
Operating Conditions and Output Characteristics
Electrical Characteristics
Parameter 
Frequency 
Duty Cycle
(2)
Logic 0 
(2) 
Logic 1
 (2) 
Differential Voltage 
(2)
Disable Voltage  
Enable Voltage
(5)
Rise & Fall Time 
(2)
Tpd 
(4) 
Jitter, RMS
(3) 
Frequency Stability 
(1) 
Symbol 
 —  
V
OL
V
OH
V
—  
—  
tr,tf  
—  
—  
dF/F  
Conditions 
 —  
@ V
 /2  
—  
—  
—  
V
EE
=0V  
V
=0V  
20-80%V
O
—  
—  
Overall conditions including: 
voltage, calibration, temp.,
10 yr aging, shock, vibration
Min 
80.0MHz 
45/55%  
0.80V  
1.25V  
250 mV  
—  
2.0V  
—  
-0.5 ns 
—  
 -100ppm  
Typical 
 —  
—  
—  
—  
—  
—  
—  
—  
 —  
—  
—  
Max
350.0MHz
55/45%
1.10V
1.55V
450 mV
0.8V
—
700 ps
+0.5 ns
3 psec
+100ppm
General Characteristics
Parameter 
Supply Voltage  
Supply Current  
Output Current  
Operating Temperature  
Storage Temperature  
Power Dissipation  
Lead Temperature  
Load  
Start-up Time  
Symbol 
V
CC 
I
CC 
I
O 
T
A
T
S
P
D 
T
Conditions 
3.3V±5%  
—  
Continuous Output Current  
— 
— 
—  
Soldering, 10 sec.  
Min 
3.135V  
0.0 mA  
0.0 mA  
0°C 
-55°C  
—  
—  
Typical 
3.3V  
—  
—  
—  
—  
—  
— 
Max
3.465V
80 mA
±50.0 mA
70°C
125°C
277 mW
300°C
100 ohms across differential outputs
t
S 
—  
—  
2 ms  
10 ms
Environmental and Mechanical Characteristics
Mechanical Shock 
Thermal Shock 
Vibration 
Soldering Condition 
Hermetic Seal 
Per MIL-STD-202, Method 213, Condition E
Per MIL-STD-833, Method 1011, Condition A
 0.060” double amplitude 10 Hz to 55 Hz, 35g’s 55Hz to 2000 Hz
300°C for 10 seconds
 Leak rate less than 1 x 10 
-8
 atm.cc/sec of helium
Footnotes:
1) Standard frequency stability (±20,±25,±50ppm & others available)
2) With Load of 100 ohms across differential outputs.
3)  itter performance is frequency dependent. Please contact factory for full Wavecrest characterization. 
RMS jitter bandwidth of 12kHz to 20MHz.
4) Tpd is phase shift between the falling edge of pin 4 and the rising edge of pin 5.
5) Open to enable pin also enables the output.
LVDS
SU-A2D10 Series
Rev A
Frequency Range:  80.0MHz to 350.0MHz