Schottky Barrier Diodes
4-4 Schottky Barrier Diodes
This document provides detailed specifications and characteristic curves for various Schottky Barrier Diodes. The diodes are categorized by their package type, electrical characteristics, and performance parameters.
Table 1: Schottky Barrier Diodes Specifications
VRM (V) | IF (AV) (A) | Package (Body Diameter/Lead Diameter) | Part Number | IFSM (A) 50Hz Single Half Sine Wave max | VF (V) IF=1A | Tj (°C) | Tstg (°C) | IF (A) VR=VRM | IR (mA) VR=VRM | Ta (°C) | Rth(j-l) (°C/W) | Rth(j-c) (°C/W) | Mass (g) |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|
60 | 0.7 | Axial($2.4/$0.6) | AK 06 | 10 | 0.62 | -40 to +150 | -40 to +150 | 0.7 | 1 | 30 | 150 | 20 | 0.13 |
60 | 0.7 | Axial($2.7/$0.6) | EK 06 | 10 | 0.62 | -40 to +150 | -40 to +150 | 0.7 | 1 | 30 | 150 | 20 | 0.3 |
60 | 1.5 | Axial($2.7/$0.78) | EK 16 | 25 | 0.62 | -40 to +150 | -40 to +150 | 1.5 | 1 | 55 | 150 | 17 | 0.3 |
60 | 1.5 | Axial($4.0/$0.78) | RK 16 | 25 | 0.62 | -40 to +150 | -40 to +150 | 1.5 | 1 | 55 | 150 | 15 | 0.45 |
60 | 2.0 | Axial($4.0/$0.98) | RK 36 | 40 | 0.62 | -40 to +150 | -40 to +150 | 2.0 | 2 | 70 | 150 | 12 | 0.6 |
60 | 3.5 | Axial($6.5/$1.4) | RK 46 | 70 | 0.62 | -40 to +150 | -40 to +150 | 3.5 | 3 | 125 | 150 | 8 | 1.2 |
60 | 4.0 | TO-220F(Center-tap) | FMB-26 | 40 | 0.62 | -40 to +150 | -40 to +150 | 2.0 | 1 | 55 | 150 | 4 | 2.1 |
60 | 6.0 | TO-220F2Pin | FMB-G16L | 50 | 0.62 | -40 to +150 | -40 to +150 | 0.62 | 5 | 175 | 150 | 150 | 2.1 |
90 | 10 | TO-220F(Center-tap) | FMB-26L | 50 | 0.62 | -40 to +150 | -40 to +150 | 0.62 | 2.5 | 175 | 150 | 150 | 2.1 |
90 | 20 | TO-220F(Center-tap) | FMB-2206 | 150 | 0.7 | -40 to +150 | -40 to +150 | 0.7 | 8 | 275 | 150 | 150 | 2.1 |
90 | 30 | TO-220F(Center-tap) | FMB-2306 | 150 | 0.7 | -40 to +150 | -40 to +150 | 0.7 | 8 | 400 | 150 | 150 | 2.1 |
90 | 15 | TO-220F(Center-tap) | FMW-2156 | 100 | 0.7 | -40 to +150 | -40 to +150 | 0.7 | 5 | 175 | 150 | 150 | 2.1 |
90 | 0.7 | Axial($2.4/$0.6) | AK 09 | 10 | 0.81 | -40 to +150 | -40 to +150 | 0.81 | 1 | 30 | 150 | 150 | 0.13 |
90 | 0.7 | Axial($2.7/$0.6) | EK 09 | 10 | 0.81 | -40 to +150 | -40 to +150 | 0.7 | 1 | 30 | 150 | 20 | 0.3 |
90 | 1.5 | Axial($2.7/$0.78) | EK 19 | 40 | 0.81 | -40 to +150 | -40 to +150 | 1.5 | 2 | 55 | 150 | 17 | 0.3 |
90 | 1.5 | Axial($4.0/$0.78) | RK 19 | 40 | 0.81 | -40 to +150 | -40 to +150 | 1.5 | 2 | 55 | 150 | 15 | 0.45 |
90 | 2.0 | Axial($4.0/$0.98) | RK 39 | 50 | 0.81 | -40 to +150 | -40 to +150 | 2.0 | 3 | 70 | 150 | 12 | 0.6 |
90 | 3.5 | Axial($6.5/$1.4) | RK 49 | 60 | 0.81 | -40 to +150 | -40 to +150 | 3.5 | 5 | 125 | 150 | 8 | 1.2 |
90 | 4.0 | TO-220F (Center-tap) | FMB-29 | 50 | 0.81 | -40 to +150 | -40 to +150 | 2.0 | 3 | 70 | 150 | 4 | 2.1 |
90 | 4.0 | TO-220F2Pin | FMB-G19L | 60 | 0.81 | -40 to +150 | -40 to +150 | 4.0 | 5 | 125 | 150 | 4 | 2.1 |
90 | 8.0 | TO-220F (Center-tap) | FMB-29L | 60 | 0.81 | -40 to +150 | -40 to +150 | 4.0 | 5 | 125 | 150 | 4 | 2.1 |
Low VF "A Series"
Surface-Mount
VRM (V) | IF (AV) (A) | Package | Part Number | IFSM (A) 50Hz Single Half Sine Wave max | VF (V) IF=1A | Tj (°C) | Tstg (°C) | IF (A) VR=VRM | IR (mA) VR=VRM | Ta (°C) | Rth(j-l) (°C/W) | Rth(j-c) (°C/W) | Mass (g) |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|
30 | 1.0 | Surface-Mount (SFP) | SFPA-53 | 30 | 0.36 | -40 to +125 | -40 to +125 | 1.0 | 1.5 | 70 | 100 | 20 | 0.072 |
30 | 1.0 | Surface-Mount (SJP) | SJPA-D3* | 30 | 0.36 | -40 to +125 | -40 to +125 | 1.0 | 1.5 | 70 | 100 | 20 | 0.072 |
30 | 2.0 | Surface-Mount (SFP) | SFPA-63 | 40 | 0.36 | -40 to +125 | -40 to +125 | 2.0 | 3.0 | 140 | 100 | 20 | 0.072 |
30 | 2.0 | Surface-Mount (SJP) | SJPA-H3* | 40 | 0.36 | -40 to +125 | -40 to +125 | 2.0 | 3.0 | 140 | 100 | 20 | 0.072 |
30 | 3.0 | Surface-Mount (SFP) | SFPA-73 | 50 | 0.36 | -40 to +125 | -40 to +125 | 3.0 | 4.5 | 210 | 100 | 20 | 0.072 |
30 | 3.0 | Surface-Mount (SJP) | SJPA-L3 | 50 | 0.36 | -40 to +125 | -40 to +125 | 3.0 | 4.5 | 210 | 100 | 20 | 0.072 |
*Under development
Thru-hole
VRM (V) | IF (AV) (A) | Package (Body Diameter/Lead Diameter) | Part Number | IFSM (A) 50Hz Single Half Sine Wave max | VF (V) IF=1A | Tj (°C) | Tstg (°C) | IF (A) VR=VRM | IR (mA) VR=VRM | Ta (°C) | Rth(j-l) (°C/W) | Rth(j-c) (°C/W) | Mass (g) |
---|---|---|---|---|---|---|---|---|---|---|---|---|---|
30 | 2.0 | Axial($4.0/$0.78) | RA 13 | 40 | 0.36 | -40 to +125 | -40 to +125 | 2.0 | 3.0 | 140 | 100 | 15 | 0.45 |
Package Type (Dimensions)
The following diagrams illustrate the physical dimensions of the various package types available for these Schottky Barrier Diodes.
- No. 1 Surface-Mount (Compact): [Diagram showing dimensions for a compact surface-mount package]
- No. 2 Surface-Mount (SFP): [Diagram showing dimensions for SFP surface-mount package]
- No. 3 Surface-Mount (SJP): [Diagram showing dimensions for SJP surface-mount package]
- No. 4 Surface-Mount (D pack): [Diagram showing dimensions for D-pack surface-mount package, including markings for Part Number, Polarity, and Lot No.]
- No. 5 Surface-Mount (D pack) Center-tap: [Diagram showing dimensions for D-pack center-tap surface-mount package, including markings for Part Number, Polarity, and Lot No.]
- No. 6 Surface-Mount (TO263): [Diagram showing dimensions for TO263 surface-mount package, including markings for Part Number, Polarity, and Lot No.]
- No. 7 Surface-Mount (TO220S): [Diagram showing dimensions for TO220S surface-mount package, including part numbers MPL-102S, MP2-202S]
- No. 8 Surface-Mount (TO220S): [Diagram showing dimensions for TO220S surface-mount package]
- No. 9 Surface-Mount (TO220S) Center-tap: [Diagram showing dimensions for TO220S center-tap surface-mount package, including markings for Part Number, Polarity, and Lot No.]
- No. 10 Surface-Mount (SZ-10): [Diagram showing dimensions for SZ-10 surface-mount package]
- No. 11 Axial ($2.4/0.6): [Diagram showing dimensions for an axial package with a cathode band]
- No. 12 Axial ($2.7/0.6): [Diagram showing dimensions for an axial package with a cathode band]
Characteristic Curves
The following characteristic curves provide typical performance data for various Schottky Barrier Diodes.
EK 03, 04
- Ta-IF (AV) Derating: [Graph showing Average Forward Current derating versus Ambient Temperature]
- VF-IF Characteristics (Typical): [Graph showing Forward Voltage versus Forward Current at different temperatures]
- VR-IR Characteristics (Typical): [Graph showing Reverse Current versus Reverse Voltage at different temperatures]
- IFSM Rating: [Graph showing IFSM rating versus Overcurrent Cycles]
EK 06
- Ta-IF (AV) Derating: [Graph showing Average Forward Current derating versus Ambient Temperature]
- VF-IF Characteristics (Typical): [Graph showing Forward Voltage versus Forward Current at different temperatures]
- VR-IR Characteristics (Typical): [Graph showing Reverse Current versus Reverse Voltage at different temperatures]
- IFSM Rating: [Graph showing IFSM rating versus Overcurrent Cycles]
EK 09
- Ta-IF (AV) Derating: [Graph showing Average Forward Current derating versus Ambient Temperature]
- VF-IF Characteristics (Typical): [Graph showing Forward Voltage versus Forward Current at different temperatures]
- VR-IR Characteristics (Typical): [Graph showing Reverse Current versus Reverse Voltage at different temperatures]
- IFSM Rating: [Graph showing IFSM rating versus Overcurrent Cycles]
EK 13, 14
- Ta-IF (AV) Derating: [Graph showing Average Forward Current derating versus Ambient Temperature]
- VF-IF Characteristics (Typical): [Graph showing Forward Voltage versus Forward Current at different temperatures]
- VR-IR Characteristics (Typical): [Graph showing Reverse Current versus Reverse Voltage at different temperatures]
- IFSM Rating: [Graph showing IFSM rating versus Overcurrent Cycles]
EK 16
- Ta-IF (AV) Derating: [Graph showing Average Forward Current derating versus Ambient Temperature]
- VF-IF Characteristics (Typical): [Graph showing Forward Voltage versus Forward Current at different temperatures]
- VR-IR Characteristics (Typical): [Graph showing Reverse Current versus Reverse Voltage at different temperatures]
- IFSM Rating: [Graph showing IFSM rating versus Overcurrent Cycles]