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Single Serial Input Frequency Synthesizer On-chip Prescaler MB15E
Top Searches for this datasheetDS04-21359-4Ea Single Serial Input Frequency Synthesizer On-chip Prescaler MB15E03SL DESCRIPTION Fujitsu Microelectronics MB15E03SL serial input Phase Locked Loop (PLL) frequency synthesizer with prescaler. prescaler dual modulus division ratio 64/65 128/129 enabling pulse swallowing operation. supply voltage range between MB15E03SL uses latest BiCMOS process, result, supply current typically refined charge pump supplies well balanced output currents charge pump current selectable serial data. MB15E03SL ideally suited wireless mobile communications, such GSM. FEATURES High frequency operation: power supply voltage: Ultra power supply current: typ. (VCC +25°C, locking state) typ. (VCC +25°C, locking state) Direct power saving function: Power supply current power saving mode Typ. (VCC +25°C), Max. (VCC Dual modulus prescaler: 64/65 128/129 Serial input 14-bit programmable reference divider: 16,383 Serial input programmable divider consisting Binary 7-bit swallow counter: Binary 11-bit programmable counter: 2,047 Selectable charge pump current On-chip phase control phase comparator Operating temperature: +85°C compatible with MB15E03, MB15E03L Copyright©2000-2008 FUJITSU MICROELECTRONICS LIMITED rights reserved 2000.2 MB15E03SL PACKAGES 16-pin plastic SSOP 16-pad plastic (FPT-16P-M05) (LCC-16P-M06) ASSIGNMENTS 16-pin SSOP VIEW LD/fout Data Clock OSCOUT Xfin 16-pad OSCIN VIEW LD/fout Data OSCIN OSCOUT Xfin Clock (FPT-16P-M05) (LCC-16P-M06) MB15E03SL DESCRIPTION SSOP-16 BCC-16 Name OSCIN OSCOUT Xfin Clock Data Descriptions Programmable reference divider input. Oscillator input connection TCXO. Oscillator output. Power supply voltage input charge pump. Power supply voltage input. Charge pump output. Phase charge pump selected programming bit. Ground. Prescaler complementary input which should grounded capacitor. Prescaler input. Connection external should done coupling. Clock input 19-bit shift register. Data shifted into shift register rising edge clock. (Open prohibited.) Serial data input using binary code. last data control bit. (Open prohibited.) Load enable signal input. (Open prohibited.) When high, data shift register transferred latch according control serial data. Power saving mode control. This must Power-ON. (Open prohibited.) "H"; Normal mode "L"; Power saving mode Forced high-impedance control charge pump (with internal pull resistor.) "H"; Normal output. "L"; becomes high impedance. Lock detect signal output (LD)/phase comparator monitoring output (fout). output signal selected programming bit. "H"; outputs fout (fr/fp monitoring output) "L"; outputs ("H" locking, unlocking.) Phase comparator N-channel open drain output external charge pump. Phase selected programming bit. Phase comparator CMOS output external charge pump. Phase selected programming bit. LD/fout MB15E03SL BLOCK DIAGRAM (16) OSCIN Reference oscillator circuit Phase comparator (15) OSCOUT Binary 14-bit reference counter 14-bit latch Lock detector (14) 4-bit latch LD/fr/fp selector (13) LD/fout 19-bit shift register (12) Current switch Charge pump 7-bit latch Binary 7-bit swallow counter 11-bit latch Binary 11-bit programmable counter Intermittent mode control (power save) (11) 1-bit cotrol latch Xfin Prescaler (10) Data Clock SSOP MB15E03SL ABSOLUTE MAXIMUM RATINGS Parameter Power supply voltage Input voltage Output voltage Storage temperature Symbol Tstg Condition Except Rating Min. -0.5 -0.5 Max. +0.5 +125 Unit Remark WARNING: Semiconductor devices permanently damaged application stress (voltage, current, temperature, etc.) excess absolute maximum ratings. exceed these ratings. RECOMMENDED OPERATING CONDITIONS Parameter Power supply voltage Input voltage Operating temperature Symbol Value Min. Typ. Max. Unit Remark WARNING: recommended operating conditions required order ensure normal operation semiconductor device. device's electrical characteristics warranted when device operated within these ranges. Always semiconductor devices within their recommended operating condition ranges. Operation outside these ranges adversely affect reliability could result device failure. warranty made with respect uses, operating conditions, combinations represented data sheet. Users considering application outside listed conditions advised contact their representatives beforehand. MB15E03SL ELECTRICAL CHARACTERISTICS (VCC +85°C) Parameter Power supply current*1 Power saving current Operating frequency OSCIN fin*3 OSCIN*3 level input voltage level input voltage level input current level input current level input current level input current level input current level input current Data, Clock, Data, Clock, OSCIN Symbol fOSC Pfin VOSC IIH*4 IIL*4 IL*4 Condition (VCC open system (Refer Measurment circuit.) Pull input Open drain output IDOH -0.5 IDOL VOFF Open drain output VP/2 +25°C Value Min. -1.0 -1.0 -100 -1.0 -100 Typ. (2.5) 0.1*2 -6.0 -1.5 Max. 1200 +1.0 +1.0 +100 +1.0 -1.0 Unit Vp-p Input sensitivity IIH*4 IL*4 level output voltage level output voltage level output voltage LD/fout level output voltage level output voltage VDOH VDOL IOFF IDOH*4 High impedance cutoff current level output current level output current level output current LD/fout level output current level output current IDOL IDOL/IDOH IDOMT*5 VP/2 Charge pump current rate IDOVD*6 IDOTA*7 40°C +85°C (Continued) MB15E03SL (Continued) Conditions; 1200 MHz, fosc MHz, +25°C, locking state. fosc 12.8 MHz, +25°C, power saving mode coupling. 1000 capacitor connected under condition min. operating frequency. symbol (minus) means direction current flow. +25°C (|I3| |I4|) [(|I3| |I4|) 100(%) +25°C [(|I2| |I1|) [(|I1| |I2|) 100(%) (Applied each IDOL, IDOH) VP/2 (|IDO(+85°C) IDO(-40°C)| (|IDO(+85°C) IDO(-40°C)| 100(%) (Applied each IDOL, IDOH) IDOL IDOH VP/2 Charge Pump Output Voltage MB15E03SL FUNCTIONAL DESCRIPTION Pulse Swallow Function divide ratio calculated using following equation: fVCO fOSC fVCO Output frequency external voltage controlled oscillator (VCO) Preset divide ratio binary 11-bit programmable counter 2,047) Preset divide ratio binary 7-bit swallow counter 127) fOSC Output frequency reference frequency oscillator Preset divide ratio binary 14-bit programmable reference counter 16,383) Preset divide ratio dual modulus prescaler 128) Serial Data Input Serial data processed using Data, Clock, pins. Serial data controls programmable reference divider programmable divider separately. Binary serial data entered through Data pin. data shifted into shift register rising edge Clock. When taken high, stored data latched according control data follows: Table Control Control (CNT) Shift Register Configuration Programmable Reference Counter Data Flow Destination Serial Data programmable reference divider programmable divider Control Divide ratio setting programmable reference counter 16,383) Divide ratio setting prescaler (64/65 128/129) Phase control phase comparator LD/fout signal select Charge pump current select [Table [Table [Table [Table [Table [Table Note: Start data input with first. MB15E03SL Programmable Counter Data Flow Control N11: Divide ratio setting bits programmable counter 2,047) Divide ratio setting bits swallow counter 127) Note: Start data input with first. [Table [Table [Table Table Binary 14-bit Programmable Reference Counter Data Setting Divide ratio 16383 Note: Divide ratio less than prohibited. Table Binary 11-bit Programmable Counter Data Setting Divide ratio 2047 Note: Divide ratio less than prohibited. MB15E03SL Table Binary 7-bit Swallow Counter Data Setting Divide ratio Table Prescaler Data Setting Prescaler Divide Ratio 64/65 128/129 Table Charge Pump Current Setting Current Value ±6.0 ±1.5 Table LD/fout Output Select Data Setting fout signal signal LD/fOUT Output Signal Relation between Input Phase Characteristics changes phase characteristics phase comparator. Both internal charge pump output level (DO) phase comparator output reversed according bit. Also, monitor (fout) output controlled bit. relationship between each shown below. Table Data Setting (LDS "H") High fout LD/fout fout LD/fout High impedance MB15E03SL When designing synthesizer, setting depends characteristics. When characteristics similar (1), high. When characteristics similar (2), low. Output Frequency Output Voltage Output Control Table Setting Normal output High impedance output MB15E03SL Power Saving Mode (Intermittent Mode Control Circuit) Table Setting Normal mode Power saving mode Status intermittent mode control circuit reduces power consumption. setting low, device enters into power saving mode, reducing current consumption. Electrical Characteristics chart specific value. phase detector output, becomes high impedance. signal PLL, lock detector, remains high, indicating locked condition. Setting high, releases power saving mode, device works normally. intermittent mode control circuit also ensures smooth startup when device returns normal operation. When returned normal operation, phase comparator output signal unpredictable. This because unknown relationship between comparison frequency (fp) reference frequency (fr) which cause major change comparator output, resulting frequency jump increase lockup time. prevent major frequency jump, intermittent mode control circuit limits magnitude error signal from phase detector when returns normal operation. Notes: power (VCC) first applied, device must standby mode, Low, least must Power-ON. Clock Data (power saving mode) Power serial data later after power supply remains stable (VCC Release power saving mode (PS: "H") later after setting serial data. MB15E03SL SERIAL DATA INPUT TIMING data Control Data Clock Invalid data data rising edge clock, data transferred into shift register. Parameter Min. Typ. Max. Unit Parameter Min. Typ. Max. Unit Note: should when data transferred into shift register. MB15E03SL PHASE COMPARATOR OUTPUT WAVEFORM "H"] "L"] Phase error detection range: Pulses output signal during locked state output prevent dead zone. output becomes when phase more. output becomes high when phase error less continues three cycles more. depend OSCIN input frequency. 2/fosc 156.3 fosc 12.8 MHz) 4/fosc 312.5 fosc 12.8 MHz) becomes high during power saving mode "L"). MB15E03SL MEASURMENT CIRCUIT (for Measuring Input Sensitivity fin/OSCIN) 1000 1000 S.G. Xfin OSCOUT OSCIN 1000 S.G. Oscilloscope Clock Data Controller (setting divide ratio) LD/fout Note: 16-pin SSOP MB15E03SL TYPICAL CHARACTERISTICS input sensitivity Input sensitivity Input frequency (Prescaler 64/65) Input sensitivity Pfin (dBm) 1000 Input frequency (MHz) 1500 2000 ;;;;;;;;;;;;;;; ;;;;;;;;;;;;;;; ;;;;;;;;;;;;;;; SPEC OSCIN input sensitivity Input sensitivity VOSC (dBm) ;;;;; ;;;;; SPEC Input sensitivity Input frequency Input frequency fOSC (MHz) MB15E03SL output current mode 10.00 Charge pump output current (mA) 2.000 /div 10.00 .6000/div Charge pump output voltage 4.800 mode 10.00 Charge pump output current (mA) 2.000 /div 10.00 .6000/div Charge pump output voltage 4.800 MB15E03SL input impedance 297.63 -656.53 24.523 -185.55 9.3789 -77.168 10.188 -33.143 START 100.000 STOP 200.000 OSCIN input impedance 9.063 -3.113 3.8225 -4.6557 1.5735 -3.2154 405.69 -1.8251 START 3.000 STOP 40.000 MB15E03SL REFERENCE INFORMATION S.G. OSCIN Spectrum Analyzer fVCO 810.425 MHz/V fOSC 14.4 current: 4700 47000 1500 (Continued) MB15E03SL Reference Leakage ATTEN 79.83 25.0 79.8 +25°C CENTER 810.42500 SPAN 200.0 1.00 Phase Noise ATTEN 53.00 2.23 73.0 dBc/Hz +25°C CENTER 810.42500 SPAN 20.00 3.00 (Continued) MB15E03SL (Continued) Lock Time 810.425 826.425±1 1.40 850.00500 860.00000 Lock Time 826.425 810.425±1 1.52 10.00000 Hz/div 10.00000 Hz/div 810.00000 5.0000000 810.00000 5.0000000 830.00500 830.00500 2.00 KHz/div 2.00 KHz/div 829.99500 5.0000000 829.99500 5.0000000 MB15E03SL APPLICATION EXAMPLE Output Lock detect. From controller LD/fout Data Clock MB15E03SL OSCIN OSCOUT Xfin 1000 1000 1000 TCXO SSOP-16 case using crystal resonator, necessary optimize matching between crystal this LSI, perform detailed system evaluation. recommended consult with supplier crystal resonator. (Reference oscillator circuit provides bias, feedback resistor (typ).) MB15E03SL USAGE PRECAUTIONS protect against damage electrostatic discharge, note following handling precautions: -Store transport devices conductive containers. -Use properly grounded workstations, tools, equipment. -Turn power before inserting device into removing device from socket. -Protect leads with conductive sheet when transporting board-mounted device. ORDERING INFORMATION Part number MB15E03SLPFV1 MB15E03SLPV1 Package 16-pin, Plastic SSOP (FPT-16P-M05) 16-pad, Plastic (LCC-16P-M06) Remarks MB15E03SL PACKAGE DIMENSIONS 16-pin, Plastic SSOP (FPT-16P-M05) Note These dimensions include resin protrusion. Note Pins width pins thickness include plating thickness. 5.00±0.10(.197±.004) 0.17±0.03 (.007±.001) 4.40±0.10 INDEX 6.40±0.20 (.173±.004) (.252±.008) Details part 1.25 -0.10 .049 -.004 LEAD +0.20 +.008 (Mounting height) 0.65(.026) 0.24±0.08 (.009±.003) 0.13(.005) 0~8° 0.10±0.10 (Stand off) (.004±.004) 0.25(.010) 0.10(.004) 0.50±0.20 (.020±.008) 0.45/0.75 (.018/.030) 1999 FUJITSU LIMITED F16013S-3C-5 Dimensions (inches) (Continued) MB15E03SL (Continued) 16-pad, Plastic (LCC-16P-M06) 4.55±0.10 (.179±.004) 0.80(.031)MAX Mounting height 0.40±0.10 (.016±.004) 0.80(.031) 0.65(.026) 3.40(.134)TYP 0.325±0.10 (.013±.004) INDEX AREA 3.40±0.10 (.134±.004) 2.45(.096) 1.15(.045) 0.075±0.025 (.003±.001) (Stand off) 1.725(.068) Details part 0.75±0.10 (.030±.004) 0.05(.002) Details part 0.60±0.10 (.024±.004) 0.40±0.10 (.016±.004) 0.60±0.10 (.024±.004) 1999 FUJITSU LIMITED C16017S-1C-1 Dimensions (inches) MB15E03SL MEMO MB15E03SL MEMO FUJITSU MICROELECTRONICS LIMITED Shinjuku Dai-Ichi Seimei Bldg. 7-1, Nishishinjuku 2-chome, Shinjuku-ku, Tokyo 163-0722, Japan Tel: +81-3-5322-3347 Fax: +81-3-5322-3387 http://jp.fujitsu.com/fml/en/ further information please contact: North South America FUJITSU MICROELECTRONICS AMERICA, INC. 1250 Arques Avenue, Sunnyvale, 94085-5401, U.S.A. Tel: +1-408-737-5600 Fax: +1-408-737-5999 http://www.fma.fujitsu.com/ Europe FUJITSU MICROELECTRONICS EUROPE GmbH Pittlerstrasse 63225 Langen, Germany Tel: +49-6103-690-0 Fax: +49-6103-690-122 Korea FUJITSU MICROELECTRONICS KOREA LTD. KOSMO TOWER, 1002 Daechi-Dong, Kangnam-Gu,Seoul 135-280 Korea Tel: +82-2-3484-7100 Fax: +82-2-3484-7111 http://www.fmk.fujitsu.com/ Asia Pacific FUJITSU MICROELECTRONICS ASIA LTD. Lorong Chuan, #05-08 Tech Park, Singapore 556741 Tel: +65-6281-0770 Fax: +65-6281-0220 FUJITSU MICROELECTRONICS SHANGHAI CO., LTD. Rm.3102, Bund Center, No.222 Road(E), Shanghai 200002, China Tel: +86-21-6335-1560 Fax: +86-21-6335-1605 http://cn.fujitsu.com/fmc/ FUJITSU MICROELECTRONICS PACIFIC ASIA LTD. 10/F., World Commerce Centre, Canton Road Tsimshatsui, Kowloon Hong Kong Tel: +852-2377-0226 Fax: +852-2376-3269 http://cn.fujitsu.com/fmc/tw Rights Reserved. contents this document subject change without notice. Customers advised consult with sales representatives before ordering. information, such descriptions function application circuit examples, this document presented solely purpose reference show examples operations uses FUJITSU MICROELECTRONICS device; FUJITSU MICROELECTRONICS does warrant proper operation device with respect based such information. When develop equipment incorporating device based such information, must assume responsibility arising such information. FUJITSU MICROELECTRONICS assumes liability damages whatsoever arising information. information this document, including descriptions function schematic diagrams, shall construed license exercise intellectual property right, such patent right copyright, other right FUJITSU MICROELECTRONICS third party does FUJITSU MICROELECTRONICS warrant non-infringement third-party's intellectual property right other right using such information. FUJITSU MICROELECTRONICS assumes liability infringement intellectual property rights other rights third parties which would result from information contained herein. products described this document designed, developed manufactured contemplated general use, including without limitation, ordinary industrial use, general office use, personal use, household use, designed, developed manufactured contemplated accompanying fatal risks dangers that, unless extremely high safety secured, could have serious effect public, could lead directly death, personal injury, severe physical damage other loss (i.e., nuclear reaction control nuclear facility, aircraft flight control, traffic control, mass transport control, medical life support system, missile launch control weapon system), requiring extremely high reliability (i.e., submersible repeater artificial satellite). Please note that FUJITSU MICROELECTRONICS will liable against and/or third party claims damages arising connection with above-mentioned uses products. semiconductor devices have inherent chance failure. must protect against injury, damage loss from such failures incorporating safety design measures into your facility equipment such redundancy, fire protection, prevention over-current levels other abnormal operating conditions. Exportation/release products described this document require necessary procedures accordance with regulations Foreign Exchange Foreign Trade Control Japan and/or export control laws. company names brand names herein trademarks registered trademarks their respective owners. Edited Strategic Business Development Dept. 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