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FTLF1419P1BCL 参数 Datasheet PDF下载

FTLF1419P1BCL图片预览
型号: FTLF1419P1BCL
PDF下载: 下载PDF文件 查看货源
内容描述: 2 Gb / s的符合RoHS长波可插拔SFP收发器 [2 Gb/s RoHS Compliant Long-Wavelength Pluggable SFP Transceiver]
分类和应用:
文件页数/大小: 11 页 / 724 K
品牌: FINISAR [ FINISAR CORPORATION. ]
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FTLF1419P1xCL Pluggable SFP Product Specification – November 2005  
F i n i s a r  
II.  
Absolute Maximum Ratings  
Parameter  
Maximum Supply Voltage  
Storage Temperature  
Case Operating Temperature  
Relative Humidity  
Symbol  
Vcc  
TS  
TOP  
RH  
Min  
-0.5  
-40  
-10  
0
Typ  
Max  
4.5  
85  
70  
85  
Unit  
V
°C  
°C  
%
Ref.  
1
III.  
Electrical Characteristics (TOP = -10 to 70 °C, VCC = 3.00 to 3.60 Volts)  
Parameter  
Supply Voltage  
Supply Current  
Transmitter  
Input differential impedance  
Single ended data input swing  
Transmit Disable Voltage  
Transmit Enable Voltage  
Transmit Disable Assert Time  
Receiver  
Symbol  
Vcc  
Min  
3.00  
Typ  
200  
100  
Max  
3.60  
300  
Unit  
V
mA  
Ref.  
Icc  
Rin  
Vin,pp  
VD  
2
Ω
mV  
V
V
us  
250  
Vcc – 1.3  
Vee  
1200  
Vcc  
Vee+ 0.8  
10  
VEN  
3
Single ended data output swing  
Data output rise time  
Data output fall time  
LOS Fault  
LOS Normal  
Power Supply Rejection  
Deterministic Jitter Contribution  
Vout,pp  
tr  
300  
400  
100  
100  
800  
175  
175  
VccHOST  
Vee+0.5  
mV  
ps  
ps  
V
V
4
5
5
6
6
7
8
tf  
VLOS fault  
VLOS norm  
PSR  
Vcc – 0.5  
Vee  
100  
mVpp  
ps  
51.7  
RX Δ DJ  
RX Δ TJ  
Total Jitter Contribution  
122.4  
ps  
Notes:  
1. Non condensing.  
2. Connected directly to TX data input pins. AC coupled thereafter.  
3. Or open circuit.  
4. Into 100 ohm differential termination.  
5. 20 – 80 %  
6. LOS is LVTTL. Logic 0 indicates normal operation; logic 1 indicates no signal detected.  
7. Receiver sensitivity is compliant with power supply sinusoidal modulation of 20 Hz to 1.5 MHz up to  
specified value applied through the recommended power supply filtering network.  
8. Measured with DJ-free data input signal. In actual application, output DJ will be the sum of input DJ  
and Δ DJ.  
© Finisar Corporation November 4, 2005 Rev. A  
Page 3