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  1 SY58011U micrel, inc. m9999-020207 hbwhelp@micrel.com or (408) 955-1690 1 description      precision 1:2, 400mv cml fanout buffer      guaranteed ac performance over temperature/ voltage: > 7ghz f max clock < 60ps t r /t f times < 250ps t pd < 15ps max. skew      low jitter performance: < 10ps pp total jitter (clock) < 1ps rms random jitter (data) < 10ps pp deterministic jitter (data)      accepts an input signal as low as 100mv      unique input termination and v t pin accepts dc- coupled and ac-coupled differential inputs: lvpecl, lvds, and cml      50 ? source terminated cml outputs      power supply 2.5v 5% and 3.3v 10%      industrial temperature range: ?0 c to +85 c      available in 16-pin (3mm 3mm) mlf package features 7ghz, 1:2 cml fanout buffer/translator with internal i/o termination precision edge SY58011U applications  all sonet and gige clock distribution  fibre channel clock and data distribution  backplanes  data distribution: oc-48, oc-48+fec, xaui  high-end, low skew, multiprocessor synchronous clock distribution rev.: d amendment: /0 issue date: february 2007 the SY58011U is a 2.5v/3.3v precision, high-speed, fully differential 1:2 cml fanout buffer. optimized to provide two identical output copies with less than 15ps of skew and less than 10ps (pk-pk) total jitter, the SY58011U can process clock signals as fast as 7ghz or data patterns up to 10.7gbps. the differential input includes micrel? unique, 3-pin input termination architecture that interfaces to lvpecl, lvds, or cml differential signals, (ac-coupled or dc-coupled) as small as 100mv without any level-shifting or termination resistor networks in the signal path. for ac-coupled input interface applications, an on-board output reference voltage (v ref -ac) is provided to bias the v t pin. the outputs are compatible with 400mv typical swing into 50 ? loads, with extremely fast rise/fall times guaranteed to be less than 60ps. the SY58011U operates from a 2.5v 5% supply or 3.3v 10% supply and is guaranteed over the full industrial temperature range (?0 c to +85 c). for applications that require lvpecl outputs, consider the sy58012u or sy58013u 1:2 fanout buffer with 800mv and 400mv output swing, respectively. the SY58011U is part of micrel? high- speed, precision edge product line. data sheets and support documentation can be found on micrel? web site at www.micrel.com. functional block diagram typical performance precision edge is a registered trademark of micrel, inc. micro leadframe and mlf are registered trademarks of amkor technology, inc. in /in q1 /q1 q0 /q0 v t 50 ? 50 ? v ref -ac 2ghz output time (70ps/div.) output swing (100mv/div.) v cc = 2.5v 2ghz with 100mv input precision edge
2 SY58011U micrel, inc. m9999-020207 hbwhelp@micrel.com or (408) 955-1690 package/ordering information pin number pin name pin function 1, 4 in, /in differential input: this input pair is the signal to be buffered. each pin of this pair internally terminates with 50 ? to the v t pin. note that this input will default to an indeterminate state if left open. see input interface applications section. 2 vt input termination center-tap: each input terminates to this pin. the v t pin provides a center-tap for each input (in, /in) to a termination network for maximum interface flexibility. see input interface applications section. 3 vref-ac reference output voltage: this output biases to v cc 1.2v. it is used when ac-coupling the inputs (in, /in). connect v ref -ac directly to the v t pin. bypass with 0.01 f low esr capacitor to v cc . maximum current source or sink is 0.5ma. see input interface applica tions section. 5, 8, 13, 16 vcc positive power supply: bypass with 0.1 f//0.01 f low esr capacitors as close to the v cc pins as possible. 6, 7, 14, 15 gnd, ground. exposed pad must be connected to a ground plane that is the same potential (exposed pad) as the ground pin. 12, 11 q0, /q0, cml differential output pairs: differential buffered output copy of the input signal. the 9, 10 q1, /q1 output swing is typically 400mv. unused output pairs may be left floating with no impact on jitter. see cml output termination section. pin description 13 14 15 16 12 11 10 9 1 2 3 4 8 7 6 5 in vt vref-ac /in q0 /q0 /q1 q1 vcc gnd gnd vcc vcc gnd gnd vcc 16-pin mlf (mlf-16) ordering information (1) package operating package lead part number type range marking finish SY58011Umi mlf-16 industrial 011u sn-pb SY58011Umitr (2) mlf-16 industrial 011u sn-pb SY58011Umg (3) mlf-16 industrial 011u with pb-free pb-free bar-line indicator nipdau SY58011Umgtr (2, 3) mlf-16 industrial 011u with pb-free pb-free bar-line indicator nipdau notes: 1. contact factory for die availability. dice are guaranteed at t a = 25 c, dc electricals only. 2. tape and reel. 3. pb-free package recommended for new designs.
3 SY58011U micrel, inc. m9999-020207 hbwhelp@micrel.com or (408) 955-1690 absolute maximum ratings (note 1) power supply voltage (v cc ) ....................... 0.5v to +4.0v input voltage (v in ) ......................................... 0.5v to v cc cml output voltage (v out ) ........... v cc 1.0v to v cc +0.5v current (v t ) source or sink current on v t pin ........................ 100ma input current source or sink current on in, /in .......................... 50ma current (v ref ) source or sink current on v ref -ac, note 4 ........ 1.5ma lead temperature soldering, (20 seconds) .............. 260 c storage temperature range (t store ) .... 65 c to +150 c operating ratings (note 2) supply voltage (v cc ) ............................ +2.375v to +3.60v operating temperature range (t a ) ........... 40 c to +85 c package thermal resistance, note 3 mlf ( ja ) still-air ............................................................. 60 c/w 500lfpm ............................................................ 54 c/w mlf ( jb ) .......................................................... 33 c/w t a = 40 c to +85 c symbol parameter condition min typ max units v cc power supply voltage 2.375 3.60 v i cc power supply current max. v cc , no load 75 95 ma v ih input high voltage in, /in v cc 1.2 v cc v v il input low voltage in, /in 0 v ih 0.1 v v in input voltage swing see figure 1a. 0.1 1.7 v v diff_in differential input voltage swing see figure 1b. 0.2 3.4 v r in into v t resistance 40 50 60 ? v ref -ac output reference voltage v cc 1.3 v cc 1.2 v cc 1.1 v in to v t 1.28 v dc electrical characteristics (note 5) v cc = 3.3v 10% or 2.5v 5%; t a = 40 c to +85 c; r l = 100 ? across each output pair, or equivalent, unless otherwise stated. symbol parameter condition min typ max units v oh output high voltage q0, /q0, q1, /q1 v cc 0.020 v cc 0.010 v cc v v out output voltage swing q0, /q0, q1, /q1; see figure 1a 325 400 mv v diff_out differential output voltage swing q0, /q0, q1, /q1; see figure 1b 650 800 mv r out output source impedance q0, /q0, q1, /q1 40 50 60 ? notes: 1. permanent device damage may occur if absolute maximum ratings are exceeded. this is a stress rating only and functional operat ion is not implied at conditions other than those detailed in the operational sections of this data sheet. exposure to absolute maximum r atings conditions for extended periods may affect device reliability. 2. the data sheet limits are not guaranteed if the device is operated beyond the operating ratings. 3. thermal performance assumes exposed pad is soldered (or equivalent) to the device s most negative potential (gnd) on the pcb. 4. due to the limited drive capability, use for input of the same package only. 5. the circuit is designed to meet the dc specifications shown in the above table after thermal equilibrium has been established. cml dc electrical characteristics (note 5)
4 SY58011U micrel, inc. m9999-020207 hbwhelp@micrel.com or (408) 955-1690 v cc = 2.5v 5% or 3.3v 10%; t a = 40 c to +85 c; r l = 100 ? across each output pair, or equivalent, unless otherwise stated. symbol parameter condition min typ max units f max maximum operating frequency nrz data 10.7 gbps v out 200mv clock 7 8 ghz t pd propagation delay v in 100mv 100 170 250 ps t chan channel-to-channel skew note 8 315ps t skew part-to-part skew note 9 100 ps t jitter data random jitter (rj) note 10 1ps rms deterministic jitter (dj) note 11 10 ps pp clock cycle-to-cycle jitter note 12 1ps rms total jitter (tj) note 13 10 ps pp t r , t f output rise/fall time 20% to 80% at full output swing 20 40 60 ps notes: 7. high frequency ac electricals are guaranteed by design and characterization. 8. skew is measured between outputs of the same bank under identical transitions. 9. skew is defined for two parts with identical power supply voltages at the same temperature and with no skew of the edges at the respective inputs. 10. rj is measured with a k28.7 comma detect character pattern, measured at 10.7gbps and 2.5gbps/3.2gbps. 11. dj is measured at 10.7gbps and 2.5gbps/3.2gbps with both k28.5 and 2 23 1 prbs pattern 12. cycle-to-cycle jitter definition: the variation of periods between adjacent cycles, t n t n 1 where t is the time between rising edges of the output signal. 13. total jitter definition: with an ideal clock input of frequency f max , no more than one output edge in 10 12 output edges will deviate by more than the specified peak-to-peak jitter value. ac electrical characteristics (note 7) timing diagram single-ended and differential swings v in , v out (typ. 400mv) figure 1a. single-ended voltage swing v diff_in , v diff_out (typ. 800mv) figure 1b. differential voltage swing /in in /q q t pd
5 SY58011U micrel, inc. m9999-020207 hbwhelp@micrel.com or (408) 955-1690 0 50 100 150 200 250 300 350 400 450 500 0 2000 4000 6000 8000 10000 12000 amplitude (mv) frequency (mhz) frequenc y vs. amplitude typical operating characteristics v cc = 3.3v, gnd = 0, v in = 100mv, t a = 25 c, unless otherwise stated. 0 1 2 3 4 5 6 7 8 9 10 -40 -20 0 20 40 60 80 100 within-device skew (ps) temperature ( c) within-device skew vs. temperature 150 152 154 156 158 160 162 0 200 400 600 800 1000 propagation delay (ps) input voltage swing (v) propagation delay vs. input volta g e swin g 125 130 135 140 145 150 155 160 165 170 175 180 185 -40 -20 0 20 40 60 80 100 propagation delay (ps) temperature ( c) propagation delay vs. temperature v in 200mv
6 SY58011U micrel, inc. m9999-020207 hbwhelp@micrel.com or (408) 955-1690 functional characteristics v cc = 2.5v, gnd = 0, v in = 100mv, t a = 25 c, unless otherwise stated. 2ghz output time (70ps/div.) output swing (100mv/div.) v cc = 2.5v 7ghz output time (20ps/div.) output swing (100mv/div.) 200mhz output time (600ps/div.) output swing (100mv/div.)
7 SY58011U micrel, inc. m9999-020207 hbwhelp@micrel.com or (408) 955-1690 input interface applications cml in /in vt nc SY58011U v cc v cc v ref -ac nc figure 3a. dc-coupled cml input interface (option: may connect v t to v cc ) lvpecl in /in vt SY58011U v cc r pd v cc v ref -ac nc 0.01 m f note: for v cc = 2.5v system, r pd =19 w for v cc = 3.3v system, r pd =50 w figure 3c. lvpecl input interface in /in vt SY58011U v cc v cc v cc 0.01 m f r pd r pd v ref -ac lvpecl note: r pd = 100 w for a 3.3v system r pd =50 w for a 2.5v system figure 3d. ac-coupled lvpecl input interface lvds in /in vt nc SY58011U v cc v cc v ref -ac nc figure 3e. lvds input interface cml in /in vt 0.01 m f SY58011U v cc v cc v cc v ref -ac figure 3b. ac-coupled cml input interface input stage gnd v cc /in 50 w in v t 50 w figure 2. simplified differential input buffer
8 SY58011U micrel, inc. m9999-020207 hbwhelp@micrel.com or (408) 955-1690 part number function data sheet link SY58011U 7ghz, 1:2 cml fanout buffer/translator with http://www.micrel.com/product-info/products/SY58011U.shtml internal i/o termination sy58012u 5ghz, 1:2 lvpecl fanout buffer/translator with http://www.micrel.com/product-info/products/sy58012u.shtml internal input termination sy58013u 6ghz, 1:2 fanout buffer/translator with 400mv http://www.micrel.com/product-info/products/sy58013u.shtml lvpecl outputs and internal input termination 16-mlf manufacturing guidelines www.amkor.com/products/notes_papers/mlf_appnote_0902.pdf exposed pad application note hbw solutions http://www.micrel.com/product-info/as/solutions.shtml related micrel products and support documentation cml output termination figure 4 and figure 5 illustrates how to terminate a cml output using both the ac-coupled and dc-coupled configuration. all outputs of the sy58011 are 50 ? with a 16ma current source. gnd v cc 50 w 50 w z o= 50 w 16ma q /q z o= 50 w 100 w figure 4. cml dc-coupled termination gnd v cc 50 w 50 w 50 w 16ma dc-bias per application 50 w q /q figure 5. cml ac-coupled termination
9 SY58011U micrel, inc. m9999-020207 hbwhelp@micrel.com or (408) 955-1690 16-pin micro leadframe (mlf-16) package ep- exposed pad die compside island heat dissipation heavy copper plane heavy copper plane v ee v ee heat dissipation pcb thermal consideration for 16-pin mlf package (always solder, or equivalent, the exposed pad to the pcb) package notes: 1. package meets level 2 qualification. 2. all parts are dry-packaged before shipment. 3. exposed pads must be soldered to a ground for proper thermal management. micrel, inc. 2180 fortune drive san jose, ca 95131 usa tel + 1 (408) 944-0800 fax + 1 (408) 474-1000 web http://www.micrel.com the information furnished by micrel in this datasheet is believed to be accurate and reliable. however, no responsibility is as sumed by micrel for its use. micrel reserves the right to change circuitry and specifications at any time without notification to the customer. micrel products are not designed or authorized for use as components in life support appliances, devices or systems where malfu nction of a product can reasonably be expected to result in personal injury. life support devices or systems are devices or systems that (a) are intend ed for surgical implant into the body or (b) support or sustain life, and whose failure to perform can be reasonably expected to result in a significant inj ury to the user. a purchaser s use or sale of micrel products for use in life support appliances, devices or systems is at purchaser s own risk and purchaser agrees to fully indemnify micrel for any damages resulting from such use or sale. ? 2005 micrel, incorporated.


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