The JDSU near infrared fused coupler splits or combines light at any selected
wavelength from 700 to 1150 nm. Designed for applications in fiber laser, sensor
and avionics applications, the coupler utilizes low loss fused fiber technology. No
light leaves the fiber and therefore no alignment is required; and there are no
unwanted reflections. Furthermore the output fiber pigtails may be directly
integrated into beam delivery systems.
NORTH AMERICA
:
800 498-JDSU (5378)
WORLDWIDE
:
+800 5378-JDSU
WEBSITE
:
www.jdsu.com
FUSED COUPLER, NEAR INFRARED
2
Configuration
1x2
P1 (Red) COMMON (Input)
P2 (Blue) SIGNAL (Input)
P3 (Red) TAP (Output)
2x2
P1 (Red) COMMON (Input)
P2 (Blue) SIGNAL (Input)
P4 (Blue)
P3 (Red) TAP (Output)
Insertion Loss
Coupling Ratio
Grade
Available Housing Option
Signal Path Insertion Loss
1, 2
(Maximum)
0.9 dB
1.1 dB
1.5 dB
1.7 dB
2.2 dB
2.4 dB
3.0 dB
3.2 dB
3.8 dB
4.0 dB
Tap Path Insertion Loss
1, 2
(Maximum)
12.2 dB
12.4 dB
8.4 dB
8.6 dB
6.4 dB
6.5 dB
4.9 dB
5.1 dB
3.8 dB
4.0 dB
10%
10%
20%
20%
30%
30%
40%
40%
50%
50%
A
B
A
B
A
B
A
B
A
B
3, 4, 5, 6
3, 4, 5, 6
3, 4, 5, 6
3, 4, 5, 6
3, 4, 5, 6
3, 4, 5, 6
3, 4, 5, 6
3, 4, 5, 6
3, 4, 5, 6
3, 4, 5, 6
1. Insertion loss at operating wavelength range (not including PDL, TDL or connector losses).
2. In 2x2 couplers with a coupling ratio of 20% or lower, insertion loss is not specified for launch through second input port (P4).
FUSED COUPLER, NEAR INFRARED
3
Housing Option
Housing Code
3
4
5
6
Description
Regular
Ø 0.9 mm slim
Ø 0.9 mm semi-ruggedized
Ø 3.0 mm fully ruggedized
1x2, 2x2 Dimensions (mm)
3.0 (Ø) x 50 (L)
3.0 (Ø) x 60 (L)
5.0 (Ø) x 75 (L)
80 (L) x 10 (W) x 8 (H)
Pigtail
Primary-coated fiber
Ø 0.9 mm loose-tube
Ø 0.9 mm loose-tube
Ø 3.0 mm fan-out sleeving
Specifications
Parameter
Operating wavelength range
1
Excess loss
Return loss/Directivity
Pigtail tensile load
Optical power handling
Operating temperature range
2
Storage temperature range
Fiber type
Grade A
Grade B
Typical
Minimum
Maximum
Maximum
Any wavelength within the 700 to 1150 nm range
0.30 dB
0.50 dB
50 dB
5N
4W
-40 to 75 °C
-40 to 85 °C
Speciality fiber
1. Any specific wavelength point from within the range 633 to 850 nm may be selected. For wavelengths outside of this range, contact JDSU with specific requirements.
2. For connectorised component, operating temperature range is -5 to 75 °C.
FUSED COUPLER, NEAR INFRARED
4
Ordering Information
For more information on this or other products and their availability, please contact your local JDSU account manager or
JDSU directly at 1-800-498-JDSU (5378) in North America and +800-5378-JDSU worldwide or via e-mail at
customer.service@jdsu.com.
Sample: FFS-060K31A10 (Fused Fiber Speciality Coupler, 1060 nm, 50/50 coupling ratio, regular housing, 1x2, A grade, 1 m
pigtails, no connectors)
FFS-
Code
7
8
9
0
1
Wavelength
(First Digit)
7xx nm
8xx nm
9xx nm
10xx nm
11xx nm
Code
A
C
E
H
K
Coupling Ratio
1
10%
20%
30%
40%
50%
Code
1
2
Configuration
1x2
2x2
Code
0
1
3
5
9
A
B
Connectors
2, 4
None
FC/PC
FC/APC
SC/APC
FC/UPC
SC/UPC
LC
5
Code
A
B
Grade
Grade A
Grade B
Code
Wavelength
(Second and
Third Digit)
Examples:
33
x33 nm
32
x32 nm
57
x57 nm
Code
3
4
5
6
Housing
2
Regular
Ø 0.9 mm slim
Ø 0.9 mm
semi-ruggedised
Ø 3.0mm fully
ruggedised
Code
0
1
Pigtail Length
3
(Minimum)
0.5 meter
1 meter
1. Other coupling ratio are available. Please contact JDSU for ordering codes of coupling ratios not listed.
2. Connectors may be fitted to housing types 4, 5 and 6. For connectorisation of housing type 3, please contact JDSU sales office.
3. Minimum pigtail length. Other pigtail lengths are available on request. When the pigtail has been modified to include a
connector, pigtail length measurment includes the connector end face.
4. Excess Loss in specification table does not include connector losses.
5. LC connector is not available for housing code 6, fully ruggedised housing.
LC is a registered trademark of Lucent Technologies.
With the continuous improvement of the processing power and the continuous enrichment of functions of portable terminal products, the power consumption of terminal products is also increasing, so stan...
Introduction: Even considering all known and unknown impedance loads of the op amp, the output of the operational amplifier always contains signals that cannot be predicted based on the input signal a...
[table=98%,rgb(238, 238, 238)] [tr][td][b][color=#FF0000]FreeModbus[/color][/b][color=#ffff00] was ported to STM32...1.5, and modscan32 was used for debugging. It can respond to commands, but no data ...
Abstract: This article introduces the application of MSP430 in the wireless shock wave test system. By managing the wireless module power supply through software programming, the interference of the e...
Analog engineers have traditionally struggled with complexity when designing power supplies that required multiple outputs, dynamic load sharing, hot-swap, or extensive fault-handling capabilities....[Details]
In recent years, the market for mobile/portable devices such as smartphones and laptops has continued to grow rapidly. While these products continue to integrate more new features to enhance the ...[Details]
System design is a complex process. It is not enough to just use ICs. There are many details to consider. This article uses a high-fidelity music playback system as an example to introduce how to s...[Details]
1. Introduction
Light control circuit plays a vital role in urban street lamps or corridor lighting. With light control circuit, the lights can be automatically turned on and off according to ...[Details]
The reason for the light decay of white LEDs: the decline of phosphor performance
So far, the rapid decline of the luminous performance of white light LEDs, especially low-power white light LE...[Details]
To differentiate their products in a crowded and competitive market, manufacturers of handheld devices often consider battery life and power management as key selling points for cell phones, PDAs, ...[Details]
July 11, 2012, Beijing - Altera Corporation (NASDAQ: ALTR) today announced the launch of 40-Gbps Ethernet (40GbE) and 100-Gbps Ethernet (100GbE) intellectual property (IP) core products. These core...[Details]
A multi-point temperature control heating control system was designed using the SST89E564RC single-chip microcomputer and a new temperature measuring device. The heating system can be controlled in...[Details]
my country is a big country in agriculture, grain production and consumption. Grains are a necessary condition for our nation to survive and develop. The flour processing industry will exist forever w...[Details]
In the single-chip microcomputer system, in addition to display devices, sound devices are often used, and the most common sound device is the buzzer. Buzzers are generally used for some low-demand...[Details]
This paper designs a 16x16LED Chinese character display bar based on single-chip dynamic scanning control, briefly analyzes the principle of Chinese character display, and studies how the LED displ...[Details]
According to the Industrial Technology Research Institute of Taiwan, due to factors such as the oil crisis and global warming, the issues of energy conservation and environmental protection have at...[Details]
In the "digital pressure measurement" experimental device of applied physics, the subject technical knowledge of analog circuits, digital circuits, sensors and single-chip microcomputers is used. In o...[Details]
A few days ago, I bought an 8LED flashlight in the market (the flashlight uses No. 5 batteries). Because I had other things to do, I didn't pay attention when purchasing it. When I got home and use...[Details]
People who often surf the Internet until late at night, their families always complain that turning on the big lights in the living room affects their rest, but some people don't have keyboard ligh...[Details]