5.25 V Fiber Optics - Transceivers 9

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Part RoHS Manufacturer Fiber Optic Type Mounting Feature Maximum Supply Voltage Terminal Finish Maximum Operating Temperature Minimum Operating Temperature Rx Data Rate Tx Data Rate Emitter or Detector Type Fiber Type Nominal Optical Power Output 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 Minimum Return Loss Additional Features JESD-609 Code Built-in Features Sensitivity Level

HFBR-3810MSZ

Broadcom

TRANSCEIVER

5.25 V

85 Cel

-40 Cel

31.67 mm

10.96 inch

650 nm

4.75 V

HFBR-3810Z

Broadcom

TRANSCEIVER

5.25 V

85 Cel

-40 Cel

31.27 mm

10.16 inch

650 nm

4.75 V

AFCT-5805AEMZ

Broadcom

TRANSCEIVER

PANEL MOUNT, THROUGH HOLE MOUNT

5.25 V

85 Cel

-40 Cel

155 Mbps

155 Mbps

LASER, PIN PHOTODIODE

SMF

.07 mW

SC CONNECTOR

3.3 V

39.6 mm

25.4 inch

Fiber Optic Transceivers

9.8 mm

1300 nm

3.1 V

1261 nm

ATM, OC-3, SDH, SONET, STM-1, TELCORDIA

1360 nm

AMPLIFIER

-31 dBm

HFBR-5208AEMZ

Broadcom

TRANSCEIVER

SURFACE MOUNT

5.25 V

Tin (Sn)

85 Cel

-40 Cel

622 Mbps

622 Mbps

LED, PIN PHOTODIODE

50/125, 62.5/125, MMF

.019 mW

SC CONNECTOR

5 V

39.6 mm

25.4 inch

Fiber Optic Transceivers

9.8 mm

1330 nm

4.75 V

1270 nm

ATM, OC-12, SDH, SONET, STM-4, STS-12

1380 nm

e3

AMPLIFIER

HFBR-5208AMZ

Broadcom

TRANSCEIVER

SURFACE MOUNT

5.25 V

Tin (Sn)

85 Cel

-40 Cel

622 Mbps

622 Mbps

LED, PIN PHOTODIODE

50/125, 62.5/125, MMF

.019 mW

SC CONNECTOR

5 V

39.6 mm

25.4 inch

Fiber Optic Transceivers

9.8 mm

1330 nm

4.75 V

1270 nm

ATM, OC-12, SDH, SONET, STM-4, STS-12

1380 nm

e3

AMPLIFIER

HFBR-5208FMZ

Broadcom

TRANSCEIVER

SURFACE MOUNT

5.25 V

Tin (Sn)

70 Cel

0 Cel

622 Mbps

622 Mbps

LED, PIN PHOTODIODE

50/125, 62.5/125, MMF

.019 mW

SC CONNECTOR

5 V

39.6 mm

25.4 inch

Fiber Optic Transceivers

9.8 mm

1330 nm

4.75 V

1270 nm

ATM, OC-12, SDH, SONET, STM-4, STS-12

1380 nm

e3

AMPLIFIER

HFBR-5208MZ

Broadcom

TRANSCEIVER

SURFACE MOUNT

5.25 V

Matte Tin (Sn)

70 Cel

0 Cel

622 Mbps

622 Mbps

LED, PIN PHOTODIODE

50/125, 62.5/125, MMF

.019 mW

SC CONNECTOR

5 V

39.6 mm

25.4 inch

Fiber Optic Transceivers

9.8 mm

1330 nm

4.75 V

1270 nm

ATM, OC-12, SDH, SONET, STM-4, STS-12

1380 nm

e3

AMPLIFIER

HFBR-5208Z

Broadcom

TRANSCEIVER

THROUGH HOLE MOUNT

5.25 V

Matte Tin (Sn)

70 Cel

0 Cel

622 Mbps

622 Mbps

LED, PIN PHOTODIODE

9/125, 62.5/125, MMF

.019 mW

SC CONNECTOR

5 V

39.6 mm

29.6 inch

Fiber Optic Transceivers

11.89 mm

1330 nm

4.75 V

1270 nm

ATM, ITU-T-G.957, OC-12, SDH, SONET, STM-4

1380 nm

e3

AMPLIFIER

HFCT-5208MZ

Broadcom

TRANSCEIVER

BOARD/PANEL MOUNT

5.25 V

Matte Tin (Sn)

70 Cel

0 Cel

622 Mbps

622 Mbps

LASER DIODE, PIN PHOTODIODE

9/125, 62.5/125, SMF

.007 mW

SC CONNECTOR

5 V

39.6 mm

29.6 inch

Fiber Optic Transceivers

11.89 mm

1313 nm

4.75 V

1274 nm

ATM, ITU-T-G.957, OC-12, SDH, SONET, STM-4

1356 nm

e3

AMPLIFIER

Fiber Optics - Transceivers

Fiber optic transceivers are electronic devices that are used in fiber optic communication systems to transmit and receive optical signals. They are designed to both transmit and receive data over a fiber optic network, allowing for two-way communication between devices.

Fiber optic transceivers typically consist of a transmitter, a receiver, and control circuitry. The transmitter converts electrical signals into optical signals, which are then transmitted over the fiber optic cable. The receiver converts the incoming optical signal into an electrical signal, which is then processed by the control circuitry.

Fiber optic transceivers use different technologies to transmit and receive optical signals, including:

1. Direct modulation: Direct modulation uses an LED or laser diode to directly modulate the optical signal in response to an electrical signal.

2. External modulation: External modulation uses an electro-optic modulator to modulate the optical signal in response to an electrical signal.

3. Coherent detection: Coherent detection uses a local oscillator to synchronize the optical signal with a reference signal, enabling precise phase and amplitude measurements of the optical signal.

Fiber optic transceivers 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.