EEWORLDEEWORLDEEWORLD

Part Number

Search

ABL7M2-14.7456MHZ-8-N4H

Description
Parallel - Fundamental Quartz Crystal
CategoryPassive components    Crystal/resonator   
File Size1MB,3 Pages
ManufacturerAbracon
Websitehttp://www.abracon.com/index.htm
Environmental Compliance
Download Datasheet Parametric View All

ABL7M2-14.7456MHZ-8-N4H Overview

Parallel - Fundamental Quartz Crystal

ABL7M2-14.7456MHZ-8-N4H Parametric

Parameter NameAttribute value
Is it Rohs certified?conform to
Objectid7023640763
package instructionHC/49US, 2 PIN
Reach Compliance Codecompliant
Other featuresAT-CUT; BAG
Ageing5 PPM/FIRST YEAR
Crystal/Resonator TypePARALLEL - FUNDAMENTAL
Drive level50 µW
frequency stability0.0035%
frequency tolerance30 ppm
load capacitance8 pF
Installation featuresTHROUGH HOLE MOUNT
Nominal operating frequency14.7456 MHz
Maximum operating temperature85 °C
Minimum operating temperature-30 °C
physical sizeL6.6XB4.0XH1.4 (mm)/L0.26XB0.157XH0.055 (inch)
Series resistance60 Ω
surface mountNO

ABL7M2-14.7456MHZ-8-N4H Preview

THRU-HOLE MICROPROCESSOR CRYSTAL
ABL7M2
FEATURES:
• Reduced footprint from the standard HC/49US package
• Low profile: 1.4mm typ. height
• Tight stability & extended temperature options
• High reliability & Cost effective
• Resistance welded metal package
Pb
RoHS / RoHS II Compliant
6.6 x 4.0 x 1.4mm
APPLICATIONS:
• Wireless Applications
• Home electronics
• Computers, modems, and communications
• Microprocessors
STANDARD SPECIFICATIONS:
Parameters
Fre
q
uency Range
*
Standard Frequencies
Operation
Mode
Operating Temperature
Storage Temperature
Frequency Tolerance
@+25°C
Frequency Stability over the Operating
Temperature
(
ref. to
+25°C)
Equivalent series resistance (R1)
@+25°C
Shunt capacitance
(
C0
)
L
oad capacitance
(
C
L)
Drive
L
evel
A
ging
Insulation Resistance
Drive level dependency
(DLD)
-5
18
5
0
100
+5
Minimum
Typical
Maximum
Units
M
H
z
MHz
Notes
1
2
.0
40.0
12.0, 12.288, 13.5, 13.56, 14.31818,
14.7456, 16.0, 18.432,
20.0, 20.5, 24.0,
24.576, 25.0, 26.0, 27.0
Fundamental
(AT-cut)
0
-
40
-50
-50
+70
+125
+50
+50
60
40
25
5
ºC
ºC
ppm
ppm
pF
pF
µW
ppm
See options
See options
See options
12.000 ~ 16.000MHz
16.001 ~
30.000MHz
30.001
~ 40.000MHz
Standard
(See options if
other than STD)
* Please contact Abracon for other frequencies.
5
00
M
10nw ~ 100uw,12 points
Change in ESR
(Maximum - Minimum)
over DLD range < 30% ESR max.
@25°C±3°C
First year
@
100Vdc ± 15V
ABRACON IS
ISO9001:2008
CE RTIFIED
2 Faraday, Suite# B
|
Irvine
|
CA 92618
Revised: 01.06.15
Ph. 949.546.8000
|
Fax. 949.546.8001
Visit
www.abracon.com
for Terms and Conditions of Sale
THRU-HOLE MICROPROCESSOR CRYSTAL
ABL7M2
PART IDENTIFICATIONS:
(Left blank if standard)
Pb
RoHS / RoHS II Compliant
6.6 x 4.0 x 1.4mm
ABL7M2 -
Frequency in MHz
Please specify the frequency
in MHz. e.g.
12.000MHz
14.31818MHz
Load Capacitance
(pF)
Please specify CL
(Minimum 8pF) in pF
or S for series
Custom ESR if other
than standard
R□
□:
Specify a value in
(e.g.: R40)
MHz -
-
-
Operating Temp.
Blank: 0°C ~ +70°C
A: -10°C ~ +60°C
B: -20°C ~ +70°C
C: -30°C ~ +70°C
N: -30°C ~ +85°C
D: -40°C ~ +85°C
J: -40°C ~ +105°C
K: -40°C ~ +125°C
Freq. Tolerance
Blank: ± 50 ppm
1: ± 10 ppm
7: ± 15 ppm
2: ± 20 ppm
3: ± 25 ppm
4: ± 30 ppm
Freq. Stability
(See Table 1 for details)
Blank: ± 50 ppm
U: ± 10 ppm
G: ± 15 ppm
X: ± 20 ppm
W: ± 25 ppm
Y: ± 30 ppm
H: ± 35 ppm
Q: ± 100 ppm
Table 1 Available Combinations of Operating Temp. and Freq. Stability
Operating Temp.
A: -10°C ~ +60°C
Std.: 0°C ~ +70°C
B: -20°C ~ +70°C
C: -30°C ~ +70°C
N: -30°C ~ +85°C
D: -40°C ~ +85°C
J: -40°C ~ +105°C
K: -40°C ~ +125°C
Freq. Stability
U:±10ppm
G:±15ppm
X:±20ppm
W:±25ppm
Y:±30ppm
H:±35ppm Std.:±50ppm Q:±100ppm
Note: Please contact Abracon for other frequency stability and operating temperature range options.
ABRACON IS
ISO9001:2008
CE RTIFIED
2 Faraday, Suite# B
|
Irvine
|
CA 92618
Revised: 01.06.15
Ph. 949.546.8000
|
Fax. 949.546.8001
Visit
www.abracon.com
for Terms and Conditions of Sale
THRU-HOLE MICROPROCESSOR CRYSTAL
ABL7M2
OUTLINE DIMENSION:
0.260 TYP.
6.60
0.157 MAX
4
Pb
RoHS / RoHS II Compliant
6.6 x 4.0 x 1.4mm
0.114 ±0.008
2.90 ±0.20
0.012 ±0.001
0.30 ±0.02
0.098 ±0.008
2.50 ±0.20
0.295 ±0.006
7.50 ±0.15
0.055 TYPE.
1.4
Dimension : Inches [mm]
Packing
500pcs/bag
ATTENTION:
Abracon Corporation’s products are COTS – Commercial-Off-The-Shelf products; suitable for Commercial, Industrial and, where designated, Automotive
Applications. Abracon’s products are not specifically designed for Military, Aviation, Aerospace, Life-dependant Medical applications or any application requiring high
reliability where component failure could result in loss of life and/or property. For applications requiring high reliability and/or presenting an extreme operating environ-
ment, written consent and authorization from Abracon Corporation is required. Please contact Abracon Corporation for more information.
ABRACON IS
ISO9001:2008
CE RTIFIED
2 Faraday, Suite# B
|
Irvine
|
CA 92618
Revised: 01.06.15
Ph. 949.546.8000
|
Fax. 949.546.8001
Visit
www.abracon.com
for Terms and Conditions of Sale
How to download the project to Vxsim simulator and run it?
I am new to vxworks, hope experts can explain it in detail, thank you very much...
standstone Embedded System
What are the advantages of wireless monitoring compared to traditional monitoring solutions?
1. Low comprehensive cost, only one-time investment is required, no trenching and pipe laying is required, and it is especially suitable for outdoor places with long distance and well-decorated. In ma...
xyh_521 Industrial Control Electronics
Wireless module outputs pure signal
The receiving module has 3 pins, VCC+ DATA output GND- DATA output is TTl output. How to connect it so that the output is a pure signal? Suppose a remote control is pressed and the transmitting module...
江户川李 Embedded System
Huang Zhiwei from the University of South China Series - The Impact of Grounding on ADC Performance
[i=s]This post was last edited by paulhyde on 2014-9-15 09:30[/i] ADC is one of the most common and necessary circuits in electronic design competitions. Whether a high-precision analog-to-digital con...
小煜 Electronics Design Contest
How to get the delay of logic device? For example, there is a comparator in the logic circuit, and I want to see its delay? What is the easiest way? In ISE or using synlify?
How to get the device delay? For example, there is a comparator in the circuit, and I want to see its delay? What is the simplest method? In ISE or using synlify? If I use timing analyzer or synplify,...
aaa123 Embedded System
The basic structure and working principle of CT machine
[i=s]This post was last edited by Jameswangsynnex on 2015-3-3 20:01[/i] Computed tomography (CT) diagnosisComputed tomography (CT) is a major breakthrough in the application of electronic computers an...
voyage620 Mobile and portable

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 194  2741  2729  2752  7  4  56  55  1  51 
Datasheet   0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
Room 1530, 15th Floor, Building B, No. 18 Zhongguancun Street, Haidian District, Beijing Telephone: (010) 82350740 Postal Code: 100190
Copyright © 2005-2026 EEWORLD.com.cn, Inc. All rights reserved 京ICP证060456号 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号