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AN1318 数据表(PDF) 6 Page - STMicroelectronics

部件名 AN1318
功能描述  INTERFACING BETWEEN LVDS AND HIGH
PDF  9 Pages
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制造商  STMICROELECTRONICS [STMicroelectronics]
网页  http://www.st.com
标志 STMICROELECTRONICS - STMicroelectronics

AN1318 数据表(HTML) 6 Page - STMicroelectronics

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AN1318 - APPLICATION NOTE
6/9
As described for LVPECL to interface from PECL to LVDS a thevenin equation should be applied. The
Thevenin equation resistor terminates the transmission line Z near the receiver.
- The line characteristics impedance is:
- The DC condition in point A is VCC - 2V
- The DC levels at the LVDS input B are located within the LVDS input common mode range.
The LVDS input swing decreases depending on R2 and R3
8. INTERFACING LVDS TO PECL.
The direct translation between LVDS and PECL/LVPECL signals is not possible. This is because the
LVDS output common mode and differential voltage are not compatible with PECL input levels. Devices
like MC100(LV)EL17 should be used to translate these signals.
Figure 8: Interfacing LVDS to PECL/LVPECL Using the MC100(LV)EL17 device
9. INTERFACING ECL TO LVDS.
The ECC output requires a DC path to VEE. The pull down resistors are connected to VEE. The
Thevenin resistor pair represents the termination of the transmission line Z (R1 || R2). For example,
R1=270Ohm and R2=75Ohm making a parallel of 50Ohm and generates a DC level of 1.2V in the static
entry point of the LVDS circuitry.
Figure 9: Interfacing ECL to LVDS
ZR1
R2
R3
+
()
||
=
pointA
R1
() R1 R2 R3
++
()
2V
() VCC
()
=
pointB
R3
() R1 R2 R3
++
()
VIL
() VCC
()
=
pointA
in
pointB
R3
() R2 R3
+
()
∗Vswing
=
in
Vswing
3.3V
5V
Z = 50
LVDS
MC100(LV)EL17
Z = 50
R 100
To PECL
Z = 50
ECL
3.3V
LVDS
3.3V
VEE
VEE
R1
270
10 pF
10 pF
Z = 50
R2
75
R1
270
R2
75



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