EEWORLDEEWORLDEEWORLD

Part Number

Search

24.5535MHZCFPT-9001GP3BLF

Description
TCXO, CLOCK, 24.5535 MHz, HCMOS OUTPUT, ROHS COMPLIANT, SMD, 10 PIN
CategoryPassive components    oscillator   
File Size491KB,3 Pages
ManufacturerIQD Frequency Products
Environmental Compliance  
Download Datasheet Parametric View All

24.5535MHZCFPT-9001GP3BLF Overview

TCXO, CLOCK, 24.5535 MHz, HCMOS OUTPUT, ROHS COMPLIANT, SMD, 10 PIN

24.5535MHZCFPT-9001GP3BLF Parametric

Parameter NameAttribute value
Is it lead-free?Lead free
Is it Rohs certified?conform to
Objectid1077767248
Reach Compliance Codecompliant
YTEOL7.15
Other featuresTRI-STATE; ENABLE/DISABLE FUNCTION; BULK; TAPE AND REEL
Ageing2 PPM/FIRST YEAR
maximum descent time7 ns
Frequency Adjustment - MechanicalNO
frequency stability2%
Installation featuresSURFACE MOUNT
Nominal operating frequency24.5535 MHz
Maximum operating temperature50 °C
Minimum operating temperature
Oscillator typeHCMOS
Output load15 pF
physical size7.0mm x 5.0mm x 2.0mm
longest rise time7 ns
Maximum supply voltage5.5 V
Minimum supply voltage4.5 V
Nominal supply voltage5 V
surface mountYES
maximum symmetry45/55 %
CFPT-9000 SMD TCXO/TCVCXOs
ISSUE 12; 1 NOVEMBER 2008 - RoHS 2002/95/EC
Supply Voltage
Description
Sub 1ppm performance TCXO manufactured for us by
Rakon utilising their Pluto™ ASIC technology, a single chip
oscillator and analogue compensation circuit operating over
an extended temperature range. Its ability to function down to
a supply voltage of 2.4V and low power consumption make it
particularly suitable for mobile applications
7 x 5mm
3.2, 5, 6.4, 8.192, 9.6, 12.688375, 10, 12.8, 13, 14.4, 14.85,
16.384, 16.367, 16.8, 19.2, 19.44, 19.8, 20, 24.5535, 32.768,
38.88, 40MHz
HCMOS 15pF
ACMOS 50pF max.
(available on request, contact sales office)
Sinewave 10k
W
// 10pF, AC-coupled
Clipped sinewave 10k
W
// 10pF, AC-coupled
Temperature: see table
Typical Supply Voltage Variation ±10% < ±0.2 ppm*
Typical Load Coefficient 15pF ±5pF < ±0.2 ppm*
*Dependent on frequency and output type
Standard 3.3V, 5.0V ( see table)
Supply voltages in the range 2.4 to 6.0V available to order,
please contact our sales office
HCMOS Typically:
1+Frequency(MHz)*Supply(V)*{Load(pF)+15}*10
–3
mA
e.g. 20MHz, 5V, 15pF ≈ 4mA
Sinewave <8mA
Clipped Sinewave Typically:
1+Frequency(MHz)*1.2*{Load(pF)+30}*10
–3
mA
±1ppm maximum in first year, frequency <20MHz
±2ppm maximum in first year, frequency > 0MHz
±3ppm maximum for 10 years (including the first year),
frequency <20MHz
±5ppm maximum for 10 years (includng the first year),
frequency >20MHz
±1ppm max
Optional reference voltage output on Pad 1, suitable for
potentiometer supply or DAC reference.
1. No output (standard option)
2. 2.2V, for Min. Vs>2.4V
3. 2.7V, for Min. Vs>3.0V
4. 4.2V, for Min. Vs>4.5V
Maximum load current (mA) = Vref/10
Supply Current
Package Outline
Standard Frequencies
Ageing
Output Compatibility & Load
After Reflow
Reference Voltage, Vref
Frequency Stability
TCXOs
Frequency Adjustment
Three options with external Voltage Control applied to Pad 10:
A - Ageing adjustment: > ±5ppm, frequency < 20MHz
(Standard Option)
> ±7ppm, frequency > 20MHz
B - No frequency adjustment initial calibration @ 25°C
< ±1.0 ppm
C - High Pulling ±10ppm to ±50ppm can be available
depending on frequency and stability options.
Please consult our sales office
Linearity: < 1%
Slope: Positive
Input resistance: > 100k
W
Modulation bandwidth: > 2kHz
Standard voltage control ranges:
Without reference voltage - Vs=5.0V 2.5V±1V
Without reference voltage - Vs=3.3V 1.65V±1V
With reference voltage - Vc=0V to Vref
–55 to 125°C
Logic ‘1’ (>60%Vs) to Pad 8 enables output
For manual frequency adjustment connect an external 50kW
potentiometer between Pad 1 (Reference Voltage) and Pad 4
(GND) with wiper connected to Pad 10 (Voltage Control). Please
specify reference voltage as part of the ordering code
Environmental
Vibration: IEC 60068-2-6 Test Fc Procedure B4, 10-60Hz
1.5mm displacement, 60 –2000Hz at 10gn, 30 minutes in
each of three mutually perpendicular planes at 1 octave per
minute
Shock: IEC 60068-2-27 Test Ea, 1500g acceleration for
0.5ms duration, 1/2 sine pulse, 3 shocks in each direction
along three mutually perpendicular planes
Solderabiltiy: MIL-STD-202, Method 208, Category 3
Factory code + Manufacturing identifier (xx) + Pad 1 / Static
sensitivity identifier (Triangle) + Part Number (Four digits) +
Date Code
Bulk or Tape & Reel
Frequency + Model Number + Frequency Stability vs
Operating Temperature Range Code + Reference Voltage
Code + Frequency Adjustment Code
Marking Includes
Storage Temperature Range
Packaging
Minimum Order Information Required
Tri-State Operation
Logic ‘0’ (<20%Vs) to Pad 8 disables output
When at logic ‘0’, the output stage is disabled for all output
options, but the oscillator and compensation circuit are still
active (current consumption <1mA)
IQD Frequency Products Ltd, Station Road, Crewkerne, Somerset TA18 8AR, United Kingdom
Tel: +44 (1460) 270200; Fax: +44 (1460) 72578;
Email: info@iqdfrequencyproducts.com Web: www.iqdfrequencyproducts.com
Who has used the Flexus FX100 audio analyzer?
Flexus FX100 audio analyzer, link is [url=http://www.nti-audio.com/zh/%E4%BA%A7%E5%93%81%E5%88%97%E8%A1%A8/flexus-fx100-%E9%9F%B3%E9%A2%91%E5%88%86%E6%9E%90%E4%BB%AA.aspx]http://www.nti-audio.com/zh/%...
百谷草木 Integrated technical exchanges
What are the common information terminals?
What are the common information terminals? Can you please tell me?...
wmin99 Embedded System
Design of Oil Well Bottom Hole Parameter Acquisition System Based on Carrier Communication
Design of oil well bottom hole parameter acquisition system based on carrier communication. How to do such a graduation project? Can the masters give me some ideas?...
sw3926 RF/Wirelessly
Will Too Many Vias in the RF PCB Power Layer Affect Power Integrity?
The picture shows the PCB power layer. I inserted vias on both sides of the RF trace and in the empty space of the PCB. Will this arrangement damage the power integrity or have other effects?...
明天你好123 PCB Design
NTC thermistor detection method
Two measurement methods...
fighting Test/Measurement
[Question] How to develop a driver for IEEE 1394 to PCI card under VxWorks
The adapter card uses three chips: TSB41AB3, M4LV -10VC -12VI and TSB12LV26. Looking at the PCI and IEEE 1394 protocols, I just don't know how to start writing the driver for this adapter card. I'm ve...
yhphxj Real-time operating system RTOS

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 1859  976  2481  2469  1154  38  20  50  24  19 
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