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SY58012U Datasheet(PDF) 8 Page - Micrel Semiconductor

Part # SY58012U
Description  5GHz, 1:2 LVPECL FANOUT BUFFER/TRANSLATOR
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Manufacturer  MICREL [Micrel Semiconductor]
Direct Link  http://www.micrel.com
Logo MICREL - Micrel Semiconductor

SY58012U Datasheet(HTML) 8 Page - Micrel Semiconductor

  SY58012U_07 Datasheet HTML 1Page - Micrel Semiconductor SY58012U_07 Datasheet HTML 2Page - Micrel Semiconductor SY58012U_07 Datasheet HTML 3Page - Micrel Semiconductor SY58012U_07 Datasheet HTML 4Page - Micrel Semiconductor SY58012U_07 Datasheet HTML 5Page - Micrel Semiconductor SY58012U_07 Datasheet HTML 6Page - Micrel Semiconductor SY58012U_07 Datasheet HTML 7Page - Micrel Semiconductor SY58012U_07 Datasheet HTML 8Page - Micrel Semiconductor SY58012U_07 Datasheet HTML 9Page - Micrel Semiconductor  
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Precision Edge®
SY58012U
Micrel, Inc.
M9999-020207
hbwhelp@micrel.com or (408) 955-1690
Part Number
Function
Data Sheet Link
SY58011U
7GHz, 1:2 CML Fanout Buffer/Translator
http://www.micrel.com/product-info/products/sy58011u.shtml
With Internal Input Termnations
SY58012U
5GHz, 1:2 LVPECL Fanout Buffer/Translator
http://www.micrel.com/product-info/products/sy58012u.shtml
With Internal Input Termination
SY58013U
6GHz, 1:2 Fanout Buffer/Translator w/400mV
http://www.micrel.com/product-info/products/sy58013u.shtml
LVPECL Outputs and Internal Terminations
16-MLF™ Manufacturing Guidelines
www.amkor.com/products/notes_papers/MLF_AppNote_0902.pdf
Exposed Pad Application Note
M-0317
HBW Solutions
http://www.micrel.com/product-info/as/solutions.shtml
RELATED MICREL PRODUCTS AND SUPPORT DOCUMENTATION
R2
82
R2
82
ZO = 50Ω
ZO = 50Ω
+3.3V*
+3.3V*
VT = VCC —2V
R1
130
R1
130
+3.3V*
Figure 5. Parallel Termination-Thevenin Equivalent
Note 1.
For +2.5V systems: R1 = 250
Ω, R2 = 62.5Ω
Note 2.
For +3.3V systems: R1 = 130
Ω, R2 = 82Ω
Z = 50
Z = 50
50
50
50
+3.3V
+3.3V
source
destination
Rb
C1
0.01
µF
(optional)
Figure 6. Three-Resistor “Y–Termination”
Note 1.
Power-saving alternative to Thevenin termination.
Note 2.
Place termination resistors as close to destination inputs as possible.
Note 3.
Rb resistor sets the DC bias voltage, equal to VT.
For +2.5V systems Rb = 19Ω.
For +3.3V systems Rb = 46Ω to 50Ω.
Note 4.
C1 is an optional bypass capacitor intended to compensate for any
tr/tf mismatches.
LVPECL OUTPUT
+3.3V
+3.3V
ZO = 50Ω
R2
82
+3.3V
+3.3V
R1
130
R1
130
R2
82
VT = VCC —2V
Q
/Q
R4
1k
R3
1.6k
VT = VCC —1.3V
Figure 7. Terminating Unused I/O
Note 1.
Unused output (/Q) must be terminated to balance the output.
Note 2.
For +2.5V systems: R1 = 250
Ω, R2 = 62.5Ω, R3 = 1.25kΩ,
R4 = 1.2k
Ω.
For +3.3V systems: R1 = 130
Ω, R2 = 82Ω, R3 = 1kΩ, R4 = 1.6kΩ.
Note 3.
Unused output pairs (Q and /Q) may be left floating.
LVPECL output have very low output impedance (open
emitter), and small signal swing which results in low EMI.
LVPECL is ideal for driving 50
Ω and 100Ω controlled
impedance transmission lines. There are several techniques
in terminating the LVPECL output, as shown in Figures 5
through 7.


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