AFBR-703SNZ Avago Technologies US Inc., AFBR-703SNZ Datasheet - Page 10

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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
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, RX_LOS
TX_DISABLE
Notes:
1. Supply current includes both VccT and VccR connections.
2. Measured with a 4.7 k Ω load to VccHost.
3. TX_DISABLE has an internal 4.7 kΩ to 10 kΩ pull-up to VccT
Table 6. High 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
Tx Input Differential Voltage, |(TD +) - (TD-)|
Tx Input AC Common Mode Voltage Tolerance
Tx Input Differential S-parameter (100 Ω Ref.)
Tx Input Differential to Common
Mode Conversion (25 Ω Ref.)
Rx Output Differential Voltage, |(RD +) - (RD-)|
Rx Output Termination Mismatch @ 1MHz
Rx Output AC Common Mode Voltage
Rx Output Output Rise and Fall Time
(20% to 80%)
Rx Output Total Jitter
Rx Output Deterministic Jitter
Rx Output Differential S-parameter
(100 Ω Ref.)
Rx Output Common Mode Reflection
Coefficient (25 Ω Ref.)
Receiver Output Eye Mask
Notes:
1. Internally AC coupled and terminated (100 Ohm differential).
2. Internally AC coupled but requires an external load termination (100 Ohm differential).
3. Maximum reflection coefficient is expressed as SDD11=Max(-12+2*sqrt(f ) , -6.3+13*log10(f/5.5)), for f in GHz.
4. Maximum reflection coefficient is expressed as SDD22=Max(-12+2*sqrt(f ) , -6.3+13*log10(f/5.5)), for f in GHz.
5. The RMS value is measured by calculating the standard deviation of the histogram for one UI of the common mode signal.
10
Symbol
I
P
I
V
V
V
CC
OH
Symbol
V
SDD11
SCD11
Vo
'Z
tr, tf
TJ
DJ
SDD22
SCC22
DISS
OL
IH
IL
I
m
Minimum
90
150
28
Minimum
- 50
-
2.0
-0.3
0.3
Typical
Typical
180
600
Maximum
-10
Note 4
-10
425
5
7.5
0.70
0.42
-12
Note 5
-6
-3
15
350
Maximum
289
1000
+ 37.5
0.4
VccT + 0.3
0.8
Unit
mV
mV(RMS)
dB
dB
dB
mV
%
mV(RMS)
ps
Ulp-p
Ulp-p
dB
dB
dB
dB
Notes
Note 1
0.01-1.0 GHz
1.0-11.1 GHz
0.01-11.1 GHz
Note 2
Note 5
0.01-1.0 GHz
1.0-11.1 GHz
0.01-2.5 GHz
2.5-11.1 GHz
See Figure 5a
Unit
mA
mW
PA
V
V
V
Notes
Note 1
Note 2
Note 3

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