EEWORLDEEWORLDEEWORLD

Part Number

Search

Q17.9990-JXS22P4-12-30/100-T1-AEC-HMR-LF

Description
Parallel - Fundamental Quartz Crystal, 17.999MHz Nom, SMD, 4 PIN
CategoryPassive components    Crystal/resonator   
File Size2MB,2 Pages
ManufacturerJauch
Websitehttp://www.jauchusa.com/
Environmental Compliance
Download Datasheet Parametric View All

Q17.9990-JXS22P4-12-30/100-T1-AEC-HMR-LF Overview

Parallel - Fundamental Quartz Crystal, 17.999MHz Nom, SMD, 4 PIN

Q17.9990-JXS22P4-12-30/100-T1-AEC-HMR-LF Parametric

Parameter NameAttribute value
Is it Rohs certified?conform to
Objectid145071167921
package instructionSMD, 4 PIN
Reach Compliance Codecompliant
Country Of OriginTaiwan
YTEOL7.22
Other featuresAEC-Q200; AT-CUT
Ageing3 PPM/FIRST YEAR
Crystal/Resonator TypePARALLEL - FUNDAMENTAL
Drive level10 µW
frequency stability0.01%
frequency tolerance30 ppm
JESD-609 codee4
load capacitance12 pF
Installation featuresSURFACE MOUNT
Nominal operating frequency17.999 MHz
Maximum operating temperature85 °C
Minimum operating temperature-40 °C
physical size2.5mm X 2.0mm X 0.55mm
Series resistance50 Ω
surface mountYES
Terminal surfaceNickel/Gold (Ni/Au)
Automotive SMD Crystal · JXS22P4
- 4 Pad Version, 2.5 x 2.0 mm
- seam sealed ceramic/metal package
- all versions are AEC-Q200 qualified
- HMR version with extended shock & vibration immunity
actual size
2011/65/EC
RoHS
RoHS compliant
Pb free
REACH
compliant
Conflict
mineral free
GENERAL DATA
TYPE
frequency range
frequency tolerance at 25 °C
load capacitance C
L
shunt capacitance C
O
storage temperature
shock resistance
drive level max.
aging
JXS22P4
12.0 ~ 40.0 MHz
(fund. AT-cut)
ESR (SERIES RESISTANCE RS)
frequency
in MHz
12.0 ~ 12.999
13.0 ~ 15.999
16.0 ~ 17.999
18.0 ~ 19.999
20.0 ~ 24.999
25.0 ~ 29.999
30.0 ~ 34.999
35.0 ~ 40.000
MARKING
(half sine pulse, 6.0 ms)*
(10 µW recommended)
vibration
mode
fund. - AT
fund. - AT
fund. - AT
fund. - AT
fund. - AT
fund. - AT
fund. - AT
fund. - AT
ESR max.
in ½
150
150
80
80
60
60
50
40
ESR typ.
in ½
120
100
50
40
35
30
25
20
±10 ppm, ±20 ppm, ±30 ppm
12 pF standard
(option: 8 pF ~ 30.0 pF / series)
< 5 pF
-40 °C ~ +125 °C
> 100 g
100 µW
< ±3 ppm first year (< ± 1 ppm for tol. ± 10 ppm)
* optional HMR version: 3000G / half sine pulse / 0.3 ms
TABLE 1: FREQUENCY STABILITY VS. TEMPERATURE
± 15
ppm
±20
ppm
±30
ppm
±50
ppm
±100
ppm
frequency with load capacitance code
company code / date code / internal code
date code: year/month; A ~ M: Jan. - Dec.; example 9A = 2019 January
9: 2019
0: 2020
1: 2021
2: 2022
3: 2023
4: 2024
Jan.
A
July
G
Febr.
B
Aug.
H
Mar.
C
Sept.
J
Apr.
D
Oct.
K
May
E
Nov.
L
June
F
Dec.
M
-20 °C ~ +70 °C
-40 °C ~ +85 °C
-40 °C ~ +105 °C
-40 °C ~ +125 °C
T1
T2
T3
available ∆ ask if available
DIMENSIONS
2.5
±0.1
0.55
±0.05
#4
#3
0.95
±0.1
#3
#4
#4
#3
1.3
±0.1
1.0
±0.1
1.7
±0.1
pad layout
in mm
option 2
21032019
1.2
±0.1
2.0
±0.1
0.65
±0.1
#1
#2
side view
#2
#1
top view
ORDER INFORMATION
bottom view
#2
#1
#2–#4: connected to lid,
preferably connect to GND
crystal connection
Q
Quartz
frequency
12.0 ~ 40.0 MHz
type
JXS22P4
load capacitance
12 pF standard
8 pF ~ 30 pF
S for series
tolerance at
25 °C
10 = ±10 ppm
20 = ±20 ppm
30 = ±30 ppm
stability vs.
temp. range
see table 1
option 1
blank = -20 °C ~ +70 °C
AEC = AEC-Q200 qualified
T(-30/+85) = -30 °C ~ +85 °C
HMR = high mechanical reliability
T1 = -40 °C ~ +85 °C
(3000g/half sine wave/0.3ms)
T2 = -40 °C ~ +105 °C
T3 = -40 °C ~ +125 °C
FU = for fundamental
frequencies ≥ 20 MHz
Example: Q 30.0-JXS22P4-12-30/50-T2-FU-AEC-LF
(Suffix LF = RoHS compliant / Pb free)
Jauch Quartz GmbH • e-mail: info@jauch.de • full data can bedata can be found under:
info@jauch.com
full found under: www.jauch.com
All specifications are subject to change without notice
www.jauch.de | www.jauch.co.uk | www.jauch.fr | www.jauchusa.com
Help: Can I find out the crystal frequency of an external crystal oscillator for a microcontroller?
It is known that the resonant frequency of a quartz crystal is about 5MHz (with a deviation of about tens of Hz). If we want to test its resonant frequency more accurately, can we use it as a crystal ...
zzfu2010 MCU
Are there any recommendations for cost-effective and stable GPS or Beidou chips?
Are there any seniors who are familiar with Beidou chips and GPS chips who can recommend some relatively stable, low-power, and low-voltage Beidou chips and GPS chips?...
ezezy RF/Wirelessly
Give me some ideas, everyone.
A few questions: 1. Is the prospect of embedded system good? How is the salary? 2. Doesn't embedded system engineer have a bottleneck at 35 years old? 3. I am a student, I want to know how much the tr...
cocojy Embedded System
LWIP DHCP Issue
As shown in the figure, Cannot use this netif with DHCP: MTU is too small, what does it mean, how can I make the network not too small?...
lidonglei1 stm32/stm8
ARM7 interrupts are confusing? Could any expert help me? I'd be grateful!
I wrote a timer interrupt program under ARM7. The following code is to switch to system mode after entering IRQ interrupt, so as to make the interrupt reentrant. But there is a problem when switching?...
nsz ARM Technology
EZ430——RF2500 Learning Tips
I just got a 430 recently. I only used 51 before. But since most of the programs for 430 are written in C, it is relatively easy to learn. I have been learning about the output of uart in the past few...
w363782100 Microcontroller MCU

Technical ResourceMore

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 1638  2523  2861  1623  827  33  51  58  17  15 
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