BOARD/PANEL MOUNT Fiber Optics - Receivers 10

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Part RoHS Manufacturer Fiber Optic Type Mounting Feature Maximum Supply Voltage Terminal Finish Maximum Operating Temperature Minimum Operating Temperature Emitter or Detector Type Responsivity Fiber Type Connection Type Nominal Supply Voltage Packing Method Body Length/Diameter Body Width Package Style (Meter) Reception Type 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 Sensitivity Level

AFBR-742BZ

Broadcom

RECEIVER

BOARD/PANEL MOUNT

3.465 V

80 Cel

0 Cel

PIN PHOTODIODE

50/125, MMF

3.3 V

34.12 mm

17.5 inch

DIGITAL

Fiber Optic Receivers

12.9 mm

850 nm

3.135 V

830 nm

860 nm

2500 Mbps

12 dB

10 X 10 ARRYA

AMPLIFIER

-11.8 dBm

AFBR-742BEZ

Broadcom

RECEIVER

BOARD/PANEL MOUNT

3.465 V

80 Cel

0 Cel

PIN PHOTODIODE

50/125, MMF

3.3 V

34.12 mm

17.5 inch

DIGITAL

Fiber Optic Receivers

13.12 mm

850 nm

3.135 V

830 nm

860 nm

2500 Mbps

12 dB

10 X 10 ARRYA

AMPLIFIER

-11.8 dBm

AFBR-742BEHZ

Broadcom

RECEIVER

BOARD/PANEL MOUNT

3.465 V

80 Cel

0 Cel

PIN PHOTODIODE

50/125, MMF

3.3 V

DIGITAL

Fiber Optic Receivers

850 nm

3.135 V

830 nm

860 nm

2500 Mbps

12 dB

10 X 10 ARRYA

AMPLIFIER

-11.8 dBm

HFBR-782BHZ

Broadcom

RECEIVER

BOARD/PANEL MOUNT

3.465 V

80 Cel

0 Cel

PIN PHOTODIODE

50/125, MMF

3.3 V

34.12 mm

17.5 inch

DIGITAL

Fiber Optic Receivers

7.56 mm

850 nm

3.135 V

830 nm

860 nm

2720 Mbps

12 dB

10 X 10 ARRYA

AMPLIFIER

-15.5 dBm

HFBR-789BHZ

Broadcom

RECEIVER

BOARD/PANEL MOUNT

3.465 V

80 Cel

0 Cel

PIN PHOTODIODE

62.5/125, MMF

3.3 V

DIGITAL

Fiber Optic Receivers

850 nm

3.135 V

830 nm

860 nm

2720 Mbps

12 dB

10 X 10 ARRAY

AMPLIFIER

-15.5 dBm

HFBR-782BEPZ

Broadcom

RECEIVER

BOARD/PANEL MOUNT

3.465 V

80 Cel

0 Cel

PIN PHOTODIODE

50/125, MMF

3.3 V

34.12 mm

DIGITAL

Fiber Optic Receivers

7.56 mm

850 nm

3.135 V

830 nm

860 nm

2720 Mbps

12 dB

10 X 10 ARRYA

AMPLIFIER

-15.5 dBm

HFBR-789BZ

Broadcom

RECEIVER

BOARD/PANEL MOUNT

3.465 V

80 Cel

0 Cel

PIN PHOTODIODE

62.5/125, MMF

3.3 V

41.07 mm

17.6 inch

DIGITAL

Fiber Optic Receivers

12.9 mm

850 nm

3.135 V

830 nm

860 nm

2720 Mbps

12 dB

10 X 10 ARRAY

AMPLIFIER

-15.5 dBm

HFBR-789BEZ

Broadcom

RECEIVER

BOARD/PANEL MOUNT

3.465 V

80 Cel

0 Cel

PIN PHOTODIODE

62.5/125, MMF

3.3 V

41.37 mm

17.6 inch

DIGITAL

Fiber Optic Receivers

13.1 mm

850 nm

3.135 V

830 nm

860 nm

2720 Mbps

12 dB

10 X 10 ARRAY

AMPLIFIER

-15.5 dBm

HFBR-782BEZ

Broadcom

RECEIVER

BOARD/PANEL MOUNT

3.465 V

80 Cel

0 Cel

PIN PHOTODIODE

50/125, MMF

3.3 V

34.12 mm

17.5 inch

DIGITAL

Fiber Optic Receivers

13.2 mm

850 nm

3.135 V

830 nm

860 nm

2720 Mbps

12 dB

10 X 10 ARRYA

AMPLIFIER

-15.5 dBm

HFBR-782BZ

Broadcom

RECEIVER

BOARD/PANEL MOUNT

3.465 V

80 Cel

0 Cel

PIN PHOTODIODE

50/125, MMF

3.3 V

34.12 mm

17.5 inch

DIGITAL

Fiber Optic Receivers

12.9 mm

850 nm

3.135 V

830 nm

860 nm

2720 Mbps

12 dB

10 X 10 ARRYA

AMPLIFIER

-15.5 dBm

Fiber Optics - Receivers

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

Fiber optic receivers typically consist of a photodetector, an amplifier, and a demodulator. The photodetector detects the optical signal and converts it into an electrical signal. The amplifier amplifies the electrical signal, making it strong enough for further processing. The demodulator extracts the data from the electrical signal, enabling it to be decoded and processed by the receiving device.

There are different types of photodetectors used in fiber optic receivers, including PIN photodiodes, avalanche photodiodes, and photomultiplier tubes. These photodetectors convert the incoming optical signal into an electrical current, which is then amplified and demodulated.

Fiber optic receivers 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.