and One-Stage and Two-Stage and One-Stage and Two-Stage
Isolator
Isolator
Isolator
Isolator
Signal central wavelength,
λ
C
Signal wavelength range,
λ
S
Pump channel
wavelength range,
λ
P
Port configuration
Insertion loss at
λ
S
(note
3
)
Max.
Wavelength dependent
Max.
variation at
λ
S
and
C, L, or S bands (note
3
)
Wavelength dependent
Max.
variation at
λ
S
and
C+L band (note
3
)
PDL at
λ
S
(note
3
)
Max.
3
PMD at
λ
S
(note )
Max.
Isolation of isolator
Min.
4
at
λ
S
(note )
Isolation of WDM
Min.
5
at
λ
P
(note )
Insertion loss (C to R) at
λ
P
Max.
PDL (C to R) at
λ
P
Max.
Directivity (P to R) at
λ
S
Min.
Directivity (R to P) at
λ
P
Min.
Optical return loss
Min.
Maximum optical
power (standard)
Maximum optical power
(high power option)
Tensile load
Max.
Operating temperature
Storage temperature
Package dimensions (D x L)
Fiber type
Pigtail color code (bare fiber)
Pigtail color code (loose tube)
Device marking
C, L or 1
C, L or 1
C, L or 1
C, L or 1
(C=1550 nm, L=1590 nm, 1=1570 nm, S=1510 nm)
C, L or S
C, L or 1
C, L or 1
C, L or 1
C, L or 1
(C=1530 to 1580 nm, L=1590±20 nm, 1=C+L=1530 to 1610nm, S=1490 to 1530 nm)
N/A
1465 to 1495 nm 1465 to 1495 nm 950 to 1010 nm
950 to 1010 nm
Backward
(note
1
)
Forward or
backward
(note
2
)
0.6 dB
0.2 dB
Forward or
backward
(note
2
)
0.6 dB
0.15 dB
Forward or
backward
(note
2
)
0.7 dB
0.2 dB
Forward or
backward
(note
2
)
See table on page 2 See table on page 2 0.5 dB
0.2 dB
0.2 dB
0.15 dB
NA
NA
0.25 dB
0.3 dB
0.25 dB
0.3 dB
0.1 dB
0.05 ps
30 dB
N/A
See table on page 2
0.05 dB
60 dB
N/A
50 dB
500 mW
2000 mW
5N
0.2 dB
0.05 ps
42 dB
N/A
See table on page 2
0.05 dB
60 dB
N/A
50 dB
500 mW
2000 mW
5N
0.06 dB
0.05 ps
30 dB
30 dB
0.4 dB
0.05 dB
60 dB
60 dB
50 dB
500 mW
2000 mW
5N
0.08 dB
0.05 ps
45 dB
30 dB
0.4 dB
0.05 dB
60 dB
60 dB
50 dB
500 mW
2000 mW
0.06 dB
0.05 ps
30 dB
30 dB
0.6 dB
0.1 dB
60 dB
60 dB
50 dB
150 mW
450 mW
0.08 dB
0.05 ps
45 dB
30 dB
0.6 dB
0.1 dB
60 dB
60 dB
50 dB
150 mW
450 mW
5N
5N
5N
-5 to 70 °C
-40 to 85 °C
5.5 mm x 32 mm for bare fiber and 5.5 mm x 40 mm for bare fiber or loose tube
PureMode Hi 1060 for ports transmitting 980 nm (standard), SMF-28 for all others (standard)
Black (C port); Clear (R & P ports)
Red (C port); Blue (R & P ports)
JDSU logo, JDSU model name and device serial number
Note: Parameters are specified for the signal wavelength range and/or pump wavelength range, all polarization states and operating temperature range without connector.
1
2.
3.
4.
5.
Backward tap: C (input), R (tap) and P (output).
Backward pumped: C (λ
S
input and
λ
P
output), R (λ
P
input) and P (λ
S
output). Forward pumped: C (λ
S
and
λ
P
output), R (λ
P
input) and P (λ
S
input).
Forward: P to C and Backward: C to P.
Forward: C to P and Backward: P to C. The isolation data are specified at 23 °C. The isolation range is
λc
± 12 nm or
λc
± 30 nm for one-stage or two-stage isolator, respectively.
Isolation of WDM is given for both C to P and P to C directions.
AHC SERIES
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: AHC-C30R10000
AHC-
Code
C
L
S
1
Signal Wavelength
C-band
L-band
S-band
C+L-bands
Code
J
K
N
Code
0
3
5
Pump Wavelength
No pump option
1480
nm
980
nm
Q
R
S
Code
0
1
2
3
4
5
A
T
Tap Ratio
No
tap
option
1%
2%
3%
4%
5%
1.8%
10%
V
Z
Isolator, Pump Configuration,
Package Length
One-stage, forward-pumped,
32 mm (L)
One-stage, forward-pumped,
40 mm (L)
One-stage, backward-pumped or
tap,
32 mm (L)
One-stage, backward-pumped or
tap,
40 mm (L)
Two-stage, forward-pumped,
40 mm (L)
Two-stage, forward-pumped,
32 mm (L)
Two-stage, backward-pumped
(or
tap),
40 mm (L)
Two-stage, backward-pumped
(or
tap),
32 mm (L)
Code
1
2
4
5
Fiber Pigtail Length
1 meter
2 meters
0.5 meter
1.5 meters
0
Code
0
1
2
3
4
5
8
9
A
B
C
Connectors
No
connector
FC/PC
FC/SPC
FC/APC
SC/SPC
SC/APC
ST
FC/UPC
SC/UPC
LC/SPC
LC/UPC
Code
0
1
Fiber Buffer Type
250 µm bare fiber
900 µm loose
tube
Code
0
H
Power Handling Option
Standard:
150 mW at
980
nm
and 500 mW for
all others
High
Power:
450 mW at
980
nm
and 2000 mW
for all others
Note: Other configuratons and wavelengths are available on custom basis.
SMF-28 and PureMode are registered trademarks of Corning Incorporated.
ST and LC are registered trademarks of Lucent Technologies.
All statements, technical information and recommendations related to the products herein are based upon information believed to be
reliable or accurate. However, the accuracy or completeness thereof is not guaranteed, and no responsibility is assumed for any
inaccuracies. The user assumes all risks and liability whatsoever in connection with the use of a product or its application. JDSU reserves
the right to change at any time without notice the design, specifications, function, fit or form of its products described herein, including
withdrawal at any time of a product offered for sale herein. JDSU makes no representations that the products
herein are free from any intellectual property claims of others. Please contact JDSU for more information. JDSU and the JDSU logo are
Has anyone used this power chip (LM46002AQPWPR)? The design is to output 12V (input wide voltage 3.9-24V). Now it is measured that no matter how much the input is, the output is about 4V, and the FB p...
[i=s] This post was last edited by dontium on 2015-1-23 13:34 [/i] My initial idea is to eliminate the inductive reactance between the upper and lower layers and some decoupling effect. I don’t know i...
I only have a Spatarn 6 board, and I want to use chipscope to observe the waveform of a Verilog counter. Now I set up the project in ISE, and set up the net in the scope inserter, but when I click sta...
This is the circuit I built using multisim:The actual build is the same as above. Because OPA561 is not in multisim, the OPA561 model is built by myself, and the pins are a bit strange, sorry. Pin 4 o...
[i=s]This post was last edited by lbbook on 2019-12-9 23:23[/i]Thanks to TI and EEworld team for organizing the mmWave development board evaluation event. I am very lucky to be qualified to evaluate A...
0. Introduction
In daily life, we often see some special-purpose vehicles. When these vehicles pass through intersections, they often obtain the right of way at intersections by temporarily op...[Details]
No matter which processor you are learning, the first thing you need to understand is the registers and working mode of the processor.
ARM has 37 registers, including 31 general registers and ...[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]
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]
As cellular phones become more advanced, the power consumption of the system during operation and the power consumption during standby are also increasing. Therefore, the power management design of...[Details]
Introduction
Power subsystems are becoming more and more integrated into the overall system. Power systems have moved from being separate "essential dangerous devices" to being monitorable...[Details]
Since the No. 4 blast furnace of Handan Iron and Steel was put into operation in 1993, its external equipment has been seriously aged, and the original PLC control system TDC3000 of the hot blast furn...[Details]
1. Disadvantages of choosing too high a voltage level
Choosing too high a voltage level will result in too high an investment and a long payback period. As the voltage level increases, the...[Details]
The serial interface real-time clock chip DS1302 launched by Dallas Company in the United States can trickle charge the backup battery of the clock chip. Due to the main features of the chip such a...[Details]
System Overview
The system consists of a signal preprocessing circuit, a single-chip computer AT89C2051, a systematic LED display module, a serial port data storage circuit and system software...[Details]
LED is now known as the fourth generation of light sources. High-power LED has many advantages over traditional light sources in outdoor lighting.
1 LED lamps have high light efficiency
C...[Details]
One in five car failures are caused by batteries, a problem that will become more serious in the coming years as electric-by-wire, start/stop engine management and hybrid (electric/gas) vehicles be...[Details]
Leakage current is generated by parasitic resistance paths between the measurement circuit and a nearby voltage source. This current can significantly reduce the accuracy of low current measurement...[Details]
At present, with the diversification of portable products and the almost harsh requirements for audio and video parts, the power consumption requirements of the whole machine have been raised to a ...[Details]
This article focuses on closing the feedback loop of an isolated power supply using a TL431 shunt regulator. The article discusses a method to extend the bandwidth of the power supply control loop ...[Details]