NSL-6110 Allicdata Electronics
Allicdata Part #:

NSL-6110-ND

Manufacturer Part#:

NSL-6110

Price: $ 3.12
Product Category:

Sensors, Transducers

Manufacturer: Luna Optoelectronics
Short Description: PHOTOCELL CDS 170OHM TO-18
More Detail: CDS Cell 615nm 1.34 ~ 2.66 kOhms @ 21 lux
DataSheet: NSL-6110 datasheetNSL-6110 Datasheet/PDF
Quantity: 549
1 +: $ 2.82870
5 +: $ 2.49480
10 +: $ 2.20374
25 +: $ 1.78794
50 +: $ 1.58004
100 +: $ 1.53846
500 +: $ 1.28898
1000 +: $ 1.20582
5000 +: $ 1.12266
Stock 549Can Ship Immediately
$ 3.12
Specifications
Series: --
Part Status: Active
Wavelength: 615nm
Voltage - Max: 100Vpk
Cell Resistance (Min) @ Dark: 1.3 MOhms @ 5s
Cell Resistance @ Illuminance: 1.34 ~ 2.66 kOhms @ 21 lux
Operating Temperature: -60°C ~ 75°C (TA)
Description

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Optical sensors, or photo detectors, are sensitive devices that react to a light source by producing a usable electrical output signal. One of the most widely used and well-known optoelectronic components is the CdS photocell. One example of such a device is the NSL-6110 CdS cell, a high-precision, high-gain photo detector that is commonly used in a variety of applications.The NSL-6110 is a single-element CdS cell with a dark resistance of up to 10MΩ. It uses a special semiconductor material, cadmium sulfide, to convert light into electrical signals. When exposed to light, the CdS element produces a voltage that is proportional to the light intensity. The high-precision NSL-6110 photocell has a 0.2V to 4V dynamic range, a light sensitivity of 20 to 250 mV/lux, and an adjustable voltage gain.The NSL-6110 has a wide range of applications, from defense and aerospace applications, to medical and industrial instrumentation. In precision motion control systems, the NSL-6110 can be used as an optical encoder in order to create single or multi-axis motion and position control for robots, servo motors, and other devices. In medical applications, the NSL-6110 can be used to monitor the intensity of a light source during endoscopic surgery or to measure light intensity in fluorescent microscopes and microscopy techniques. In spacecrafts, the NSL-6110 can be used to indicate position of a spacecraft based on angular position of the sun within a reference coordinate system.The NSL-6110 works by using a different voltage across the CdS layer to sense changes in light levels which create a voltage change. The cell has two terminals, an anode (+) and a cathode (-). When a positive voltage is applied to the anode and a negative voltage to the cathode, it creates an electric field across the CdS layer. When light is absorbed, it generates minority carriers and creates an increase in voltage across the CdS layer. This change in voltage is then measured and used to calculate the light intensity.The NSL-6110 is also capable of measuring light over a wide spectral range, from UV to IR. The device works by detecting the photoelectric current created by the photoelectric effect. When the photocurrent is low, it can be amplified using a transimpedance amplifier to create a voltage signal. This voltage signal is then used to measure the light intensity.The NSL-6110 is a highly sensitive and accurate optoelectronic component that can be used in a variety of applications. It is an effective and reliable device for measuring light intensities in motion control, medical instrumentation, and space exploration. The device’s wide spectral range, fast response time, and adjustable voltage gain make it an ideal choice for many applications.

The specific data is subject to PDF, and the above content is for reference

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