AFCT-5179AZ AVAGO | Alldatasheet
Document overview
- Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
- PDF pages: 8
Technical content
Features
- SC duplex single mode transceiver
- Single +3.3 V or +5 V power supply
- Multisourced 1 x 9 pin configuration
- Manufactured in an ISO9001 certified factory
- Aqueous washable plastic package
- Interchangeable with LED multisourced 1 x 9 trans- ceivers
- Unconditionally eye safe laser IEC 825/CDRH Class 1 compliant
- Designed for EFM (Ethernet in the First Mile) baseline 100Base-LX10 performance over dual single mode fiber
- RoHS compliant
- Two temperature ranges: 0° C to +70° C, AFCT-5179BZ/DZ -40° C to +85° C, AFCT-5179AZ/CZ
Applications
- Fast Ethernet
- Ethernet in the First Mile
o o o o o o o o o Top View N/C N/C Pin Descriptions: Pin 1 Receiver Signal Ground VEER: Directly connect this pin to the receiver ground plane. Pin 2 Receiver Data Out RD: See recommended circuit schematic, Figure 4. Pin 3 Receiver Data Out Bar RD: See recommended circuit schematic, Figure 4. Pin 4 Signal Detect SD: Normal optical input levels to the receiver result in a logic “1” output. Low optical input levels to the receiver result in a fault condition indicated by a logic “0” output. This Signal Detect output can be used to drive a PECL input on an upstream circuit, such as Signal Detect input or Loss of Signal-bar. Pin 5 Receiver Power Supply VCCR: Provide +3.3 V or +5 V DC via the recommended transmit- ter power supply filter circuit. Locate the power supply filter circuit as close as possible to the VCC pin. Pin 6 Transmitter Power Supply VCCT: Provide +3.3 V or +5 V DC via the recommended transmit- ter power supply filter circuit. Locate the power supply filter circuit as close as possible to the VCC pin. Pin 7 Transmitter Data In Bar TD: See recommended circuit schematic, Figure 4. Pin 8 Transmitter Data In TD: See recommended circuit schematic, Figure 4. Pin 9 Transmitter Signal Ground VEET: Directly connect this pin to the transmitter ground plane. Mounting Studs The mounting studs are provided for mechanical attach - ment to the circuit board. They are embedded in the nonconductive plastic housing and are not tied to the transceiver internal circuit and should be soldered into plated-through holes on the printed circuit board.
Feature Test Method Performance Electrostatic Discharge (ESD) to the Electrical Pins MIL-STD-883F Method 3015.7 Class 1 (> 1 kV) – Human Body Model Electrostatic Discharge (ESD) to the Duplex SC Receptacle Variation of IEC 801-2 Products of this type, typically, withstand at least 15 kV without damage when the Duplex SC Connector Receptacle is contacted by a Human Body Model probe. Electromagnetic Interference (EMI) FCC Class B CENELEC EN55022 Class B (CISPR 22A) VCCI Class 1 Typically provide a 17 dB margin to the noted standard limits up to 6 GHz, when tested in a GTEM cell with the transceiver mounted to a circuit card with a chassis enclosure. Immunity Variation of IEC 801-3 Typically show no measurable effect from a 10 V/m field swept from 27 MHz to 1 GHz applied to the transceiver without a chassis enclosure. Eye Safety FDA CDRH 21-CFR 1040 Class I CDRH Accession Number: 9521220-121 IEC 825 Issue 1 1993:11 Class 1 CENELEC EN60825 Class 1 TUV Bauart License: 933/21201880/10 Component Recognition Underwriters Laboratories and Canadian Standards Association Joint Component Recognition for Information Technology Equipment Including Electrical Business Equipment. UL File#: E173874 Performance Specifications Absolute Maximum Ratings Stresses in excess of the absolute maximum ratings can cause catastrophic damage to the device. Limits apply to each parameter in isolation, all other parameters having values within the recommended operating conditions. It should not be assumed that limiting values of more than one parameter can be applied to the product at the same time. Exposure to the absolute maximum ratings for extended periods can adversely affect device reliability. Parameter Symbol Minimum Maximum Units Notes Storage Temperature TS -40 +85 °C – Operating Temperature – AFCT-5179BZ/DZ – 0 +70 °C 1 Operating Temperature – AFCT-5179AZ/CZ – -40 +80 °C 1 Lead Soldering Temperature/Time – – +260/10 °C/s – Output Current (other outputs) IOUT 0 30 mA – Input Voltage – GND VCC V – Power Supply Voltage – 0 +6 V – Operating Enviroment Parameter Symbol Minimum Maximum Units Notes Power Supply Voltage VCC +3.1 +5.25 V – Ambient Operating Temperature – AFCT-5179BZ/DZ TOP 0 +70 °C 1 Ambient Operating Temperature – AFCT-5179AZ/CZ TOP -40 +85 °C 1
(Ambient Operating Temperature VCC = 3.1 V to 5.25 V) Parameter Symbol Minimum Typical Maximum Units Notes Receiver Sensitivity – -25 -31 dBm dBm Maximum Input Power – -8 – – dBm – Signal Detect – Asserted PA PD +0.5 – -25 dBm avg. – Signal Detect – Deasserted PD -45 – – dBm avg. – Signal Detect – Hysteresis AFCT-5179BZ/DZ PA – PD 0.5 – 4.0 dB – AFCT-5179AZ/CZ PA – PD 0.5 – 5.0 dB – Power Supply Current ICC – 55 100 mA 7 Data Output Voltage – Low VOL – VCC -2.0 – -1.50 V 8 Data Output Voltage – High VOH – VCC -1.1 – -0.74 V 8 Signal Detect Output Voltage – Low VOL – VCC -2.0 – -1.50 V 8 Signal Detect Output Voltage – High VOH – VCC -1.1 – -0.74 V 8 Notes: 6a. Minimum sensitivity for IEEE 802.3ah test pattern with baseline wander. 6b. Minimum sensitivity and saturation levels for a FDDI test pattern as defined in FDDI SMF-PMDI with 4B/5B NRZI encoded data that contains a duty cycle baseline wander effect of 50 kHz and a 223-1 PRBS with 72 ones and 72 zeros inserted (ITU-T recommendation G.958). 7. The current excludes the output load current. 8. These outputs are compatible with 10 K, 10 KH and 100 K ECL and PECL outputs. Transmitter Section (Ambient Operating Temperature VCC = 3.1 V to 5.25 V) Parameter Symbol Minimum Typical Maximum Units Notes Output Center Wavelength λC 1260 – 1260 nm – Output Spectral Width (RMS) ∆λ – – 7.7 nm – Average Optical Output Power PO -15 – -8 dBm 2 Extinction Ratio ER 6 – – dB – Power Supply Current ICC – 50 140 mA 3 Output Eye Compliant with eye mask IEEE Std 802.3ah- 2004 4 RIN RIN12 (OMA) – -110 – dB/Hz – Transmitter Dispersion Penalty TDP – 3.0 4 dB – Optical Return Loss ORL – – 12 dB – Data Input Current – Low IIL -350 – – µA – Data Input Current – High IIH – – 350 µA – Differential Input Voltage VIH – VIL 300 – – mV – Data Input Voltage – Low VOL – VCC -2.0 – -1.475 V 5 Data Input Voltage – High VOH – CC -1.165 – -0.74 V 5 Notes: 1. 2 m/s air flow required. 2. Output power is power coupled into a single mode fiber. 3. The power supply current varies with temperature. Maximum current is specified at V CC = Maximum @ maximum temperature (not including terminations) and end of life. 5. These inputs are compatible with 10 K, 10 KH and 100 K ECL and PECL inputs.
Figure 5. Package Outline Drawing for AFCT-5179xZ DIMENSIONS ARE IN MILLIMETERS (INCHES). X.X ±0.05 mm UNLESS OTHERWISE SPECIFIED.
For product information and a complete list of distributors, please go to our web site: www.avagotech.com Avago, Avago Technologies, and the A logo are trademarks of Avago Technologies in the United States and other countries. Data subject to change. Copyright © 2005-2012 Avago Technologies. All rights reserved. Obsoletes 5989-3824EN AV02-3587EN - June 11, 2012 Class 1 Laser Product: This product conforms to the applicable requirements of 21 CFR 1040 at the date of manufacture Date of Manufacture: Avago Technologies Inc., No 1 Yishun Ave 7, Singapore Handling Precautions 1. The AFCT-5179xZ can be damaged by current surges or overvoltage. Power supply transient precautions should be taken. 2. Normal handling precautions for electrostatic sensitive devices should be taken.
Ordering Information
Temperature range 0° C to +70° C AFCT-5179BZ Black Case AFCT-5179DZ Blue Case Temperature range -40° C to +85° C AFCT-5179AZ Black Case AFCT-5179CZ Blue Case 20.32 (0.800) TOP VIEW 2 x Ø 1.9 ± 0.1 (0.075 ± 0.004) 20.32 (0.800) 2.54 (0.100) 9 x Ø 0.8 ± 0.1 (0.032 ± 0.004) DIMENSIONS ARE IN MILLIMETERS (INCHES) Figure 6. Recommended Board Layout Pattern