V23818N15L17 Infineon Technologies, V23818N15L17 Datasheet

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V23818N15L17

Manufacturer Part Number
V23818N15L17
Description
Manufacturer
Infineon Technologies
Datasheet

Specifications of V23818N15L17

Optical Fiber Type
TX/RX
Data Transfer Rate
2500Mbps
Operating Temperature Classification
Commercial
Peak Wavelength
1360/1580nm
Package Type
DIP With Connector
Operating Supply Voltage (min)
3.14V
Operating Supply Voltage (typ)
3.3V
Operating Temp Range
-5C to 70C
Mounting
Through Hole
Pin Count
20
Lead Free Status / RoHS Status
Supplier Unconfirmed
Fiber Optics
Small Form Factor
V23818-N15-Lxx/Lxxx
Single Mode 1310 nm
Multirate up to 2.5 Gbit/s Transceiver
2x5/2x10 Pinning with LC™ Connector
Features
• Small Form Factor transceiver
• RJ-45 style LC™ connector system
• Half the size of SC Duplex 1x9 transceiver
• Optimized for SDH STM-16 / SONET OC-48
• Single power supply (3.3 V)
• Extremely low power consumption
• Loss of optical signal indicator
File: 1147
• Laser disable input
• LVPECL differential inputs and outputs
• Suitable for multirate applications up to 2.5 Gbit/s
• Distance up to 2 km on single mode fiber (SMF)
• Class 1 FDA and IEC laser safety compliant
• Multisource footprint
• Small footprint for high channel density
• UL 94 V-0 certified
• Compliant with FCC (Class B) and EN 55022
• Tx and Rx power monitor
For ordering information see next page.
LC™ is a trademark of Lucent.
Data Sheet
1
2004-08-25

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V23818N15L17 Summary of contents

Page 1

Small Form Factor Single Mode 1310 nm Multirate up to 2.5 Gbit/s Transceiver 2x5/2x10 Pinning with LC™ Connector Features • Small Form Factor transceiver • RJ-45 style LC™ connector system • Half the size of SC Duplex 1x9 transceiver • ...

Page 2

Ordering Information Part Number Pinning Signal V23818-N15-L17 2x10 V23818-N15-L16 V23818-N15-L353 V23818-N15-L356 V23818-N15-L354 V23818-N15-L355 V23818-N15-L37 2x5 V23818-N15-L36 V23818-N15-L47 V23818-N15-L46 V23818-N15-L457 2x10 V23818-N15-L356-C 2x10 1) Incorporates non-standard collar type (see Data Sheet Operating Data Outputs Detect Temperature Low LVPECL ...

Page 3

Pin Configuration Tx Rx Figure 1 2x10 Pin Connect Diagram 2x10 Pin Description Pin Symbol Level/Logic No. 1 PDBias DC current V 2 Ground EEr V 3 Ground EEr Ground EEr V 7 Power ...

Page 4

Tx Rx Figure 2 2x5 Pin Connect Diagram 2x5 Pin Description Pin Symbol Level/Logic No Ground EEr V 2 Power supply CCr 3 SD LVTTL or LVPECL output 4 RD– LVPECL output 5 RD+ LVPECL output V 6 ...

Page 5

CCr CCt For 2x10 transceivers a 3 power supply must be applied at pins 7 and 11. For 2x5 transceivers a 3 power supply must be applied at pins 2 and 6. A ...

Page 6

Transceiver Additional Functionality PDBias V Connect pin 1 to through a bias resistor value not exceeding shown in CC Figure 3 to monitor PIN photo detector bias current. Leave pin floating if not ...

Page 7

Typical Responsitivity of PIN Photo Detector Bias Current Monitor 400 300 200 100 0 0 Figure 4 Linear Response 400 300 200 100 0 30 Figure 5 Logarithmic Response Data Sheet 100 200 300 Received Optical Power ( W) 24 ...

Page 8

BMon– / BMon+ The DC voltage measured across pins 17 and 18 is proportional to the laser bias current. Use the equation /10 bias bias Use this output to monitor laser performance and EOL conditions. A schematic ...

Page 9

PMon– / PMon+ The DC voltage that can be measured across pins 19 and 20 is proportional to the laser monitor diode current through a 200 and can be used to monitor correct operation of laser control circuitry, a deviation ...

Page 10

Description The Infineon 2.5 Gigabit single mode transceiver – part of the Infineon Small Form Factor transceiver family – is based on the Physical Medium Depend (PMD) sublayer and baseband medium, type 2000 Base-LX, compliant with ITU-T G.957 STM-16, S-16.1 ...

Page 11

Functional Description of SFF Transceiver This transceiver is designed to transmit serial data via single mode fiber. BMon- BMon+ TDis TD- TD+ PMon- PMon+ RD- RD+ SD PDBias Figure 10 Functional Diagram 2x10 Pin Rows TDis TD TD+ RD RD+ ...

Page 12

The receiver component converts the optical serial data into an electrical data (RD+ and RD–). The Signal Detect output (SD) shows whether an optical signal is present. The transmitter part converts electrical LVPECL compatible serial data (TD+ and TD–) into ...

Page 13

Regulatory Compliance Feature ESD: Electrostatic Discharge to the Electrical Pins Immunity: Against Electrostatic Discharge (ESD) to the Duplex LC Receptacle Immunity: Against Radio Frequency Electromagnetic Field Emission: Electromagnetic Interference (EMI) *) min. pitch between SFF transceiver according to MSA. Dimensions ...

Page 14

Technical Data Absolute Maximum Ratings Parameter Package Power Dissipation Supply Voltage Data Input Levels Differential Data Input Voltage Swing PIN PDBias Voltage Storage Ambient Temperature Hand Lead Soldering Temp/Time Wave Soldering Temp/Time Aqueous Wash Pressure Exceeding any one of these ...

Page 15

Recommended Operating Conditions Parameter 1), 3) Ambient Temperature 2), 3) Ambient Temperature Power Supply Voltage Transmitter Supply Current Tx Data Input High Voltage Differential Data Input Voltage 4) Swing Data Input Low Voltage Data Input Rise/Fall Time (20% - 80%) ...

Page 16

Transmitter Electro-Optical Characteristics Transmitter 1) Output Power (Average) 2) Output Power (Average) Center Wavelength Spectral Width (RMS) Side Mode Suppression Ratio Extinction Ratio (Dynamic) Optical Eye Mask V Reset Threshold for CCt 3) Power on Delay Jitter Generation 4) 4) ...

Page 17

Jitter The transceiver is specified to meet the SONET Jitter performance as outlined in ITU-T G.958 and Telcordia GR-253. Jitter Generation is defined as the amount of jitter that is generated by the transceiver. The Jitter Generation specifications are referenced ...

Page 18

Receiver Electro-Optical Characteristics Receiver Sensitivity (Average Power) Saturation (Average Power) Signal Detect Assert Level Signal Detect Deassert Level Signal Detect Hysteresis Signal Detect Assert Time Signal Detect Deassert Time Data Output High Voltage Differential Data Output Voltage Swing Data Output ...

Page 19

Eye Safety This laser based single mode transceiver is a Class 1 product. It complies with IEC 60825-1/A2: 2001 and FDA performance standards for laser products (21 CFR 1040.10 and 1040.11) except for deviations pursuant to Laser Notice 50, dated ...

Page 20

EMI Recommendations To avoid electromagnetic radiation exceeding the required limits please take note of the following recommendations. When high speed components are found on a PCB (multiplexers, clock recoveries etc.) any opening of the chassis may produce radiation also at ...

Page 21

Recommended Termination Schemes 2x10 DC/DC Transceiver Laser 100 Driver SFF Transceiver Limiting Pre- Amplifier Amp C1/2/3 = 4.7 ... 10 F C4/5/6/7 = 100 nF C8/9/10 = Design criterion is the resonance frequency only. The self ...

Page 22

AC/AC Transceiver Laser 100 Driver SFF Transceiver Limiting Pre- Amplifier Amp C1/2/3 = 4.7 ... 10 F C4/5/6 = Design criterion is the resonance frequency only. The self resonant frequency of the capacitor must be ...

Page 23

DC/DC Transceiver Laser 100 Driver SFF Transceiver Signal Detect Limiting RD Pre- Amplifier Amp RD+ C1/2/3 = 4.7 ... 10 F C4/5/6/7 = 100 nF C8/9/10 = Design criterion is the resonance frequency only. The self resonant frequency of ...

Page 24

AC/AC Transceiver Laser 100 Driver SFF Transceiver Signal Detect Limiting RD Pre- Amplifier Amp RD+ C1/2/3 = 4.7 ... 10 F C4/5/6 = Design criterion is the resonance frequency only. The self resonant frequency of the capacitor must be ...

Page 25

Package Outlines Dimensions in mm [inches] Figure 19 Data Sheet V23818-N15-Lxx/Lxxx a) recommended bezel position Drawing shown is 2x10 pinning with collar 25 Package Outlines File: 1213 2004-08-25 ...

Page 26

Advanced Collar Dimensions in mm [inches] Figure 20 Non-standard Collar Data Sheet V23818-N15-Lxx/Lxxx 26 Package Outlines File: 1505 2004-08-25 ...

Page 27

... Infineon Technologies Office. Infineon Technologies Components may only be used in life-support devices or systems with the express written approval of Infineon Technologies failure of such components can reasonably be expected to cause the failure of that life-support device or system affect the safety or effectiveness of that device or system. Life support devices or systems are intended to be implanted in the human body support and/or maintain and sustain and/or protect human life ...

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