PMEG6020AELR. 60 V, 2 A low leakage current Schottky barrier rectifier

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Transcription:

8 September 26 Product data sheet. General description Planar Maximum Efficiency General Application (MEGA) Schottky barrier rectifier with an integrated guard ring for stress protection, encapsulated in a SOD23W small and flat lead Surface-Mounted Device (SMD) plastic package. 2. Features and benefits Extremely low leakage current I R = 235 na Average forward current: I F(AV) 2 A Reverse voltage: V R 6 V Low forward voltage V F = 6 mv High power capability due to clip-bonding technology High temperature T j 75 C Small and flat lead SMD plastic package AEC-Q qualified 3. Applications Low voltage rectification High efficiency DC-to-DC conversion Switch mode power supply Reverse polarity protection Low power consumption applications 4. Quick reference data Table. Quick reference data Symbol Parameter Conditions Min Typ Max Unit I F(AV) average forward current square wave; δ =.5 ; f = 2 khz; T sp 65 C - - 2 A V R reverse voltage - - 6 V V F forward voltage I F = 2 A; t p 3 µs; δ.2 ; I R reverse current V R = 6 V; t p 3 µs; ; δ.2-6 67 mv - 235 7 na

5. Pinning information Table 2. Pinning information Pin Symbol Description Simplified outline Graphic symbol K cathode[] 2 2 2 A anode sym SOD23W [] The marking bar indicates the cathode. 6. Ordering information Table 3. Ordering information Type number Package Name Description Version SOD23W plastic surface mounted package; 2 leads SOD23W 7. Marking Table 4. Marking codes Type number Marking code KE Nexperia B.V. 27. All rights reserved Product data sheet 8 September 26 2 / 5

8. Limiting values Table 5. Limiting values In accordance with the Absolute Maximum Rating System (IEC 634). Symbol Parameter Conditions Min Max Unit V R reverse voltage - 6 V I F forward current T sp = 6 C; δ = - 2.83 A I F(AV) I FSM average forward current non-repetitive peak forward current P tot total power dissipation T amb 25 C square wave; δ =.5 ; f = 2 khz; T amb 95 C square wave; δ =.5 ; f = 2 khz; T sp 65 C [] - 2 A - 2 A square wave; t p = 8 ms; T j(init) = 25 C - 5 A [2] - 68 mw [3] - 5 mw [] - 24 mw T j junction temperature - 75 C T amb ambient temperature -55 75 C T stg storage temperature -65 75 C [] Device mounted on a ceramic Printed-Circuit Board (PCB), Al 2 O 3, standard footprint. [2] Device mounted on an FR4 PCB, single-sided copper, tin-plated and standard footprint. [3] Device mounted on an FR4 PCB, single-sided copper, tin-plated, mounting pad for cathode cm 2. 9. Thermal characteristics Table 6. Thermal characteristics Symbol Parameter Conditions Min Typ Max Unit R th(j-a) R th(j-sp) thermal resistance from junction to ambient thermal resistance from junction to solder point in free air [][2] - - 22 K/W [][3] - - 3 K/W [][4] - - 7 K/W [5] - - 8 K/W [] For Schottky barrier diodes thermal runaway has to be considered, as in some applications the reverse power losses P R are a significant part of the total power losses. [2] Device mounted on an FR4 PCB, single-sided copper, tin-plated and standard footprint. [3] Device mounted on an FR4 PCB, single-sided copper, tin-plated, mounting pad for cathode cm 2. [4] Device mounted on a ceramic PCB, Al 2 O 3, standard footprint. [5] Soldering point of cathode tab. Nexperia B.V. 27. All rights reserved Product data sheet 8 September 26 3 / 5

3 Z th(j-a) (K/W) 2 duty cycle =.75.5.33.25.2..5.2. 6aab649 - - 3-2 - 2 3 t p (s) FR4 PCB, standard footprint Fig.. Transient thermal impedance from junction to ambient as a function of pulse duration; typical values 3 6aab65 Z th(j-a) (K/W) 2 duty cycle =.75.5.33.25.2..5.2. - - 3-2 - 2 3 t p (s) FR4 PCB, mounting pad for cathode cm 2 Fig. 2. Transient thermal impedance from junction to ambient as a function of pulse duration; typical values Nexperia B.V. 27. All rights reserved Product data sheet 8 September 26 4 / 5

2 Z th(j-a) (K/W) duty cycle =.75.5.33.25.2..5 6aab65.2. - - 3-2 - 2 3 t p (s) Ceramic PCB, Al 2 O 3, standard footprint Fig. 3. Transient thermal impedance from junction to ambient as a function of pulse duration; typical values Nexperia B.V. 27. All rights reserved Product data sheet 8 September 26 5 / 5

. Characteristics Table 7. Characteristics Symbol Parameter Conditions Min Typ Max Unit V (BR)R V F I R C d reverse breakdown voltage forward voltage reverse current diode capacitance I R = ma; t p = 3 µs; δ =.2 ; I F =. A; t p 3 µs; δ.2 ; I F =.5 A; t p 3 µs; δ.2 ; I F =.7 A; t p 3 µs; δ.2 ; I F = A; t p 3 µs; δ.2 ; I F =.6 A; t p 3 µs; δ.2 ; I F = 2 A; t p 3 µs; δ.2 ; I F = 2 A; t p 3 µs; δ.2 ; V R = V; t p 3 µs; ; δ.2 V R = 4 V; t p 3 µs; ; δ.2 V R = 6 V; t p 3 µs; ; δ.2 V R = 6 V; t p 3 µs; ; δ.2 t rr reverse recovery time I F =.5 A; I R =.5 A; I R(meas) =. A; V FRM peak forward recovery voltage 6 - - V - 45 5 mv - 5 57 mv - 525 59 mv - 545 6 mv - 58 65 mv - 6 67 mv - 5 63 mv - 5 - na - 5 - na - 235 7 na - 285 4 µa V R = V; f = MHz; - 22 - pf V R = 4 V; f = MHz; - 35 - pf V R = V; f = MHz; - 88 - pf - 9 - ns I F =.5 A; di F /dt = 2 A/µs; - 58 - mv Nexperia B.V. 27. All rights reserved Product data sheet 8 September 26 6 / 5

I F (A) - () aaa-739 I -2 R (A) -3-4 -5-6 () (4) aaa-732-7 (5) -2-8 -3 (4) (5) (6) -9 - - (6) Fig. 4. -4..2.4.6.8. V F (V) () T j = 75 C T j = 5 C (4) T j = 85 C (5) (6) T j = 4 C Forward current as a function of forward voltage; typical values Fig. 5. -2 2 4 6 V R (V) () T j = 75 C T j = 5 C (4) T j = 85 C (5) (6) T j = 4 C Reverse current as a function of reverse voltage; typical values 35 C d (pf) 3 aaa-732.4 P F(AV) (W).2 aaa-7322 (4) 25. 2.8 5.6 ().4 5.2 Fig. 6. 2 4 6 V R (V) f = MHz; T amb = 25 C Diode capacitance as a function of reverse voltage; typical values Fig. 7.. 2 3 I F(AV) (A) T j = 75 C () δ =. δ =.2 δ =.5 (4) δ = Average forward power dissipation as a function of average forward current; typical values Nexperia B.V. 27. All rights reserved Product data sheet 8 September 26 7 / 5

8 aaa-876 3 aaa-877 P R(AV) (mw) 6 I F(AV) (A) () 2 () 4 2 (4) (4) 2 4 6 V R (V) 5 5 2 T amb ( C) Fig. 8. T j = 5 C () δ = (DC) δ =.5; f = 2 khz δ =.2; f = 2 khz (4) δ =.; f = 2 khz Average reverse power dissipation as a function of reverse voltage; typical values Fig. 9. FR4 PCB, standard footprint T j = 75 C () δ = ; DC δ =.5; f = 2 khz δ =.2; f = 2 khz (4) δ =.; f = 2 khz Average forward current as a function of ambient temperature; typical values 3 aaa-878 3 aaa-879 I F(AV) (A) () I F(AV) (A) () 2 2 (4) (4) 5 5 2 T amb ( C) FR4 PCB, mounting pad for cathode cm 2 T j = 75 C () δ = ; DC δ =.5; f = 2 khz δ =.2; f = 2 khz (4) δ =.; f = 2 khz Fig.. Average forward current as a function of ambient temperature; typical values 5 5 2 T amb ( C) Ceramic PCB, Al 2 O 3, standard footprint T j = 75 C () δ = ; DC δ =.5; f = 2 khz δ =.2; f = 2 khz (4) δ =.; f = 2 khz Fig.. Average forward current as a function of ambient temperature; typical values Nexperia B.V. 27. All rights reserved Product data sheet 8 September 26 8 / 5

3 aaa-88 I F(AV) (A) () 2 (4) T j = 75 C () δ = ; DC δ =.5; f = 2 khz δ =.2; f = 2 khz (4) δ =.; f = 2 khz 5 5 2 T sp ( C) Fig. 2. Average forward current as a function of solder point temperature; typical values. Test information I F I R(meas) time I R t rr 6aad22 Fig. 3. Reverse recovery definition Nexperia B.V. 27. All rights reserved Product data sheet 8 September 26 9 / 5

I F time V F V FRM V F time aab92 Fig. 4. Forward recovery definition P t cy duty cycle δ = t p t cy t p t 6aac658 Fig. 5. Duty cycle definition The current ratings for the typical waveforms are calculated according to the equations: I F(AV) = I M δ with I M defined as peak current, I RMS = I F(AV) at DC, and I RMS = I M δ with I RMS defined as RMS current. Quality information This product has been qualified in accordance with the Automotive Electronics Council (AEC) standard Q - Stress test qualification for discrete semiconductors, and is suitable for use in automotive applications. Nexperia B.V. 27. All rights reserved Product data sheet 8 September 26 / 5

2. Package outline.9.5..9 3.7 3.3 2.8 2.4.6.3 2.5.75.22. Dimensions in mm 8--6 Fig. 6. Package outline SOD23W 3. Soldering 4.4 2.9 2.8 solder lands 2..6..2 (2 ) (2 ) solder resist solder paste occupied area Fig. 7. Reflow soldering footprint for SOD23W. (2 ) Dimensions in mm.2 (2 ) sod23w_fr Nexperia B.V. 27. All rights reserved Product data sheet 8 September 26 / 5

4. Revision history Table 8. Revision history Data sheet ID Release date Data sheet status Change notice Supersedes v.3 2698 Product data sheet - v.2 Modification: Figure 2: editorial change v.2 2569 Product data sheet - v. v. 2557 Product data sheet - - Nexperia B.V. 27. All rights reserved Product data sheet 8 September 26 2 / 5

5. Legal information Data sheet status Document status [][2] Objective [short] data sheet Preliminary [short] data sheet Product [short] data sheet Product status [3] Development Qualification Production Definition This document contains data from the objective specification for product development. This document contains data from the preliminary specification. This document contains the product specification. [] Please consult the most recently issued document before initiating or completing a design. [2] The term 'short data sheet' is explained in section "Definitions". [3] The product status of device(s) described in this document may have changed since this document was published and may differ in case of multiple devices. The latest product status information is available on the Internet at URL http://www.nexperia.com. Definitions Preview The document is a preview version only. The document is still subject to formal approval, which may result in modifications or additions. Nexperia does not give any representations or warranties as to the accuracy or completeness of information included herein and shall have no liability for the consequences of use of such information. Draft The document is a draft version only. The content is still under internal review and subject to formal approval, which may result in modifications or additions. Nexperia does not give any representations or warranties as to the accuracy or completeness of information included herein and shall have no liability for the consequences of use of such information. Short data sheet A short data sheet is an extract from a full data sheet with the same product type number(s) and title. A short data sheet is intended for quick reference only and should not be relied upon to contain detailed and full information. For detailed and full information see the relevant full data sheet, which is available on request via the local Nexperia sales office. 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In no event shall Nexperia be liable for any indirect, incidental, punitive, special or consequential damages (including - without limitation - lost profits, lost savings, business interruption, costs related to the removal or replacement of any products or rework charges) whether or not such damages are based on tort (including negligence), warranty, breach of contract or any other legal theory. Notwithstanding any damages that customer might incur for any reason whatsoever, Nexperia s aggregate and cumulative liability towards customer for the products described herein shall be limited in accordance with the Terms and conditions of commercial sale of Nexperia. Right to make changes Nexperia reserves the right to make changes to information published in this document, including without limitation specifications and product descriptions, at any time and without notice. This document supersedes and replaces all information supplied prior to the publication hereof. Suitability for use in automotive applications This Nexperia product has been qualified for use in automotive applications. Unless otherwise agreed in writing, the product is not designed, authorized or warranted to be suitable for use in life support, life-critical or safety-critical systems or equipment, nor in applications where failure or malfunction of a Nexperia product can reasonably be expected to result in personal injury, death or severe property or environmental damage. Nexperia and its suppliers accept no liability for inclusion and/or use of Nexperia products in such equipment or applications and therefore such inclusion and/or use is at the customer's own risk. Quick reference data The Quick reference data is an extract of the product data given in the Limiting values and Characteristics sections of this document, and as such is not complete, exhaustive or legally binding. Applications Applications that are described herein for any of these products are for illustrative purposes only. Nexperia makes no representation or warranty that such applications will be suitable for the specified use without further testing or modification. Customers are responsible for the design and operation of their applications and products using Nexperia products, and Nexperia accepts no liability for any assistance with applications or customer product design. It is customer s sole responsibility to determine whether the Nexperia product is suitable and fit for the customer s applications and products planned, as well as for the planned application and use of customer s third party customer(s). Customers should provide appropriate design and operating safeguards to minimize the risks associated with their applications and products. Nexperia does not accept any liability related to any default, damage, costs or problem which is based on any weakness or default in the customer s applications or products, or the application or use by customer s third party customer(s). Customer is responsible for doing all necessary testing for the customer s applications and products using Nexperia products in order to avoid a default of the applications and the products or of the application or use by customer s third party customer(s). Nexperia does not accept any liability in this respect. Limiting values Stress above one or more limiting values (as defined in the Absolute Maximum Ratings System of IEC 634) will cause permanent damage to the device. Limiting values are stress ratings only and (proper) operation of the device at these or any other conditions above those given in the Recommended operating conditions section (if present) or the Characteristics sections of this document is not warranted. Constant or repeated exposure to limiting values will permanently and irreversibly affect the quality and reliability of the device. Terms and conditions of commercial sale Nexperia products are sold subject to the general terms and conditions of commercial sale, as published at http://www.nexperia.com/profile/terms, unless otherwise agreed in a valid written individual agreement. In case an individual agreement is concluded only the terms and conditions of the respective agreement shall apply. Nexperia hereby expressly objects to applying the customer s general terms and conditions with regard to the purchase of Nexperia products by customer. No offer to sell or license Nothing in this document may be interpreted or construed as an offer to sell products that is open for acceptance or the grant, conveyance or implication of any license under any copyrights, patents or other industrial or intellectual property rights. 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Trademarks Notice: All referenced brands, product names, service names and trademarks are the property of their respective owners. Nexperia B.V. 27. All rights reserved Product data sheet 8 September 26 4 / 5

6. Contents. General description... 2. Features and benefits... 3. Applications... 4. Quick reference data... 5. Pinning information...2 6. Ordering information...2 7. Marking...2 8. Limiting values... 3 9. Thermal characteristics... 3. Characteristics...6. Test information... 9 2. Package outline... 3. Soldering... 4. Revision history...2 5. Legal information... 3 Nexperia B.V. 27. All rights reserved For more information, please visit: http://www.nexperia.com For sales office addresses, please send an email to: salesaddresses@nexperia.com Date of release: 8 September 26 Nexperia B.V. 27. All rights reserved Product data sheet 8 September 26 5 / 5