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參數(shù)資料
型號(hào): LG1602BXB
英文描述: LG1602 Decision Circuit
中文描述: LG1602判決電路
文件頁(yè)數(shù): 4/10頁(yè)
文件大小: 253K
代理商: LG1602BXB
Data Sheet
February 1999
LG1602 Decision Circuit
4
Lucent Technologies Inc.
Electrical Characteristics
Bit rate = 2.488 Mbits/s NRZ and data pattern = 2
23
– 1 PRBS, unless otherwise indicated. See Figure 3 for the tim-
ing and signal levels and Figure 5 for the test circuit, when using the TF1001A test fixture.
Note:
Minimum and maximum values are testing requirements. Typical values are characteristics of the device
and are the result of engineering evaluations. Typical values are for information purposes only and are not
part of the testing requirements.
Parameter
Symbol
Conditions
LG1602AXB
t
CASE =
25 °C
V
SS
= –5.2 V
LG1602BXB
t
CASE =
0 °C—
75 °C
V
SS
= –4.9 V to
–5.5 V
Min
Typ
2.5
200
Unit
Min
3
200
Typ
Max
800
Max
900
Maximum Bit Rate
Data Input Voltage
|
V
H
– <V>
|
+
|
<V> – V
L
|
Data Input Sensitivity
BER = 10
–9
GHz
mV
t
R
, t
F
165 ps (20%—80%)
BER = 10
–9
, limited clock
phase margin
t
R
, t
F
85 ps (20%—80%),
duty cycle = 50% ± 10%
Data transition to negative
edge of CLOCK IN
Data transition to negative
edge of CLOCK IN
Data transition to negative
edge of CLOCK IN
Valid input data to negative
edge of CLOCK IN
Negative edge CLOCK IN to
valid DATA IN
CLOCK IN negative edge to
output transition
Outputs ac coupled (see
Figure 5)
20%—80%, outputs ac cou-
pled
1 MHz—2 GHz, outputs ac
coupled
100 kHz—300 kHz
0.3 MHz—1500 MHz
1.5 GHz—1.8 GHz
2.4 GHz—2.6 GHz
Junction to case bottom
20
20
mV
Clock Input Voltage
|
V
H
– <V>
|
+
|
<V> – V
L
|
Clock Phase Margin
Clock Phase Minimum
500
1000 200
900
mV
t1
250
360
250
360
150
205
ps
ps
Clock Phase Maximum
t2
455
510
ps
Clock Phase Center
t
C
330
330
ps
Setup Time
t
S
185
185
205
ps
Hold Time
t
H
–73
–73
–53
ps
Propagation Delay
t
PD
1200
1200
ps
Output Voltage (V
H
– V
L
)
500
600
500
600
mV
Output Transition Time
100
100
ps
Output Return Loss
15
15
dB
Data Input Return Loss
10
15
15
15
115
20
10
15
15
15
115
20
dB
dB
dB
dB
mA
°C/W
Clock Input Return Loss
Power Supply Current
Thermal Resistance
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