PNE20010EXDX
Fast / Ultrafast Diode, 200 V, 1 A, Single, 1.02 V, 25 ns, 25 A
- Manufacturer: NEXPERIA
- Product type: Fast & Ultrafast Recovery Rectifier Diodes
- SVHC: Lead (25-Jun-2025)
- No. of Pins: 2 Pin
- Product Range: -
- Qualification: -
- Diode Case Style: CFP2-HP (SOD-323HP)
- Diode Configuration: Single
- Forward Voltage Max: 1.02V
- Forward Surge Current: 25A
- Reverse Recovery Time: 25ns
- Average Forward Current: 1A
- Operating Temperature Max: 175°C
- Repetitive Peak Reverse Voltage: 200V
| Delivery and price | |
|---|---|
| Units per pack | 1000 |
| Price | 0.087 € |
| Current stock | 1000+ |
| Lead time | 30 days |
## **PNE20010EXD** **200 V, 1 A hyperfast recovery rectifier** ## **1 April 2022** **Product data sheet** ## **1. General description** High power density, hyperfast recovery rectifier with high-efficiency planar technology, encapsulated in a CFP2-HP (SOD323HP) power and flat lead Surface-Mounted Device (SMD) plastic package. ## **2. Features and benefits** - Reverse voltage: VR ≤ 200 V - Forward current: IF ≤ 1 A - Hyperfast recovery time: trr ≤ 25 ns - Planar die design with Pt doped life time control - Low inductance - Small and flat lead SMD plastic package, typical height 0.68 mm - High power capability due to clip-bond technology ## **3. Applications** - General-purpose rectification - Reverse polarity protection - Hyperfast switching - Freewheeling applications ## **4. Quick reference data** **Table 1. Quick reference data** |**Symbol**<br>~~sd~~|**Parameter**<br>~~sd~~|**Conditions**<br>~~sd~~|~~sd~~|**Min**<br>~~sd~~|**Typ**<br>~~sd~~|**Max**<br>~~sd~~|**Unit**<br>~~sd~~| |---|---|---|---|---|---|---|---| |IF(AV)<br>~~sd~~<br>~~a~~|average forward<br>current<br>~~sd~~<br>~~ee~~|δ = 0.5; f = 20 kHz; square wave; Tsp≤<br>170 °C<br>~~sd~~<br>~~ee~~|~~sd~~<br>~~ee~~<br>~~OG~~|-<br>~~sd~~<br>~~ee~~<br>~~OG~~|-<br>~~sd~~<br>~~ee~~|1<br>~~sd~~<br>~~ee~~|A<br>~~sd~~<br>~~ee~~| |VR<br>~~eG~~|reverse voltage<br>~~eG~~|Tj= 25 °C<br>~~eG~~|~~eG~~<br>~~OG~~|-<br>~~eG~~<br>~~OG~~|-<br>~~eG~~|200<br>~~eG~~|V<br>~~eG~~| |VF<br>~~ee~~|forward voltage<br>~~ee~~|IF= 1 A; pulsed; Tj= 25 °C<br>~~ces~~|~~OG~~<br>eee|-<br>~~OG~~<br>~~eee~~|880<br>~~eee~~|1020<br>~~eee~~|mV<br>~~eee~~| |IR<br>~~ee~~|reverse current<br>~~ee~~|VR= 200 V; pulsed; Tj= 25 °C<br>~~ces~~|eee|-<br>~~eee~~|-<br>~~eee~~|75<br>~~eee~~|nA<br>~~eee~~| |||VR= 200 V; pulsed; Tj= 125 °C<br>~~ces~~|eee|-<br>~~eee~~|0.6<br>~~eee~~|5<br>~~eee~~|µA<br>~~eee~~| **Nexperia** **PNE20010EXD** **200 V, 1 A hyperfast recovery rectifier** ## **5. Pinning information** **Table 2. Pinning information** |**Pin**|**Symbol**|**Description**|**Simplified outline**|**Graphic symbol**|**Graphic symbol**| |---|---|---|---|---|---| |1|K|cathode|Transparent top view<br>1<br>2<br>**CFP2-HP (SOD323HP)**|K|_006aab040_<br>A<br>| |2|A|anode|||| ## **6. Ordering information** **Table 3. Ordering information** |**Type number**|**Package**||| |---|---|---|---| ||**Name**|**Description**|**Version**| |PNE20010EXD|CFP2-HP|SOD323HP: plastic surface-mounted package with<br>solderable lead ends; 2.2 mm x 1.3 mm x 0.68 mm body|SOD323HP| ## **7. Marking** ## **Table 4. Marking codes** |**Type number**|**Marking code**| |---|---| |PNE20010EXD|`2K`| ## **8. Limiting values** ## **Table 5. Limiting values** _In accordance with the Absolute Maximum Rating System (IEC 60134)._ |**Symbol**|**Parameter**|**Conditions**||**Min**|**Max**|**Unit**| |---|---|---|---|---|---|---| |VR|reverse voltage|Tj= 25 °C||-|200|V| |IF|forward current|δ = 1; Tsp≤ 169 °C||-|1.4|A| |IF(AV)|average forward current|δ = 0.5; f = 20 kHz; square wave; Tsp≤<br>170 °C||-|1|A| |IFSM|non-repetitive peak<br>forward current|tp= 8.3 ms; single half sine wave (applied<br>at reated load condition); Tj(init)= 25 °C||-|25|A| |Ptot|total power dissipation|Tamb≤ 25 °C|[1]|-|0.65|W| ||||[2]|-|1.2|W| |Tj|junction temperature|||-|175|°C| |Tamb|ambient temperature|||-55|175|°C| |Tstg|storage temperature|||-65|175|°C| [1] Device mounted on an FR4 PCB, single-sided copper, tin-plated and standard footprint. [2] Device mounted on an FR4 PCB, single-sided copper, tin-plated, mounting pad for cathode 1 cm[2] . © Nexperia B.V. 2022. All rights reserved All information provided in this document is subject to legal disclaimers. PNE20010EXD **2 / 13** **1 April 2022** **Product data sheet** **Nexperia** **PNE20010EXD** **200 V, 1 A hyperfast recovery rectifier** ## **9. Thermal characteristics** **Table 6. Thermal characteristics** |**Symbol**|**Parameter**|**Conditions**||**Min**|**Typ**|**Max**|**Unit**| |---|---|---|---|---|---|---|---| |Rth(j-a)|thermal resistance from<br>junction to ambient|in free air|[1] [2]|-|-|230|K/W| ||||[1] [3]|-|-|125|K/W| |Rth(j-sp)|thermal resistance from<br>junction to solder point||[4]|-|-|6|K/W| - [1] For Schottky barrier diodes thermal runaway has to be considered, as in some applications the reverse power losses PR 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 1 cm[2] . - [4] Soldering point of cathode tab. **==> picture [481 x 189] intentionally omitted <==** **----- Start of picture text -----**<br> aaa-033396<br>10 [3]<br>Zth(j-a)<br>(K/W) duty cycle = 1<br>0.75<br>10 [2] 0.50<br>0.33<br>0.20<br>0.10<br>10 0.05<br>0.02<br>0.01<br>1<br>10 [-1] 0<br>10 [-2]<br>10 [-5] 10 [-4] 10 [-3] 10 [-2] 10 [-1] 1 10 10 [2] 10 [3]<br>tp (s)<br>0.25<br>**----- End of picture text -----**<br> FR4 PCB, standard footprint ## **Fig. 1. Transient thermal impedance from junction to ambient as a function of pulse duration; typical values** **==> picture [481 x 202] intentionally omitted <==** **----- Start of picture text -----**<br> aaa-033397<br>10 [3]<br>Zth(j-a)<br>(K/W)<br>duty cycle = 1<br>10 [2]<br>0.75<br>0.50<br>0.33<br>0.20<br>10 0.10<br>0.05<br>0.02<br>0.01<br>1<br>10 [-1] 0<br>10 [-2]<br>10 [-5] 10 [-4] 10 [-3] 10 [-2] 10 [-1] 1 10 10 [2] 10 [3]<br>tp (s)<br>FR4 PCB, mounting pad for cathode 1 cm [2]<br>0.25<br>**----- End of picture text -----**<br> **Fig. 2. Transient thermal impedance from junction to ambient as a function of pulse duration; typical values** © Nexperia B.V. 2022. All rights reserved All information provided in this document is subject to legal disclaimers. PNE20010EXD **3 / 13** **1 April 2022** **Product data sheet** **Nexperia** **PNE20010EXD** **200 V, 1 A hyperfast recovery rectifier** ## **10. Characteristics** **Table 7. Characteristics** |**Symbol**|**Parameter**|**Conditions**||**Min**|**Typ**|**Max**|**Unit**| |---|---|---|---|---|---|---|---| |V(BR)R|reverse breakdown<br>voltage|IR= 0.1 mA; pulsed; Tj= 25 °C|[1]|200|-|-|V| |VF|forward voltage|IF= 0.1 A; pulsed; Tj= 25 °C|[1]|-|720|840|mV| |||IF= 0.5 A; pulsed; Tj= 25 °C|[1]|-|825|935|mV| |||IF= 1 A; pulsed; Tj= 25 °C||-|880|1020|mV| |||IF= 1 A; pulsed; Tj= -40 °C||-|975|1100|mV| |||IF= 1 A; pulsed; Tj= 125 °C||-|730|870|mV| |IR|reverse current|VR= 200 V; pulsed; Tj= 25 °C||-|-|75|nA| |||VR= 200 V; pulsed; Tj= 125 °C||-|0.6|5|µA| |||VR= 200 V; pulsed; Tj= 150 °C||-|2.5|15|µA| |Cd|diode capacitance|VR= 4 V; f = 1 MHz; Tj= 25 °C||-|10|-|pF| |||VR= 10 V; f = 1 MHz; Tj= 25 °C||-|8|-|pF| |trr|reverse recovery time ;<br>step recovery|IF= 0.5 A; IR= 1 A; IR(meas)= 0.25 A;<br>Tj= 25 °C||-|9|25|ns| ||reverse recovery time ;<br>ramp recovery|IF= 1 A; dIF/dt = 50 A/µs; VR= 30 V;<br>Tj= 25 °C||-|15|-|ns| |IRM|peak reverse recovery<br>current|||-|0.45|-|A| |Qrr|reverse recovery<br>charge|||-|4|-|nC| |VFRM|peak forward recovery<br>voltage|IF= 1 A; dIF/dt = 50 A/µs; Tj= 25 °C||-|1|-|V| [1] Very short pulse, in order to maintain a stable junction temperature. © Nexperia B.V. 2022. All rights reserved All information provided in this document is subject to legal disclaimers. PNE20010EXD **4 / 13** **1 April 2022** **Product data sheet** **Nexperia** **PNE20010EXD** ## **200 V, 1 A hyperfast recovery rectifier** **==> picture [497 x 613] intentionally omitted <==** **----- Start of picture text -----**<br> aaa-034459 aaa-034460<br>10 10 [-5]<br>IF (A)IR (1)<br>(A)<br>10 [-6] (2)<br>1<br>(1)(2) (5) (3)<br>(3) (6) 10 [-7]<br>(4) (7) (4)<br>10 [-1]<br>(5)<br>10 [-8]<br>10 [-2]<br>10 [9]<br>(6)<br>10 [-3] 10 [-10]<br>0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 0 40 80 120 160 200<br>VF (V) VR (V)<br>pulsed condition pulsed condition<br>(1) Tj = 175 °C (1) Tj = 175 °C<br>(2) Tj = 150 °C (2) Tj = 150 °C<br>(3) Tj = 125 °C (3) Tj = 125 °C<br>(4) Tj = 100 °C (4) Tj = 100 °C<br>(5) Tj = 85 °C (5) Tj = 85 °C<br>(6) Tj = 25 °C (6) Tj = 25 °C<br>(7) Tj = -40 °C<br>Fig. 4. Reverse current as a function of reverse<br>Fig. 3. Forward current as a function of forward voltage; typical values<br>voltage; typical values<br>aaa-034461 aaa-034462<br>30 1.25<br>PF(AV) (5)<br>Cd (W) (4)<br>(pF) 1.00<br>20 (3)<br>0.75<br>(2)<br>0.50<br>10 (1)<br>0.25<br>0 0<br>0 40 80 120 160 200 0 0.5 1.0 1.5<br>VR (V) IF(AV) (A)<br>f = 1 MHz; Tamb = 25 °C Tj = 100 °C<br>(1) δ = 0.1<br>Fig. 5. Diode capacitance as a function of reverse<br>(2) δ = 0.2<br>voltage; typical values<br>(3) δ = 0.5<br>(4) δ = 0.8<br>(5) δ = 1; DC<br>Fig. 6. Average forward power dissipation as a<br>function of average forward current; typical<br>values<br>**----- End of picture text -----**<br> © Nexperia B.V. 2022. All rights reserved All information provided in this document is subject to legal disclaimers. PNE20010EXD **5 / 13** **1 April 2022** **Product data sheet** **Nexperia** **PNE20010EXD** ## **200 V, 1 A hyperfast recovery rectifier** **==> picture [497 x 581] intentionally omitted <==** **----- Start of picture text -----**<br> aaa-034463 aaa-034464<br>0.03 1.5<br>P(mW)R(AV) (1) IF(AV)(A) (1)<br>(2)<br>0.02 (3) 1.0 (2)<br>(4) (3)<br>0.01 0.5<br>(4)<br>(5)<br>0 0<br>0 50 100 150 200 0 50 100 150 200<br>VR (V) T amb (°C)<br>Tj = 100 °C FR4 PCB, standard footprint<br>(1) δ = 1; DC Tj = 175 °C<br>(2) δ = 0.9 (1) δ = 1; DC<br>(3) δ = 0.8 (2) δ = 0.5; f = 20 kHz<br>(4) δ = 0.5 (3) δ = 0.2; f = 20 kHz<br>(5) δ = 0.2 (4) δ = 0.1; f = 20 kHz<br>Fig. 7. Average reverse power dissipation as a Fig. 8. Average forward current as a function of<br>function of reverse voltage; typical values ambient temperature; typical values<br>aaa-034465 aaa-034466<br>1.5 1.5<br>(1) (1)<br>IF(AV) IF(AV)<br>(A) (A)<br>1.0 (2) 1.0 (2)<br>(3) (3)<br>0.5 0.5<br>(4) (4)<br>0 0<br>0 50 100 150 200 0 50 100 150 200<br>T amb (°C) T amb (°C)<br>FR4 PCB, mounting pad for cathode 1 cm [2] Tj = 175 °C<br>Tj = 175 °C (1) δ = 1; DC<br>(1) δ = 1; DC (2) δ = 0.5; f = 20 kHz<br>(2) δ = 0.5; f = 20 kHz (3) δ = 0.2; f = 20 kHz<br>(3) δ = 0.2; f = 20 kHz (4) δ = 0.1; f = 20 kHz<br>(4) δ = 0.1; f = 20 kHz<br>Fig. 10. Average forward current as a function of solder<br>Fig. 9. Average forward current as a function of point temperature; typical values<br>ambient temperature; typical values<br>**----- End of picture text -----**<br> © Nexperia B.V. 2022. All rights reserved All information provided in this document is subject to legal disclaimers. PNE20010EXD **6 / 13** **1 April 2022** **Product data sheet** **Nexperia** **PNE20010EXD** ## **200 V, 1 A hyperfast recovery rectifier** **==> picture [481 x 214] intentionally omitted <==** **----- Start of picture text -----**<br> aaa-034467 aaa-034469<br>250 250<br>VR VR<br>(V) (V)<br>200 200<br>150 150<br>100 100<br>50 50<br>0 0<br>0 50 100 150 200 0 50 100 150 200<br>T j (°C) T j (°C)<br>FR4 PCB, standard footprint FR4 PCB, mounting pad for cathode 1 cm [2]<br>Rth = 230 K/W Rth = 125 K/W<br>**----- End of picture text -----**<br> **Fig. 11. Derated maximum reverse voltage as a function Fig. 12. Derated maximum reverse voltage as a function of junction temperature; typical values of junction temperature; typical values** **==> picture [325 x 213] intentionally omitted <==** **----- Start of picture text -----**<br> aaa-034470<br>250<br>VR<br>(V)<br>200<br>150<br>100<br>50<br>0<br>0 50 100 150 200<br>T j (°C)<br>Soldering point of cathode tab<br>Rth = 6 K/W<br>**----- End of picture text -----**<br> **Fig. 13. Derated maximum reverse voltage as a function of junction temperature; typical values** © Nexperia B.V. 2022. All rights reserved All information provided in this document is subject to legal disclaimers. PNE20010EXD **7 / 13** **1 April 2022** **Product data sheet** **Nexperia** **PNE20010EXD** **200 V, 1 A hyperfast recovery rectifier** ## **11. Test information** **==> picture [497 x 597] intentionally omitted <==** **----- Start of picture text -----**<br> IF<br>IR(meas)<br>time<br>IR<br>trr 006aad022<br>Fig. 14. Reverse recovery definition; step recovery<br>dlF<br>IF<br>dt<br>trr<br>time<br>25 %<br>Qrr 100 %<br>IR IRM<br>003aac562<br>Fig. 15. Reverse recovery definition; ramp recovery<br>IF<br>time<br>VF<br>VFRM<br>VF<br>time<br>001aab912<br>Fig. 16. Forward recovery definition<br>**----- End of picture text -----**<br> © Nexperia B.V. 2022. All rights reserved All information provided in this document is subject to legal disclaimers. PNE20010EXD **8 / 13** **1 April 2022** **Product data sheet** **Nexperia** **PNE20010EXD** **200 V, 1 A hyperfast recovery rectifier** **==> picture [121 x 94] intentionally omitted <==** **----- Start of picture text -----**<br> P duty cycle δ = t1<br>t2 t2<br>t1<br>t<br>006aaa812<br>**----- End of picture text -----**<br> **Fig. 17. Duty cycle definition** The current ratings for the typical waveforms are calculated according to the equations: IF(AV) = IM × δ with IM defined as peak current IRMS = IF(AV) at DC, and IRMS = IM × √δ with IRMS defined as RMS current. ## **12. Package outline** **==> picture [233 x 163] intentionally omitted <==** **----- Start of picture text -----**<br> 1.4 0.75<br>0.98<br>1.2 0.61<br>0.82<br>1 1<br>1.50<br>1.26<br>2.7 2.3<br>2.6 2.1<br>0.80<br>0.64<br>2 2<br>0.75<br>0.25<br>0.65<br>0.11<br>Dimensions in mm 21-04-14<br>**----- End of picture text -----**<br> **Fig. 18. Package outline CFP2-HP (SOD323HP)** © Nexperia B.V. 2022. All rights reserved All information provided in this document is subject to legal disclaimers. PNE20010EXD **9 / 13** **1 April 2022** **Product data sheet** **Nexperia** **PNE20010EXD** **200 V, 1 A hyperfast recovery rectifier** ## **13. Soldering** **==> picture [481 x 574] intentionally omitted <==** **----- Start of picture text -----**<br> Footprint information for reflow soldering of SOD323HP SOD323HP<br>1.7 0.4 1.0<br>1.6 0.5 0.9<br>1.5 0.8<br>1.6 1.4 1.2 1.1 1.0 0.78 0.88 0.98 1.18<br>0.42 2.5 0.38<br>3.3<br>recommended stencil thickness: 0.1 mm<br>occupied area solder resist<br>solder land solder paste<br>Dimensions in mm<br>21-04--02<br>Issue date sod323hp_fr<br>**----- End of picture text -----**<br> **Fig. 19. Reflow soldering footprint for CFP2-HP (SOD323HP)** © Nexperia B.V. 2022. All rights reserved All information provided in this document is subject to legal disclaimers. PNE20010EXD **10 / 13** **1 April 2022** **Product data sheet** **Nexperia** **PNE20010EXD** **200 V, 1 A hyperfast recovery rectifier** ## **14. Revision history** ## **Table 8. Revision history** |**Data sheet ID**|**Release date**|**Data sheet status**|**Change**<br>**notice**|**Supersedes**| |---|---|---|---|---| |PNE20010EXD v.2|20220401|Product data sheet|-|PNE20010EXD v.1| |Modifications:|•<br>Product status changed|||| |PNE20010EXD v.1|20220218|Preliminary data<br>sheet|-|-| © Nexperia B.V. 2022. All rights reserved All information provided in this document is subject to legal disclaimers. PNE20010EXD **11 / 13** **1 April 2022** **Product data sheet** **Nexperia** **PNE20010EXD** ## **200 V, 1 A hyperfast recovery rectifier** ## **15. Legal information** ## **Data sheet status** |**Document status**<br>**[1][2]**|**Product**<br>**status[3]**|**Definition**| |---|---|---| |Objective [short]<br>data sheet|Development|This document contains data from<br>the objective specification for<br>product development.| |Preliminary [short]<br>data sheet|Qualification|This document contains data from<br>the preliminary specification.| |Product [short]<br>data sheet|Production|This document contains the product<br>specification.| [1] 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 https://www.nexperia.com. ## **Definitions** **Draft** — The document is a draft version only. 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Nexperia accepts no liability for inclusion and/or use of non-automotive qualified products in automotive equipment or applications. In the event that customer uses the product for design-in and use in automotive applications to automotive specifications and standards, customer (a) shall use the product without Nexperia’s warranty of the product for such automotive applications, use and specifications, and (b) whenever customer uses the product for automotive applications beyond Nexperia’s specifications such use shall be solely at customer’s own risk, and (c) customer fully indemnifies Nexperia for any liability, damages or failed product claims resulting from customer design and use of the product for automotive applications beyond Nexperia’s standard warranty and Nexperia’s product specifications. **Translations** — A non-English (translated) version of a document is for reference only. The English version shall prevail in case of any discrepancy between the translated and English versions. ## **Trademarks** Notice: All referenced brands, product names, service names and trademarks are the property of their respective owners. All information provided in this document is subject to legal disclaimers. © Nexperia B.V. 2022. All rights reserved PNE20010EXD **12 / 13** **1 April 2022** **Product data sheet** **Nexperia** **PNE20010EXD** **200 V, 1 A hyperfast recovery rectifier** ## **Contents** **1. General description......................................................1 2. Features and benefits.................................................. 1 3. Applications.................................................................. 1 4. Quick reference data....................................................1 5. Pinning information......................................................2 6. Ordering information....................................................2 7. Marking..........................................................................2 8. Limiting values............................................................. 2 9. Thermal characteristics............................................... 3 10. Characteristics............................................................4 11. Test information..........................................................8 12. Package outline.......................................................... 9 13. Soldering................................................................... 10 14. Revision history........................................................11 15. Legal information......................................................12** ## © **Nexperia B.V. 2022. 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: 1 April 2022** © Nexperia B.V. 2022. All rights reserved All information provided in this document is subject to legal disclaimers. PNE20010EXD **13 / 13** **1 April 2022** **Product data sheet**
Updated at June 4, 2026
Nexperia is a dedicated global leader in discretes, logic, and MOSFET devices. Built on over half a century of semiconductor expertise and operating independently since 2017, the company produces consistently reliable components at an exceptional volume of 85 billion units annually. With its own manufacturing facilities, Nexperia delivers industry-leading small packages that combine power and thermal efficiency with best-in-class quality, meeting the rigorous standards of the automotive sector. Our extensive Nexperia portfolio is heavily focused on discrete semiconductors, providing engineers with a robust selection of core building blocks. This includes a comprehensive range of diodes and rectifiers, featuring a vast selection of Zener single diodes and Schottky diodes designed for precise voltage regulation and efficient power routing. Additionally, we offer an expansive array of bipolar transistors and single MOSFETs tailored for reliable switching and amplification in demanding applications. Beyond these primary offerings, the lineup extends into specialized circuit protection and passive components. This includes transient voltage suppressor (TVS) diodes, Zener array diodes, and small signal diodes, alongside dual MOSFETs and fast recovery rectifiers. For comprehensive design needs, the selection also encompasses integrated passive filters, common mode chokes, and precision timers and oscillators, ensuring a complete solution for high-performance electronic systems.
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