CRYSTEKCRYSTAL CXOHD-DA

Temperature Compensated
Crystal Oscillator
CXOHD Model
6 Pin SMD, 3.3V & 5V, HCMOS/TTL
10MHz to 27MHz
±1.5ppm to ±5ppm
±0.5ppm Max
±0.3ppm Max
ee
Fr
ad
-40°C to 85°C
Le oHS ant
R pli
-55°C to 120°C
om
C
3.3V or 5V ±5%
±3ppm Min
15mA Typ, 20mA Max
HCMOS/TTL
40/60% Max @ 50% Vdd
4ns Typ, 10ns Max
"0" = 10% Vdd Max
"1" = 90% Vdd Min
15pF/10TTL Max
Frequency Range:
Frequency Stability:
Freq. Stability vs Volt:
Freq. Stability vs Load:
Temperature Range:
Storage:
Input Voltage:
Trimmer Adj. Range:
Input Current:
Output:
Symmetry:
Rise/Fall Time:
Output Voltage:
Load:
Phase Noise Typ.:
-100dBc/Hz
-130dBc/Hz
-140dBc/Hz
-145dBc/Hz
-150dBc/Hz
<1ppm Max/Yr
10Hz
100Hz
1KHz
10KHz
100KHz
Aging:
0.051
(1.3)
#6
#5
#4
CXOHD
#3
0.100
(2.50)
0.122
(3.1)
0.192
(4.9)
CRYSTEK
10M DC
0.150
(3.8)DIA.
#1
0.30+/-0.008
(7.62+/-0.2)
0.100 (2.54) x3
pin 6
pin 3
E
F
G
H
O/P Load
incl Probe Cl
OUT
OSC.
pin 5
D
0.181
(4.60)
Connection
GND
GND
OUTPUT
GND
NC
Vcc
0.060
(1.6)
OUT
VM
C
PIN
1
2
3
4
5
6
0.100
(2.50)
Vdd
A
0.110
(2.9)
0.181
(4.60)
mA
M
B
0.100
(2.54)
0.390
(9.90)
Dimensions inches (mm)
All dimensions are Max unless otherwise specified.
PWR
Supply
0.300
(7.62)
0.160
(4.0)
#2
0.460
(11.7)
Designed to meet today's
requirements for tighter
frequency stability
tolerance while reducing
pad layout requirement.
Operating
Temperature
0°C to 50°C
-10°C to 60°C
-10°C to 70°C
-20°C to 70°C
-30°C to 60°C
-30°C to 70°C
-30°C to 75°C
-40°C to 85°C
GND
NC
Crystek Part Number Guide
CXOHD - B C 3 - 25.000
pins
1,2,4
#1
#2
#3
#4
#5
#1 Crystek 6 Pin SMD TCXO HCMOS/TTL
#2 Letter = Operating Temperature (see table 1)
#3 Letter = Frequency Stability (see table 1)
#4 3 or blank = Input Volt (3 = 3.3 volts) (Blank= 5V)
#5 Frequency in MHz: 3 or 6 decimal places
Freq. Stability (± ppm)
1.5
2.0
2.5
3.0
4.0
5.0
1.5
2.0
2.5
3.0
4.0
5.0
2.0
2.5
3.0
4.0
5.0
2.0
2.5
3.0
4.0
5.0
2.5
3.0
4.0
5.0
4.0
5.0
Example:
CXOHD-BC3-25.000 = -10/60, ±2.5ppm, 3.3V, 25.000MHz
5.0
5.0
A
B
C
D
E
F
Table 1
Specifications subject to change without notice.
TD-020814 Rev. C