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  RSD046P05 RSD046P05 pch 45v 4.5a power mosfet junction temperature t j 150 c range of storage temperature t stg - 55 to + 150 c gate - source voltage v gss ? 20 v p d 15 w mj a e as *3 i ar *3 14.3 - 4.5 p d 0.85 w avalanche energy, single pulse avalanche current t c = 25c t a = 25c *4 power dissipation pulsed drain current i d,pulse *2 ? 9.0 a t c = 25c t c = 100c continuous drain current i d *1 a ? 4.5 i d *1 ? 2.4 a drain - source voltage v dss - 45 v automotive solenoid drive taping code tl marking 046p05 l absolute maximum ratings (t a = 25c) parameter symbol value unit 6) 100% avalanche tested l packaging specifications type packaging taping l application reel size (mm) 330 switching power supply tape width (mm) 16 automotive motor drive basic ordering unit (pcs) 2,500 l features l inner circuit 1) low on-resistance. 2) fast switching speed. 3) drive circuits can be simple. 4) parallel use is easy. 5) pb-free lead plating ; rohs compliant l outline v dss - 45v cpt3 (sc-63) r ds(on) (max.) 155m w i d - 4.5a p d 15w * 1 esd protection diode * 2 body diode (1) gate (2) drain (3) source (1) (3) (2) * 1 * 2 (1) (2) (3) 1/12 2012.08 - rev.a dat asheet www.rohm.com ? 2012 rohm co., ltd. all rights reserved.
RSD046P05 thermal resistance, junction - ambient m w v gs = - 10v, i d = - 4.5a t j = 125c forward transfer admittance s static drain - source on - state resistance v gs = - 10v, i d = - 4.5a - 110 155 v gs = - 4.5v, i d = - 4.5a - 160 225 - 185 gate - source leakage current i gss v gs = ? 20v, v ds = 0v - - v gate threshold voltage v gs (th) v ds = - 10v, i d = - 1ma - 1 - - 3 - 265 ? 10 m a t j = 125c m a - 1 - 100 values unit v - drain - source breakdown voltage zero gate voltage drain current values unit min. typ. max. - 8.33 c/w - - c/w 147 - min. l thermal resistance parameter symbol symbol conditions t sold thermal resistance, junction - ambient *4 soldering temperature, wavesoldering for 10s r thja r thjc l electrical characteristics (t a = 25c) parameter typ. max. c - v (br)dss i dss - - - v ds = - 45v, v gs = 0v t j = 25c v ds = - 45v, v gs = 0v v gs = 0v, i d = - 1ma - 45 - - - 260 v gs = - 4.0v, i d = - 4.5a - 180 250 r ds(on) *5 g fs v ds = - 10v, i d = - 4.5a 3 6 2/12 2012.08 - rev.a www.rohm.com ? 2012 rohm co., ltd. all rights reserved. data sheet
RSD046P05 *1 limited only by maximum temperature allowed. *2 pw ? 10 m s, duty cycle ? 1% *3 l ? 1mh, v dd = - 25v, rg = 10 w , starting t j = 25c *4 mounted on a epoxy pcb fr4 (20mm 30mm 0.8mm) *5 pulsed - - v i d = - 4.5a v gs = - 5v - 2.2 - gate - drain charge q gd *5 - 2.2 - nc gate - source charge q gs *5 total gate charge q g *5 v dd ? - 25v - - z gate charge characteristics (t a = 25c) parameter symbol conditions values unit min. typ. max. turn - on delay time t d(on) *5 v dd ? - 25v, v gs = - 10v - 8 - ns rise time t r *5 i d = - 2.0a - 8 - turn - off delay time t d(off) *5 r l = 12 w - 35 - fall time t f *5 r g = 10 w - 8 pf output capacitance c oss v ds = - 10v - 100 - reverse transfer capacitance c rss f = 1mhz input capacitance c iss v gs = 0v - 550 - - 50 - z electrical characteristics (t a = 25c) parameter symbol conditions values unit min. typ. max. m c - 9 a forward voltage v sd *5 v gs = 0v, i s = - 4.5a - - - 1.2 v 40 - ns t c = 25c reverse recovery time t rr *5 i s *1 - 6 - 4.5 a pulsed source current i sm *2 - - continuous source current 12 - i s = - 4.5a di/dt = - 100a/ m s reverse recovery charge q rr *5 - 60 - z body diode electrical characteristics (source-drain)(t a = 25c) parameter symbol conditions values unit min. typ. max. gate plateau voltage v (plateau) v dd ? - 30v, i d = - 4.5a - -3.4 3/12 2012.08 - rev.a www.rohm.com ? 2012 rohm co., ltd. all rights reserved. data sheet
RSD046P05 l electrical characteristic curves 0 20 40 60 80 100 120 0 25 50 75 100 125 150 175 0.01 0.1 1 10 0.0001 0.001 0.01 0.1 1 10 100 1000 t a =25 oc r th(j - c)(t) = r (t) r th(ch - c) r th(j - c) = 8.3 oc /w top d = 1 d = 0.5 d = 0.1 d = 0.05 d = 0.01 d = single 0.01 0.1 1 10 100 0.1 1 10 100 1000 t a =25 oc single pulse p w = 100us p w = 1ms p w = 10ms operation in this area is limited by r ds(on) fig.1 power dissipation derating curve fig.2 maximum safe operating area power dissipation : p d /p d max. [%] drain current : - i d [a] fig.3 normalized transient thermal resistance vs. pulse width normalized transient thermal resistance : r (t) pulse width : p w [s] junction temperature : t j [ c] drain - source voltage : - v ds [v] 4/12 2012.08 - rev.a www.rohm.com ? 2012 rohm co., ltd. all rights reserved. data sheet
RSD046P05 l electrical characteristic curves 0 20 40 60 80 100 120 0 25 50 75 100 125 150 175 0.1 1 10 100 0.01 0.1 1 10 100 v dd = - 25v,r g =25 w v gf = - 10v,v gr =0v starting t ch =25 oc 0 0.5 1 1.5 2 2.5 3 3.5 4 0 0.2 0.4 0.6 0.8 1 t a =25 oc pulsed v gs =2.5v v gs =10.0v v gs =4.0v v gs =4.5v v gs =3.0v 0 1 2 3 4 0 2 4 6 8 10 v gs =2.5v v gs =3.0v t a =25 oc pulsed v gs =10.0v v gs =4.0v v gs =4.5v fig.6 typical output characteristics(i) drain current : - i d [a] drain - source voltage : - v ds [v] fig.7 typical output characteristics(ii) drain current : - i d [a] drain - source voltage : - v ds [v] fig.4 avalanche current vs inductive load avalanche current : - i as [a] coil inductance : l [mh] fig.5 avalanche energy derating curve vs junction temperature avalanche energy : e as / e as max. [%] junction temperature : t j [ c] 5/12 2012.08 - rev.a www.rohm.com ? 2012 rohm co., ltd. all rights reserved. data sheet
RSD046P05 l electrical characteristic curves 20 25 30 35 40 45 50 55 60 -50 0 50 100 150 v gs = 0v i d = - 1ma 0.001 0.01 0.1 1 10 100 0 1 2 3 4 5 v ds = - 10 v t a = 125 oc t a = 75 oc t a = 25 oc t a = - 25 oc 0.0 0.5 1.0 1.5 2.0 2.5 3.0 -50 -25 0 25 50 75 100 125 150 v ds = - 10v i d = - 1ma 0.01 0.1 1 10 100 0.01 0.1 1 10 100 v ds = - 10 v t a = - 25 oc t a =25 oc t a =75 oc t a =125 oc fig.10 gate threshold voltage vs. junction temperature gate threshold voltage : - v gs(th) [v] junction temperature : t j [ c ] fig.11 transconductance vs. drain current transconductance : g fs [s] drain current : - i d [a] fig.8 breakdown voltage vs. junction temperature junction temperature : t j [ c] fig.9 typical transfer characteristics gate - source voltage : - v gs [v] drain current : - i d [a] normarize drain - source breakdown voltage : - v (br)dss [v] 6/12 2012.08 - rev.a www.rohm.com ? 2012 rohm co., ltd. all rights reserved. data sheet
RSD046P05 l electrical characteristic curves 0 50 100 150 200 250 300 350 400 450 500 550 600 0 5 10 15 t a =25 oc i d = - 4.5a i d = - 2.25 a 10 100 1000 0.01 0.1 1 10 100 t a =25 oc v gs = - 1 0 v v gs = - 4.5 v v gs = - 4.0 v 0 50 100 150 200 -50 0 50 100 150 v gs = - 10v i d = - 4.5a fig.13 static drain - source on - state resistance vs. drain current(i) static drain - source on - state resistance : r ds(on) [m w ] junction temperature : t j [oc] fig.14 static drain - source on - state resistance vs. j unction temperature static drain - source on - state resistance : r ds(on) [m w ] drain current : - i d [a] fig.12 static drain - source on - state resistance vs. gate source voltage static drain - source on - state resistance : r ds(on) [m w ] gate - source voltage : - v gs [v] 7/12 2012.08 - rev.a www.rohm.com ? 2012 rohm co., ltd. all rights reserved. data sheet
RSD046P05 l electrical characteristic curves 0 20 40 60 80 100 120 0 25 50 75 100 125 150 175 10 100 1000 0.01 0.1 1 10 100 t a =125 oc t a =75 oc t a =25 oc t a = - 25 oc v gs = - 4.0v fig.18 drain current derating curve drain current dissipation : i d /i d max. (%) fig.17 static drain - source on - state resistance vs. drain current(iv) static drain - source on - state resistance : r ds(on) [m w ] drain current : - i d [a] junction temperature : t j [oc] 10 100 1000 0.01 0.1 1 10 100 t a =125 oc t a =75 oc t a =25 oc t a = - 25 oc v gs = - 10v 10 100 1000 0.01 0.1 1 10 100 t a =125 oc t a =75 oc t a =25 oc t a = - 25 oc v gs = - 4.5v fig.15 static drain - source on - state resistance vs. drain current(ii) static drain - source on - state resistance : r ds(on) [m w ] drain current : - i d [a] fig.16 static drain - source on - state resistance vs. drain current(iii) static drain - source on - state resistance : r ds(on) [m w ] drain current : - i d [a] 8/12 2012.08 - rev.a www.rohm.com ? 2012 rohm co., ltd. all rights reserved. data sheet
RSD046P05 l electrical characteristic curves capacitance : c [pf] 1 10 100 1000 10000 0.01 0.1 1 10 100 c oss c rss c iss t a = 25oc f = 1mhz v gs = 0v 1 10 100 1000 0.01 0.1 1 10 100 t r t f t d(on) t d(off) t a =25 oc v dd = - 25 v v gs = - 10v r g =10 w 0 5 10 0 5 10 t a =25 oc v dd = - 25v i d = - 4.5a r g =10 w 0.01 0.1 1 10 100 0.0 0.5 1.0 1.5 t a =125oc t a =75oc t a =25oc t a = - 25 oc v gs =0v fig.19 typical capacitance vs. drain - source voltage drain - source voltage : - v ds [v] fig.21 dynamic input characteristics gate - source voltage : - v gs [v] total gate charge : q g [nc] fig.20 switching characteristics switching time : t [ns] drain current : - i d [a] fig.22 source current vs. source - drain voltage source current : - i s [a] source - drain voltage : - v sd [v] 9/12 2012.08 - rev.a www.rohm.com ? 2012 rohm co., ltd. all rights reserved. data sheet
RSD046P05 l electrical characteristic curves 1 10 100 0.1 1 10 t a =25 oc di / dt = - 100a / m s v gs = 0v fig23 reverse recovery time vs.source current reverse recovery time : trr [ns] source current : - i s [a] 10/12 2012.08 - rev.a www.rohm.com ? 2012 rohm co., ltd. all rights reserved. data sheet
RSD046P05 l measurement circuits fig.1-1 switching time measurement circuit fig.1-2 switching waveforms - - - fig.2-1 gate charge measurement circuit fig.2-2 gate charge waveform fig.3-1 avalanche measurement circuit fig.3-2 avalanche waveform 11/12 2012.08 - rev.a www.rohm.com ? 2012 rohm co., ltd. all rights reserved. data sheet
RSD046P05 l dimensions (unit : mm) dimension in mm/inches cpt3 12/12 2012.08 - rev.a www.rohm.com ? 2012 rohm co., ltd. all rights reserved. data sheet d b1 e b b3 b2 l3 a2 h a1 a3 c l1 lp x b a l e l2 l3 l2 l1 b6 b5 e l4 c1 b a min max min max a1 0.00 0.15 0 0.006 a2 2.20 2.50 0.087 0.098 a3 b 0.55 0.75 0.022 0.03 b1 5.00 5.30 0.197 0.209 b2 b3 c 0.40 0.60 0.016 0.024 c1 0.40 0.60 0.016 0.024 d 6.30 6.70 0.248 0.264 e 5.40 5.80 0.213 0.228 e h e 9.00 10.00 0.354 0.394 l 2.20 2.80 0.087 0.11 l1 0.80 1.40 0.031 0.055 l2 1.20 1.80 0.047 0.071 l3 l4 lp 1.00 1.60 0.039 0.063 x - 0.25 - 0.01 min max min max b5 - 1.00 - 0.04 b6 - 5.20 - 0.205 hh>y - 2.50 - 0.098 hh>t - 5.50 - 0.217 hh>? - 10.00 - 0.394 0.90 0.035 0.25 0.01 2.30 0.09 5.30 0.209 dim milimeters inches dim milimeters inches 5.00 0.20 0.75 0.03
r1120a www.rohm.com ? 2012 rohm co., ltd. all rights reserved. notice rohm customer support system http://www.rohm.com/contact/ thank you for your accessing to rohm product informations. more detail product informations and catalogs are available, please contact us. notes no copying or reproduction of this document, in part or in whole, is permitted without the consent of rohm co.,ltd. the content specied herein is subject to change for improvement without notice. the content specied herein is for the purpose of introducing rohm's products (hereinafter "products"). if you wish to use any such product, please be sure to refer to the specications, which can be obtained from rohm upon request. examples of application circuits, circuit constants and any other information contained herein illustrate the standard usage and operations of the products. the peripheral conditions must be taken into account when design ing circuits for mass production. great care was taken in ensuring the accuracy of the information specied in this document. however, should you incur any damage arising from any inaccuracy or misprint of such information, rohm shall bear no responsibility for such damage. the technical information specied herein is intended only to show the typical functions of and examples of application circuits for the produc ts. rohm does not grant you, explicitly or implicitly, any license to use or exercise intellectual property or other rights held by rohm and other parties. rohm shall bear no responsibility whatsoever for any dispute arising from the use of such technical information. the products specied in this document are intended to be used with general-use electronic equipment or devices (such as audio visual equipment, ofce-automation equipment, commu- nication devices, electronic appliances and amusement devices). the products specied in this document are not designed to be radiation tolerant. while rohm always makes efforts to enhance the quality and reliability of its products, a product may fail or malfunction for a variety of reasons. please be sure to implement in your equipment using the products safety measures to guard against the possibility of physical injury, re or any other damage caused in the event of the failure of any product, such as derating, redundancy, re control and fail-safe designs. rohm shall bear no responsibility whatsoever for your use of any product outside of the prescribed scope or not in accordance with the instruction manual. the products are not designed or manufactured to be used with any equipment, device or system which requires an extremely high level of reliability the failure or malfunction of which may result in a direct threat to human life or create a risk of human injury (such as a medical instrument, transportation equipment, aerospace machinery, nuclear-reactor controller, fuel- controller or other safety device). rohm shall bear no responsibility in any way for use of any of the products for the above special purposes. if a product is intended to be used for any such special purpose, please contact a rohm sales representative before purchasing. if you intend to export or ship overseas any product or technology specied herein that may be controlled under the foreign exchange and the foreign trade law, you will be required to obtain a license or permit under the law.


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