EEWORLDEEWORLDEEWORLD

Part Number

Search

UM-1-FREQ-STBY5-TOL4-AGE1-CL3-DL1

Description
Parallel - Fundamental Quartz Crystal, 10MHz Min, 30MHz Max,
CategoryPassive components    Crystal/resonator   
File Size43KB,1 Pages
ManufacturerDaishinku Corp.
Websitehttp://www.kds.info/
Environmental Compliance  
Download Datasheet Parametric View All

UM-1-FREQ-STBY5-TOL4-AGE1-CL3-DL1 Overview

Parallel - Fundamental Quartz Crystal, 10MHz Min, 30MHz Max,

UM-1-FREQ-STBY5-TOL4-AGE1-CL3-DL1 Parametric

Parameter NameAttribute value
Is it lead-free?Lead free
Is it Rohs certified?conform to
Reach Compliance Codeunknown
Other featuresAT CUT CRYSTAL
Ageing1 PPM/YEAR
Crystal/Resonator TypePARALLEL - FUNDAMENTAL
Drive level10 µW
frequency stability0.005%
frequency tolerance20 ppm
JESD-609 codee4
load capacitance20 pF
Manufacturer's serial numberUM-1
Installation featuresTHROUGH HOLE MOUNT
Maximum operating frequency30 MHz
Minimum operating frequency10 MHz
Maximum operating temperature60 °C
Minimum operating temperature-10 °C
physical sizeL8XB3.5XH8.5 (mm)
surface mountNO
Terminal surfaceGold (Au) - with Nickel (Ni) barrier
Base Number Matches1
Crystal Resonators
UM-1, UM-4, UM-5, HC-49/T, HC-49/U, HC-50/T, HC-50/U
The UM Series Resonators feature excellent frequency stability and are
suitable for pager and mobile radio applications. These highly impact-
resistant, reliable crystal resonators have been reduced in size without
trading off their electrical characteristics.
The HC Series Resonators are excellent in frequency stability and suit-
able as the reference clocks of microprocessors and other electronic
devices.
Features
Automatic mounting with tape & reel form is possible.
Series Resistance
Type Vibration
UM-4
UM-5
UM-1 HC-49/T HC-50/T
Mode
Ωmax. Ωmax. Ωmax. Ωmax. Ωmax.
Frequency
1.8∼2.0MHz
F
F
2.0∼2.4MHz
F
2.4∼3.0MHz
3.0∼3.5MHz
F
150
150
F
3.5∼4.0MHz
4.0∼7.0MHz
90
90
F
45
45
F
7.0∼10MHz
10∼15MHz
45
45
50
50
50
F
25
25
50
50
50
F
15∼20MHz
50/– 50/–
50 25/60 25/60
F/3
20∼25MHz
50/– 50/–
50 25/40 25/40
F/3
25∼30MHz
40
40
70
70
70
3
30∼75MHz
70/– 70/80 70/80
–/60 –/60
3/5
75∼100MHz
60
60
80
80
80
5
100∼125MHz
125∼150MHz
100
100
100
80
80
5
120
120
7
150∼200MHz
HC−49/U HC−50/U
Ωmax. Ωmax.
600
600
450
450
350
350
150
150
90
90
60
60
35
35
35
35
25
25
25/50 25/50
25/40 25/40
40
40
–/60 –/60
60
60
80
80
※3.75±0.2
8max.
Frequency Range
1.8∼200MHz
Vibration Mode
Thickness-shear mode (AT cut)
Fund,
3rd,
5th,
7th
Drive Level
10μW,
50μW,
100μW,
500μW
Load Capacitance
Series,
12pF, 16pF, 20pF, (fund.)
32pF
8pF, 10pF, 12pF, 16pF
(3rd, 5th, 7th)
Frequency Tolerance(at 25℃)
±5×10
-6
±10×10
-6
±15×10
-6
,
-6
-6
±20×10 ,
±30×10
Frequency Tolerance over
Temperature(Ref. to 25℃)
±5×10
-6
±10×10
-6
±20×10
-6
,
±30×10
-6
±50×10
-6
Operating Temperature Range
−10℃∼+60℃
Storage Temperature Range
−30℃∼+80℃
Aging Characteristics
UM Series:
±1×10
-6
±2×10
-6
±3×10
-6
year max.)
HC Series
-6
±5×10 /year max.)
Consult our sales representative for other specifications or special specifications.
Dimensions[mm]
5max.
L max.
6.05
−0.38
+ 0.25
5max.
L max.
20±1
※4.88±0.2
※4.88±0.2
11.5max.
11.5max.
φ1.02
L
HC-50/U 13.46
HC-50/T 11.0
L
HC-49/U 13.46
HC-49/T 11.0
3.5max.
L max.
12.5±1
UM-4
UM-5
UM-1
L
4.5
5.8
8.5
φ0.35±0.05
※Per
dimension closest to the body of the unit.
26
φ0.43
−0.02
+ 0.05
−0.07
+ 0.05
How should I choose the CPU if I want to make a reversing system with a video camera?
The company asked me to make a car reversing system. I have video head and video conversion equipment. What I need to do is to collect video signal and distance signal. What kind of processing chip ca...
booksunking Automotive Electronics
IBM's $3 billion bet: Silicon is outdated
Is the era of silicon chips coming to an end? IBM is, at least, saying it is, and it is spending $3 billion over the next five years to find a way to make the next generation of microprocessors. "We d...
azhiking Integrated technical exchanges
Regarding the CAN communication problem, I don't quite understand the sending function in the routine. Can you please help me?
First the routine: void CAN1_SendMesg(uint32_t id, uint8_t len, uint8_t *dat){uint16_t i = 0;CanTxMsg TxMessage;/* CAN_RTR_DATA */if(len8){return ;}TxMessage.StdId = (id0x7FF);TxMessage.ExtId = (id11)...
ena stm32/stm8
Microcontroller-based LED driver topologies, trade-offs, and limitations
This article focuses on microcontroller-based LED drivers. It examines the various topologies that can be used with a microcontroller at the heart of the system. It also discusses the trade-offs of th...
程序天使 MCU
[RVB2601 Creative Application Development] 3. Onboard Button Experiment
[i=s]This post was last edited by hehung on 2022-3-6 13:07[/i]PrefaceThe previous article explained how to use the official routines to operate RGB . This article will use the project in the previous ...
hehung XuanTie RISC-V Activity Zone
Summary of equivalent circuits of common electronic components
The equivalent circuit of electronic components is very useful for circuit analysis. It can help us understand the working principle of the component in the circuit and provide a deep understanding of...
btty038 Integrated technical exchanges

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 227  2585  1668  485  135  5  53  34  10  3 
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