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Optical Amplifier Platform, 1724-Type Erbium-Doped Fiber Amplifier Ser


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TriQuint Optoelectronics
Optical Amplifier Platform, 1724-Type Erbium-Doped Fiber Amplifier Series)
Designed variety applications: Series: single channel Series: video Booster/power amplifier Line amplifier Preamplifier
uinUCT iQICOND TrSEM
Description
1724-Type Erbium-Doped Fiber Amplifier (EDFA) been designed variety applications available application-specific versions:
Designed single-channel video applications, standard 1724-Type EDFA incorporates DB-25 connector microcontroller with compatible alarm monitoring.
Series single-channel, preamplifier applications (see Table page performance specifications) High gain noise figure Series video, analog, booster applications (see Table page performance specifications) Supports wide range output powers noise figure power dissipation Adjustable output power
Features
High saturation output power, power consumption, noise Single operation Wide input signal bandwidth Wide operating temperature range, Optical input output taps Isolated input output Programmable input output Connectorized single-mode fiber pigtail Standard serial communication channels
Optical Amplifier Platform, 1724-Type Erbium-Doped Fiber Amplifier Series)
fiber outputs (using SC/PC optical connectors) degrees relative DB25 electrical connector. standard product does include heat sink.
Description (continued)
versatile 1724-Type EDFA operates over wide temperature range, exhibits extremely power dissipation, offers variety alarms monitors. Optimum performance system stability supported through optical isolation input output. Optical input output through singlemode fiber pigtails terminated with optical connectors. EDFA incorporates optical input output taps that monitored integral microcontroller. Significant performance benefits achieved with microcontroller, which stabilizes temperature pumps maintains constant optical output power. Contact your TriQuint Account Manager discuss electrical optical connector options listed Ordering Information section.
TTL-Compatible Alarm Outputs
Loss Input Power Alarm
input power more than below minimum PIN, loss input power alarm (pin will activate (TTL-logic
Loss Output Power Alarm
output power decreases more than from beginning-of-life value, loss output power alarm (pin will activate (TTL-logic
Standard Features
standard 1724-Type EDFA incorporates optical architecture illustrated Figure standard features include:
Pumps Temperature Alarm
laser temperature pump(s) exceeds pump temperature alarm (pin will activate (TTLlogic
Exceptional performance benefits with integral microcontroller, which precisely controls output power allows changes power settings necessary. Single power supply eliminates need dual voltage source circuits. DB-25 electrical connector allows easy electrical connectivity. Optical input enables input monitoring control. Optical output enables precise output monitoring control and, when used conjunction with microcontroller, typically provides output power stability over temperature wavelength. SC/PC optical connector power dissipation Alarms: Loss input power alarm Loss output power alarm Pump bias alarm (>95% value) Pump temperature alarm EDFA temperature alarm Advanced microprocessor design requires minimal engineering shelf-level product. Standard mechanical outline includes metric screws
Pumps Bias Alarm
bias current pump(s) exceeds value, pump bias alarm (pin will activate (TTL-logic
EDFA Temperature Alarm
case temperature exceeds then EDFA temperature alarm (pin will activate (TTLlogic
Optional Features
Other feature package options 1724-Type EDFA include:
Alternative optical connectors Integral heat sink
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Optical Amplifier Platform, 1724-Type Erbium-Doped Fiber Amplifier Series)
Block Diagram
OPTICAL INPUT SIGNAL INPUT OPTICAL GAIN OUTPUT OPTICAL OUTPUT SIGNAL
INPUT POWER MONITOR
OUTPUT POWER MONITOR
MICROCONTROLLER
1-904
Figure 1724-Type EDFA Block Diagram
Information
Table Descriptions Microcontrolled (Full) Amplifier
Description (±0.25 (±0.25 (±0.25 (±0.25 Reserved
Description
RS-232 (TTL) Loss Input Power Alarm6 Reserved1 Amplifier Disable Input7 RS-232 (TTL) Reserved1 (±0.25
Reserved1 EDFA Temperature Alarm Loss Output Power Alarm2 Pumps Bias Alarm
Pumps Temperature (±0.25
Alarm4
EDFA Shutdown Override5
connect reserved pins. Normal low, alarm high output power falls below minimum value. Normal low, alarm high pump bias exceeds end-of-life value. Normal low, alarm high pump temperature exceeds EDFA equipped with optical transient suppression feature when this tied GND. EDFA will turn pumps off, input power low. Tying this will disable this feature; however, damage optical connectors components occur amplifier turned without presence optical signal. Normal low, alarm high input power less than below minimum PIN. Amplifier enable (all pumps low, amplifier disable (all pumps off) high.
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Optical Amplifier Platform, 1724-Type Erbium-Doped Fiber Amplifier Series)
Absolute Maximum Ratings
Stresses excess absolute maximum ratings cause permanent damage device. These absolute stress ratings only. Functional operation device implied these other conditions excess those given operational sections data sheet. Exposure absolute maximum ratings extended periods adversely affect device reliability. Parameter Storage Temperature Operating Case Temperature Absolute Humidity Symbol Tstg 0.024 Unit lbs. H2O/lbs.
Electrical Characteristics
Table Power Supply Parameter Power Supply Voltage Power Supply Current (beginning life): Power Supply Current (end life): Electrical Power Consumption (beginning life): Electrical Power Consumption (end life): Symbol VPS1 4.75 Typ* 5.25 Unit
IPS1 IPS1
IPS1 IPS1
12.0
10.0 20.0
Typical operating characteristics: VPS1
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Optical Amplifier Platform, 1724-Type Erbium-Doped Fiber Amplifier Series)
Electrical Characteristics (continued)
Table Inputs/Outputs Under normal operating conditions, various alarm outputs will level low. corresponding parameter outside predesignated range, associated alarms will become level high. Parameter Input Voltage: High Output Voltage: High Input Current: High Output Current: High Symbol Unit
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Optical Amplifier Platform, 1724-Type Erbium-Doped Fiber Amplifier Series)
Optical Characteristics
Table Performance Specifications Series Parameter Signal Wavelength Range Measurement Wavelength Input Signal Power: Preamp-S1724A-Type Booster/In Line-S1724B/C/D-Types Gain (PIL dBm): Preamp-S1724A-Type Peak Output Power over Booster/In Line-S1724B-Type -S1724C-Type -S1724D-Type Noise Figure: Preamp-S1724A-Type (PIL dBm; Booster/In Line-S1724B/C/D-Types (PIL -6.0 dBm; Return Loss Output Power Stability (over temperature, constant input power) Table Performance Specifications Series Parameter Signal Wavelength Range Measurement Wavelength Input Signal Power Peak Output Power °C): V1724B-Type V1724C-Type V1724D-Type V1724E-Type Noise Figure (PIL dBm, Return Loss Composite Second Order Composite Third Beat Output Power Stability (over temperature input power variations) Symbol 1540 1550 4.75 <-70 <-70 ±0.2 1560 ±0.5 Unit Symbol 1530 -6.0 1550 ±0.2 1560 ±0.5 Unit
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Optical Amplifier Platform, 1724-Type Erbium-Doped Fiber Amplifier Series)
Outline Drawings
1724-Type EDFA Package*
Dimensions inches (millimeters).
MOUNTING HOLES 0.5, DEEP PLACES
5.074 (128.88)
0.41 (10.4)
TriQuint
LABELS REQUIRED
SEMICONDUCTOR
4.660 (118.36) DANGER LABEL
HEATSINK MOUNTING HOLES 0.5, DEEP PLACES
5.90 (149.9)
0.12 (3.0)
4.90 (124.5) CONNECTOR MALE 2.285 (58.04) LABEL 0.165 (4.19) 0.44 (11.2) 5.570 (141.48) 0.90 (22.9) 0.76 (19.3) 0.17 (4.2)
1-997(C)
4.57 (116.08)
3.10 (78.7)
3.795 (96.39)
0.83 (21.1) 0.03 (0.8)
INFORMATION LABEL
version shown; coding scheme Table Ordering Information.
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Optical Amplifier Platform, 1724-Type Erbium-Doped Fiber Amplifier Series)
Outline Drawings (continued)
Optional Package Configuration: 1724-Type EDFA Package with Integral Heat Sink*
Dimensions inches (millimeters).
CUSTOMER LABEL LASER WARNING LABEL
1.500 (38.10)
DANGER
0.033 (0.84) 5.90 (149.9) 0.41 (10.5) 5.074 (128.88)
0.44 (11.2)
TriQuint
4.660 (118.36)
CONNECTOR (MALE)
SEMICONDUCTOR
4.91 1.850 (124.7) (46.99)
TriQuint Semiconductor Breinigsville, Pennsylvania DATE MANUFACTURED: February 2003
0.76 (19.3)
1.53 (38.9)
0.123 (3.12) 0.98 (24.8) 3.94 (100.1) MOUNTING HOLES 0.5, DEEP NOTED DIMPLE PLACES
0.38 (9.5)
version shown; coding scheme Table Ordering Information.
1-998(C)
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Optical Amplifier Platform, 1724-Type Erbium-Doped Fiber Amplifier Series)
Ordering Information
Table Ordering Information* Device Code S1724BBBA S1724BDBA S1724CBBA S1724CDBA S1724DDBA V1724BBBA V1724BHBA V1724CBBA V1724CGDA V1724CHBA V1724DBBA V1724DHBA V1724EBBA V1724EHBA 13.0 13.0 16.0 16.0 19.0 13.0 13.0 16.0 16.0 16.0 19.0 19.0 22.0 22.0 Connector SC/PC FC/PC SC/PC FC/PC FC/PC SC/PC SC/APC SC/PC FC/APC SC/APC SC/PC SC/APC SC/PC SC/APC Heat Sink Comcode 108321472 108313719 108331539 108313727 108319088 108331547 108468398 108331554 108363680 108468406 108331562 108351842 108331984 108351859
Contact your Account Manager discuss your requirements.
Coding Scheme
Example: 1724 1724 series indicator: single channel video output power indicator: 12.99 optical connector indicator: SC/PC FC/PC FC/APC SC/APC housing-type indicator: heat sink; fibers opposite DB25 connector heat sink; fibers opposite DB25 connector heat sink; fibers from DB25 connector future
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Optical Amplifier Platform, 1724-Type Erbium-Doped Fiber Amplifier Series)
Related Product Information
Table Related Product Information Description Lithium Niobate Modulator Electroabsorption Modulated Isolated Laser Module Isolated Laser Module Isolated Laser Module Interfacing 1724-Type Microprocessor-Controlled Erbium-Doped Fiber Amplifier Serial Communication Port Part Number 2623-Type E2500-Type D2500-Type D2300-Type 1724-Type EDFA Document Number DS02-350 DS01-281-1 DS00-166-1 DS00-167-1 AP99-020
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Optical Amplifier Platform, 1724-Type Erbium-Doped Fiber Amplifier Series)
Laser Safety Information
Class IIIb Laser Product
FDA/CDRH Class IIIb laser product. versions Class IIIb laser products CDRH, 1040 Laser Safety requirements. versions classified Class laser products consistent with 60825-1: 1993. This device family been classified with under accession number 9320325. Measurements were made classify product 60825-1: 1993. This product complies with 1040.10 1040.11. 8.8/125 single-mode fiber pigtail with connector Wavelength Maximum power <500 Product shipped with power supply. CAUTION: controls, adjustments, procedures other than those specified herein result hazardous laser radiation exposure.
registered trademark International Electrotechnical Commission.
INVISIBLE LASER RADIATION EMITTED FROM FIBER CONNECTOR
Avoid exposure beam Class IIIb laser products CDRH, 1040. Max. Output: <500 Wavelength: 1.55
Electrostatic Discharge
Caution: This device susceptible damage result electrostatic discharge. Take proper precautions during both handling testing. Follow guidelines such JEDEC Publication 108-A (Dec. 1988). TriQuint employs human-body model (HBM) susceptibility testing protection-design evaluation. voltage thresholds dependent critical parameters used define model. standard (resistance capacitance widely used and, therefore, used comparison purposes.
additional information latest specifications, website: www.triquint.com
Optical Amplifier Platform, 1724-Type Erbium-Doped Fiber Amplifier Series)
Additional Information
latest specifications, additional product information, worldwide sales distribution locations, information about TriQuint: Web: www.triquint.com E-mail: info_opto@tqs.com Tel: (503) 615-9000 Fax: (503) 615-8902
technical questions additional information specific applications: E-mail: info_opto@tqs.com
information provided herein believed reliable; TriQuint assumes liability inaccuracies omissions. TriQuint assumes responsibility this information, such information shall entirely user's risk. Prices specifications subject change without notice. patent rights licenses circuits described herein implied granted third party. TriQuint does authorize warranty TriQuint product life-support devices and/or systems. Copyright 2003 TriQuint Semiconductor Inc. rights reserved.
DS99-259 Revision 1.1, February, 2003

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