AFBR-703SNZ Avago Technologies US Inc., AFBR-703SNZ Datasheet

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AFBR-703SNZ

Manufacturer Part Number
AFBR-703SNZ
Description
10Gb ETHERNET TRANSCEIVER, 850NM
Manufacturer
Avago Technologies US Inc.
Datasheet

Specifications of AFBR-703SNZ

Supply Voltage
3.3V
Wavelength Typ
850nm
Applications
Gigabit Ethernet
Product
Transceiver
Data Rate
10.31 Gbd
Wavelength
860 nm
Maximum Rise Time
28 ps
Maximum Fall Time
28 ps
Maximum Output Current
20 mA
Operating Supply Voltage
- 0.3 V to + 3.8 V
Maximum Operating Temperature
+ 100 C
Minimum Operating Temperature
- 40 C
Maximum Forward Current
180 mA
Maximum Power Dissipation
600 mW
Operating Voltage
3.465 V
Leaded Process Compatible
Yes
Peak Reflow Compatible (260 C)
Yes
Rohs Compliant
Yes
Lead Free Status / Rohs Status
 Details
AFBR-703SNZ
10Gb Ethernet, 850 nm, 10GBASE-SR,
mini-SFP+ (mSFP+) Transceiver
Data Sheet
Description
The Avago AFBR-703SNZ transceiver is with a mini-SFP+
(mSFP+) form factor that is smaller than the standard
SFP+ form factor defined by the SFF 8432 mechanical
specs. This product is part of a family of SFP+ products,
but can be used for even higher density 10Gb Ethernet
application than what the SFP+ form factor can serve to-
day. Both the mSFP+ and the SFP+ form factors share
the same management interface specs and optical
specs. Both the mSFP+ SR transceiver and the SFP+ SR
transceiver utilize Avago’s 850nm VCSEL and PIN detec-
tor technology to provide an IEEE 10GbE design compli-
ant with the 10GBASE-SR standard.
Related Products
x The AFBR-703SDZ (AFBR-703ASDZ) is a SFP+ 10
x The AFBR-707SDZ (AFBR-707ASDZ) is a SFP+ 10
x The AFCT-701SDZ (AFCT-701ASDZ) is a SFP+ 10
Gigabit Ethernet 10GBASE-SR transceiver with case
temperature operated at 0-70 (0-85) °C for use on
multimode fiber cables. It is best suited for OM3 high
bandwidth MMF link applications with link lengths
up to 300 meters.
Gigabit Ethernet 10GBASE-LRM transceiver for
220 meter operation in all MMF link applications
including OM1 and OM2 legacy fiber cables and new
high bandwidth OM3 fiber cables.
Gigabit Ethernet 10GBASE-LR transceiver with case
temperature 0-70 (0-85) °C for operation in SMF link
applications to 10 km
Features
x Avago 850nm VCSEL source and Transmitter Optical
x Avago PIN detector and Receiver Optical Subassembly
x Typical power dissipation 600mW
x Full digital diagnostic management interface
x Avago SFP+ package design enables equipment EMI
Specifications
x Optical interface specifications per IEEE 802.3ae
x Electrical interface specifications per SFF Committee
x Management
x LC Duplex optical connector interface confirming to
x Compliant to Restriction on Hazardous Substances
x Class 1 Eye safe per requirements of IEC 60825-1 /
Subassembly technology
technology
performance in high port density applications with
margin to Class B limits
10GBASE-SR
SFF 8431 Specifications for Enhanced 8.5 and 10
Gigabit Small Form Factor Pluggable Module “SFP+”
Committee SFF 8431 and SFF 8472 Diagnostic
Monitoring Interface for Optical Transceivers
ANSI TIA/EA 604-10 (FOCIS 10A)
(RoHS) per EU and China requirements
CDRH
interface
specifications
per
SFF

Related parts for AFBR-703SNZ

AFBR-703SNZ Summary of contents

Page 1

... Ethernet, 850 nm, 10GBASE-SR, mini-SFP+ (mSFP+) Transceiver Data Sheet Description The Avago AFBR-703SNZ transceiver is with a mini-SFP+ (mSFP+) form factor that is smaller than the standard SFP+ form factor defined by the SFF 8432 mechanical specs. This product is part of a family of SFP+ products, but can be used for even higher density 10Gb Ethernet application than what the SFP+ form factor can serve to- day ...

Page 2

... Predictive Failure Identifi- cation, Compliance Prediction, Fault Isolation and Com- ponent Monitoring. Predictive Failure Identification The AFBR-703SNZ predictive failure feature allows a host to identify potential link problems before system perfor- mance is impacted. Prior identification of link problems enables a host to service an application via “fail over” ...

Page 3

... DC bal- anced. Transmit Disable (TX_DISABLE) The AFBR-703SNZ accepts an LVTTL compatible trans- mit disable control signal input which shuts down the transmitter optical output. A high signal implements this function while a low signal allows normal transceiver op- eration ...

Page 4

... AFBR-703SNZ. All mechanical ad- justments are made at the factory prior to shipment. Tampering with, modifying, misusing or improperly han- dling the AFBR-703SNZ will void the product warranty. It may also result in improper operation and possibly over- stress the laser source. Performance degrada tion or de- vice failure may result ...

Page 5

... States, CENELEC EN55022 (CISPR 22) in Europe and VCCI in Japan. The AFBR-703SNZ enables equipment compli- ance to these standards detailed in Table 1. The metal housing and shielded design of the AFBR-703SNZ mini- mizes the EMI challenge facing the equipment designer. For superior EMI performance it is recommended that equipment designs utilize SFP+ cages per SFF 8432 ...

Page 6

Table 1. Regulatory Compliance Feature Test Method Electrostatic Discharge (ESD) MIL-STD-883C to the Electrical Contacts Method 3015.4 Electrostatic Discharge (ESD) IEC 61000-4-2 to the Duplex LC Receptacle Life Traffic ESD Immunity IEC 61000-4-2 Life Traffic ESD Immunity IEC 61000-4-2 Electromagnetic ...

Page 7

Tx_DISABLE Tx_FAULT SERDES IC PROTOCOL IC LOSS OF SIGNAL 4 kΩ MODULE DETECT SCL SDA Figure 2. Typical application configuration 0.1 μF 22 μ 0.1 μF 22 μF HOST BOARD SFP ...

Page 8

Table 2. Contact Description Contact Symbol Function/Description 1 VeeT Transmitter Signal Ground 2 TX_FAULT Transmitter Fault (LVTTL-O) – High indicates a fault condition 3 TX_DISABLE Transmitter Disable (LVTTL-I) – High or open disables the transmitter 4 SDA Two Wire Serial ...

Page 9

Table 3. Absolute Maximum Ratings Stress in excess of any of the individual Absolute Maximum Ratings can cause immediate catastrophic damage to the module even if all other parameters are within Recommended Operating Conditions. It should not be assumed that ...

Page 10

Table 5. Low Speed Signal Electrical Characteristics The following characteristics are defined over the Recommended Operating Conditions unless otherwise noted. Typical values are for Tc = 40°C. VccT and VccR = 3.3 V. Parameter Module Supply Current Power Dissipation TX_FAULT, ...

Page 11

NORMALIZED TIME (UNIT INTERVAL) Figure 5a. Receiver Electrical Optical Eye Mask Definition Table 7. Two-Wire Interface Electrical Characteristics Parameter Symbol Host Vcc Range VccHTWI SCL and SDA SCL ...

Page 12

Table 8. Optical Specifications The following characteristics are defined over the Recommended Operating Conditions unless otherwise noted. Typical values are for Tc = 40°C. VccT and VccR = 3.3 V. Parameter Transmitter Laser OMA output power Laser mean output power ...

Page 13

Table 9. Minimum Optical Modulation Amplitude Center RMS Spectral Width (nm) Wavelength Up to 0.05 to (nm) 0.05 0.1 840 to 842 -4.2 -4.2 842 to 844 -4.2 -4.2 844 to 846 -4.2 -4.2 846 to 848 -4.3 -4.2 848 ...

Page 14

Table 10. Control Functions: Low Speed Signals Timing Characteristics The following characteristics are defined over the Recommended Operating Conditions unless otherwise noted. Parameter TX_DISABLE Assert Time TX_DISABLE Negate Time Time to initialize, including reset of TX_FAULT TX_FAULT Assert Time TX_DISABLE ...

Page 15

Table 12. Transceiver Digital Diagnostic Monitor (Real Time Sense) Characteristics The following characteristics are defined over the Recommended Operating Conditions unless otherwise noted. Typical values are for Tc = 40°C. VccT and VccR = 3.3 V. Parameter Transceiver Internal Temperature ...

Page 16

... Addresses 63 and 95 are checksums calculated (per SFF-8472) and stored prior to product shipment. 4. Addresses 68-83 specify the AFBR-703SNZ ASCII serial number and will vary on a per unit basis. 5. Addresses 84-91 specify the AFBR-703SNZ ASCII date code and will vary on a per date code basis. 16 ...

Page 17

... Transmitted average optical power (Tx Pwr) is decoded bit unsigned integer in increments of 0.1 μW. 5. Received average optical power (Rx Pwr) is decoded bit unsigned integer in increments of 0.1 μW. 6. Bytes 56-94 are not intended for use with AFBR-703SNZ, but have been set to default values per SFF-8472. 7. Byte checksum calculated (per SFF-8472) and stored prior to product shipment. ...

Page 18

... Indicates transceiver is powered and real time sense data is ready Ready) Notes: 1. The response time for soft commands of the AFBR-703SNZ is 100 msec as specified by SFF-8472. 2. Bit 6 is logic OR’d with the SFP TX_DISABLE input on contact 3; either asserted will disable the SFP+ transmitter. Table 16. EEPROM Serial ID Memory Contents – Alarms and Warnings (Address A2h, Bytes 112, 113, 116, 117) ...

Page 19

Figure 7. Module drawing Figure 8. Module label For product information and a complete list of distributors, please go to our website: Avago, Avago Technologies, and the A logo are trademarks of Avago Technologies in the United States and ...

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