EEWORLDEEWORLDEEWORLD

Part Number

Search

8N4QV01FG-0108CDI8

Description
Programmable Oscillators PROGRAMMABLE 5X7 OSCILLATOR
CategoryPassive components   
File Size329KB,20 Pages
ManufacturerIDT (Integrated Device Technology, Inc.)
Websitehttp://www.idt.com/
Download Datasheet Parametric View All

8N4QV01FG-0108CDI8 Online Shopping

Suppliers Part Number Price MOQ In stock  
8N4QV01FG-0108CDI8 - - View Buy Now

8N4QV01FG-0108CDI8 Overview

Programmable Oscillators PROGRAMMABLE 5X7 OSCILLATOR

8N4QV01FG-0108CDI8 Parametric

Parameter NameAttribute value
Product AttributeAttribute Value
ManufacturerIDT (Integrated Device Technology, Inc.)
Product CategoryProgrammable Oscillators
RoHSN
ProductVCXO
Package / Case7 mm x 5 mm x 1.55 mm
Length7 mm
Width5 mm
PackagingCut Tape
PackagingReel
Factory Pack Quantity1000
Unit Weight0.006562 oz
Quad-Frequency Programmable
VCXO
General Description
The IDT8N4QV01 is a Quad-Frequency Programmable VCXO with
very flexible frequency and pull-range programming capabilities. The
device uses IDT’s fourth generation FemtoClock® NG technology for
an optimum of high clock frequency and low phase noise
performance. The device accepts 2.5V or 3.3V supply and is
packaged in a small, lead-free (RoHS 6) 10-lead ceramic 5mm x
7mm x 1.55mm package.
Besides the 4 default power-up frequencies set by the FSEL0 and
FSEL1 pins, the IDT8N4QV01 can be programmed via the I
2
C
interface to any output clock frequency between 15.476MHz to
866.67MHz and from 975MHz to 1,300MHz to a very high degree of
precision with a frequency step size of 435.9Hz ÷N (N is the PLL
output divider). Since the FSEL0 and FSEL1 pins are mapped to 4
independent PLL, P, M and N divider registers (P, MINT, MFRAC and
N), reprogramming those registers to other frequencies under
control of FSEL0 and FSEL1 is supported. The extended
temperature range supports wireless infrastructure, tele-
communication and networking end equipment requirements.
IDT8N4QV01 REV G
DATASHEET
Features
Fourth generation FemtoClock® NG technology
Programmable clock output frequency from 15.476MHz to
866.67MHz and from 975MHz to 1,300MHz
Four power-up default frequencies (see part number order codes),
re-programmable by I
2
C
I
2
C programming interface for the output clock frequency, APR
and internal PLL control registers
Frequency programming resolution is 435.9Hz ÷N
Absolute pull-range (APR) programmable from ±4.5ppm to
±754.5ppm
One 2.5V or 3.3V LVDS differential clock output
Two control inputs for the power-up default frequency
LVCMOS/LVTTL compatible control inputs
RMS phase jitter @ 156.25MHz (12kHz - 20MHz): 0.494ps
(typical)
RMS phase jitter @ 156.25MHz (1kHz - 40MHz): 0.594ps (typical)
2.5V or 3.3V supply voltage modes
-40°C to 85°C ambient operating temperature
Lead-free (RoHS 6) packaging
Block Diagram
OSC
114.285 MHz
÷MINT,
MFRAC
2
VC
FSEL1
FSEL0
SCLK
SDATA
OE
Pulldown
Pulldown
Pullup
Pullup
Pullup
Pin Assignment
÷P
PFD
&
LPF
FemtoClock
®
NG
VCO
1950-2600MHz
÷N
Q
nQ
VC 1
OE 2
GND 3
FSEL0 4
FSEL1 5
10 SCLK
9 SDATA
8 V
DD
7 nQ
6 Q
A/D
7
25
Configuration Register (ROM)
(Frequency, APR, Polarity)
I
2
C Control
7
IDT8N4QV01 REV G DATA SHEET
10-lead ceramic 5mm x 7mm x 1.55mm
package body
CD Package
Top View
IDT8N4QV01GCD REVISION A MARCH 11, 2014
1
©2014 Integrated Device Technology, Inc.
Keyboard cable definition
An IBM keyboard, the connecting wire is unsoldered, the corresponding D+, D-, V, G four pins, the connecting wire colors are red, blue, white, green, I don't know how to correspond, I have tried green...
webnoise Embedded System
edm.exe Is this a configuration problem? Check it out
I just learned how to develop WinCE programs using C# in VS2005. I connected my WinCE device to my PC using ActiveSync and created a simple form. When I ran it, an error message popped up on the CE de...
13692816588 Embedded System
About the multiplication and addition of fixed-point numbers
I have been learning Verilog for a while, and there is a problem that bothers me. I know that Verilog can only process data of 0 and 1 , but I always want to convert them into decimal numbers in my mi...
eeleader-mcu FPGA/CPLD
Comparison of the internal structures of TI's three major series of DSPs
1. IntroductionThere are two interpretations of DSP: one is Digital Signal Processor, also known as digital signal chip; the other is Digital Signal Processing. The DSP we are talking about refers to ...
灞波儿奔 Microcontroller MCU
Design of information processing and monitoring system for modern elevators
The design of modern elevator information processing and monitoring system, please share...
hemingjun991 MCU
CC2530 wireless lighting experiment
1. Download projectcc2530 experimental project download link 2. Burn the wireless transmission codeOpen the wireless light – wireless TX – CC2530 BasicRF – CC2530 BasicRF – ide – srf05_cc2530 – light_...
Jacktang Wireless Connectivity

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 158  974  2479  120  2057  4  20  50  3  42 
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