Allicdata Part #: | 1125-1317-ND |
Manufacturer Part#: |
MTAPD-07-012 |
Price: | $ 15.36 |
Product Category: | Sensors, Transducers |
Manufacturer: | Marktech Optoelectronics |
Short Description: | PHOTODIODE AVALANCHE IR LCC-6 |
More Detail: | Photodiode 905nm 600ps 6-LCC |
DataSheet: | MTAPD-07-012 Datasheet/PDF |
Quantity: | 12 |
1 +: | $ 13.96080 |
10 +: | $ 13.36730 |
25 +: | $ 10.39650 |
100 +: | $ 8.91135 |
250 +: | $ 8.46580 |
500 +: | $ 8.02018 |
Series: | -- |
Packaging: | Cut Strip |
Part Status: | Active |
Wavelength: | 905nm |
Color - Enhanced: | -- |
Spectral Range: | 400nm ~ 1100nm |
Diode Type: | Avalanche |
Responsivity @ nm: | 55 A/W @ 905nm |
Response Time: | 600ps |
Voltage - DC Reverse (Vr) (Max): | 200V |
Current - Dark (Typ): | 200pA |
Active Area: | 230µm Dia |
Viewing Angle: | -- |
Operating Temperature: | -20°C ~ 85°C |
Mounting Type: | Surface Mount |
Package / Case: | 6-LCC |
Due to market price fluctuations, if you need to purchase or consult the price. You can contact us or emial to us: sales@allicdata.com
Optical Sensors are devices that detect optical light and convert it into an electrical signal. Photodiodes are an example of this type of device. The MTAPD-07-012 is a Silicon Photodiode which has a number of uses and features.
This photodiode is an epitaxial domain which is constructed from silicon with a special type of antireflection coating. This type of coating is used to minimize light scattering and improve the sensitivity of the device. Additionally, the package has two separate absorptive layers which enable the device to detect wavelengths from 350 to 1050nm. This type of construction provides an unusually wide spectral response.
This type of device is ideal for applications such as fiberoptic communication systems. It can be used to detect the light that is transmitted along the fiberoptic cable and convert it into an electrical signal. This electrical signal can then be amplified and sent as data along the fiberoptic cable. Additionally, this device can be used for fiberoptic based sensing applications. It can be used to detect changes in the amount of light coming from the fiberoptic cable which can then be used to measure changes in the environment such as temperature or pressure.
The working principle of the MTAPD-07-012 is based on the same principles as other photodiodes. The device is divided into two parts, an anode and a cathode. When illuminated with light, the anode and cathode layers react in such a way as to create a current. This current can then be measured and used to detect the presence of light and the wavelength of the light. As the amount of light varying, the amount of current generated will vary accordingly.
The MTAPD-07-012 also offers a number of other features when compared to other photodiodes. One of these features is its very low dark formation current which enables the device to stay on even when there is no light present. This helps to keep the device in an active state, which is very beneficial in sensing applications. Additionally, this device has a very wide temperature range, from -10 to +60°C. This wide temperature range means that it can be used in various types of operating environments.
In conclusion, the MTAPD-07-012 is a silicon photodiode that is capable of detecting a wide range of wavelengths from 350 to 1050nm. This device is ideal for fiberoptic communication and sensing applications where it can be used to detect changes in the amount of light that is present on the fiberoptic cable. The working principle of this device is based on the generation of electricity when illuminated with light. This device also offers a number of additional features such as a low dark current and a wide temperature range which can make it ideal for various types of applications.
The specific data is subject to PDF, and the above content is for reference
Part Number | Manufacturer | Price | Quantity | Description |
---|
MTAPD-06-001 | Marktech Opt... | 24.84 $ | 227 | PHOTODIODE AVALANCHE IR ... |
MTAPD-06-003 | Marktech Opt... | 24.84 $ | 30 | PHOTODIODE AVALANCHE IR ... |
MTAPD-07-005 | Marktech Opt... | 16.39 $ | 38 | PHOTODIODE AVALANCHE IR L... |
MTAPD-07-016 | Marktech Opt... | 16.39 $ | 24 | PHOTODIODE AVALANCHE IR L... |
MTAPD-06-016 | Marktech Opt... | 29.29 $ | 15 | PHOTODIODE AVALANCHE IR ... |
MTAPD-06-013 | Marktech Opt... | 29.29 $ | 13 | PHOTODIODE AVALANCHE IR ... |
MTAPD-06-006 | Marktech Opt... | 29.29 $ | 8 | PHOTODIODE AVALANCHE IR ... |
MTAPD-06-010 | Marktech Opt... | 24.84 $ | 11 | PHOTODIODE AVALANCHE IR ... |
MTAPD-06-009 | Marktech Opt... | 24.84 $ | 23 | PHOTODIODE AVALANCHE IR ... |
MTAPD-07-007 | Marktech Opt... | 16.39 $ | 13 | PHOTODIODE AVALANCHE IR L... |
MTAPD-07-014 | Marktech Opt... | 16.39 $ | 6 | PHOTODIODE AVALANCHE IR L... |
MTAPD-06-004 | Marktech Opt... | 24.84 $ | 7 | PHOTODIODE AVALANCHE IR ... |
MTAPD-06-007 | Marktech Opt... | 29.29 $ | 10 | PHOTODIODE AVALANCHE IR ... |
MTAPD-06-014 | Marktech Opt... | 29.29 $ | 7 | PHOTODIODE AVALANCHE IR ... |
MTAPD-07-003 | Marktech Opt... | 15.36 $ | 17 | PHOTODIODE AVALANCHE IR L... |
MTAPD-07-012 | Marktech Opt... | 15.36 $ | 12 | PHOTODIODE AVALANCHE IR L... |
MTAPD-07-011 | Marktech Opt... | 15.36 $ | 4 | PHOTODIODE AVALANCHE IR L... |
MTAPD-07-001 | Marktech Opt... | 15.36 $ | 13 | PHOTODIODE AVALANCHE IR L... |
MTAPD-07-009 | Marktech Opt... | 15.36 $ | 6 | PHOTODIODE AVALANCHE IR L... |
MTAPD-07-010 | Marktech Opt... | 15.36 $ | 8 | PHOTODIODE AVALANCHE IR L... |
MTAPD-07-013 | Marktech Opt... | 16.39 $ | 4 | PHOTODIODE AVALANCHE IR L... |
MTAPD-07-015 | Marktech Opt... | 16.39 $ | 2 | PHOTODIODE AVALANCHE IR L... |
MTAPD-06-002 | Marktech Opt... | 21.95 $ | 1000 | PHOTODIODE AVALANCHE IR ... |
MTAPD-06-011 | Marktech Opt... | 21.95 $ | 1000 | PHOTODIODE AVALANCHE IR ... |
MTAPD-06-012 | Marktech Opt... | 21.95 $ | 1000 | PHOTODIODE AVALANCHE IR ... |
MTAPD-06-005 | Marktech Opt... | 24.93 $ | 1000 | PHOTODIODE AVALANCHE IR ... |
MTAPD-06-008 | Marktech Opt... | 24.93 $ | 1000 | PHOTODIODE AVALANCHE IR ... |
MTAPD-06-015 | Marktech Opt... | 24.93 $ | 1000 | PHOTODIODE AVALANCHE IR ... |
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