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PDF V23849-R35-C55 Data sheet ( Hoja de datos )

Número de pieza V23849-R35-C55
Descripción iSFP-Intelligent Small Form-factor Pluggable 1.25 Gigabit Ethernet 4.25/2.125/1.0625 Gbit/s Fibre Channel
Fabricantes Infineon Technologies 
Logotipo Infineon Technologies Logotipo



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Fiber Optics
iSFP™ - Intelligent Small Form-factor Pluggable
V23849-R3x-C55
1.25 Gigabit Ethernet (1000 Base-SX)
4.25/2.125/1.0625 Gbit/s Fibre Channel (400/200/100-M5/M6-SN-I)
Multimode 850 nm Transceiver with LC™ Connector
Preliminary Data Sheet
Features
• Small Form-factor Pluggable (SFP) MSA compatible
transceiver1)
• Fully SFF-8472 compatible
• Incorporating Intelligent – Digital Diagnostic
Monitoring Interface
• Internal calibration implementation
• Advanced release mechanism
• Easy access, even in belly to belly applications
File: 1130
• Wire handle release for simplicity
• Color coded black tab (multimode)
• PCI height compatible
• Excellent EMI performance
• Separate and common chassis/signal ground
module concepts available
• RJ-45 style LC™ connector system
• Single power supply (3.3 V)
• Extremely low power consumption of 530 mW typical
• Small size for high channel density
File: 1131
• UL-94 V-0 certified
• ESD Class 1C per JESD22-A114-B (MIL-STD 883D Method 3015.7)
• According to FCC (Class B) and EN 55022
• For distances of up to 860 m (50 µm fiber)
• Laser safety according to Class 1 FDA and IEC
• AC/AC Coupling according to MSA
• Extended operating temperature range of –20°C to 85°C
• SFP evaluation kit V23848-S5-V4 available upon request
• A press fit cage and cage plugs are available as accessory products from Infineon
(see SFP Accessories)
1) MSA documentation can be found at www.infineon.com/fiberoptics under Transceivers, SFP Transceivers.
For ordering information see next page.
iSFP™ is a trademark of Infineon Technologies. LC™ is a trademark of Lucent.
Preliminary Product Information
1
2004-06-28

1 page




V23849-R35-C55 pdf
V23849-R3x-C55
Description
Link Length as Defined by IEEE and Fibre Channel Standards
Fiber Type
Reach
min.1)
max.2)
Unit
at 1.0625 Gbit/s
50 µm, 2000 MHz*km
0.5 860 meters
50 µm, 500 MHz*km
0.5 500
50 µm, 400 MHz*km
0.5 450
62.5 µm, 200 MHz*km
0.5 300
62.5 µm, 160 MHz*km
0.5 250
at 1.25 Gbit/s
50 µm, 500 MHz*km
2 550 meters
50 µm, 400 MHz*km
2 500
62.5 µm, 200 MHz*km
2 275
62.5 µm, 160 MHz*km
2 220
at 2.125 Gbit/s
50 µm, 2000 MHz*km
0.5 500 meters
50 µm, 500 MHz*km
0.5 300
50 µm, 400 MHz*km
0.5 260
62.5 µm, 200 MHz*km
0.5 150
62.5 µm, 160 MHz*km
0.5 120
at 4.25 Gbit/s
50 µm, 2000 MHz*km
0.5 270 meters
50 µm, 500 MHz*km
0.5 150
50 µm, 400 MHz*km
62.5 µm, 200 MHz*km
0.5 130
0.5 70
62.5 µm, 160 MHz*km
0.5 55
1) Minimum reach as defined by IEEE and Fibre Channel Standards. A 0 m link length (loop-back connector) is
supported.
2) Maximum reach as defined by IEEE and Fibre Channel Standards. Longer reach possible depending upon link
implementation.
Preliminary Product Information
5
2004-06-28

5 Page





V23849-R35-C55 arduino
V23849-R3x-C55
Technical Data
Electrical Characteristics (VCC = 2.97 V to 3.63 V, TC = –20°C to 85°C)
Parameter
Symbol
Values
Unit
min.
typ.
max.
Common
Supply Voltage
In-rush Current1)
Power Dissipation
VCCVEE
IIR max
P
2.97
400
3.3
3.63 V
30 mA
900 mW
Transmitter
Differential Data Input Voltage VIDpk-pk 500
Swing2)
3200
mV
Tx Disable Voltage
Tx Enable Voltage
Tx Fault High Voltage
Tx Fault Low Voltage
Supply Current3)
Receiver
TxDis
2
VCC V
TxEn
VEE
0.8 V
TxFH
2.4
VCC V
TxFL
VEE
0.5 V
ITx 100 150 mA
Differential Data Output Voltage VODpk-pk 500
Swing 4)
1000
mV
LOS Active
LOSA
2.4
VCC V
LOS Normal
LOSN
VEE
0.5 V
Rate Select 1 / 2 Gbit/s5) 6)
RSLOW
2
VCC V
Rate Select 2 / 4 Gbit/s5) 6)
RSHIGH
VEE
0.8 V
Contributed Deterministic Jitter DJ-CRx
23.5 ps
Contributed Total Jitter
TJ-CRx
61.8 ps
Jitter (pk-pk)7)
JRx
45 ps
Power Supply Noise Rejection8) PSNR
100
mVpp
Supply Current3) 9)
IRx
80 90 mA
1) Measured with MSA recommended supply filter network (Figure 7). Maximum value above that of the steady
state value.
2) Internally AC coupled. Typical 100 differential input impedance.
3) MSA defines maximum current at 300 mA.
4) Internally AC coupled. Load 50 to GND or 100 differential. For dynamic measurement a tolerance of
50 mV should be added.
5) In accordance to SFF Committee SFF-8079 Draft.
6) Not implemented.
7) Jitter (pk-pk) is measured using a 27–1 NRZ PRBS and a Digital Communications Analyzer.
Preliminary Product Information
11
2004-06-28

11 Page







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