Download Finisar FTLX0011D4BNL network transceiver module

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Product Specification
RoHS-6 Compliant
Laserwire™ XFP Adapter
FTLX0011D4BNL
PRODUCT FEATURES
•
Hot-pluggable XFP footprint
•
Supports Laserwire™ data rates
of 9.95 Gb/s to 10.3 Gb/s
•
RoHS-6 compliant (lead-free)
•
Extended temperature range
-5°C to 85°C
•
Single 3.3V power supply
•
Customizable EEPROM
APPLICATIONS
•
Adapts Laserwire™ plug for XFP
ports
Finisar’s FTLX0011D4BNL 10Gb/s Laserwire™ XFP Adapters are designed for use in
conjunction with Finisar’s Laserwire cables (Part Numbers: FCBP110LD1Lxx and
FCBC110LD1Lxx). The FTLX0011D4BNL XFP Adapter allows a Laserwire cable to
be plugged into an XFP port. The XFP Adapter incorporates a customizable EEPROM.
The Adapter is RoHS compliant and lead free per Directive 2002/95/EC1, and Finisar
Application Note AN-20382.
PRODUCT SELECTION
FTLX0011D4BNL
© Finisar Corporation - July 2010 Rev. B1
Page 1
FTLX0011D4BNL Laserwire XFP Adapter Product Specification – July 2010
I.
Background
Figure 1 illustrates the application of the FTLX0011D4BNL XFP Adapter. Pin
descriptions for the FTLX0011D4BNL interface to the host board are shown in Section
II. Please refer to the FCBP110LD1Lxx Laserwire datasheet for details of the interface
between the FTLX0011D4BNL XFP Adapter and the Laserwire cable. The Laserwire
connector pin-out is also shown in Section II for reference.
Laserwire™
FCBP110LD1Lxx
XFP Adapter
FTLX0011D4BNL
XFP port/cage on host board
Figure 1. (Top View) From left to right: Laserwire, XFP Adapter, XFP cage on host board.
Insertion sequence: (1) XFP Adapter is plugged into XFP port; (2) Laserwire is plugged
into Adapter.
Extraction sequence: (1) Depress tab on top of Laserwire plug and extract cable from
Adapter; (2) Pull on Adapter bail release lever and extract Adapter from host port.
© Finisar Corporation - July 2010 Rev. B1
Page 2
FTLX0011D4BNL Laserwire XFP Adapter Product Specification – July 2010
II.
Pin
1
2
Logic
3
LVTTL-I
4
5
6
7
8
9
10
11
Symbol
GND
VEE5
VCC5
GND
VCC3
VCC3
SCL
Name/Description (per INF-8077i)
Module Ground
Optional -5.2 Power Supply – Not required
Module De-select; When held low allows the
module to respond to 2-wire serial interface
commands
Interrupt (bar); Indicates presence of an
important condition which can be read over
the serial 2-wire interface, NOT
IMPLEMENTED
Transmitter Disable; Transmitter laser source
turned off , NOT IMPLEMENTED.
+5 Power Supply – Not used.
Module Ground
+3.3V Power Supply
+3.3V Power Supply
Serial 2-wire interface clock
SDA
Serial 2-wire interface data line
ModDesel
Interrupt
LVTTL-I
LVTTL-I
LVTTLI/O
Pin Descriptions
TX_DIS
12 LVTTL-O Mod_Abs Module Absent; Indicates adapter not present.
13 LVTTL-O
Mod_NR
Module Not Ready
14 LVTTL-O
RX_LOS
Receiver Loss of Signal indicator
Module Ground
Module Ground
Receiver inverted data output
Receiver non-inverted data output
Module Ground
+1.8V Power Supply – Not used
Power Down; When high, places the module
in the low power stand-by mode and on the
falling edge of P_Down initiates a module
reset, NOT IMPLEMENTED
Reset; The falling edge initiates a complete
reset of the module including the 2-wire serial
interface, equivalent to a
power cycle. NOT IMPLEMENTED
+1.8V Power Supply – Not used
Module Ground
Reference Clock non-inverted input, AC
coupled on the host board – Not required
Reference Clock inverted input, AC coupled
on the host board – Not required
Module Ground
Module Ground
Transmitter inverted data input
Transmitter non-inverted data input
Module Ground
15
16
17
18
19
20
CML-O
CML-O
GND
GND
RDRD+
GND
VCC2
21
LVTTL-I
P_Down/
RST
22
23
VCC2
GND
Laserwire-Adapter Interface
Connected to Laserwire VEE
NC
Adapter-XFP Port Interface
Grounded in adapter
NC
Note
1
NC
Pulled high in adapter
2
NC
NC
NC
Pulled high in adapter
NC
Connected to Laserwire VEE
Connected to Laserwire VCC pin 5
Connected to Laserwire VCC pin 5
NC
NC
Grounded in adapter
Pass through
Pass through
Connected to adapter EEPROM
NC
Connected to adapter EEPROM
3
NC
Pulled low in adapter
4
NC
Connected to Laserwire Fault output
pin 6
Connected to Laserwire VEE
Connected to Laserwire VEE
Laserwire RX- pin 11
Laserwire RX+ pin 10
Connected to Laserwire VEE
Not used
Loss of lock in Tx/Rx
2
Pass through
3
Grounded in adapter
Grounded in adapter
Retimed output
Retimed output
Grounded in adapter
NC
1
1
5
5
1
NC
Pulled high in adapter
Not used
Connected to Laserwire VEE
NC
Grounded in adapter
1
NC
Internally terminated
6
NC
2
1
3
24
PECL-I
RefCLK+
25
PECL-I
RefCLK-
Internally terminated
6
26
27
28
29
30
GND
Connected to Laserwire VEE
Grounded in adapter
GND
Connected to Laserwire VEE
Grounded in adapter
CML-I
TDLaserwire TX- pin 2
Retimed input
CML-I
TD+
Laserwire TX+ pin 3
Retimed input
GND
Connected to Laserwire VEE
Grounded in adapter
Notes:
1. Adapter circuit ground is isolated from adapter chassis ground within the adapter.
2. Pulled up with 10kΩ in adapter
3. Open collector; should be pulled up with 4.7kΩ – 10kΩ on host board to a voltage between 3.15V and 3.6V.
4. Pulled low with 100Ω in adapter.
5. Per XFI electrical specs.
6. A Reference Clock input is not required. If present, it will be ignored. Differential 100Ω termination in adapter.
1
1
5
5
1
© Finisar Corporation - July 2010 Rev. B1
Page 3
FTLX0011D4BNL Laserwire XFP Adapter Product Specification – July 2010
Figure 1. Diagram of Host Board Connector Block Pin Numbers and Names, for pin-out reference.
Details of host-board connector specifications can be found in INF-8077i3. Or refer to Finisar XFP
datasheet (e.g., FTLX8511D3)
Towards
1
TX-
Vee
12
11
10
9
8
Vee
2
TX+
TX-
3
Vee
TX+
4
Vcc
Vee
5
F
Vcc
6
Fault
7
Cab
Abs
Cab-Abs
8
NC
NC
9
Vee
Vee
10
RX+
RX+
11
RX -
RX-
12
Vee
Vee
Bezel
7
6
5
4
3
2
1
Cable End View
Towards
ASIC
(a)
(b)
Figure 2. Pinout : (a) Laserwire cable plug end view, (b) Adapter pin-out (Laserwire port endview).
© Finisar Corporation - July 2010 Rev. B1
Page 4
FTLX0011D4BNL Laserwire XFP Adapter Product Specification – July 2010
III.
Absolute Maximum Ratings
Exceeding the limits below may damage the transceiver module permanently.
Parameter
Maximum Supply Voltage
Storage Temperature
Relative Humidity
Symbol
Vcc
TS
RH
Min
-0.5
-40
0
Typ
Max
4.0
85
85
Unit
V
°C
%
I.
Non-condensing.
IV.
Electrical Characteristics (TOP = -5 to 85°C, VCC = 3.14 to 3.46 Volts)
Ref.
1
Electrical characteristics assume a Laserwire cable is inserted into the Adapter port.
Parameter
Supply Voltage
Supply Current
Transmitter (to Laserwire)
Differential data input swing
Receiver (from Laserwire)
Differential data output swing
Power Supply Rejection
Symbol
Vcc
Icc
Min
3.14
Vin,pp
120
Vout,pp
PSR
600
Typ
Max
3.46
400
Unit
V
mA
1000
mV
650
800
See Note 2 below
Ref.
mV
1
2
Notes:
1. Into 100Ω differential termination.
2. Per Section 2.7.1 in the XFP MSA Specification INF-8077i3.
V.
Environmental Specifications
The FTLX0011D4BNL XFP Adapter has an operating temperature range from -5°C to
+85°C case temperature. Note that the Laserwire™ cable has an operating temperature
range of 0°C to +60°C.
Parameter
Case Operating Temperature
Storage Temperature
VI.
Symbol
Top
Tsto
Min
-5
-40
Typ
Max
85
85
Units
°C
°C
Ref.
Regulatory Compliance
These products are certified by TÜV and CSA to meet the Class 1 eye safety
requirements of EN (IEC) 60825 and the electrical safety requirements of
EN (IEC) 60950. Copies of certificates are available at Finisar Corporation upon request.
© Finisar Corporation - July 2010 Rev. B1
Page 5
FTLX0011D4BNL Laserwire XFP Adapter Product Specification – July 2010
VII.
Mechanical Specifications
Finisar’s Laserwire XFP Adapters are compatible with the dimensions defined by the
XFP Mechanical Specifications in INF-8077i3, with the exception of the port design to
accommodate the Laserwire plug.
Figure 3. FTLX0011D4BNL Mechanical Dimensions.
© Finisar Corporation - July 2010 Rev. B1
Page 6
FTLX0011D4BNL Laserwire XFP Adapter Product Specification – July 2010
VIII. EEPROM Table (Address A0h)
Byte
Addr Hex
128
80
129
81
LSB
0
0
Bit
Size Name
8 Identifier
3 RESERVED
Description
Type of serial transceiver
RESERVED
129
129
129
81
81
81
3
4
5
1
1
1
CLEI code present in Table 02h CLEI code present in Table 02h
TX Ref Clock Input Required
TX Ref Clock Input Required
Module with CDR
Module with CDR
129
130
131
131
131
131
131
131
131
131
132
132
132
132
132
133
134
134
134
134
134
134
134
134
135
135
135
135
135
135
135
136
136
136
136
136
136
136
136
137
137
137
137
137
137
137
137
138
138
138
138
139
139
139
139
139
139
81
82
83
83
83
83
83
83
83
83
84
84
84
84
84
85
86
86
86
86
86
86
86
86
87
87
87
87
87
87
87
88
88
88
88
88
88
88
88
89
89
89
89
89
89
89
89
8A
8A
8A
8A
8B
8B
8B
8B
8B
8B
6
0
0
1
2
3
4
5
6
7
0
4
5
6
7
0
0
1
2
3
4
5
6
7
0
2
3
4
5
6
7
0
1
2
3
4
5
6
7
0
1
2
3
4
5
6
7
0
5
6
7
0
3
4
5
6
7
2
8
1
1
1
1
1
1
1
1
4
1
1
1
1
8
1
1
1
1
1
1
1
1
2
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
5
1
1
1
3
1
1
1
1
1
Ext.Identifier
Connector
RESERVED
10GBASE-EW
10GBASE-LW
10GBASE-SW
10GBASE-LRM
10GBASE-ER
10GBASE-LR
10GBASE-SR
RESERVED
Intermediate Reach 1300 nm
Extented Reach 1550 nm
1200-SM-LL-L
1200-MX-SN-I
RESERVED
RESERVED
OC-48-LR
OC-48-IR
OC-48-SR
2xFC SMF
2xFC MMF
1000BASE-LX/1xFC SMF
1000BASE-SX/1xFC MMF
RESERVED
I-64.5
I-64.3
I-64.2
I-64.2r
I-64.1
I-64.1r
RESERVED
S-64.5b
S-64.5a
S-64.3b
S-64.3a
S-64.2c
S-64.2a
S-64.1
RESERVED
DWDM
G.959.1 P1L1-2D2
L-64.3
L-64.2c
L-64.2b
L-64.2a
L-64.1
RESERVED
V-64.3
V-64.2b
V-64.2a
RESERVED
RZ
NRZ
Sonet Scrambled
8B/10B
64B/66B
© Finisar Corporation - July 2010 Rev. B1
Defines Module Power Class
Code for connector type
RESERVED
10GBASE-EW
10GBASE-LW
10GBASE-SW
10GBASE-LRM
10GBASE-ER
10GBASE-LR
10GBASE-SR
RESERVED
Intermediate Reach 1300 nm FP
Extented Reach 1550 nm
1200-SM-LL-L
1200-MX-SN-I
RESERVED
RESERVED
Lower speed link compliance code
Lower speed link compliance code
Lower speed link compliance code
Lower speed link compliance code
Lower speed link compliance code
Lower speed link compliance code
Lower speed link compliance code
RESERVED
Sonet codes
Sonet codes
Sonet codes
Sonet codes
Sonet codes
Sonet codes
RESERVED
Sonet Short Haul Link codes
Sonet Short Haul Link codes
Sonet Short Haul Link codes
Sonet Short Haul Link codes
Sonet Short Haul Link codes
Sonet Short Haul Link codes
Sonet Short Haul Link codes
RESERVED
DWDM
Sonet Long Haul Link codes
Sonet Long Haul Link codes
Sonet Long Haul Link codes
Sonet Long Haul Link codes
Sonet Long Haul Link codes
Sonet Long Haul Link codes
RESERVED
Sonet Very Long Haul Link codes
Sonet Very Long Haul Link codes
Sonet Very Long Haul Link codes
RESERVED
Encoding Support
Encoding Support
Encoding Support
Encoding Support
Encoding Support
Value
XFP
No CLEI code present in
Table 02h
Not Required
with CDR
Power level 1 ( < 1.5W
power dissipation)
Unknown
Hex
Value
6
0
1
0
0
0
FALSE
FALSE
TRUE
FALSE
FALSE
FALSE
TRUE
0
0
1
0
0
0
1
FALSE
FALSE
FALSE
TRUE
0
0
0
1
FALSE
FALSE
FALSE
FALSE
FALSE
FALSE
FALSE
0
0
0
0
0
0
0
FALSE
FALSE
FALSE
FALSE
FALSE
FALSE
0
0
0
0
0
0
FALSE
FALSE
FALSE
FALSE
FALSE
FALSE
FALSE
0
0
0
0
0
0
0
FALSE
FALSE
FALSE
FALSE
FALSE
FALSE
FALSE
0
0
0
0
0
0
0
FALSE
FALSE
FALSE
0
0
0
FALSE
TRUE
TRUE
TRUE
TRUE
0
1
1
1
1
Page 7
FTLX0011D4BNL Laserwire XFP Adapter Product Specification – July 2010
Byte
Addr Hex
140 8C
141 8D
142 8E
143
8F
144
90
145
91
146
92
…
164 A4
LSB
0
0
0
0
0
0
0
Bit
Size
8
8
8
8
8
8
8
0
1
Name
BR, minimum
BR, maximum
Length(SMF)-km
Length(EMM-50um)-meter
Length(50)-meter
Length(62.5)-meter
Length(Copper)-km
Description
Minimum Supported Bitrate (/100Mb)
MaximumSupported Bitrate (/100Mb)
Length (standard singlemode fiber)-km
Length (extended b/w 50 um MMF) (/2m)
Length (50um MMF) (/1meter)
Length (62.5um MMF) (/1meter)
Length (Copper) (/1meter)
Value
99
105
0
15
30
30
0
Hex
Value
63
69
0
0F
1E
1E
0
CDR support
TRUE
1
CDR support
RESERVED
CDR support
CDR support
CDR support
CDR support
CDR support
FALSE
0
FALSE
FALSE
TRUE
TRUE
TRUE
0
0
1
1
1
164
164
164
164
164
164
164
…
190
191
A4
A4
A4
A4
A4
A4
A4
1
2
3
4
5
6
7
1
1
1
1
1
1
1
XFI Loopback Supported
Lineside Loopback Mode
Supported
RESERVED
CDR support for 11.1 Gb/s
CDR support for 10.7 Gb/s
CDR support for 10.5 Gb/s
CDR support for 10.3 Gb/s
CDR support for 9.95 Gb/s
BE
BF
0
0
8
8
Max Case Temp
CC_BASE
192
C0
0
8
Maximum Power
193
C1
0
8
Max Power in Power Down
Mode
194
C2
0
4
Max Current +3.3v
194
C2
4
4
Max Current +5v
195
C3
0
4
Max Current -5v
195
…
220
220
220
220
220
220
221
C3
4
4
Max Current +1.8v
DC
DC
DC
DC
DC
DC
DD
0
3
4
5
6
7
0
3
1
1
1
1
1
1
221
DD
1
1
221
DD
2
1
221
DD
3
1
RESERVED
Received power meas. Type
FEC BER support
RESERVED
RESERVED
RESERVED
Optional CMU support mode
Wavelength Tunability
implemented
Active FEC control function
umplemented
Support VPS bypass regulator
mode
221
221
221
DD
DD
DD
4
5
6
221
DD
222
222
…
Max Case Temp.
Checksum (128 to 190)
Maximum Power Dissipation, Max power
is 8 bit value * 20 mW.
Maximum Total Power Dissipation in
Power Down Mode, Max Power is 8 bit
value * 10 mW.
Maximum current required by +3.3V
Supply. Max current is 4 bit value * 100
Maximum current required by +5V
Supply.Max current is 4 bit value * 50
Maximum current required by -5.2V
Supply.Max current is 4 bit value * 50
mA. [500 mA max]
Maximum current required by +1.8V
Supply. Max current is 4 bit value * 100
85
TBC
55
TBC
75
4B
150
96
3
3
0
0
0
0
0
0
Average power
FALSE
1
0
FALSE
0
Enhanced Options
FALSE
0
Enhanced Options
FALSE
0
Enhanced Options
FALSE
0
1
1
1
Suport VPS LV regulator mode Enhanced Options
Soft P_Down
Enhanced Options
Soft TX_DISABLE
Enhanced Options
FALSE
FALSE
FALSE
0
0
0
7
1
Variable Power Supply Support Enhanced Options
0
DE
0
4
Aux A/D Input 2
Enhanced Options
DE
4
4
Aux A/D Input 1
Enhanced Options
FALSE
Auxiliary monitoring not
implemented
Auxiliary monitoring not
implemented
© Finisar Corporation - July 2010 Rev. B1
RESERVED
Special functions
Special functions
RESERVED
RESERVED
RESERVED
Enhanced Options
0
0
Page 8
FTLX0011D4BNL Laserwire XFP Adapter Product Specification – July 2010
IX.
References
1. Directive 2002/95/EC of the European Council Parliament and of the Council, “on
the restriction of the use of certain hazardous substances in electrical and electronic
equipment”. January 27, 2003.
2. “Application Note AN-2038: Finisar Implementation Of RoHS Compliant
Transceivers”, Finisar Corporation, January 21, 2005.
3. ”10 Gigabit Small Form Factor Pluggable Module”, SFF Document Number INF8077i, Revision 4.5, August 31, 2005.
X.
For More Information
Finisar Corporation
1389 Moffett Park Drive
Sunnyvale, CA 94089-1133
Tel. 1-408-548-1000
Fax 1-408-541-6138
[email protected]
www.finisar.com
© Finisar Corporation - July 2010 Rev. B1
Page 9