Part Number Hot Search : 
HMC941 2SK237 24LC00 IRFS710B LBN09006 NRA24T15 SRV05 MSZ5241
Product Description
Full Text Search
 

To Download MC14060BFELG Datasheet File

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


  Datasheet File OCR Text:
  ? semiconductor components industries, llc, 2005 february, 2005 ? rev. 7 1 publication order number: mc14060b/d mc14060b 14-bit binary counter and oscillator the mc14060b is a 14?stage binary ripple counter with an on?chip oscillator buffer. the oscillator configuration allows design of either rc or crystal oscillator circuits. also included on the chip is a reset function which places all outputs into the zero state and disables the oscillator. a negative transition on clock will advance the counter to the next state. schmitt trigger action on the input line permits very slow input rise and fall times. applications include time delay circuits, counter controls, and frequency dividing circuits. this device contains protection circuitry to guard against damage due to high static voltages or electric fields. however, precautions must be taken to avoid applications of any voltage higher than maximum rated voltages to this high?impedance circuit. for proper operation, v in and v out should be constrained to the range v ss  (v in or v out )  v dd . unused inputs must always be tied to an appropriate logic voltage level (e.g., either v ss or v dd ). unused outputs must be left open. features ? fully static operation ? diode protection on all inputs ? supply voltage range = 3.0 v to 18 v ? capable of driving two low?power ttl loads or one low?power schottky ttl load over the rated temperature range ? buffered outputs available from stages 4 through 10 and 12 through 14 ? common reset line ? pin?for?pin replacement for cd4060b ? pb?free packages are available* maximum ratings (voltages referenced to v ss ) symbol parameter value unit v dd dc supply voltage range ?0.5 to +18.0 v v in , v out input or output voltage range (dc or transient) ?0.5 to v dd +0.5 v i in , i out input or output current (dc or transient) per pin 10 ma p d power dissipation, per package (note 1) 500 mw t a ambient temperature range ?55 to +125 c t stg storage temperature range ?65 to +150 c t l lead temperature (8 second soldering) 260 c maximum ratings are those values beyond which device damage can occur. maximum ratings applied to the device are individual stress limit values (not normal operating conditions) and are not valid simultaneously. if these limits are exceeded, device functional operation is not implied, damage may occur and reliability may be affected. 1. temperature derating: plastic ap and d/dwo packages: 7.0 mw/ c from 65 c to 125 c. *for additional information on our pb?free strategy and soldering details, please download the on semiconductor soldering and mounting techniques reference manual, solderrm/d. a = assembly location wl, l = wafer lot yy, y = year ww, w = work week marking diagrams http://onsemi.com see detailed ordering and shipping information in the package dimensions section on page 2 of this data sheet. ordering information pdip?16 p suffix case 648 mc14060bcp awlyyww soic?16 d suffix case 751b tssop?16 dt suffix case 948f 14060b awlyww 14 060b alyw soeiaj?16 f suffix case 966 mc14060b awlyww 16 1 1 16 1 16 1 16
mc14060b http://onsemi.com 2 figure 1. pin assignment 13 14 15 16 9 10 11 12 5 4 3 2 1 8 7 6 reset q9 q8 q10 v dd out 2 out 1 clock q6 q13 q12 v ss q4 q7 q5 q14 table 1. truth table clock reset output state h l l h no change advance to next state all outputs are low x = don't care figure 2. logic diagram out 2 out 1 clock reset 12 11 10 9 q4 q5 q12 q13 q14 5 7123 cq r cq cq r cq cq r cq cq r cq cq r cq cq r cq q6 = pin 4 q7 = pin 6 q8 = pin 14 q9 = pin 13 q10 = pin 15 v dd = pin 16 v ss = pin 8 ordering information device package shipping 2 mc14060bcp pdip?16 500 units / rail mc14060bcpg pdip?16 (pb?free) 500 units / rail mc14060bd soic?16 48 units / rail mc14060bdg soic?16 (pb?free) 48 units / rail mc14060bdr2 soic?16 2500 / tape & reel mc14060bdr2g soic?16 (pb?free) 2500 / tape & reel mc14060bdtr2 tssop?16* 2500 / tape & reel mc14060bfel soeiaj?16 (pb?free) 2000 / tape & reel 2for information on tape and reel specifications, including part orientation and tape sizes, please refer to our tape and reel packaging specifications brochure, brd8011/d. *this package is inherently pb?free.
mc14060b http://onsemi.com 3 ????????????????????????????????? ????????????????????????????????? electrical characteristics (voltages referenced to v ss ) ???? ???? ?????????? ?????????? ??? ??? ?????? ?????? ? 55 c ???????? ???????? 25 c ?????? ?????? 125 c ?? ?? ???? ? ?? ? ???? symbol ?????????? ? ???????? ? ?????????? characteristic ??? ? ? ? ??? v dd vdc ???? ? ?? ? ???? min ??? ?? ? ??? max ??? ? ? ? ??? min ???? ? ?? ? ???? typ (note 2) ??? ? ? ? ??? max ??? ? ? ? ??? min ???? ? ?? ? ???? max ?? ?? ?? unit ???? ? ?? ? ???? v ol ?????????? ? ???????? ? ?????????? output voltage a0o level v in = v dd or 0 ??? ? ? ? ??? 5.0 10 15 ???? ? ?? ? ???? ? ? ? ??? ?? ? ??? 0.05 0.05 0.05 ??? ? ? ? ??? ? ? ? ???? ? ?? ? ???? 0 0 0 ??? ? ? ? ??? 0.05 0.05 0.05 ??? ? ? ? ??? ? ? ? ???? ? ?? ? ???? 0.05 0.05 0.05 ?? ?? ?? v ???? ? ?? ? ???? v oh ?????????? ? ???????? ? ?????????? v in = 0 or v dd a1o level ??? ? ? ? ??? 5.0 10 15 ???? ? ?? ? ???? 4.95 9.95 14.95 ??? ?? ? ??? ? ? ? ??? ? ? ? ??? 4.95 9.95 14.95 ???? ? ?? ? ???? 5.0 10 15 ??? ? ? ? ??? ? ? ? ??? ? ? ? ??? 4.95 9.95 14.95 ???? ? ?? ? ???? ? ? ? ?? ?? ?? v ???? ? ?? ? ? ?? ? ???? v il ?????????? ? ???????? ? ? ???????? ? ?????????? input voltage a0o level (v o = 4.5 or 0.5 v) (v o = 9.0 or 1.0 v) (v o = 13.5 or 1.5 v) ??? ? ? ? ? ? ? ??? 5.0 10 15 ???? ? ?? ? ? ?? ? ???? ? ? ? ??? ?? ? ?? ? ??? 1.5 3.0 4.0 ??? ? ? ? ? ? ? ??? ? ? ? ???? ? ?? ? ? ?? ? ???? 2.25 4.50 6.75 ??? ? ? ? ? ? ? ??? 1.5 3.0 4.0 ??? ? ? ? ? ? ? ??? ? ? ? ???? ? ?? ? ? ?? ? ???? 1.5 3.0 4.0 ?? ?? ?? ?? v ???? ? ?? ? ? ?? ? ???? v ih ?????????? ? ???????? ? ? ???????? ? ?????????? (v o = 0.5 or 4.5 v) a1o level (v o = 1.0 or 9.0 v) (v o = 1.5 or 13.5 v) ??? ? ? ? ? ? ? ??? 5.0 10 15 ???? ? ?? ? ? ?? ? ???? 3.5 7.0 11.0 ??? ?? ? ?? ? ??? ? ? ? ??? ? ? ? ? ? ? ??? 3.5 7.0 11.0 ???? ? ?? ? ? ?? ? ???? 2.75 5.50 8.25 ??? ? ? ? ? ? ? ??? ? ? ? ??? ? ? ? ? ? ? ??? 3.5 7.0 11.0 ???? ? ?? ? ? ?? ? ???? ? ? ? ?? ?? ?? ?? v ???? ? ?? ? ? ?? ? ???? v il ?????????? ? ???????? ? ? ???????? ? ?????????? input voltage a0o level (v o = 4.5 vdc) (for input 11 (v o = 9.0 vdc) and output 10) (v o = 13.5 vdc) ??? ? ? ? ? ? ? ??? 5.0 10 15 ???? ? ?? ? ? ?? ? ???? ? ? ? ??? ?? ? ?? ? ??? 1.0 2.0 2.5 ??? ? ? ? ? ? ? ??? ? ? ? ???? ? ?? ? ? ?? ? ???? 2.25 4.50 6.75 ??? ? ? ? ? ? ? ??? 1.0 2.0 2.5 ??? ? ? ? ? ? ? ??? ? ? ? ???? ? ?? ? ? ?? ? ???? 1.0 2.0 2.5 ?? ?? ?? ?? vdc ???? ? ?? ? ???? v ih ?????????? ? ???????? ? ?????????? (v o = 0.5 vdc) a1o level (v o = 1.0 vdc) (v o = 1.5 vdc) ??? ? ? ? ??? 5.0 10 15 ???? ? ?? ? ???? 4.0 8.0 12.5 ??? ?? ? ??? ? ? ? ??? ? ? ? ??? 4.0 8.0 12.5 ???? ? ?? ? ???? 2.75 5.50 8.25 ??? ? ? ? ??? ? ? ? ??? ? ? ? ??? 4.0 8.0 12.5 ???? ? ?? ? ???? ? ? ? ?? ?? ?? vdc ???? ? ?? ? ? ?? ? ? ?? ? ???? i oh ?????????? ? ???????? ? ? ???????? ? ? ???????? ? ?????????? output drive current (v oh = 2.5 v) (except source (v oh = 4.6 v) pins 9 and 10) (v oh = 9.5 v) (v oh = 13.5 v) ??? ? ? ? ? ? ? ? ? ? ??? 5.0 5.0 10 15 ???? ? ?? ? ? ?? ? ? ?? ? ???? 3.0 0.64 1.6 4.2 ??? ?? ? ?? ? ?? ? ??? ? ? ? ? ??? ? ? ? ? ? ? ? ? ? ??? 2.4 0.51 1.3 3.4 ???? ? ?? ? ? ?? ? ? ?? ? ???? 4.2 0.88 2.25 8.8 ??? ? ? ? ? ? ? ? ? ? ??? ? ? ? ? ??? ? ? ? ? ? ? ? ? ? ??? 1.7 0.36 0.9 2.4 ???? ? ?? ? ? ?? ? ? ?? ? ???? ? ? ? ? ?? ?? ?? ?? ?? ma ???? ? ?? ? ???? i ol ?????????? ? ???????? ? ?????????? (v ol = 0.4 v) sink (v ol = 0.5 v) (v ol = 1.5 v) ??? ? ? ? ??? 5.0 10 15 ???? ? ?? ? ???? 0.64 1.6 4.2 ??? ?? ? ??? ? ? ? ??? ? ? ? ??? 0.51 1.3 3.4 ???? ? ?? ? ???? 0.88 2.25 8.8 ??? ? ? ? ??? ? ? ? ??? ? ? ? ??? 0.36 0.9 2.4 ???? ? ?? ? ???? ? ? ? ?? ?? ?? ma ???? ???? i in ?????????? ?????????? input current ??? ??? 15 ???? ???? - ??? ??? 0.1 ??? ??? - ???? ???? 0.00001 ??? ??? 0.1 ??? ??? - ???? ???? 1.0 ?? ??  a ???? ???? c in ?????????? ?????????? input capacitance (v in = 0) ??? ??? - ???? ???? - ??? ??? - ??? ??? - ???? ???? 5.0 ??? ??? 7.5 ??? ??? - ???? ???? - ?? ?? pf ???? ? ?? ? ???? i dd ?????????? ? ???????? ? ?????????? quiescent current (per package) ??? ? ? ? ??? 5.0 10 15 ???? ? ?? ? ???? ? ? ? ??? ?? ? ??? 5.0 10 20 ??? ? ? ? ??? ? ? ? ???? ? ?? ? ???? 0.005 0.010 0.015 ??? ? ? ? ??? 5.0 10 20 ??? ? ? ? ??? ? ? ? ???? ? ?? ? ???? 150 300 600 ?? ?? ??  a ???? ? ?? ? ? ?? ? ? ?? ? ???? i t ?????????? ? ???????? ? ? ???????? ? ? ???????? ? ?????????? total supply current (notes 3, 4) (dynamic plus quiescent, per package) (c l = 50 pf on all outputs, all buffers switching) ??? ? ? ? ? ? ? ? ? ? ??? 5.0 10 15 ?????????????????? ? ???????????????? ? ? ???????????????? ? ? ???????????????? ? ?????????????????? i t = (0.25  a/khz) f + i dd i t = (0.54  a/khz) f + i dd i t = (0.85  a/khz) f + i dd ?? ?? ?? ?? ??  a 2. data labelled atypo is not to be used for design purposes but is intended as an indication of the ic's potential performance. 3. the formulas given are for the typical characteristics only at 25 c. 4. to calculate total supply current at loads other than 50 pf: i t (c l ) = i t (50 pf) + (c l ? 50) vfk where: i t is in  a (per package), c l in pf, v = (v dd ? v ss ) in volts, f in khz is input frequency, and k = 0.002.
mc14060b http://onsemi.com 4 ????????????????????????????????? ????????????????????????????????? switching characteristics (c l = 50 pf, t a = 25 c) ????? ? ??? ? ????? symbol ??????????????? ? ????????????? ? ??????????????? characteristic ???? ? ?? ? ???? v dd vdc ???? ? ?? ? ???? min ???? ? ?? ? ???? typ (note 5 ) ???? ? ?? ? ???? max ??? ? ? ? ??? unit ????? ? ??? ? ????? t tlh ??????????????? ? ????????????? ? ??????????????? output rise time (counter outputs) ???? ? ?? ? ???? 5.0 10 15 ???? ? ?? ? ???? ? ? ? ???? ? ?? ? ???? 40 25 20 ???? ? ?? ? ???? 200 100 80 ??? ? ? ? ??? ns ????? ? ??? ? ????? t thl ??????????????? ? ????????????? ? ??????????????? output fall time (counter outputs) ???? ? ?? ? ???? 5.0 10 15 ???? ? ?? ? ???? ? ? ? ???? ? ?? ? ???? 50 30 20 ???? ? ?? ? ???? 200 100 80 ??? ? ? ? ??? ns ????? ? ??? ? ????? t plh t phl ??????????????? ? ????????????? ? ??????????????? propagation delay time clock to q4 ???? ? ?? ? ???? 5.0 10 15 ???? ? ?? ? ???? ? ? ? ???? ? ?? ? ???? 415 175 125 ???? ? ?? ? ???? 740 300 200 ??? ? ? ? ??? ns ????? ? ??? ? ? ??? ? ????? ??????????????? ? ????????????? ? ? ????????????? ? ??????????????? clock to q14 ???? ? ?? ? ? ?? ? ???? 5.0 10 15 ???? ? ?? ? ? ?? ? ???? ? ? ? ???? ? ?? ? ? ?? ? ???? 1.5 0.7 0.4 ???? ? ?? ? ? ?? ? ???? 2.7 1.3 1.0 ??? ? ? ? ? ? ? ???  s ????? ? ??? ? ????? t wh ??????????????? ? ????????????? ? ??????????????? clock pulse width ???? ? ?? ? ???? 5.0 10 15 ???? ? ?? ? ???? 100 40 30 ???? ? ?? ? ???? 65 30 20 ???? ? ?? ? ???? ? ? ? ??? ? ? ? ??? ns ????? ? ??? ? ????? f  ??????????????? ? ????????????? ? ??????????????? clock pulse frequency ???? ? ?? ? ???? 5.0 10 15 ???? ? ?? ? ???? ? ? ? ???? ? ?? ? ???? 5 14 17 ???? ? ?? ? ???? 3.5 8 12 ??? ? ? ? ??? mhz ????? ? ??? ? ? ??? ? ????? t tlh t thl ??????????????? ? ????????????? ? ? ????????????? ? ??????????????? clock rise and fall time ???? ? ?? ? ? ?? ? ???? 5.0 10 15 ?????????? ? ???????? ? ? ???????? ? ?????????? no limit ??? ? ? ? ? ? ? ??? ns ????? ? ??? ? ????? t w ??????????????? ? ????????????? ? ??????????????? reset pulse width ???? ? ?? ? ???? 5.0 10 15 ???? ? ?? ? ???? 120 60 40 ???? ? ?? ? ???? 40 15 10 ???? ? ?? ? ???? ? ? ? ??? ? ? ? ??? ns ????? ? ??? ? ????? t phl ??????????????? ? ????????????? ? ??????????????? propagation delay time reset to on ???? ? ?? ? ???? 5.0 10 15 ???? ? ?? ? ???? ? ? ? ???? ? ?? ? ???? 170 80 60 ???? ? ?? ? ???? 350 160 100 ??? ? ? ? ??? ns 5. data labelled atypo is not to be used for design purposes but is intended as an indication of the ic's potential performance. figure 1. power dissipation test circuit and waveform figure 2. switching time test circuit and waveforms pulse generator i d v dd 500  f 0.01  f clock nc nc q4 q5 qn r out1 out2 v ss c l c l c l 20 ns 20 ns clock 90% 50% 10% 50% duty cycle v dd v ss pulse generator v dd clock nc nc q4 q5 qn r out1 out2 v ss c l c l c l 20 ns 20 ns clock q t tlh t thl t plh t phl t wh 90% 50% 10% 90% 50% 10%
mc14060b http://onsemi.com 5 figure 3. oscillator circuit using rc configuration 11 reset r s c tc r tc 10out 1 9out 2 f  1 2.3 r tc c tc if 1 khz f 100 khz and 2r tc < r s < 10r tc (f in hz, r in ohms, c in farads) the formula may vary for other frequencies. recommended maximum value for the resistors in 1 m  . typical rc oscillator characteristics figure 4. rc oscillator stability figure 5. rc oscillator frequency as a function of r tc and c - 8.0 -12 -16 - 4.0 0 4.0 8.0 125 100 75 50 25 0 -25 -55 t a , ambient temperature ( c) frequency deviation (%) v dd = 15 v 1.0 v 5.0 v r tc = 56 k  c = 1000 pf r s =0, f=10.15khz @ v dd =10, t a =25 c r s =120 k  , f=7.8khz @ v dd =10v, t a =25 c f, oscillator frequency (khz) 100 50 20 10 5 2 1 0.5 0.2 0.1 1.0 k 10 k 100 k 1.0 m r tc , resistance (ohms) 0.0001 0.001 0.01 0.1 c, capacitance (  f) v dd = 10 v f as a function of r tc (c = 1000 pf) (r s 2r tc ) f as a function of c (r tc = 56 k  ) (r s = 120 k) figure 6. typical crystal oscillator circuit clock 11 reset 9out 2 10out 1 18m r o c s c t ???????????????? ? ?????????????? ? ???????????????? table 2. typical data for crystal oscillator circuit ?????????? ? ???????? ? ?????????? characteristic ???? ? ?? ? ???? 500 khz circuit ??? ? ? ? ??? 32 khz circuit ?? ?? ?? unit ?????????? ? ???????? ? ?????????? crystal characteristics resonant frequency equivalent resistance, r s ???? ? ?? ? ???? 500 1.0 ??? ? ? ? ??? 32 6.2 ?? ?? ?? khz k  ?????????? ? ???????? ? ? ???????? ? ?????????? external resistor/capacitor values r o c t c s ???? ? ?? ? ? ?? ? ???? 47 82 20 ??? ? ? ? ? ? ? ??? 750 82 20 ?? ?? ?? ?? k  pf pf ?????????? ? ???????? ? ? ???????? ? ? ???????? ? ? ???????? ? ? ???????? ? ? ???????? ? ?????????? frequency stability frequency changes as a function of v dd (t a = 25 c) v dd change from 5.0 v to 10 v v dd change from 10 v to 15 v frequency change as a function of temperature (v dd = 10 v) t a change from ? 55 c to +25 c complete oscillator (note 6) t a change from + 25 c to + 125 c complete oscillator (note 6) ???? ? ?? ? ? ?? ? ? ?? ? ? ?? ? ? ?? ? ? ?? ? ???? +6.0 +2.0 +100 160 ??? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ? ??? +2.0 +2.0 +120 560 ?? ?? ?? ?? ?? ?? ?? ?? ppm ppm ppm ppm ???????????????? ? ?????????????? ? ???????????????? 6. complete oscillator includes crystal, capacitors, and resistors.
mc14060b http://onsemi.com 6 package dimensions pdip?16 p suffix plastic dip package case 648?08 issue t notes: 1. dimensioning and tolerancing per ansi y14.5m, 1982. 2. controlling dimension: inch. 3. dimension l to center of leads when formed parallel. 4. dimension b does not include mold flash. 5. rounded corners optional. ?a? b f c s h g d j l m 16 pl seating 18 9 16 k plane ?t? m a m 0.25 (0.010) t dim min max min max millimeters inches a 0.740 0.770 18.80 19.55 b 0.250 0.270 6.35 6.85 c 0.145 0.175 3.69 4.44 d 0.015 0.021 0.39 0.53 f 0.040 0.70 1.02 1.77 g 0.100 bsc 2.54 bsc h 0.050 bsc 1.27 bsc j 0.008 0.015 0.21 0.38 k 0.110 0.130 2.80 3.30 l 0.295 0.305 7.50 7.74 m 0 10 0 10 s 0.020 0.040 0.51 1.01     soic?16 d suffix plastic soic package case 751b?05 issue j notes: 1. dimensioning and tolerancing per ansi y14.5m, 1982. 2. controlling dimension: millimeter. 3. dimensions a and b do not include mold protrusion. 4. maximum mold protrusion 0.15 (0.006) per side. 5. dimension d does not include dambar protrusion. allowable dambar protrusion shall be 0.127 (0.005) total in excess of the d dimension at maximum material condition. 18 16 9 seating plane f j m r x 45  g 8 pl p ?b? ?a? m 0.25 (0.010) b s ?t? d k c 16 pl s b m 0.25 (0.010) a s t dim min max min max inches millimeters a 9.80 10.00 0.386 0.393 b 3.80 4.00 0.150 0.157 c 1.35 1.75 0.054 0.068 d 0.35 0.49 0.014 0.019 f 0.40 1.25 0.016 0.049 g 1.27 bsc 0.050 bsc j 0.19 0.25 0.008 0.009 k 0.10 0.25 0.004 0.009 m 0 7 0 7 p 5.80 6.20 0.229 0.244 r 0.25 0.50 0.010 0.019 
mc14060b http://onsemi.com 7 package dimensions tssop?16 dt suffix plastic tssop package case 948f?01 issue a ??? ??? ??? dim min max min max inches millimeters a 4.90 5.10 0.193 0.200 b 4.30 4.50 0.169 0.177 c ??? 1.20 ??? 0.047 d 0.05 0.15 0.002 0.006 f 0.50 0.75 0.020 0.030 g 0.65 bsc 0.026 bsc h 0.18 0.28 0.007 0.011 j 0.09 0.20 0.004 0.008 j1 0.09 0.16 0.004 0.006 k 0.19 0.30 0.007 0.012 k1 0.19 0.25 0.007 0.010 l 6.40 bsc 0.252 bsc m 0 8 0 8 notes: 1. dimensioning and tolerancing per ansi y14.5m, 1982. 2. controlling dimension: millimeter. 3. dimension a does not include mold flash. protrusions or gate burrs. mold flash or gate burrs shall not exceed 0.15 (0.006) per side. 4. dimension b does not include interlead flash or protrusion. interlead flash or protrusion shall not exceed 0.25 (0.010) per side. 5. dimension k does not include dambar protrusion. allowable dambar protrusion shall be 0.08 (0.003) total in excess of the k dimension at maximum material condition. 6. terminal numbers are shown for reference only. 7. dimension a and b are to be determined at datum plane ?w?.  section n?n seating plane ident. pin 1 1 8 16 9 detail e j j1 b c d a k k1 h g detail e f m l 2x l/2 -u- s u 0.15 (0.006) t s u 0.15 (0.006) t s u m 0.10 (0.004) v s t 0.10 (0.004) ?t? ?v? ?w? 0.25 (0.010) 16x ref k n n
mc14060b http://onsemi.com 8 package dimensions h e a 1 dim min max min max inches --- 2.05 --- 0.081 millimeters 0.05 0.20 0.002 0.008 0.35 0.50 0.014 0.020 0.18 0.27 0.007 0.011 9.90 10.50 0.390 0.413 5.10 5.45 0.201 0.215 1.27 bsc 0.050 bsc 7.40 8.20 0.291 0.323 0.50 0.85 0.020 0.033 1.10 1.50 0.043 0.059 0 0.70 0.90 0.028 0.035 --- 0.78 --- 0.031 a 1 h e q 1 l e  10  0  10  l e q 1  notes: 1. dimensioning and tolerancing per ansi y14.5m, 1982. 2. controlling dimension: millimeter. 3. dimensions d and e do not include mold flash or protrusions and are measured at the parting line. mold flash or protrusions shall not exceed 0.15 (0.006) per side. 4. terminal numbers are shown for reference only. 5. the lead width dimension (b) does not include dambar protrusion. allowable dambar protrusion shall be 0.08 (0.003) total in excess of the lead width dimension at maximum material condition. dambar cannot be located on the lower radius or the foot. minimum space between protrusions and adjacent lead to be 0.46 ( 0.018). m l detail p view p c a b e m 0.13 (0.005) 0.10 (0.004) 1 16 9 8 d z e a b c d e e l m z soeiaj?16 f suffix plastic eiaj soic package case 966?01 issue o on semiconductor and are registered trademarks of semiconductor components industries, llc (scillc). scillc reserves the right to mak e changes without further notice to any products herein. scillc makes no warranty, representation or guarantee regarding the suitability of its products for an y particular purpose, nor does scillc assume any liability arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including wi thout limitation special, consequential or incidental damages. atypicalo parameters which may be provided in scillc data sheets and/or specifications can and do vary in different application s and actual performance may vary over time. all operating parameters, including atypicalso must be validated for each customer application by customer's technical experts. scillc does not convey any license under its patent rights nor the rights of others. scillc products are not designed, intended, or authorized for use as components in systems intended for surgical implant into the body, or other applications intended to support or sustain life, or for any other application in which the failure of the scillc product could create a sit uation where personal injury or death may occur. should buyer purchase or use scillc products for any such unintended or unauthorized application, buyer shall indemnify and hold scillc and its officers, employees, subsidiaries, af filiates, and distributors harmless against all claims, costs, damages, and expenses, and reasonable attorney fees arising out of, direct ly or indirectly, any claim of personal injury or death associated with such unintended or unauthorized use, even if such claim alleges that scillc was negligent regarding the design or manufacture of the part. scillc is an equal opportunity/affirmative action employer. this literature is subject to all applicable copyright laws and is not for resale in any manner. publication ordering information n. american technical support : 800?282?9855 toll free usa/canada japan : on semiconductor, japan customer focus center 2?9?1 kamimeguro, meguro?ku, tokyo, japan 153?0051 phone : 81?3?5773?3850 mc14060b/d literature fulfillment : literature distribution center for on semiconductor p.o. box 61312, phoenix, arizona 85082?1312 usa phone : 480?829?7710 or 800?344?3860 toll free usa/canada fax : 480?829?7709 or 800?344?3867 toll free usa/canada email : orderlit@onsemi.com on semiconductor website : http://onsemi.com order literature : http://www.onsemi.com/litorder for additional information, please contact your local sales representative.


▲Up To Search▲   

 
Price & Availability of MC14060BFELG

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