PMEG6010CEGW
60 V, 1 A Low VF MEGA Schottky barrier rectifier
24 November 2016 Product data sheet
1. General description
Planar Maxium Efficiency General Application (MEGA) Schottky barrier diode rectifier with an
integrated guard ring for stress protection, encapsulated in an SOD123 small Surface-Mounted
Device (SMD) plastic package.
2. Features and benefits
Forward current: IF ≤ 1 A
Reverse voltage VR ≤ 60 V
Low foward voltage, typ. VF = 570 mV
Low reverse current, typ. IR = 11 µA
Small SMD plastic package
AEC-Q101 qualified
3. Applications
Low voltage rectification
High efficiency DC-to-DC conversion
Switch mode power supply
Reverse polarity protection
Low power consumption applications
Automotive applications
4. Quick reference data
Table 1. Quick reference data
Symbol Parameter Conditions Min Typ Max Unit
IFforward current Tsp ≤ 55 °C - - 1 A
VRreverse voltage Tj = 25 °C - - 60 V
VFforward voltage IF = 1 A; tp ≤ 300 µs; δ ≤ 0.02 ;
Tj = 25 °C
- 570 660 mV
IRreverse current VR = 60 V; pulsed; Tj = 25 °C [1] - 11 50 µA
[1] Very short test pulse to prevent junction self-heating.
© Nexperia B.V. 2017. All rights reserved
Nexperia PMEG6010CEGW
60 V, 1 A Low VF MEGA Schottky barrier rectifier
PMEG6010CEGW All information provided in this document is subject to legal disclaimers.
Product data sheet 24 November 2016 2 / 12
5. Pinning information
Table 2. Pinning information
Pin Symbol Description Simplified outline Graphic symbol
1 K cathode[1]
2 A anode
21
SOD123
sym001
1 2
[1] The marking bar indicates the cathode.
6. Ordering information
Table 3. Ordering information
PackageType number
Name Description Version
PMEG6010CEGW SOD123 Plastic surface-mounted package; 2 leads SOD123
7. Marking
Table 4. Marking codes
Type number Marking code
PMEG6010CEGW G7
© Nexperia B.V. 2017. All rights reserved
Nexperia PMEG6010CEGW
60 V, 1 A Low VF MEGA Schottky barrier rectifier
PMEG6010CEGW All information provided in this document is subject to legal disclaimers.
Product data sheet 24 November 2016 3 / 12
8. Limiting values
Table 5. Limiting values
In accordance with the Absolute Maximum Rating System (IEC 60134).
Symbol Parameter Conditions Min Max Unit
VRreverse voltage Tj = 25 °C - 60 V
IFforward current Tsp ≤ 55 °C - 1 A
δ = 0.5 ; f = 20 kHz; Tamb ≤ 70 °C; square
wave
[1] - 1 AIF(AV) average forward current
δ = 0.5 ; f = 20 kHz; Tsp ≤ 135 °C; square
wave
- 1 A
IFRM repetitive peak forward
current
tp ≤ 1 ms; δ ≤ 0.25 - 7 A
IFSM non-repetitive peak
forward current
tp = 8 ms; Tj(init) = 25 °C; square wave - 9 A
[2] - 410 mWPtot total power dissipation Tamb ≤ 25 °C
[1] - 675 mW
Tjjunction temperature - 150 °C
Tamb ambient temperature -55 150 °C
Tstg storage temperature -65 150 °C
[1] Device mounted on an FR4 PCB, single-sided copper, tin-plated, mounting pad for cathode 1 cm2.
[2] Device mounted on an FR4 PCB, single-sided copper, tin-plated and standard footprint.
9. Thermal characteristics
Table 6. Thermal characteristics
Symbol Parameter Conditions Min Typ Max Unit
[1] [2] - - 305 K/WRth(j-a) thermal resistance
from junction to
ambient
in free air
[1] [3] - - 185 K/W
Rth(j-sp) thermal resistance
from junction to solder
point
[4] - - 21 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 cm2.
[4] Soldering point of cathode tab.
© Nexperia B.V. 2017. All rights reserved
Nexperia PMEG6010CEGW
60 V, 1 A Low VF MEGA Schottky barrier rectifier
PMEG6010CEGW All information provided in this document is subject to legal disclaimers.
Product data sheet 24 November 2016 4 / 12
aaa-024913
tp (s)
10-3 102103
10110-2 10-1
102
10
103
Rth(j-a)
(K/W
1
duty cycle = 1
0.01
0.25 0.33
0.75
0.05
0
0.02
0.20
0.10
0.50
FR4 PCB, standard footprint
Fig. 1. Transient thermal impedance from junction to ambient as a function of pulse duration; typical values
aaa-024914
tp (s)
10-3 102103
10110-2 10-1
102
10
103
Rth(j-a)
(K/W
1
duty cycle = 1
0.01
0
0.02
0.05
0.10
0.20
0.25
0.50
0.75
0.33
FR4 PCB, mounting pad for cathode 1 cm2
Fig. 2. Transient thermal impedance from junction to ambient as a function of pulse duration; typical values
© Nexperia B.V. 2017. All rights reserved
Nexperia PMEG6010CEGW
60 V, 1 A Low VF MEGA Schottky barrier rectifier
PMEG6010CEGW All information provided in this document is subject to legal disclaimers.
Product data sheet 24 November 2016 5 / 12
10. Characteristics
Table 7. Characteristics
Symbol Parameter Conditions Min Typ Max Unit
V(BR)R reverse breakdown
voltage
IR = 1 mA; tp ≤ 300 µs; δ ≤ 0.02 ;
Tj = 25 °C
60 - - V
IF = 1 mA; tp ≤ 300 µs; δ ≤ 0.02 ;
Tj = 25 °C
- 210 250 mV
IF = 10 mA; tp ≤ 300 µs; δ ≤ 0.02 ;
Tj = 25 °C
- 270 310 mV
IF = 100 mA; tp ≤ 300 µs; δ ≤ 0.02 ;
Tj = 25 °C
- 350 400 mV
IF = 500 mA; tp ≤ 300 µs; δ ≤ 0.02 ;
Tj = 25 °C
- 460 530 mV
IF = 700 mA; tp ≤ 300 µs; δ ≤ 0.02 ;
Tj = 25 °C
- 510 580 mV
VFforward voltage
IF = 1 A; tp ≤ 300 µs; δ ≤ 0.02 ;
Tj = 25 °C
- 570 660 mV
VR = 5 V; pulsed; Tj = 25 °C [1] - 0.8 - µA
VR = 10 V; pulsed; Tj = 25 °C [1] - 1.1 - µA
IRreverse current
VR = 60 V; pulsed; Tj = 25 °C [1] - 11 50 µA
Cddiode capacitance VR = 1 V; f = 1 MHz; Tj = 25 °C - 60 68 pF
[1] Very short test pulse to prevent junction self-heating.
006aaa758
10
1
103
102
104
IF
(mA)
10- 1
VF(V)
0.0 0.80.60.2 0.4
(1)
(2)
(3)
(4)
(5)
(1) Tamb = 150 °C
(2) Tamb = 125 °C
(3) Tamb = 85 °C
(4) Tamb = 25 °C
(5) Tamb = -40 °C
Fig. 3. Forward current as a function of forward
voltage; typical values
006aaa759
VR(V)
0 604020
10- 1
10- 3
103
10
105
IR
(µA)
10- 4
(1)
(2)
(3)
(4)
10- 2
102
104
1
(1) Tamb = 125 °C
(2) Tamb = 85 °C
(3) Tamb = 25 °C
(4) Tamb = -40 °C
Fig. 4. Reverse current as a function of reverse
voltage; typical values
© Nexperia B.V. 2017. All rights reserved
Nexperia PMEG6010CEGW
60 V, 1 A Low VF MEGA Schottky barrier rectifier
PMEG6010CEGW All information provided in this document is subject to legal disclaimers.
Product data sheet 24 November 2016 6 / 12
VR(V)
0 604020
006aaa760
40
80
120
Cd
(pF)
0
f = 1 MHz; Tamb = 25 °C
Fig. 5. Diode capacitance as a function of reverse voltage; typical values
11. Test information
t1
t2
P
t
006aaa812
duty cycle δ =
t1
t2
Fig. 6. Duty cycle definition
Quality information
This product has been qualified in accordance with the Automotive Electronics Council (AEC)
standard Q101 - Stress test qualification for discrete semiconductors, and is suitable for use in
automotive applications.
© Nexperia B.V. 2017. All rights reserved
Nexperia PMEG6010CEGW
60 V, 1 A Low VF MEGA Schottky barrier rectifier
PMEG6010CEGW All information provided in this document is subject to legal disclaimers.
Product data sheet 24 November 2016 7 / 12
12. Package outline
16-10-13Dimensions in mm
21
3.75
3.45
2.80
2.55
1.7
1.5
1.3
1.0
Fig. 7. Package outline SOD123
13. Soldering
SOD123
sod123_fr
occupied area
solder paste
solder resist
Cu pad
Dimensions in mm
16-05-10
16-08-31
0.81
0.91 2.36
1.11
0.81
4.18
0.91
1.11
3.27
4.58
3.1
1.421.12 1.222.1 1.62
Fig. 8. Reflow soldering footprint for SOD123
© Nexperia B.V. 2017. All rights reserved
Nexperia PMEG6010CEGW
60 V, 1 A Low VF MEGA Schottky barrier rectifier
PMEG6010CEGW All information provided in this document is subject to legal disclaimers.
Product data sheet 24 November 2016 8 / 12
SOD123
sod123_fw
occupied area
glue dot
solder resist
solder land
Dimensions in mm
16-09-02
16-09-06
1.2
0.331.2
2.5 2
2.65
7.5
4.5
2.55 2.43.5
Fig. 9. Wave soldering footprint for SOD123
© Nexperia B.V. 2017. All rights reserved
Nexperia PMEG6010CEGW
60 V, 1 A Low VF MEGA Schottky barrier rectifier
PMEG6010CEGW All information provided in this document is subject to legal disclaimers.
Product data sheet 24 November 2016 9 / 12
14. Revision history
Table 8. Revision history
Data sheet ID Release date Data sheet status Change notice Supersedes
PMEG6010CEGW v.1 20161124 Product data sheet - -
© Nexperia B.V. 2017. All rights reserved
Nexperia PMEG6010CEGW
60 V, 1 A Low VF MEGA Schottky barrier rectifier
PMEG6010CEGW All information provided in this document is subject to legal disclaimers.
Product data sheet 24 November 2016 10 / 12
15. Legal information
Data sheet status
Document
status [1] [2] Product
status [3] Definition
Objective
[short] data
sheet
Development This document contains data from
the objective specification for product
development.
Preliminary
[short] data
sheet
Qualification This document contains data from the
preliminary specification.
Product
[short] data
sheet
Production This document contains the product
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 URL http://www.nexperia.com.
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© Nexperia B.V. 2017. All rights reserved
Nexperia PMEG6010CEGW
60 V, 1 A Low VF MEGA Schottky barrier rectifier
PMEG6010CEGW All information provided in this document is subject to legal disclaimers.
Product data sheet 24 November 2016 11 / 12
Trademarks
Notice: All referenced brands, product names, service names and
trademarks are the property of their respective owners.
© Nexperia B.V. 2017. All rights reserved
Nexperia PMEG6010CEGW
60 V, 1 A Low VF MEGA Schottky barrier rectifier
PMEG6010CEGW All information provided in this document is subject to legal disclaimers.
Product data sheet 24 November 2016 12 / 12
16. 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............................................................. 3
9. Thermal characteristics............................................... 3
10. Characteristics............................................................ 5
11. Test information......................................................... 6
12. Package outline.......................................................... 7
13. Soldering..................................................................... 7
14. Revision history..........................................................9
15. Legal information..................................................... 10
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Date of release: