomistic Products provides several accessories to make the use and installation of Universal LightProbes fast and simple, including The Sensor Six-Pack, Sensor and Fiber-optic Probe clamps, and Universal LightProbe Connector Cables.
-
Product
S2 Spectra Sensors
ULP-S2 WBI/V
LED Sensor
The ULP S2 Spectra Sensor tests for LED intensity, and for any color in the visual spectrum, plus white. The S2 Spectra Sensor is well-suited for the test of “boundary” color LEDs, as it can unambiguously and repeatedly distinguish between not only adjacent visual colors such as green and yellow, but it can determine different hues of the same color such as yellow and amber, regardless of LED intensity. Implemented in a unique and customizable 2-Part solution, the S2 Spectra Sensor is assembled with your choice of Fiber-Optic Probe, including for the test of densely-spaced LEDs, bright LEDs, dim or misaligned LEDs, right-angle LEDs, and more, including the popular “Trident” Fiber-Optic Probes to sequentially test 3 LEDs with a single Sensor.Operating temperature range: 0oC to 70oCPower consumption: Operates between +5 and 28 volts D.C., at 6mA max. Less than 4.75 volts is not recommendedVoltage protection: Withstands up to +40 volts, & reverse polarity to -18 voltsOutput Pins: 4 gold-plated standard wire-wrap pins (0.025 in. sq.)Output Loads: ‘Int.’& ‘Color’- 2Kohms min., 100pF max.Sensor Size: 0.560 in. dia x 1.38 in. long.Typical response time: Typical response time: <10mS capture time; <100mS overall response timefor color and intensity simultaneouslyFiber-Optic Probes: Can be paired with any Universal LightProbe Fiber-Optic Probe
-
Product
S2 Ultra High Sensitivity Sensors
ULP-S2 UHS
LED Sensor
Universal LightProbe S2 Ultra-High Sensitivity Sensors are designed for the test of very dim LEDs, as low as 0.01 mcd minimum, and including very low light-level LED-illuminated action-indicator switches, controls and status indicators for night/dark viewing in automobile interiors. Recommend the use of wide-aperture stainless- steel encased Fiber- optic Probes with contacting tips.Operating temperature range: 0oC to 70oCPower consumption: Operates between +5 and 28 volts D.C., at 6mA max. Less than 4.75 volts is not recommendedVoltage protection: Withstands up to +40 volts, & reverse polarity to -18 voltsSignal Output Loads: 20 mA max. Non-inductive.Output Pins: 3 gold-plated standard wire-wrap pins (0.025 in. sq.)Sensor Size: 0.560 in. dia x 1.38 in. long.Typical response times: <190mSFiber-Optic Probes: Wide-Aperture Fiber-Optic Probe recommendedDesigned for the test of very dim LEDs, as low as 0.01 mcd minimum
-
Product
Universal LightProbe Connector Cables
ULP-CC
-
Provides fool-proof sensor wiring with color-coded and labeled wires, corresponding to sensor pin labeling, with separate sheathing of individual sensor wires for easy identification at the ATE interface. These will save time and over-all assembly cost, and are long, durable and tested.







