no image
PART/ VTD206H

VTD206H - Si PD, SFH206 equivalent, TO-92, 7.41mm2

The VTD206H is a silicon photodiode in TO-92 side-looker package with visible blocking, and an SFH206 industry equivalent. This photodiode provides a low dark current, fast response and wide field-of-view.

This silicon photodiode providese a 7.41 mm2 active area designed for a spectral response between 750 nm and 1100 nm.

Our VTD Series are photodiodes which have been used in many applications as replacements for competitive devices. These photodiodes exhibits low dark current under reverse bias and fast speed of response.

Features & Benefits:

  • IR spectral range
  • Integral visible blocking
  • Peak wavelength: 925nm
  • Medium size active area
  • Low dark current
  • Fast response
  • RoHS compliant

Applications:

Coin counters, Automotive

Active area = 7.41 mm2 active area

Short Circuit Current = Minimum 15 µA at 0.5 mW/cm2, 940 nm

Dark Current = Maximum 30 nA at 10 V Reverse Bias

Junction Capacitance = Typical 72 pF at 0 V Bias

Rise/Fall time = Typical 20 ns, with 50 Ω load, 5 V Reverse bias, 850 nm

Spectral Range = 750 nm to 1100 nm

Peak Spectral Response = 925 nm

Sensitivity at peak Wavelength = Typical 0.60 A/W

Angular Response = ±60 Degrees at 50 % Response

Active area = 7.41 mm2 active area

Short Circuit Current = Minimum 15 µA at 0.5 mW/cm2, 940 nm

Dark Current = Maximum 30 nA at 10 V Reverse Bias

Junction Capacitance = Typical 72 pF at 0 V Bias

Rise/Fall time = Typical 20 ns, with 50 Ω load, 5 V Reverse bias, 850 nm

Spectral Range = 750 nm to 1100 nm

Peak Spectral Response = 925 nm

Sensitivity at peak Wavelength = Typical 0.60 A/W

Angular Response = ±60 Degrees at 50 % Response

Download asset:
To download this item, please complete the form below.
NOTE: If you have disabled our marketing cookies, you will not be able to access our videos or downloads. To update your cookie preferences, please click here to review and enable cookies.
CAPTCHA
This question is for testing whether or not you are a human visitor and to prevent automated spam submissions.
Close