Part Number Hot Search : 
1231A1 2SK3192 LT10781 5KP50CA 80272 JC34063F BU401 NDFR16P
Product Description
Full Text Search
 

To Download ASM3P2274A Datasheet File

  If you can't view the Datasheet, Please click here to try to view without PDF Reader .  
 
 


  Datasheet File OCR Text:
 November 2006 rev 1.1 Low Power 4X Multiplier EMI Reduction IC
Features
* * * * * * *
ASM3P2274A
The ASM3P2274A uses the most efficient and optimized modulation profile approved by the FCC and is implemented by using a proprietary all digital method. The ASM3P2274A modulates the output of a single PLL in order to "spread" the bandwidth of a synthesized clock, and more importantly, decreases the peak amplitudes of its harmonics. This results in significantly lower system EMI compared to the typical narrow band signal produced by oscillators and most frequency generators. Lowering EMI by increasing a signal's bandwidth is called `spread spectrum clock generation'.
Generates a 4X EMI optimized clock signal at the output. Integrated loop filter components. Operates with a 3.3 / 2.5V Supply. Low power CMOS design. Input frequency range: 12MHz to 30MHz for 2.5V. : 12MHz to 30MHz for 3.3V. Frequency deviation: -1.5% (Typ) @66MHz Output Frequency. Available in 6-pin TSOT-23 Package.
Product Description
The ASM3P2274 is a versatile Spread Spectrum Frequency Modulator designed specifically for a wide range of clock frequencies. It provides a 4x Spread Spectrum Modulated output from an input clock source. The ASM3P2274A reduces electromagnetic interference (EMI) at the clock source, allowing system wide reduction of EMI of all clock dependent signals. The ASM3P2274A allows significant system cost savings by reducing the number of circuit board layers ferrite beads, shielding that are traditionally required to pass EMI regulations.
Applications
The ASM3P2274A is targeted towards all portable devices with very low power requirements like MP3 players,MFP, LCD Panel Module and digital still cameras.
Key Specifications
Description Supply voltages Cycle-to-Cycle Jitter Output Duty Cycle Modulation Rate Equation Frequency Deviation Specification VDD = 3.3V / 2.5V 360pS (Typ) 45/55% FIN/640 -1.5% (Typ) @ 66MHz Output
Block Diagram
VDD
PD
Modulation XIN/CLKIN XOUT Crystal Oscillator Frequency Divider Feedback Divider Phase Detector Loop Filter
PLL
VCO
Output Divider ModOUT
VSS
PulseCore Semiconductor Corporation 1715 S. Bascom Ave Suite 200, Campbell, CA 95008 * Tel: 408-879-9077 * Fax: 408-879-9018 www.pulsecoresemi.com
Notice: The information in this document is subject to change without notice.
November 2006 rev 1.1
Pin Configuration (6-pin TSOT- 23 Package)
ASM3P2274A
PD 1 XOUT
2
6
VSS ModOUT VDD
ASM3P2274A
5 4
XIN / CLKIN 3
Pin Description Pin#
1 2 3 4 5 6
Pin Name
PD XOUT XIN / CLKIN VDD ModOUT VSS
Type
I O I P O P
Description
Power-down control pin. Pull low to enable power-down mode. Connect to VDD if not used. Crystal connection. If using an external reference, this pin must be left unconnected. Crystal connection or external reference frequency input. This pin has dual functions. It can be connected either to an external crystal or an external reference clock. Power supply for the entire chip. Spread spectrum clock output (4X output) Ground connection.
Modulation Profile
Specifications Description
Input Frequency Range Modulation Equation Frequency Deviation For 2.5V Supply For 3.3V Supply
Specification
12MHz < CLKIN < 30MHz 12MHz < CLKIN < 30MHz FIN/640 -1.5% (Typ) @ 66MHz Output
Low Power 4X Multiplier EMI Reduction IC
Notice: The information in this document is subject to change without notice.
2 of 8
November 2006 rev 1.1
Absolute Maximum Ratings Symbol
VDD, VIN TSTG TA Ts TJ TDV Storage temperature Operating temperature Max. Soldering Temperature (10 sec) Junction Temperature Static Discharge Voltage (As per JEDEC STD22- A114-B)
ASM3P2274A
Parameter Rating
-0.5 to +4.6 -65 to +125 -40 to +85 260 150 2
Unit
V C C C C KV
Voltage on any pin with respect to Ground
Note: These are stress ratings only and are not implied for functional use. Exposure to absolute maximum ratings for prolonged periods of time may affect device reliability.
DC Electrical Characteristics for 2.5V Supply
(Test condition: All parameters are measured at room temperature (+25C) unless otherwise stated)
Symbol
VIL VIH IIL IIH IXOL IXOH VOL VOH IDD ICC VDD tON ZOUT Input low voltage Input high voltage Input low current Input high current
Parameter
Min
VSS - 0.3 2.0 1.8 2.375 -
Typ
3 3 3.0 2.5 50
Max
0.8 VDD + 0.3 -35 35 0.6 2 2.625 5 -
Unit
V V A A mA mA V V uA mA V mS
XOUT output low current (@0.5V, VDD=2.5V) XOUT output high current (@1.8V, VDD=2.5V) Output low voltage (VDD = 2.5V, IOL = 8 mA) Output high voltage (VDD = 2.5V, IOH = 8 mA) Static supply current* Dynamic supply current (2.5V, 66MHz and no load) Operating voltage Power-up time (first locked cycle after power-up)** Output impedance
* XIN /CLKIN pin and PD pin are pulled low ** VDD and XIN/CLKIN input are stable, PD pin is made high from low.
AC Electrical Characteristics for 2.5V Supply Symbol
CLKIN ModOUT fd tLH* tHL* tJC tD Input frequency Output frequency Frequency Deviation Output Frequency = 48MHz Output Frequency = 120MHz
Parameter
Min
12 48 0.5 0.4 40
Typ
-1.6 -1.4 2.0 1.0 360 50
Max
30 120 2.3 1.2 60
Unit
MHz MHz % nS nS pS %
Output rise time (measured from 0.7V to 1.7V) Output fall time (measured from 1.7V to 0.7V) Jitter (Cycle to cycle) Output duty cycle
* tLH and tHL are measured into a capacitive load of 15pF
Low Power 4X Multiplier EMI Reduction IC
Notice: The information in this document is subject to change without notice.
3 of 8
November 2006 rev 1.1
DC Electrical Characteristics for 3.3V Supply
(Test condition: All parameters are measured at room temperature (+ 25C) unless otherwise stated)
ASM3P2274A
Symbol
VIL VIH IIL IIH IXOL IXOH VOL VOH IDD ICC VDD tON ZOUT Input low voltage Input high voltage Input low current Input high current
Parameter
Min
VSS - 0.3 2.0 2.5 3.0 -
Typ
3 3 4.0 3.3 45
Max
0.8 VDD + 0.3 -35 35 0.4 2 3.6 5 -
Unit
V V A A mA mA V V uA mA V mS
XOUT output low current (@0.4V, VDD=3.3V) XOUT output high current (@2.5V, VDD=3.3V) Output low voltage (VDD = 3.3V, IOL = 8 mA) Output high voltage (VDD = 3.3V, IOH = 8 mA) Static supply current* Dynamic supply current (3.3V, 66MHz and no load) Operating voltage Power-up time (first locked cycle after power-up)** Output impedance
* XIN /CLKIN pin and PD pin are pulled low ** VDD and XIN/CLKIN input are stable, PD pin is made high from low.
AC Electrical Characteristics for 3.3V Supply Symbol
CLKIN ModOUT fd tLH* tHL * tJC tD Input frequency Output frequency Frequency Deviation Output Frequency = 48MHz Output Frequency = 120MHz
Parameter
Min
12 48 0.4 0.4 40
Typ
-1.6 -1.4 1.3 0.8 360 50
Max
30 120 1.6 1.1 60
Unit
MHz MHz % nS nS pS %
Output rise time (measured from 0.8 to 2.0V) Output fall time (measured at 2.0V to 0.8V) Jitter (Cycle to cycle) Output duty cycle
*tLH and tHL are measured into a capacitive load of 15pF
Low Power 4X Multiplier EMI Reduction IC
Notice: The information in this document is subject to change without notice.
4 of 8
November 2006 rev 1.1
Typical Crystal Oscillator Circuit
ASM3P2274A
200K
Crystal
R1 = 510
C1 = 27 pF
C2 = 27 pF
Typical Crystal Specifications Fundamental AT cut parallel resonant crystal
Nominal frequency Frequency tolerance Operating temperature range Storage temperature Load capacitance Shunt capacitance ESR 14.31818MHz 50 ppm or better at 25C -25C to +85C -40C to +85C 18pF 7pF maximum 25
Low Power 4X Multiplier EMI Reduction IC
Notice: The information in this document is subject to change without notice.
5 of 8
November 2006 rev 1.1
Package Information 6-pin TSOT-23 Package
ASM3P2274A
Dimensions Symbol Min
A A1 A2 b H D B e C L 0.00 0.033 0.012
Inches Max
0.04 0.004 0.036 0.02
Millimeters Min Max
1.00 0.00 0.84 0.30 0.127 BSC 2.90 BSC 1.60 BSC 0.950 BSC 2.80 BSC 0.30 0 0.50 4 0.10 0.90 0.50
0.005 BSC 0.114 BSC 0.06 BSC 0.0374 BSC 0.11 BSC 0.0118 0 0.02 4
Low Power 4X Multiplier EMI Reduction IC
Notice: The information in this document is subject to change without notice.
6 of 8
November 2006 rev 1.1
Ordering Information Part Number
ASM3P2274AG-06-OR ASM3I2274AG-06-OR
ASM3P2274A
Marking
Z3 Z6
Package Type
6-Pin TSOT-23, TAPE & REEL, Green 6-Pin TSOT-23, TAPE & REEL, Green
Temperature
Commercial Industrial
Device Ordering Information
ASM3P2274AF-06-0R
R = Tape & Reel, T = Tube or Tray O = TSOT23 S = SOIC T = TSSOP A = SSOP V = TVSOP B = BGA Q = QFN U = MSOP E = TQFP L = LQFP U = MSOP P = PDIP D = QSOP X = SC-70 J=TSOT26
DEVICE PIN COUNT F = LEAD FREE AND RoHS COMPLIANT PART G = GREEN PACKAGE, LEAD FREE, and RoHS PART NUMBER X= Automotive I= Industrial P or n/c = Commercial (-40C to +125C) (-40C to +85C) (0C to +70C) 1 = Reserved 2 = Non PLL based 3 = EMI Reduction 4 = DDR support products 5 = STD Zero Delay Buffer 6 = Power Management 7 = Power Management 8 = Power Management 9 = Hi Performance 0 = Reserved
PulseCore Semiconductor Mixed Signal Product
Licensed under U.S Patent Nos 5,488,627 and 5,631,921
Low Power 4X Multiplier EMI Reduction IC
Notice: The information in this document is subject to change without notice.
7 of 8
November 2006 rev 1.1
ASM3P2274A
PulseCore Semiconductor Corporation 1715 S. Bascom Ave Suite 200 Campbell, CA 95008 Tel: 408-879-9077 Fax: 408-879-9018 www.pulsecoresemi.com
Copyright (c) PulseCore Semiconductor All Rights Reserved Part Number: ASM3P2274A Document Version: v1.1
Note: This product utilizes US Patent # 6,646,463 Impedance Emulator Patent issued to PulseCore Semiconductor, dated 11-11-2003
(c) Copyright 2006 PulseCore Semiconductor Corporation. All rights reserved. Our logo and name are trademarks or registered trademarks of PulseCore Semiconductor. All other brand and product names may be the trademarks of their respective companies. PulseCore reserves the right to make changes to this document and its products at any time without notice. PulseCore assumes no responsibility for any errors that may appear in this document. The data contained herein represents PulseCore's best data and/or estimates at the time of issuance. PulseCore reserves the right to change or correct this data at any time, without notice. If the product described herein is under development, significant changes to these specifications are possible. The information in this product data sheet is intended to be general descriptive information for potential customers and users, and is not intended to operate as, or provide, any guarantee or warrantee to any user or customer. PulseCore does not assume any responsibility or liability arising out of the application or use of any product described herein, and disclaims any express or implied warranties related to the sale and/or use of PulseCore products including liability or warranties related to fitness for a particular purpose, merchantability, or infringement of any intellectual property rights, except as express agreed to in PulseCore's Terms and Conditions of Sale (which are available from PulseCore). All sales of PulseCore products are made exclusively according to PulseCore's Terms and Conditions of Sale. The purchase of products from PulseCore does not convey a license under any patent rights, copyrights; mask works rights, trademarks, or any other intellectual property rights of PulseCore or third parties. PulseCore does not authorize its products for use as critical components in life-supporting systems where a malfunction or failure may reasonably be expected to result in significant injury to the user, and the inclusion of PulseCore products in such life-supporting systems implies that the manufacturer assumes all risk of such use and agrees to indemnify PulseCore against all claims arising from such use.
Low Power 4X Multiplier EMI Reduction IC
Notice: The information in this document is subject to change without notice.
8 of 8


▲Up To Search▲   

 
Price & Availability of ASM3P2274A

All Rights Reserved © IC-ON-LINE 2003 - 2022  

[Add Bookmark] [Contact Us] [Link exchange] [Privacy policy]
Mirror Sites :  [www.datasheet.hk]   [www.maxim4u.com]  [www.ic-on-line.cn] [www.ic-on-line.com] [www.ic-on-line.net] [www.alldatasheet.com.cn] [www.gdcy.com]  [www.gdcy.net]


 . . . . .
  We use cookies to deliver the best possible web experience and assist with our advertising efforts. By continuing to use this site, you consent to the use of cookies. For more information on cookies, please take a look at our Privacy Policy. X