Standard Frequencies – see Page 5 for common frequencies.
* Check with factory for availability of frequencies not listed.
Applications
IoT and IIoT Applications
Wireless Communications
FPGA/Microcontrollers
USB Interfaces
Computer Peripherals
Portable Equipment
Test and Measurement
M2M Communications
Broadband Access
Description
CTS Model 407 incorporates a high Q quartz resonator and is ideal for supporting a wide range of commercial and
industrial applications.
Ordering Information
Model
407
Mode of
Os ci l l a ti on
F
T ol era nce
@ +25°C
3
T em pera ture Sta bi l i ty/T em pera ture Ra ng e
5
Loa d
Ca pa ci ta nce
D
F requency
[ MHz ]
XXXMXXXX
Mode
Code
Fundamental
F
3rd Overtone
T
Code
- 20°C
1
X
2
3
5
Code
1
X
2
3
Tolerance
±10ppm
±15ppm
±20ppm
±30ppm
Stability Code
to +70°C - 30°C
±10ppm
R
±15ppm
Y
±20ppm
N
±30ppm
4
±50ppm
8
Stability Code
to +85°C - 40°C
±10ppm
-
±15ppm
W
±20ppm
6
±30ppm
7
±50ppm
9
Stability
to +85°C
-
±15ppm
±20ppm
±30ppm
±50ppm
Code
Frequency
Frequency
1
Code Capacitance Code Capacitance
8pF
18pF
K
D
9pF
20pF
J
E
10pF
24pF
A
F
12pF
30pF
L
G
16pF
Series
C
S
Notes:
1] Frequency is recorded with 3 leading digits before the "M" and 4 significant digits after the "M" [including zeroes]. (Ex. XXXMXXXX [016M3840],
There are frequencies with significant digits after the "M" that exceed the 4 digits. The remaining digits will be truncated from the CTS part
number, but the factory will calibrate to the full frequency desired. Examples below; P/N Frequency = Actual Frequency
13M5537 = 13.553750MHz
14M3181 = 14.318180MHz
16M6666 = 16.666670MHz
28M6363 = 28.636360MHz
N ot a l l perf orm a nce com bi na ti ons a nd f requenci es m a y be a va i l a bl e.
Conta ct your l oca l CT S Repres enta ti ve or CT S Cus tom er Servi ce f or a va i l a bi l i ty.
This product is specified for use only in standard commercial applications. Supplier disclaims all express and implied warranties and liability in connection with any use of this
product in any non-commercial applications or in any application that may expose the product to conditions that are outside of the tolerances provided in its specification.
前言 笔者在 《程序是如何在 CPU 中运行的(二)》中从 PC 指针寄存器的角度分析了一级函数调用和二级函数调用执行的过程,那么中断服务子程序又是如何被执行的呢?两者的相同点和不同点是什么呢?该篇文章笔者将详细地阐述这个概念。 中断的概念 当 CPU 正在处理某件事情的时候,外部发生的某一事件请求 CPU 迅速去处理,于是,CPU 暂时中止当前的工作,转去处理所发生的事件。中断服务处理完该...[详细]