10G Cooled 1577nm EML TO

Classification:
Key Features of the 10G Cooled 1577nm EML TO
High-Speed Performance: Supports data rates up to 10Gbps, perfect for 5G, ethernet, and fiber channel applications.
1577nm Wavelength: The 1577nm EML Laser ensures low signal attenuation, ideal for long-haul telecom and datacom networks.
Cooled Design: Operates reliably from -5°C to 75°C, making this Cooled 10G Optical Transmitter suitable for demanding environments.
Compact TO Package: Offers a space-efficient solution for high-speed optical systems, reducing integration complexity.
Elevate your optical network infrastructure with our cutting-edge 10G Cooled 1577nm EML TO laser module. Engineered for superior performance and relentless reliability, this module is the ultimate solution for high-speed, long-haul applications demanding precision and stability.
Key Features & Advantages:
Exceptional High-Speed Data Transmission: Our 10G Cooled 1577nm EML TO module seamlessly supports data rates up to 10Gbps, making it the perfect core component for 5G fronthaul/backhaul, Ethernet, and fiber channel applications where speed is critical.
Precision Wavelength for Long-Haul: The integrated 1577nm EML (Electro-Absorption Modulated Laser) operates at a wavelength renowned for its exceptionally low signal attenuation in optical fiber. This ensures superior performance over extended distances, significantly reducing the need for signal amplification.
Thermal Stability with Cooled Technology: The integrated Thermoelectric Cooler (TEC) within the Cooled 10G EML TO package guarantees a stable output wavelength and high performance across a wide temperature range from -5°C to 75°C. This cooled design is essential for mission-critical, outdoor, and demanding environments where temperature fluctuations are a concern.
Compact and Robust TO Package: Housed in a industry-standard TO-can, this compact 1577nm EML TO device offers a space-saving and highly reliable solution. Its familiar form factor simplifies design-in and reduces integration complexity for your optical sub-assemblies and systems.
This 10G Cooled 1577nm EML TO module is designed for engineers who refuse to compromise on signal integrity, range, or resilience. It represents the pinnacle of optical semiconductor technology, ensuring your systems are built for the future.
Ready to integrate this high-performance laser into your next-generation designs? Contact our technical sales team today to discuss your specifications, request samples, or get a competitive quotation. Let's build the future of connectivity together.
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Features
Key Features of the 10G Cooled 1577nm EML TO
High-Speed Performance: Supports data rates up to 10Gbps, perfect for 5G, ethernet, and fiber channel applications.
1577nm Wavelength: The 1577nm EML Laser ensures low signal attenuation, ideal for long-haul telecom and datacom networks.
Cooled Design: Operates reliably from -5°C to 75°C, making this Cooled 10G Optical Transmitter suitable for demanding environments.
Compact TO Package: Offers a space-efficient solution for high-speed optical systems, reducing integration complexity.
Elevate your optical network infrastructure with our cutting-edge 10G Cooled 1577nm EML TO laser module. Engineered for superior performance and relentless reliability, this module is the ultimate solution for high-speed, long-haul applications demanding precision and stability.
Key Features & Advantages:
Exceptional High-Speed Data Transmission: Our 10G Cooled 1577nm EML TO module seamlessly supports data rates up to 10Gbps, making it the perfect core component for 5G fronthaul/backhaul, Ethernet, and fiber channel applications where speed is critical.
Precision Wavelength for Long-Haul: The integrated 1577nm EML (Electro-Absorption Modulated Laser) operates at a wavelength renowned for its exceptionally low signal attenuation in optical fiber. This ensures superior performance over extended distances, significantly reducing the need for signal amplification.
Thermal Stability with Cooled Technology: The integrated Thermoelectric Cooler (TEC) within the Cooled 10G EML TO package guarantees a stable output wavelength and high performance across a wide temperature range from -5°C to 75°C. This cooled design is essential for mission-critical, outdoor, and demanding environments where temperature fluctuations are a concern.
Compact and Robust TO Package: Housed in a industry-standard TO-can, this compact 1577nm EML TO device offers a space-saving and highly reliable solution. Its familiar form factor simplifies design-in and reduces integration complexity for your optical sub-assemblies and systems.
This 10G Cooled 1577nm EML TO module is designed for engineers who refuse to compromise on signal integrity, range, or resilience. It represents the pinnacle of optical semiconductor technology, ensuring your systems are built for the future.
Ready to integrate this high-performance laser into your next-generation designs? Contact our technical sales team today to discuss your specifications, request samples, or get a competitive quotation. Let's build the future of connectivity together.
Applications
Key Features of the 10G Cooled 1577nm EML TO
-
High-Speed Performance: Supports data rates up to 10Gbps, perfect for 5G, ethernet, and fiber channel applications.
-
1577nm Wavelength: The 1577nm EML Laser ensures low signal attenuation, ideal for long-haul telecom and datacom networks.
-
Cooled Design: Operates reliably from -5°C to 75°C, making this Cooled 10G Optical Transmitter suitable for demanding environments.
-
Compact TO Package: Offers a space-efficient solution for high-speed optical systems, reducing integration complexity.
Applications of the Telecom Laser
The 10G Cooled 1577nm EML TO excels in high-speed telecom and datacom environments, including:
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Telecom Networks: Powers 10G EML Laser applications in 5G and long-haul optical networks for robust connectivity.
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Ethernet Applications: Supports 10G EML for Ethernet, enabling fast and reliable network performance.
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Fiber Channel: Enhances high-speed storage area networks (SANs) with efficient signal transmission.
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Datacom Systems: Drives high-bandwidth data transfer in data centers and enterprise networks.
Why Choose Our Cooled 10G Optical Transmitter?
The 10G Cooled 1577nm EML TO combines cutting-edge performance with reliability and efficiency. The 1577nm EML Laser minimizes signal loss, making it ideal for long-distance telecom applications. Its cooled design ensures stable operation across a wide temperature range, supporting high-speed telecom laser needs in challenging conditions. Whether for 5G, ethernet, or fiber channel, our Cooled 10G Optical Transmitter offers a cost-effective, high-quality solution for modern optical networks.
Parameter
Absolute Maximum Ratings
Parameter | Symbol | Min | Max | Unit |
Operating Temperature | Top | 45 | 55 | ℃ |
Storage Temperature | Tstg | -40 | 85 | ℃ |
Lead Solder Temperature | - | - | 260 | ℃ |
Lead Soldering Time | - | - | 10 | S |
Electrical/Optical Characteristics ( T=25℃ )
Parameters | Symbol | Test conditions | Min | Typ | Max | Unit |
DFB LASER | ||||||
Set temperature for laser operation |
TLD | Temperature set for TEC | 45 | 50 | 55 | ℃ |
Threshold Current | Ith | CW,TLD=50℃ | - | 30 | 40 | mA |
Optical Output Power |
Po | CW,TLD=50℃,Iop=100mA,Vea=0V | 15 | - | - | mW |
Operating current | Iop | CW,TLD=50℃,Vea=0V | 80 | 120 | 150 | mA |
Operating Voltage | Vop | CW,TLD=50℃,Iop=100mA | - | 1.3 | 2 | V |
Series Resistance | Rs | CW,TLD=50℃,Iop=100mA | - | 4 | 7 | ohm |
Kink | - | CW,Ith+5 to 120mA | - | - | 30 | % |
Center Wavelength |
Δλc |
CW,TLD=50℃, Iop=100mA,Vea=0V |
1575 | 1577 | 1580 | nm |
Side-mode Suppression Ratio |
SMSR | 35 | - | - | dB | |
Center Wavelength Tuning Coefficient |
dλ/dT | CW,TLD=50℃ | - | 0.09 | - | nm/℃ |
Bandwidth | BW |
CW,TLD=50℃,Iop=100mA, Vea=-IV |
7 | - | - | GHz |
EA | ||||||
DC
Extinction Ratio |
DC-ER |
TLD=50°℃,Iop=100mA,
Vea=0V~-2V,DC |
14 | - | - | dB |
Back facet Monitor | ||||||
Monitor
Current(MPD) |
Im | CW,TLD=50℃,Iop=100mA,Vea=0V | 100 | - | 2000 | uA |
Dark Current(MPD) | Id | Vr=5V | 100 | nA | ||
Focal length | FL | From the To header surface | 9.7 | 10.4 | 11.1 | mm |
Coupling
Efficiency |
60 | - | - | % | ||
TEC Module | ||||||
TEC current | Itec | Qc=0,DT=DTmax,Th=50℃ | - | 0.71 | A | |
TEC voltage | Vtec | Qc=0,I=Imax,Th=50℃ | - | 2.84 | V | |
TEC AC esistance | ACR | Tc=25℃ | 2.63 | - | 3.23 | Ohm |
Thermistor | ||||||
Resistance | Rth | TLD=25℃ | 9.9 | 10 | 10.1 | Kohm |
Rth | TLD=50℃ | 3.5 | 3.6 | 3.7 | Kohm | |
B constant of Rth | B | . | 3890 | 3930 | 3969 | K |
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FAQ
Q
What shipping method do you provide?
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A
San-u cooperates with the best carriers in the business for long term to make sure your order gets to you on timesuch as: DHL,FedEx, EMS, UPS and sea shipping etc to save freight on different solutions.
Q
What payment method do you accept?
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A
We accept various kinds of payment method such as Trade Assurance, PayPal, Credit Card , T/TWire Transfers and LC.
Q
What is your lead time?
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A
The lead time is depended on your order quantity and your order request. Our long-term cooperation supplierswill work with ustogether to make sure good delivery for you.
Q
Do you provide overseas technical support?
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A
Yes, we provide overseas technical support in several countries such as Spain, ltaly, USA and Brazil. We alsoprovide 24 hoursonline support for our customers. lf you need help, Please always feel free to contact us.
Q
Do you provide samples?
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A
Yes, warmly welcome to us for sample testing.
Q
Do you provide OEM/oDM service?
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A
Yes, we accept OEM/ODM and OBM 20 years, our professional R&D team wil provide you the best solutions for you.
Q
What is your main business?
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A
We are specialized in laser diode ,laser photodiode,laser receiver, SFp optical module and sensor.
Q
Are you a manufacture or a trading company?
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A
We are a manufacture located in Xiamen with a professionalR&D team and sales team.Our company wasestablished in 2001.We have 600 employees, including more than 100 technicians,monthly output 10kk.
FACTORY
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Add: No. 219 Guanggu 2nd Road, Donghu New Technology Development Zone, Wuhan City, Dingjie Modern Electromechanical Information Incubation Park Phase I, Building 14, 3rd Floor, No.1
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