PE3XB Series 3.3 V
PECL Clock Oscillators
January 2008
This device is obsolete, January 2008
The PE33B is replaced by the PE91xxDV device
The PE37B is replaced by the PE97xxDV device
For new designs use the PE99xxDV device
• Pletronics’ PE3XB Series is a quartz crystal
controlled precision square wave generator
with an PECL output.
• Solder pad compatible with many 9x14 Plastic
J lead packages.
• FR4 base with a mechanical metal cover.
• Tape and Reel or Tube packaging is available.
• 1 to 250 MHz
• 9.9 mm x 13.97 mm ‘B’ package
• Enable/Disable Function:
PE33B
on pad 2
PE37B
on pad 1
• Low Jitter
Pletronics Inc. certifies this device is in accordance with the
RoHS 6/6 (2002/95/EC) and WEEE (2002/96/EC) directives.
Pletronics Inc. guarantees the device does not contain the following:
Cadmium, Hexavalent Chromium, Lead, Mercury, PBB’s, PBDE’s
Weight of the Device: 1.34 or .66 grams
Moisture Sensitivity Level: 1 As defined in J-STD-020C
Second Level Interconnect code: e4
Absolute Maximum Ratings:
Parameter
V
CC
Supply Voltage
Vi
Vo
Input Voltage
Output Voltage
Unit
-0.5V to +6.5V
-0.5V to V
CC
+ 0.5V
-0.5V to V
CC
+ 0.5V
Thermal Characteristics
The maximum die or junction temperature is 155
o
C
The thermal resistance junction to board is 60 to 100
o
C/Watt depending on the solder pads, ground plane
and construction of the PCB.
Product information is current as of publication date. The product conforms
Copyright © 2005, 2006, 2007, 2008 Pletronics
Inc.
to specifications per the terms of the Pletronics standard warranty. Production
processsing does not necessarily include testing of all parameters.
PE3XB Series 3.3 V
PECL Clock Oscillators
January 2008
Part Number:
PE33
45
B
E
V -125.0M
-XX
Packaging code or blank
T250 = 250 per Tape and Reel
T500 = 500 per Tape and Reel
T1K = 1000 per Tape and Reel
Frequency in MHz
Supply Voltage V
CC
V
= 3.3V _ 10%
+
Optional Enhanced OTR
E
= Temperature range -40 to 85
o
C
Series Model
Frequency Stability
45
= _ 50 ppm
+
44
= _ 25 ppm
+
20
= _ 20 ppm
+
Series Model
PE33
= E/D on pad 2
PE37
= E/D on pad 1
Legend:
PLE
= Pletronics
FFFFFM
= Frequency in MHz
YMD or YYWW
= Date of Manufacture (Year - month - day or year and week)
All other marking is internal factory codes
Specifications such as frequency stability, supply voltage and operating temperature range, etc.
are not identified from the marking. External packaging labels and packing list will correctly identify
the ordered Pletronics part number.
Codes for Date Code YMD
Code
Year
Code
Month
Code
Day
Code
Day
Code
1
1
D
13
T
6
2006
A
JAN
2
2
E
14
U
7
2007
B
FEB
3
3
F
15
V
8
2008
C
MAR
4
4
G
16
W
9
2009
D
APR
E
MAY
5
5
H
17
X
0
2010
F
JUN
6
6
J
18
Y
1
2011
G
JUL
7
7
K
19
Z
H
AUG
8
8
L
20
2
2012
J
SEP
9
9
M
21
K
OCT
A
10
N
22
L
NOV
B
11
P
23
M
DEC
C
12
R
24
Part Marking:
PLE
PE33B
FFFFFM
C
YMDXX
or
PLE
PE37B
FFFFFM
C
YMDXX
or
PE33BX
FFFFFM
PLE
XX
C
YYWWXX
or
PE37BX
FFFFFM
PLE
XX
C
YYWWXX
www.pletronics.com
425-776-1880
2
PE3XB Series 3.3 V
PECL Clock Oscillators
January 2008
Day
25
26
27
28
29
30
31
Electrical Specification for 3.30V _10% over the specified temperature range
+
Item
Frequency Range
Frequency Accuracy
“45"
“44"
“20"
Output Waveform
Output High Level (0
o
C to 85
o
C)
2.275
0.975
Output High Level (-40
o
C)
Min
1
-50
-25
-20
Max
250
+50
+25
+20
PECL /ECL
2.420
1.120
volts
volts
volts
volts
volts
volts
volts
volts
volts
volts
volts
volts
%
pS RMS
pS RMS
nS
mA
Kohm
volts
volts
nS
nS
mS
o
o
o
Unit
MHz
ppm
Condition
For all supply voltages, load changes, aging for 1
year, shock, vibration and temperatures
Referenced to Ground, V
CC
= 3.3 V
Referenced to termination voltage, V
CC
= 3.3 V
Referenced to Vcc, V
CC
= 3.3 V
Referenced to Ground, V
CC
= 3.3 V
Referenced to termination voltage, V
CC
= 3.3 V
Referenced to Vcc, V
CC
= 3.3 V
Referenced to Ground, V
CC
= 3.3 V
Referenced to termination voltage, V
CC
= 3.3 V
Referenced to Vcc, V
CC
= 3.3 V
Referenced to Ground, V
CC
= 3.3 V
Referenced to termination voltage, V
CC
= 3.3 V
Referenced to Vcc, V
CC
= 3.3 V
at 50% point of V
CC
(See load circuit)
12 KHz to 20 MHz from the output frequency
10 Hz to 1 MHz from the output frequency
Vth is 20% and 80% of waveform
-1.025 -0.880
2.216
0.916
-1.084
Output Low Level (0
o
C to 85
o
C)
1.490
0.190
Output Low Level (-40
o
C)
2.420
1.120
-0.88
1.680
0.380
-1.810 -1.620
1.470
0.170
1.745
0.445
-1.830 -1.555
Output Symmetry
Jitter
45
-
-
Output T
RISE
and T
FALL
V
CC
Supply Current (I
CC
)
Enable/Disable Internal Pull-up
V disable
V enable
Enable time
Disable time
Start up time
Operating Temperature Range
-
-
50
-
2.40
-
-
-
0
- 40
Storage Temperature Range
-55
55
0.2
2.8
0.7
90
-
0.6
-
100
100
10
+70
+85
+125
to V
CC
Referenced to pad 3
Time for output to reach a logic state
Time for output to reach a high Z state
Time for output to reach specified frequency
Standard Temperature Range
Extended Temperature Range
“E” Option
C
C
C
Specifications with
E/D pad open circuit
www.pletronics.com
425-776-1880
3
PE3XB Series 3.3 V
PECL Clock Oscillators
January 2008
Typical Phase-Noise Response
0
-20
-40
dBc/Hz
-60
-80
-100
-120
-140
-160
10
1,000
100,000
10,000,000
Frequency (Hz)
Load Circuit
E/D shown on pad 1 for PE37B, will be on pad 2 for PE33B
Test Waveform
Symmetry
Vhigh
80%
50%
20%
Vlow
Trise
Tfall
Out
Out*
Showing Out Measurement only
www.pletronics.com
425-776-1880
4
PE3XB Series 3.3 V
PECL Clock Oscillators
January 2008
Reliability
: Environmental Compliance
Parameter
Mechanical Shock
Vibration
Solderability
Thermal Shock
Condition
MIL-STD-883 Method 2002, Condition B
MIL-STD-883 Method 2007, Condition A
MIL-STD-883 Method 2003
MIL-STD-883 Method 1011, Condition A
ESD Rating
Model
Human Body Model
Charged Device Model
Minimum Voltage
1500
1000
Conditions
MIL-STD-883 Method 3115
JESD 22-C101
Package Labeling
Label is 1" x 2.6" (25.4mm x 66.7mm)
Font is Courier New
Bar code is 39-Full ASCII
Label is 1" x 2.6" (25.4mm x 66.7mm)
Font is Arial
Layout and application information
Recommend connecting Pad 1 and Pad 2 together to permit the design to accept Enable/Disable on both
input pads
For Optimum Jitter Performance, Pletronics recommends:
•
a ground plane under the device
•
no large transient signals (both current and voltage) should be routed under the device
•
do not layout near a large magnetic field such as a high frequency switching power supply
•
do not place near piezoelectric buzzers or mechanical fans.
www.pletronics.com
425-776-1880
5