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部分/ VTP100CH

VTP100CH - Si PD, Flat Side-looker, 7.45 mm2

The VTP100CH is a silicon photodiode in a transparent plastic-molded side-looker package. This photodiode provides an enhanced response in the visible and near IR-spectral range, as well as exhibits a very high shunt resistance, low dark current and low capacitance.

This fast-response silicon photodiode provides a 7.45 mm2 active area and is designed for a spectral response between 400 nm and 1150 nm.

This series of photodiodes are designed for low-junction capacitance to achieve fast response times and can be operated under reverse bias to decrease the capacitance in order to further increase the speed of response. These photodiodes can also be operated in photovoltaic mode in applications where speed of response is not critical.

These devices have excellent response in the IR spectral range and are well matched to the Excelitas Infrared LED VTE Series.

Features & Benefits:

  • Visible to near IR spectral range
  • 1 to 2% linearity over 7 to 9 decades
  • Low dark current
  • High shunt resistance
  • Low capacitance
  • Fast response
  • High reverse voltage rating
  • RoHS compliant

bob投注体育信赖吗应用程序:

  • Smoke detection
  • Barcode scanning
  • Light meters
  • Pulse oximeters

Active area = 7.45 mm2

Short Circuit Current = Minimum 5 0µA at 100 fc, 2850 K

Dark Current = Maximum 30 nA at 10 V Reverse Bias

Junction Capacitance = Maximum 50 pF at 3 V Reverse Bias

Breakdown Voltage = Minimum 30 V

Spectral Range = 400 nm to 1150 nm

Peak Spectral Response = 925 nm

Sensitivity at peak Wavelength = Typical 0.55 A/W

Angular Response = ±70 Degrees at 50 % Response

Active area = 7.45 mm2

Short Circuit Current = Minimum 5 0µA at 100 fc, 2850 K

Dark Current = Maximum 30 nA at 10 V Reverse Bias

Junction Capacitance = Maximum 50 pF at 3 V Reverse Bias

Breakdown Voltage = Minimum 30 V

Spectral Range = 400 nm to 1150 nm

Peak Spectral Response = 925 nm

Sensitivity at peak Wavelength = Typical 0.55 A/W

Angular Response = ±70 Degrees at 50 % Response