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Fiber Optic Transceivers

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MHP3838IR098CT
MEIHUA
855nm
Quantity: 51000
Ship Date: 3-6 weeks
22+
1000+ $0.3565
3000+ $0.3502
5000+ $0.3409
8000+ $0.3254
- +
x $0.3565
Ext. Price: $356.50
MOQ: 1000
Mult: 1000
SPQ: 1000
MHT155IRRCT
MEIHUA
945nm;660nm 1210
Quantity: 10000
Ship Date: 3-6 weeks
22+
2000+ $0.1212
6000+ $0.1191
10000+ $0.1159
24000+ $0.1106
- +
x $0.1212
Ext. Price: $242.40
MOQ: 2000
Mult: 2000
SPQ: 2000
MHT155BRRCT
MEIHUA
1210
Quantity: 10000
Ship Date: 3-6 weeks
22+
2000+ $0.1212
6000+ $0.1191
10000+ $0.1159
24000+ $0.1106
- +
x $0.1212
Ext. Price: $242.40
MOQ: 2000
Mult: 2000
SPQ: 2000
MHT130ZVRCT
MEIHUA
930nm~950nm 0402
Quantity: 15000
Ship Date: 3-6 weeks
22+
3000+ $0.3279
9000+ $0.3222
15000+ $0.3136
18000+ $0.2994
- +
x $0.3279
Ext. Price: $983.70
MOQ: 3000
Mult: 3000
SPQ: 3000
MHS153IRCT
MEIHUA
940nm 1206
Quantity: 1980
In Stock
24+
1+ $0.0918
50+ $0.0612
2000+ $0.0554
40000+ $0.0551
60000+ $0.0546
- +
x $0.0918
Ext. Price: $0.91
MOQ: 10
Mult: 1
SPQ: 2000
MHT153IRCT
MEIHUA
940nm 1206
Quantity: 7306
In Stock
2447+
5+ $0.116
50+ $0.0941
150+ $0.0833
500+ $0.0747
2000+ $0.0559
4000+ $0.0527
- +
x $0.116
Ext. Price: $0.57
MOQ: 5
Mult: 5
SPQ: 2000

Fiber Optic Transceivers

Fiber optic transceivers are devices that convert electrical signals to optical signals and vice versa, facilitating high-speed data transmission over fiber optic cables. They play a crucial role in modern communication systems, ensuring efficient and reliable data transfer.

Definition:
A fiber optic transceiver is an interface device that enables the transmission of data through fiber optic cables. It consists of two main components: a transmitter and a receiver. The transmitter converts electrical signals into light signals, which are then sent through the fiber optic cable. The receiver at the other end of the cable converts the light signals back into electrical signals.

Function:
1. Signal Conversion: The primary function is to convert electrical signals to optical signals for transmission and vice versa for reception.
2. Data Transmission: They facilitate the transmission of data over long distances with minimal signal degradation.
3. Compatibility: They ensure compatibility between different types of networking equipment and fiber optic cables.

Applications:
1. Telecommunications: Used in telephone networks for long-distance voice and data transmission.
2. Data Centers: Essential for high-speed data transfer within and between data centers.
3. Internet Service Providers (ISPs): For connecting users to the internet with high bandwidth and low latency.
4. Industrial Automation: In control systems where reliable and fast data transfer is required.

Selection Criteria:
1. Speed: Choose a transceiver that supports the required data transfer speed (e.g., 1Gbps, 10Gbps, 40Gbps, etc.).
2. Distance: Select a transceiver that can support the distance between the transmitter and receiver.
3. Wavelength: Ensure the transceiver operates at the correct wavelength for the fiber optic cable being used.
4. Form Factor: Consider the physical size and compatibility with the equipment it will be installed in.
5. Compatibility: Verify that the transceiver is compatible with the existing network infrastructure.
6. Budget: Balance performance with cost, considering the budget for the project.
7. Vendor Support: Choose a reputable vendor that offers good support and warranty.

In summary, fiber optic transceivers are indispensable for modern communication systems, offering high-speed, reliable, and long-distance data transmission. When selecting a transceiver, it's important to consider factors such as speed, distance, compatibility, and budget to ensure optimal performance.
Please refer to the product rule book for details.