THROUGH HOLE MOUNT Fiber Optics - Detectors 70

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Part RoHS Manufacturer Fiber Optic Type Mounting Feature Maximum Supply Voltage Terminal Finish Maximum Operating Temperature Minimum Operating Temperature Spectral Width Responsivity Maximum Dark Current Fiber Type Transmission Type Connection Type Nominal Supply Voltage Body Length/Diameter Body Width Package Style (Meter) Sub-Category Body Height Nominal Operating Wavelength Minimum Supply Voltage Minimum Operating Wavelength Communication Standard Maximum Operating Wavelength Data Rate Minimum Return Loss Additional Features JESD-609 Code Built-in Features

NDL5551P

Renesas Electronics

AVELANCHE PHOTODIODE DETECTOR

THROUGH HOLE MOUNT

85 Cel

-40 Cel

.96 A/W

5 nA

50/125, MMF

DIGITAL

1300 nm

1000 nm

1600 nm

AVALANCHE PHOTODIODE

NDL5592P

Renesas Electronics

AVELANCHE PHOTODIODE DETECTOR

THROUGH HOLE MOUNT

Tin/Lead (Sn/Pb)

85 Cel

-40 Cel

.96 A/W

5 nA

9/125, SMF

DIGITAL

5.2 V

SDH, SONET, STM-16

e0

PREAMPLIFIER, AVALANCHE PHOTODIODE

NDL5530

Renesas Electronics

AVELANCHE PHOTODIODE DETECTOR

THROUGH HOLE MOUNT

85 Cel

-40 Cel

.94 A/W

5 nA

DIGITAL

5.35 mm

TO-18

3.9 mm

1300 nm

1000 nm

1600 nm

AVALANCHE PHOTODIODE

NDL5553P

Renesas Electronics

PHOTODIODE DETECTOR

THROUGH HOLE MOUNT

85 Cel

-40 Cel

.94 A/W

50 nA

50/125, MMF

DIGITAL

1300 nm

1000 nm

1600 nm

AVALANCHE PHOTODIODE

NDL1202

Renesas Electronics

AVELANCHE PHOTODIODE DETECTOR

THROUGH HOLE MOUNT

1 nA

5.35 mm

3.9 mm

AVALANCHE PHOTODIODE

NDL5461PSD

Renesas Electronics

PHOTODIODE DETECTOR

THROUGH HOLE MOUNT

85 Cel

-40 Cel

.94 A/W

.1 nA

9/125, SMF

DIGITAL

SC/PC CONNECTOR

1300 nm

1000 nm

1600 nm

PIN PHOTODIODE

NDL5531P

Renesas Electronics

AVELANCHE PHOTODIODE DETECTOR

THROUGH HOLE MOUNT

85 Cel

-40 Cel

.96 A/W

5 nA

9/125, SMF

DIGITAL

1300 nm

1000 nm

1600 nm

AVALANCHE PHOTODIODE

NDL5461P

Renesas Electronics

PHOTODIODE DETECTOR

THROUGH HOLE MOUNT

85 Cel

-40 Cel

.94 A/W

.1 nA

50/125, MMF

DIGITAL

1300 nm

1000 nm

1600 nm

PIN PHOTODIODE

NDL2102

Renesas Electronics

PHOTODIODE DETECTOR

THROUGH HOLE MOUNT

1 nA

DIGITAL

5.35 mm

TO-18

3.9 mm

PIN PHOTODIODE

NDL5592PC

Renesas Electronics

AVELANCHE PHOTODIODE DETECTOR

THROUGH HOLE MOUNT

85 Cel

-40 Cel

.96 A/W

5 nA

9/125, SMF

DIGITAL

FC/PC CONNECTOR

5.2 V

SDH, SONET, STM-16

PREAMPLIFIER, AVALANCHE PHOTODIODE

NDL5590PD

Renesas Electronics

PHOTODIODE DETECTOR

THROUGH HOLE MOUNT

85 Cel

-40 Cel

.96 A/W

5 nA

50/125, MMF

DIGITAL

SC/PC CONNECTOR

5 V

SDH, SONET

AMPLIFIER, AVALANCHE PHOTODIODE

NDL5461PC

Renesas Electronics

PHOTODIODE DETECTOR

THROUGH HOLE MOUNT

85 Cel

-40 Cel

.94 A/W

.1 nA

50/125, MMF

DIGITAL

FC/PC CONNECTOR

1300 nm

1000 nm

1600 nm

PIN PHOTODIODE

NR8800AS-CB-SH

Renesas Electronics

AVELANCHE PHOTODIODE DETECTOR

THROUGH HOLE MOUNT

60 Cel

-20 Cel

30 nA

62.5/125, MMF

SC/SPC CONNECTOR

6 mm

30 mm

NDL5100

Renesas Electronics

AVELANCHE PHOTODIODE DETECTOR

THROUGH HOLE MOUNT

200 nA

5.35 mm

TO-18

3.9 mm

AVALANCHE PHOTODIODE

NDL5421PSD

Renesas Electronics

PHOTODIODE DETECTOR

THROUGH HOLE MOUNT

85 Cel

-40 Cel

.94 A/W

.1 nA

9/125, SMF

DIGITAL

SC/PC CONNECTOR

1300 nm

1000 nm

1600 nm

2500 Mbps

PIN PHOTODIODE

NDL5510

Renesas Electronics

AVELANCHE PHOTODIODE DETECTOR

THROUGH HOLE MOUNT

8 nA

DIGITAL

5.35 mm

TO-18

3.9 mm

1300 nm

1000 nm

1600 nm

AVALANCHE PHOTODIODE

NDL5521PC

Renesas Electronics

AVELANCHE PHOTODIODE DETECTOR

THROUGH HOLE MOUNT

85 Cel

-40 Cel

.96 A/W

5 nA

50/125, MMF

DIGITAL

FC/PC CONNECTOR

1300 nm

1000 nm

1600 nm

2500 Mbps

AVALANCHE PHOTODIODE

NDL5561P

Renesas Electronics

AVELANCHE PHOTODIODE DETECTOR

THROUGH HOLE MOUNT

Tin/Lead (Sn/Pb)

85 Cel

-40 Cel

8 nA

62.5/125, MMF

DIGITAL

1300 nm

1000 nm

1600 nm

e0

AVALANCHE PHOTODIODE

NDL5481P

Renesas Electronics

PHOTODIODE DETECTOR

THROUGH HOLE MOUNT

85 Cel

-40 Cel

.85 A/W

.1 nA

9/125, SMF

DIGITAL

40 dB

PIN PHOTODIODE

SFH350-V

Broadcom

PHOTO TRANSISTOR DETECTOR

THROUGH HOLE MOUNT

85 Cel

-40 Cel

1 nA

POF

24.2 mm

9.2 inch

9 mm

880 nm

400 nm

1100 nm

Q62702-P1033

Broadcom

PHOTO TRANSISTOR DETECTOR

THROUGH HOLE MOUNT

85 Cel

-40 Cel

1 nA

POF

DIGITAL

5 V

5.3 mm

12.2 mm

850 nm

ITS ALSO HAS WAVELENGTH 950 NM

Q62702-P0264

Broadcom

PHOTO TRANSISTOR DETECTOR

THROUGH HOLE MOUNT

85 Cel

-40 Cel

1 nA

POF

DIGITAL

5 V

850 nm

ITS ALSO HAS WAVELENGTH 950 NM

Fiber Optics - Detectors

Fiber optic detectors are electronic devices that are used in fiber optic communication systems to detect the presence and strength of optical signals and convert them into electrical signals. They are a critical component of fiber optic networks, enabling high-speed data transmission and processing over long distances.

Fiber optic detectors typically consist of a photodetector, which detects the optical signal and converts it into an electrical signal. There are different types of photodetectors used in fiber optic detectors, including PIN photodiodes, avalanche photodiodes, and photomultiplier tubes. These photodetectors convert the incoming optical signal into an electrical current, which can be further processed by other components of the fiber optic network.

Fiber optic detectors are used for a variety of applications, including power monitoring, signal measurement, and fiber optic sensing. In power monitoring applications, fiber optic detectors are used to measure the power of the optical signal to ensure that it is within the desired range. In signal measurement applications, fiber optic detectors are used to measure the strength and quality of the optical signal to ensure that it meets the required specifications. In fiber optic sensing applications, fiber optic detectors are used to detect changes in temperature, pressure, and other physical parameters that affect the optical signal.

Fiber optic detectors come in different configurations and designs, depending on the application and the required performance. They can be integrated into a fiber optic network or mounted in a separate enclosure, depending on the application and the space available.