Pin Photodiode S1087 Si

$99.00
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Ceramic package photodiode with low dark current

 

The S1087 is a ceramic package photodiode that offers low dark current. Ceramic package used is light-impervious, so no stray light can reach the photosensitive area from the side or backside.


Refer to the datasheet of S1087 here. 


S1087/S1133 series are ceramic package photodiodes that offer low dark current. Ceramic package used is light-impervious, so no stray light can

reach the active area from the side or backside. This allows reliable optical measurements in the visible to near infrared range, over a wide dynamic range from low light levels to high light levels.

Feature

S1087, S1133 : For visible range

S1087-01, S1133-01: For visible to IR range

S1133-14 : For visible to near IR range


Applications

 Exposure meter

Illuminometer

Camera auto exposure

Stroboscope light control

Copier

Display light control

Optical switch


S1087 : Active area size 1.3x1.3 mm; Effective active area 1.6 mm2 

S1087-01: Active area size 1.3x1.3 mm ;Effective active area 1.6 mm2 

S1133: Active area size 2.4x2.8mm ;Effective active area6.66 mm2

S1133-14: Active area size 2.4x2.8mm ;Effective active area6.66 mm2

 


Feature 

High sensitivity

High reliability

 High-speed response

S1223: fc=30 MHz

S1223-01: fc=20 MHz

Low capacitance

Applications

Optical measurement equipment

Analytical equipment, etc.


S1223: Active area size 2.4x2.8 mm; Effective active area 6.6 mm2 

S1223-01: Active area size 3.6x3.6mm; Effective active area 13 mm2 







 

Features
- For visible range

Photosensitive area

1.3 × 1.3 mm

Number of elements

1

Package

Ceramic

Package category

With filter

Cooling

Non-cooled

Reverse voltage (max.)

10 V

Spectral response range

320 to 730 nm

Peak sensitivity wavelength (typ.)

560 nm

Photosensitivity (typ.)

0.3 A/W

Dark current (max.)

10 pA

Rise time (typ.)

0.5 μs

Terminal capacitance (typ.)

200 pF

Measurement condition

Typ. Ta=25 ℃, unless otherwise noted,
Photosensitivity: λ=λp, Dark current: VR =1V, Terminal capacitance: VR=0 V, f=10 kHz


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