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AZV99T bảng dữ liệu(PDF) 4 Page - Arizona Microtek, Inc

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Giải thích chi tiết về linh kiện  PECL/LVDS Oscillator Gain Stage & Buffer with Selectable Enable
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nhà sản xuất  AZM [Arizona Microtek, Inc]
Trang chủ  http://azmicrotek.com
Logo AZM - Arizona Microtek, Inc

AZV99T bảng dữ liệu(HTML) 4 Page - Arizona Microtek, Inc

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AZV99
June 2009 * REV - 13
www.azmicrotek.com
4
LVDS DC Characteristics for QHG/Q
¯ HG Outputs
1
(VEE = GND, VCC = +3.0V to +5.5V)
-40
°C
0
°C
25
°C
85
°C
Symbol
Characteristic
Min
Max
Min
Max
Min
Max
Min
Max
Unit
VOH
Output HIGH Voltage
1600
1600
1600
1600
mV
VOL
Output LOW Voltage
900
900
900
900
mV
VOC
Output Common Mode Voltage2
1125
1375
1125
1375
1125
1375
1125
1375
mV
ΔVOC
Change in Common Mode Voltage3
-50
50
-50
50
-50
50
-50
50
mV
VOUT
Single-Ended Output Swing
250
450
250
450
250
450
250
450
mV
VDIFF_OUT
Differential Output Swing
500
900
500
900
500
900
500
900
mV
1.
Specified with 100
Ω resistor connecting QHG and Q¯HG together.
2.
Common mode voltage is the center voltage between QHG and Q
¯HG during a steady state.
3.
Change in common mode voltage is the difference between common mode voltages at opposite binary states.
AC Characteristics (VEE = GND, VCC = +3.0V to +5.5V)
-40
°C
0
°C
25
°C
85
°C
Symbol
Characteristic
Min
Typ
Max
Min
Typ
Max
Min
Typ
Max
Min
Typ
Max
Unit
tPLH / tPHL
Propagation Delay
D to Q/Q
¯ Outputs1
(SE)
D to QHG/Q
¯ HG Outputs2
(SE)
400
550
400
550
400
550
430
630
ps
tSKEW
Duty Cycle Skew Q/Q
¯ 3
(SE)
5
20
5
20
5
20
5
20
ps
VPP (AC)
Differnetial Input Swing4
80
1000
80
1000
80
1000
80
1000
mV
tr / tf
Output Rise/Fall Times
(20% - 80%)
Q/Q
¯ 1
QHG/Q
¯HG2
100
180
260
280
100
180
260
280
100
180
260
280
100
180
260
280
ps
1.
Specified with CS-SEL connected to VEE and Q/Q
¯ with AC coupled 50
Ω loads.
2.
Specified with 100
Ω resistor connecting QHG and Q¯HG together.
3.
Duty cycle skew is the difference between a tPLH and tPHL propagation delay through a device.
4.
The peak-to-peak differential input swing is the range for which AC parameters guaranteed. VD and Vmust remain within the range of ±750 mV
with respect to VBB.
AC PP INPUT
D
D
VPP (AC)


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