电子工程世界电子工程世界电子工程世界

关键词

搜索

型号

搜索

SIT9025AIT22-XXNB25.000625

产品描述LVCMOS Output Clock Oscillator, 25.000625MHz Nom,
产品类别无源元件    振荡器   
文件大小866KB,共14页
制造商SiTime
标准
下载文档 详细参数 全文预览

SIT9025AIT22-XXNB25.000625概述

LVCMOS Output Clock Oscillator, 25.000625MHz Nom,

SIT9025AIT22-XXNB25.000625规格参数

参数名称属性值
是否Rohs认证符合
Objectid145227755478
Reach Compliance Codeunknown
Country Of OriginMalaysia, Taiwan, Thailand
YTEOL6.8

SIT9025AIT22-XXNB25.000625文档预览

SiT9025
Features
AEC-Q100, 1 to 150 MHz EMI Reduction Oscillator
Applications
Spread spectrum for EMI reduction
Wide spread % option
Center spread: from ±0.125% to ±2%, ±0.125% step size
Down spread: -0.25% to -4% with -0.25% step size
Spread profile option: Triangular, Hershey-kiss, Random
Programmable rise/fall time for EMI reduction: 8 options,
0.25 to 40 ns
AEC-Q100 with extended temperature range (-55°C to 125°C)
Any frequency between 1 MHz and 150 MHz accurate to
6 decimal places
100% pin-to-pin drop-in replacement to quartz-based XO’s
Excellent total frequency stability as low as ±25 ppm
Contact SiTime
for ±20 ppm option
Low power consumption of 6.6 mA typical at 1.8 V
Pin1 modes: Standby, output enable, or spread disable
LVCMOS output
Industry-standard packages
QFN: 2.0 x 1.6 mm
2
, 2.5 x 2.0 mm
2
, 3.2 x 2.5 mm
2
RoHS and REACH compliant, Pb-free, Halogen-free and
Antimony-free
Rear/Surround view camera
Driver monitor
ADAS ECU/CPU
High speed serial link
Electrical Specifications
Table 1. Electrical Characteristics
All Min and Max limits are specified over temperature and rated operating voltage with 15 pF output load unless otherwise stated.
Typical values are at 25°C and 3.3 V supply voltage.
Parameters
Output Frequency Range
Frequency Stability
[1]
Symbol
f
F_stab
Min.
1
-25
-50
Typ.
-
1.8
2.5
2.8
3.0
3.3
7.9
6.6
5.3
5.0
2.6
0.6
Max.
150
+25
+50
+85
+105
+125
+125
1.98
2.75
3.08
3.3
3.63
3.63
9.5
8.0
6.5
6.0
9.0
5.0
Unit
MHz
ppm
ppm
°C
°C
°C
°C
V
V
V
V
V
V
mA
mA
mA
mA
µA
µA
Condition
Frequency Range
Frequency Stability and Aging
Inclusive of initial tolerance at 25°C, 1st year aging at 25°C, and
variations over operating temperature, rated power supply voltage.
Spread = Off.
AEC-Q100 Grade 3
AEC-Q100 Grade 2
AEC-Q100 Grade 1
Extended cold AEC-Q100 Grade 1
Operating Temperature Range
Operating Temperature
Range
T_use
-40
-40
-40
-55
Supply Voltage
Vdd
1.62
2.25
2.52
2.7
2.97
2.25
Current Consumption
OE Disable Current
Standby Current
Idd
I_OD
I_std
Supply Voltage and Current Consumption
No load condition, f = 148.5 MHz, Vdd = 2.5 V to 3.3 V
No load condition, f = 148.5 MHz, Vdd = 1.8 V
f = 148.5 MHz, Vdd = 2.5 V to 3.3 V, OE = GND, Output in high-Z state
f = 148.5 MHz, Vdd = 1.8 V, OE = GND, Output in high-Z state
ST
= GND, Vdd = 2.5 V to 3.3 V, Output is weakly pulled down
ST
= GND, Vdd = 1.8 V, Output is weakly pulled down
Rev 1.01
September 9, 2020
www.sitime.com
SiT9025
AEC-Q100, 1 to 150 MHz EMI Reduction Oscillator
Table 1. Electrical Characteristics
(continued)
Parameters
Duty Cycle
Rise/Fall Time
Output High Voltage
Symbol
DC
Tr, Tf
VOH
Min.
45
43
90%
Typ.
1.2
Max.
55
57
2.0
Unit
%
%
ns
Vdd
f = 1 to 137 MHz
f = 137.000001 to 150 MHz
20% - 80%, default derive strength
IOH = -4 mA (Vdd = 3.0 V or 3.3 V)
IOH = -3 mA (Vdd = 2.8 V and Vdd = 2.5 V)
IOH = -2 mA (Vdd = 1.8 V)
IOL = 4 mA (Vdd = 3.0 V or 3.3 V)
IOL = 3 mA (Vdd = 2.8 V and Vdd = 2.5 V)
IOL = 2 mA (Vdd = 1.8 V)
Pin 1, OE or
ST
Pin 1, OE or
ST
Pin1,
ST
logic low
Pin1,
ST
logic high
Pin1, OE / SD logic low
Pin1, OE / SD logic high
Measured from the time Vdd reaches its rated minimum value
f = 148.5 MHz. For other frequencies, T_oe = 100 ns + 3 * cycles
Measured from the time ST pin crosses 50% threshold
Measured from the time SD pin crosses 50% threshold
Measured from the time SD pin crosses 50% threshold
f = 148.5 MHz, Vdd = 2.5 to 3.3 V, Spread = ON (or OFF)
f = 148.5 MHz, Vdd = 1.8 V, Spread = ON (or OFF)
Condition
LVCMOS Output Characteristics
Output Low Voltage
VOL
10%
Vdd
Input Characteristics
Input High Voltage
Input Low Voltage
Input Leakage Current
VIH
VIL
IL
70%
Startup Time
Enable/Disable Time
Resume Time
Spread Enable Time
Spread Disable Time
Cycle-to-cycle jitter
Note:
T_start
T_oe
T_resume
T_sde
T_sdde
T_ccj
1.
Contact SiTime
for ±20 ppm option.
-2.3
2.8
-24.6
3.2
10.5
10.8
30%
10
215
10
4
55
Vdd
Vdd
µA
µA
µA
µA
ms
ns
ms
µs
µs
Jitter
ps
ps
Startup and Resume Timing
Table 2. Spread Spectrum %
[3]
Ordering Code
A
B
C
D
E
F
G
H
I
J
K
L
M
N
O
P
Center Spread
(%)
±0.125
±0.250
±0.390
±0.515
±0.640
±0.765
±0.905
±1.030
±1.155
±1.280
±1.420
±1.545
±1.670
±1.795
±1.935
±2.060
Down Spread
(%)
-0.25
-0.50
-0.78
-1.04
-1.29
-1.55
-1.84
-2.10
-2.36
-2.62
-2.91
-3.18
-3.45
-3.71
-4.01
-4.28
Table 3. Spread Profile
[2,3]
Spread Profile
Triangular
Hershey-kiss
Random
Notes:
2. In both Triangular and Hershey-kiss profiles, modulation rate is
employed with a frequency of ~31.25 kHz. In random profile,
modulation rate is ~ 8.6 kHz.
3. The random profile supports up to ±1.030% center spread
or -2.10% down spread (ordering codes A through H).
Rev 1.01
Page 2 of 3
www.sitime.com
SiT9025
AEC-Q100, 1 to 150 MHz EMI Reduction Oscillator
Table 4. Pin Description
Pin
1
Symbol
OE /
ST
/
NC/ SD
Output
Enable
Standby
Functionality
H
[4]
: specified frequency output
L: output is high impedance. Only output driver is disabled.
H : specified frequency output
L: output is low (week pull down). Device goes to sleep mode.
Supply current reduced to I_std.
[4]
Top View
OE /
/
NC / SD
1
4
VDD
No Connect
Spread
Disable
2
3
4
Notes:
GND
OUT
VDD
Power
Output
Power
Pin1 has no function (Any voltage between 0 and Vdd or Open)
H: Spread = ON
L: Spread = OFF
Electrical ground
Oscillator output
Power supply voltage
[5]
GND
2
3
OUT
Figure 1. Pin Assignments
4. In OE or
ST
mode, a pull-up resistor of 10
or less is recommended if pin 1 is not externally driven. If pin 1 needs to be left floating, use the NC option.
5. A capacitor of value 0.1 µF or higher between Vdd and GND is required.
Table 5. Absolute Maximum Limits
Attempted operation outside the absolute maximum ratings may cause permanent damage to the part. Actual performance of the
IC is only guaranteed within the operational specifications, not at absolute maximum ratings.
Parameter
Storage Temperature
Vdd
Electrostatic Discharge
Soldering Temperature (follow standard Pb free soldering guidelines)
Junction Temperature
[6]
Note:
6. Exceeding this temperature for extended period of time may damage the device.
Min.
-65
-0.5
Max.
150
4
2000
260
150
Unit
°C
V
V
°C
°C
Table 6. Maximum Operating Junction Temperature
[7]
Max Operating Temperature (ambient)
85°C
105°C
125°C
Note:
Maximum Operating Junction Temperature
95°C
115°C
135°C
7. Datasheet specifications are not guaranteed if junction temperature exceeds the maximum operating junction temperature.
Table 7. Environmental Compliance
Parameter
Mechanical Shock
Mechanical Vibration
Temperature Cycle
Solderability
Moisture Sensitivity Level
Condition/Test Method
MIL-STD-883F, Method 2002
MIL-STD-883F, Method 2007
JESD22, Method A104
MIL-STD-883F, Method 2003
MSL1 @ 260°C
Rev 1.01
Page 3 of 4
www.sitime.com
SiT9025
AEC-Q100, 1 to 150 MHz EMI Reduction Oscillator
Timing Diagrams
90% Vdd
Pin 4 Voltage
Vdd
Vdd
50% Vdd
T_resume
T_start
No Glitch
[8]
during start up
ST Voltage
CLK Output
CLK Output
HZ
HZ
T_resume: Time to resume from ST
T_start: Time to start from power-off
Figure 2. Startup Timing
Figure 3. Standby Resume Timing (ST Mode Only)
50% Vdd
OE Voltage
CLK Output
Vdd
T_oe
Vdd
OE Voltage
50% Vdd
T_oe
HZ
CLK Output
HZ
T_oe: Time to put the output in High Z mode
T_oe: Time to re-enable the clock output
Figure 4. OE Enable Timing (OE Mode Only)
Figure 5. OE Disable Timing (OE Mode Only)
Vdd
50% Vdd
SD Voltage
T_sde
SD Voltage
Vdd
50% Vdd
T_sdde
Frequency
Deviation (%)
Modulation period = 32 µs (31.25 kHz)
Time (s)
Frequency
Deviation (%)
Time (s)
Figure 6. SD Enable Timing (SD Mode Only)
Note:
8. SiT9025 has “no runt” pulses and “no glitch” output during startup or resume.
Figure 7. SD Diable Timing (SD Mode Only)
Rev 1.01
Page 4 of 5
www.sitime.com
SiT9025
AEC-Q100, 1 to 150 MHz EMI Reduction Oscillator
Performance Plots
1.8 V
2.5 V
2.8 V
3.0 V
3.3 V
1.8 V
2.5 V
2.8 V
3.0 V
3.3 V
5.4
8.0
Current Consumption (mA)
5.2
5.0
4.8
4.6
4.4
OE Disable Current (mA)
7.5
7.0
6.5
6.0
5.5
5.0
4.5
4.0
0
20
40
60
80
100
120
140
0
20
40
60
80
100
120
140
Frequency (MHz)
Frequency (MHz)
Figure 8. OE Disable Current vs Frequency
Figure 9. Current Consumption vs Frequency
DUT1
DUT8
DUT15
DUT2
DUT9
DUT16
DUT3
FUT10
DUT17
DUT4
DUT11
DUT18
DUT5
DUT12
DUT19
DUT6
DUT13
DUT20
DUT7
DUT14
1.8 V
2.5 V
2.8 V
3.0 V
3.3 V
2.5
2.0
1.5
1.0
0.5
0.0
20
Frequency stability (ppm)
0
20
40
60
80
100
120
140
15
10
5
0
-5
-10
-15
-20
-40
-20
0
20
40
60
80
100
120
Standby Current (µA)
Frequency (MHz)
Temperature (°C)
Figure 10. Standby Current vs Frequency
1.8V
2.5V
2.8V
3.0V
3.3V
Figure 11. Frequency vs Temperature
Peak Cycle -to - Cycle Jitter (ps)
90
80
70
60
50
40
30
20
10
0
0
20
40
60
80
100
120
140
Frequency (MHz)
Figure 12. Cycle-to-cycle Jitter vs Frequency
(Spread profile: Triangular, Spread type: center,
Spread percentage: ±2.060%)
Rev 1.01
Page 5 of 6
www.sitime.com
1M带宽信号发生器的设计,抓头一个月了,跪求各路大神给个思路!
本帖最后由 paulhyde 于 2014-9-15 03:41 编辑 学校要做个毕业设计,导师不帮忙,就给个题目,百度都查不到,1M带宽信号发生器的设计,大百度都救不了我,听说本站大神无数,小弟特来贵宝地求 ......
即将毕业生 电子竞赛
UWB 技术的未来展望
超宽带技术 (UWB) 将在全球大规模普及。目前,已有 40 多个垂直市场部署了 UWB,包括工业、企业、汽车和消费类市场。在目前已实现的应用中,UWB 已在多个行业领域实现了运营效率和员工安全方面 ......
兰博 无线连接
振荡电路的设计与应用(日本 稻叶保)
振荡电路的设计与应用...
chenxinli 嵌入式系统
想问一下,我打通ZigBee串口,每次只可读写一次,不知道是那里的毛病,并且用linux下的串口也是这样,希望大家指导一下,谢谢
想问一下,我打通ZigBee串口,每次只可读写一次,不知道是那里的毛病,并且用linux下的串口也是这样,希望大家指导一下,谢谢...
alert4 Linux开发
关于PMT应用中的跳值问题
各位同行,PMT在应用中经常跳值,关于这个各位是否有好点的建议/经验? PMT型号:H10682-210 ...
qiao_zhang12 医疗电子
C语言中access/_access函数的使用
在Linux下,access函数的声明在<unistd.h>文件中,声明如下: int access(const char *pathname, int mode); access函数用来判断指定的文件或目录是否存在(F_OK),已存在的文件或目录是 ......
Aguilera 微控制器 MCU

 
EEWorld订阅号

 
EEWorld服务号

 
汽车开发圈

 
机器人开发圈

About Us 关于我们 客户服务 联系方式 器件索引 网站地图 最新更新 手机版

站点相关: 大学堂 TI培训 Datasheet 电子工程 索引文件: 2557  438  2444  346  2176  52  9  50  7  44 

器件索引   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

北京市海淀区中关村大街18号B座15层1530室 电话:(010)82350740 邮编:100190

电子工程世界版权所有 京B2-20211791 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 Copyright © 2005-2026 EEWORLD.com.cn, Inc. All rights reserved