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  EMZ52 general purpose transister (dual transistors) datasheet l l outline parameter value emt6 v ceo 50 v i c 100 ma EMZ52 (sc-107c) parameter value v ceo -50 v i c -100 ma l l features l l inner circuit 1) general purpose. 2) 2sar523 and 2scr523 chips in one package. 3) transister elements are independent, eliminating interface. 4) mounting cost and area can be cut in half. 5) lead free/rohs compliant. l l application switching, led driver l l packaging specifications part no. package package size taping code reel size (mm) tape width (mm) basic ordering unit.(pcs) marking EMZ52 emt6 1616 t2r 180 8 8000 z52 www.rohm.com ? 2013 rohm co., ltd. all rights reserved. 1/9 20130905 - rev. 002 http://
EMZ52 datasheet   absolute maximum ratings (t a = 25c) parameter symbol tr1(npn) tr2(pnp) unit collector-base voltage v cbo 50 -50 v collector-emitter voltage v ceo 50 -50 v emitter-base voltage v ebo 5 -5 v collector current i c 100 -100 ma i cp *1 200 -200 ma power dissipation p d *2 *3 150 (total) mw junction temperature t j 150 range of storage temperature t stg -55 to + 150   electrical characteristics (t a = 25c) parameter symbol conditions values unit min. typ. max. collector-base breakdown voltage bv cbo i c = 50 a 50 - - v collector-emitter breakdown voltage bv ceo i c = 1 ma 50 - - v emitter-base breakdown voltage bv ebo i e = 50 a 5 - - v collector cut-off current i cbo v cb = 50 v - - 0.1 a emitter cut-off current i ebo v eb = 5 v - - 0.1 a collector-emitter saturation voltage v ce(sat) i c = 50 ma, i b = 5 ma - 0.15 0.40 v dc current gain h fe v ce = 6 v, i c = 1 ma 120 - 560 - transition frequency f t v ce = 10 v, i e = -10 ma, f = 100 mhz - 350 - mhz output capacitance c ob v cb = 10 v, i e = 0 a, f = 1 mhz - 1.6 - pf   electrical characteristics (t a = 25c) parameter symbol conditions values unit min. typ. max. collector-base breakdown voltage bv cbo i c = -50 a -50 - - v collector-emitter breakdown voltage bv ceo i c = -1 ma -50 - - v emitter-base breakdown voltage bv ebo i e = -50 a -5 - - v collector cut-off current i cbo v cb = -50 v - - -0.1 a emitter cut-off current i ebo v eb = -5 v - - -0.1 a collector-emitter saturation voltage v ce(sat) i c = -50 ma, i b = -5 ma - -0.15 -0.40 v dc current gain h fe v ce = -6 v, i c = -1 ma 120 - 560 - transition frequency f t v ce = -10 v, i e = 10 ma, f = 100 mhz - 300 - mhz output capacitance c ob v cb = -10 v, i e = 0 a, f = 1 mhz - 2 - pf *1 pw=1ms single pulse *2 each terminal mounted on a reference footprint *3 120mw per element must not be exceeded. www.rohm.com ? 2013 rohm co., ltd. all rights reserved. 2/9 20130905 - rev. 002 http://
EMZ52    datasheet   electrical characteristic curves(ta=25   ) fig.1 grounded emitter propagation characteristics fig.2 typical output characteristics fig.3 dc current gain vs. collector current(i) fig.4 dc current gain vs. collector current(ii)                                               www.rohm.com ? 2013 rohm co., ltd. all rights reserved. 3/9 20130905 - rev. 002 http://
EMZ52    datasheet   electrical characteristic curves (t a =25c) fig.5 collector-emitter saturation voltage vs. collector current(i) fig.6 collector-emitter saturation voltage vs. collector current(ii) fig.7 base-emitter saturation voltage vs. collector current fig.8 gain bandwidth product vs. emitter current                                               www.rohm.com ? 2013 rohm co., ltd. all rights reserved. 4/9 20130905 - rev. 002 http://
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 (t a =25c) fig.9 emitter input capacitance vs. emitter- base voltage collector output capacitance vs. collector- fig.10 safe operating area                                               www.rohm.com ? 2013 rohm co., ltd. all rights reserved. 5/9     http://
    datasheet   
  
 
  
 (t a =25c) fig.1 grounded emitter propagation characteristics fig.2 typical output characteristics fig.3 dc current gain vs. collector current(i) fig.4 dc current gain vs. collector current(ii)                                               www.rohm.com ? 2013 rohm co., ltd. all rights reserved. 6/9     http://
    datasheet   
  
 
  
 (t a = 25c) fig.5 collector-emitter saturation voltage vs. collector current(i) fig.6 collector-emitter saturation voltage vs. collector current(ii) fig.7 base-emitter saturation voltage vs. collector current fig.8 gain bandwidth product vs. emitter current                                               www.rohm.com ? 2013 rohm co., ltd. all rights reserved. 7/9     http://
    datasheet   
  
 
  
 (t a = 25c) fig.9 emitter input capacitance vs. emitter- base voltage collector output capacitance vs. collector- fig.10 safe operating area                                               www.rohm.com ? 2013 rohm co., ltd. all rights reserved. 8/9     http://
EMZ52    datasheet   dimensions                                               www.rohm.com ? 2013 rohm co., ltd. all rights reserved. 9/9 20130905 - rev. 002 http://
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