Power Supply & Power Adapter Solutions Brochure

ON Semiconductor Provides Expertise, Solutions, and Products that Enable
Designers to Quickly Improve System Efficiency
Evolving Efficiency Standards
Reference Designs & Design Notes
Evolving regulations and incentives, targeted towards improving
energy efficiency, are intended to limit global climate change.
Enhancing power supply efficiency alone can save over 2% of
global energy consumption. Many organizations worldwide (such
as China Energy Conservation Project, Japan Top Runner, USA
Environmental Protection Agency, European Code of Conduct) now
develop regulations and incentives for power supply efficiency,
like ENERGY STAR® and 80 PLUS®. ON Semiconductor actively
participates in standards organizations and working groups, so that
we can provide solutions to the market that meet all of the relevant
specifications, worldwide.
ON Semiconductor provides reference designs and design notes
for selected types of internal and external power supplies. These
open designs provide roadmaps for the design of highly efficient
power supplies, helping you get to market quickly by providing
documentation that includes schematics, BOMs, Gerber files,
design descriptions, and test results.
Power Supply Expertise
ON Semiconductor provides products and solutions that save
power from line to load, enabling quick deployment of cost-effective
power supplies that meet evolving global efficiency standards.
Our expertise in high-efficiency power supplies helps solve your
challenges in all focus areas for efficiency enhancement:
•Low standby-mode power consumption
•High active-mode power efficiency
•Power factor correction
And since we provide a full range of power supply semiconductors
– from highly integrated power factor controllers, ac-dc controllers,
and dc-dc controllers, to discrete MOSFETs, rectifiers, diodes,
and transistors – we can help you design complete power supply
solutions, with all active components sourced from and supported
by a single supplier.
Global Power Supply Presence
ON Semiconductor maintains a broad, global network of design
and applications resources, including resources devoted to power
supplies.
Our Product Design Centers define and develop advanced power
management integrated circuits, utilizing the latest architectures
and development tools. Products are targeted for a range of
process technologies, including analog CMOS, Bi-CMOS, and Very
High Voltage (VHV).
Our Solutions Engineering Centers focus on developing valueadded total solutions for specific end market applications. These
centers are staffed with applications engineers with design
experience, and are equipped with all of the resources necessary
for local manufacturers to benefit from the vast power management
experience of ON Semiconductor.
A global network of Field Applications Engineers provides truly
customer-specific support. These local resources can help you
optimize your power supply designs, by contributing their experience
and training, with both applications and specific components, to
your design location.
AC-DC Power Supplies and Adapters
AC
In
EMI Power
Filter
Input
Bridge
Rectification
Power
Factor
Correction
Voltage
Regulation
(Linear, Switching)
Transformer
Output
Rectification/
Sync Rect
DC
Out
DC-DC Power Supplies
DC
In
Hot Swap/
Inrush
Limiting
Isolated
Conversion
Non-Isolated
Conversion
DC
Out
Post
Regulation
Page 2
Regulated
Output
Power Supply & Power Adapter Solutions
Single Chip CCM PFC + LLC Solution for 310 W ATX Power Supply
Input
90 to
265 Vac
EMI
Filtering
and
Rectification
•Featuring NCP1910 high
performance CCM PFC +
LLC combo controller
• Satisfies 80 PLUS® Gold efficiency
specifications
• Integrated ON/OFF and Power OK signal
operation to conform with the ATX12V
specification
•Easily configurable startup and shut
down timing sequences to meet
hold-up time and power down warning
requirements
• Download AND8474/D for more information
12Vout
12V_RTN
2x NCP4303
Sync Rec
NCP1910
CCM PFC + LLC
12V_FB
ON/OFF
Remote Control
Aux_Supply
5Vstby
Aux_Supply
NCP1027
Flyback
5Vstby_RTN
5Vstby_FB
High Power Density Notebook Adapter
•19.5 V, 8 A high density SMPS for notebook & gaming
•Valley Synchronized Frequency Foldback CRM PFC control by NCP1602
•High Performance Current Mode LLC control by NCP1399
•High Performance SR Controller with Light Load Detection by NCP4305
85 to
265 Vac
EMI
Filter
NCP1602
PFC
Controller
NCP1399
Current Mode
Resonant Controller
Bias
19.5 V / 8 A
19.5 V / 8 A
NCP4354A
Secondary
Regulator/
OFF Mode
Controller
Secondary
OVP
ON Semiconductor
Page 3
Active Clamp DC-DC Converter
100 W Power Supply - Active Clamp 1/8 Brick
NTMFS4982
•>92% Efficiency @ +48 V input
•Enables >100 W, 1/16 brick solutions
•Dual Mode – supports both Voltage Mode and Current Mode
•Adaptive overlap time control for improved efficiency
BAV23CL
95
NTMFS4982
Efficiency, %
90
NTMFS4982
85
NTMFS4982
36 V
NCP1565
48 V
80
75 V
75
70
0
5
10
15
20
Output Current, A
25
30
35
65 W Notebook Adapter with Low No-Load Input Power Consumption
No Load Input Power Consumption
Input Voltage
85 V; 60 Hz
115 V; 60 Hz
Input Power (mW)
8.3
9.9
230 V; 60 Hz
17.8
265 V; 60 Hz
21.8
94
92
Efficiency [%]
90
88
86
84
82
80
230 V / 50 Hz
78
115 V / 60 Hz
•<10 mW no load input power consumption at VIN = 115 Vac
•Active mode efficiency > 90%
•Featuring NCP1246 High Voltage AC-DC Fixed Frequency Controller
n Integrated active X2 capacitor discharge solution
n Frequency foldback and skip mode for optimal efficiency across the
load range
n Low power consumption sleep mode allowing output voltage hiccup
•Featuring NCP4354 Off Mode Detection
n Automatically detects no load condition and turns off NCP1246 by
optocoupler
n Provides CCCV feedback or CV feedback (like TL431)
n <100 µA consumption
n Optional Integrated LED Driver
76
0,0
0,5
1,0
1,5
2,0
2,5
3,0
3,5
IOUT [A]
Page 4
Power Supply & Power Adapter Solutions
90 W PFC + QR Adapter, 10 mW Standby
•NCP1937 combines Power Factor Correction (PFC)
controller and Quasi-Resonant (QR) controller
•<10 mW no-load standby performance
•High voltage startup circuit and active input filter
capacitor discharge circuitry
•High voltage line voltage detector
•Integrated high voltage switch disconnects PFC
feedback resistor divider
•Fault input for severe fault condition
•Download DN05044/D for more information
15 W Nominal Power Supply with 40 W Peak Power
•NCP1255 operates at 65 kHz frequency with
130 kHz during peak power
•Frequency foldback with skip mode
•Adjustable brown-out protection
•Adjustable dual timer OCP
•Download AND9115/D for more information
Vbulk
Vout
OVP
OPP
BO
NCP1255
Eris
Ramp
Comp
ON Semiconductor
Page 5
40 W AC-DC Power Adapter
•Compact, high performance 12 V, 3.3 A flyback power adapter
•Featuring highly integrated NCP1250 fixed frequency flyback
controller in a small TSOP-6 package
•Also utilizes NCP4810 for active X-2 discharge
•Average efficiency of > 87%
•No load input power of 33 mW at low line
•Download AND8486/D for more information
Non-Isolated, 8 W Dual Output Offline Power Supply
•NCP1075 creates compact, dual output supply, with only
68 mW standby power
•EN55022, Level B Conducted EMI
•Intended for use in white goods, E-meters, and low power
communication equipment
•Download DN05038/D for more information
F1
1.5 A
C1
AC 0.1 μF
Input
“X”
R1
4.7 Ω
3W
BAT54
D8
T1
L1A
1 mH
J1
D6 MMSD4148A
C2
0.1 μF
“X”
L1B
R2A
3.3 M
D1-D4
MRA4007
x4
R2B
3.3 M
C3
22 μF
400 V
R3
68 K
1/2 W
MBRS240
C4
1 nF
1 kV
1N4937
D5
D9
C10
1000 μF
16 V
C9A
C11
0.1 μF
50 V
C9B
D7
MBRS240
C8
0.1 μF
50 V
1500 μF, 6.3 V
VS2
+8.5 V
VS1
+5 V
Com
1 mH
Primary
Ground
Plane
NCP1075
(100 kHz)
R4
C5
22 μF
25 V
NOTES:
1. Crossed schematic lines are not connected.
2. R4 value dependent on VS2 nominal output voltage.
2K
C6
10 nF
Z1
C7
0.1 μF
Q1
NST45011
R6
100
Vtrim
MMSZ5229B
(4.3 V)
R9
10 K
R10
10 K
Page 6
Power Supply & Power Adapter Solutions
Power Factor Correction
160 W PFC Boost using NCP1611 or NCP1612
•Improved efficiency in light load over traditional CrM PFC
•Unlike CrM, switching frequency is reduced at light load
•Improved reliability and safety without extra components
99
98
98
97
97
96
96
95
95
Efficiency (%)
100
99
Efficiency (%)
100
94
93
92
91
90
94
93
92
91
90
CCFF with Skip
89
CCFF with Skip Off
88
CRM
87
CCFF with Skip
89
CCFF with Skip Off
88
CRM
87
86
86
Vin= 115 Vac, Pout(max) = 160 W
85
0
10
20
30
40
50
60
70
80
90
Vin= 230 Vac, Pout(max) = 160 W
85
100
0
10
20
30
40
50
60
70
Relative Output Power (%)
Relative Output Power (%)
Efficiency vs Power @ 115 Vac
Efficiency vs Power @ 230 Vac
80
90
100
NCP1611 and NCP1612 Features
•CrM with Current Controlled Frequency Foldback (CCFF)
•Shorted Boost or Bypass Diode Protection
•Comprehensive Open / Short Pin Protection
•Enhanced Transient Response
•Soft Overvoltage Protection
•Brownout Detection
•Optional Skip Mode
•Thermal Shutdown
•Wide Vcc Range to 35 Vdc
Power Factor Controllers
Device
NCP1602
NCP1605
NCP1607
NCP1608
NCP1611
NCP1612
NCP1615
NCP1631
NCP1652
NCP1653
NCP1654
ON Semiconductor
Conduction Mode
Frequency
Control
Mode
Package
Critical, Discontinuous
Critical, Discontinuous
Critical
Critical
Critical
Critical
Critical
Critical, Discontinuous (Interleaved)
Continuous, Discontinuous
Continuous
Continuous
Variable
Variable and/or Fixed
Variable
Variable
Variable
Variable
Variable
Variable and/or Fixed
Fixed
Fixed
Fixed
Voltage
Voltage
Voltage
Voltage
Voltage
Voltage
Voltage
Current
Current
Current
Current
TSOP-6
SOIC-16
SOIC-8
SOIC-8
SOIC-8
SOIC-10
SOIC-14, SOIC-16
SOIC-16
SOIC-16, SOIC-20W
PDIP-8, SOIC-8
SOIC-8
Page 7
High Voltage Switching Regulators
NCP1070~77 Features
•Built-in 700 V MOSFET
•Dynamic Self-Supply: no need for an auxiliary winding
•Frequency foldback and skip-mode with jittering
n Improved light load efficiency
n Improved EMI over the entire range
•No load power <50 mW
Vout
NCP1072/5
Vac
VCC
GND
NC
GND
GND
FB
SGND
DRAIN
Rlimit
NCP1070
Ipeak (mA)
Frequency (kHz)
NCP1071
NCP1072
350
100
250
100
22
RDS(on) (W)
65
250
100
130
NCP1075
NCP1076
450
100
650
100
NCP1077
11
65
130
65
130
4.7
65
130
65
130
65
800
100
130
87%
86%
85%
Effciency
84%
83%
82%
81%
100 Vac
115 Vac
230 Vac
264 Vac
80%
79%
25%
50%
75%
100%
Pout
Efficiency of 10 W Adapter Using NCP1075
Page 8
Power Supply & Power Adapter Solutions
AC-DC Controllers and Regulators
Features
•Comprehensive, versatile portfolio supports:
n Fixed frequency and variable frequency
n Different topologies, from the classical flyback, to the half bridge resonant via the forward active clamp
n Broad range of price-performance options, from cost effective devices to highly integrated controllers and regulators
•Embedded features ease compliance with stringent efficiency requirements: frequency foldback, Soft-Skip™ mode
•Functions reduce EMI signatures and facilitate compliance with safety standards
AC-DC Controllers and Regulators
Device
NCP1010~15
NCP1027~28
NCP1050~55
NCP1060/63
NCP1070~77
NCP1200
NCP1203
NCP1207A/B
NCP1216/16A
NCP1217/17A
NCP1218/19
NCP1230
NCP1234/36
NCP1237/38/88
NCP1239
NCP1240
NCP1244
NCP1246/47
NCP1249
NCP1250/51/53
NCP1252
NCP1254/55
NCP1256
NCP1271
NCP1308
NCP1336
NCP1337/38
NCP1339
NCP1351
NCP1360/65
NCP1361/66
NCP1377
NCP1379/80
NCP1392
NCP1395~8
NCP1399
NCP1562
NCP1565
NCP1910
NCP1927
NCP1937
ON Semiconductor
Topology
Frequency
Control Mode
Package
Buck/Boost/Buck-boost/Flyback
Buck/Boost/Buck-boost/Flyback
Flyback
Buck/Boost/Buck-boost/Flyback
Buck/Boost/Buck-boost/Flyback
Flyback
Flyback
QR Flyback
Flyback/Forward
Flyback/Forward
Flyback
Flyback
Flyback
Flyback
Flyback
Flyback
Flyback
Flyback
Flyback
Flyback
Flyback/Forward
Flyback
Flyback
Flyback
QR Flyback
QR Flyback
QR Flyback
QR Flyback
Variable Off Time Flyback
PSR Flyback
PSR Flyback
QR Flyback
QR Flyback
Half-bridge Resonant
Half-bridge Resonant
Half-bridge Resonant
Active Clamp Forward
Active Clamp Forward
Combo CCM PFC + LLC 1/2 Bridge
Combo CRM PFC + Flyback
Combo CRM PFC + QR Flyback
Fixed
Fixed
Fixed
Fixed
Fixed
Fixed
Fixed
Variable
Fixed
Fixed
Fixed
Fixed
Fixed
Fixed
Fixed
Fixed
Fixed
Fixed
Fixed
Fixed
Fixed
Fixed
Fixed
Fixed
Variable
Variable
Variable
Variable
Variable
Variable
Variable
Variable
Variable
Variable
Variable
Variable
Fixed
Fixed
Fixed PFC, Variable LLC
Variable PFC, Fixed Flyback
Variable PFC, Variable Flyback
Current
Current
Gated Oscillator
Current
Current
Current
Current
Current
Current
Current
Current
Current
Current
Current
Current
Current
Current
Current
Current
Current
Current
Current
Current
Current
Current
Current
Current
Current
Current
Current
Current
Current
Current
Voltage
Voltage
Current
Voltage
Current/Voltage
Current
Current
Current
SOT-223, PDIP-7
PDIP-7
SOT-223, PDIP-7
SOIC-10, SOIC-16, PDIP-7
SOT-223, PDIP-7
SOIC-8, PDIP-8
SOIC-8, PDIP-8
SOIC-8, PDIP-8
SOIC-8, PDIP-8
SOIC-8, PDIP-8
SOIC-8
SOIC-8, PDIP-8
SOIC-8
SOIC-7
SOIC-7
SOIC-8
SOIC-7
SOIC-8
SOIC-9
TSOP-6
SOIC-8
TSOP-6, SOIC-8
TSOP-6
SOIC-8, PDIP-8
SOIC-8
SOIC-14
SOIC-7, PDIP-7
SOIC-14
SOIC-8
TSOP-6, SOIC-7
TSOP-6, SOIC-7
SOIC-8, PDIP-8
SOIC-8
SOIC-8
SOIC-16
SOIC-16
SOIC-16, TSSOP-16
QFN- 24
SOIC-24
SOIC-16
SOIC-20
Page 9
Secondary Side Controllers
Features
•Self contained control of synchronous rectifier in CCM, DCM, and QR flyback applications
•Precise true secondary zero current detection with adjustable threshold
•Automatic parasitic inductance compensation input
•Up to 8 A Sync, 4 A Source •Light load detection
•QR into CCM control
•Able to drive GaN FETs
+Vout
Vbulk
VCC
FLYBACK
CONTROL
CIRCUITRY
FB
GND
DRV
NCP4305
CS
VCC
Min_Toff
Min_Ton
LLD
DRV
GND
CS
Trig
NCP4305 Typical Application
Secondary Side Controllers
Device
Function
Package
NCP4304
NCP4305/8
NCP43080*
NCP4328
Secondary Side Synchronous Rectification Driver
Secondary Side Synchronous Rectification Driver
Secondary Side Synchronous Rectification Driver
Secondary Side CC/CV Controller
SOIC-8, DFN-8
SOIC-8, DFN-8, WDFN-8
SOIC-8, DFN-8, WDFN-8
TSOP-5, TSOP-6
NCP4353
Sleep Mode Controller for Low Standby Power
TSOP-6
NCP4354/5
Sleep Mode Controller for Low Standby Power
SOIC-8
* Pending 2Q16.
Page 10
Power Supply & Power Adapter Solutions
Active X Capacitor Discharging
Features
•Increased efficiency
•Minimal consumption when AC line is detected
•Fast X capacitor discharging
•Increased reliability
•Increased safety
•Helps with NEMKO certification
X1-1
R1
AC
Input
CX1
L1
CX2
B
AC1
X2-2
NCP4810
AC2
C1
DC Output
X2-1
R2
X1-2
Device
Integrated/Discrete
NCP1246*
Integrated with Flyback
NCP1249
Integrated with Flyback
NCP1937 Integrated with PFC + Flyback
NCP4810
Discrete
Voltage Discharge
Rating
Current Package
500 V
500 V
700 V
700 V
15 mA
10 mA
11.5 mA
1 mA
SOIC-7
SOIC-9
SOIC-20
SOIC-8
* NEMKO Certified.
ON Semiconductor
Page 11
DC-DC Controllers and Regulators
100
95
Features
•Integrated switching regulators from 0.5 A to 5 A
•Various topologies including buck, boost, buck/boost,
and inverting
•Wide input voltage range up to 200 V
•PWM controllers capable of driving up to 30 A EFFICIENCY (%)
90
VIN = 5.0 V
85
VIN = 12 V
80
75
70
65
60
55
50
0
1
2
3
4
5
6
7
OUTPUT CURRENT (A)
8
9
10
DC-DC Regulators
Vin (V)
Min
Max
Topology
Frequency
(kHz)
LM2574
4.75
40
Buck
52
0.5
D2PAK, TO-220
LM2594
4.75
40
Buck
150
0.5
SOIC-8, PDIP-8
LM2575
4.75
40
Buck
52
1.0
D2PAK, TO-220
LM2595
4.75
40
Buck
150
1.0
D2PAK, TO-220
NCP1030/31
10
200
Buck, Boost
300
0.5 / 1.0
Micro8
CS51414
4.5
40
Buck
260
1.5
SOIC-8, DFN-18
NCP3063
3
40
Buck, Boost, Inverting, Buck/Boost
up to 250
1.5
DFN-8, SOIC-8, PDIP-8
NCP3064
3
40
Buck, Boost, Inverting, Buck/Boost
up to 250
1.5
DFN-8, SOIC-8, PDIP-8
NCP3065
3
40
Buck, Boost, Inverting, Buck/Boost
up to 250
1.5
DFN-8, SOIC-8, PDIP-8
NCP3066
3
40
Buck, Boost, Inverting, Buck/Boost
up to 250
1.5
DFN-8, SOIC-8, PDIP-8
MC34063A
3
40
Buck, Boost, Inverting, Buck/Boost
up to 100
1.5
DFN-8, SOIC-8, PDIP-8
Device
NCP1595
Output Current
(A)
Package
4
5.5
Buck
1200
1.5
DFN-6
2.7
30
Boost
280/560
1.5
SOIC-8
NCP1597
4
5.5
Buck
1200
2.0
DFN-6
NCP1599
2.7
5.5
Buck
1200
3.0
DFN-6, DFN-10
NCP3170
4.5
18
Buck
500 / 1000
3.0
SOIC-8
MC34166
7.5
40
Step-up/Step-down
72
3.0
D2PAK, TO-220
LM2576
4.75
40
Buck
52
3.0
D2PAK, TO-220
LM2596
4.75
40
Buck
150
3.0
D2PAK, TO-220
MC34163
2.5
40
Buck, Boost, Inverting, Buck/Boost
up to 100
3.4
SOIC-16, PDIP-16
NCV33163
2.5
60
Buck, Boost, Inverting, Buck/Boost
up to 100
3.4
SOIC-16, PDIP-17
NCP3163
2.5
40
Buck, Boost, Inverting, Buck/Boost
up to 300
3.4
SOIC-16WB, DFN-18
MC34167
7
40
PWM Step-down
72
5.0
D2PAK, TO-220
CS5171/2/3
Page 12
Power Supply & Power Adapter Solutions
DC-DC Controllers
Vin (V)
Device
Min
Max
Isolated
Frequency
(kHz)
Control
Mode
Package
CS5124
7.7
75
Yes
400
Current
SOIC-8
CS51022
3.3
72
Yes
200 - 1000
Current
SOIC-16, TSSOP-16
CS51031
4.5
16
No
200 - 700
Hysteretic
SOIC-8
CS51221
3.3
72
Yes
200 - 1000
Voltage
SOIC-16, TSSOP-16
NCP1034
8
100
No
25 to 500
Voltage
SOIC-16
NCP1294
3.3
72
Yes
200 - 1000
Voltage
SOIC-16, TSSOP-16
NCP1587
4.5
13.2
No
275
Voltage
SOIC-8
NCP1589
4.5
13.2
No
300/600
Hysteretic
SOIC-8
NCP3011
4.5
28
No
400
Voltage
TSSOP-14
NCP3020A/B
4.5
28
No
300/600
Voltage
SOIC-8
NCP3030
4.7
28
No
1200/2400
Voltage
SOIC-8
SG3525
8
35
No
100 - 400
Voltage
SOIC-16, PDIP-16
TL494
7
40
No
40 - 200
Voltage
SOIC-16, PDIP-16
TL594
7
40
No
40 - 300
Voltage
SOIC-16, PDIP-16, TSSOP-16
ON Semiconductor
Page 13
Linear Voltage Regulators
0.4
NCP4632 Features
0.35
DROPOUT VOLTAGE (V)
•3 A LDO with Reverse Current Protection
•Operating input voltage range: 1.6 – 5.25 V
•Output voltage range: 0.8 – 4.5 V (0.1 V steps for fixed options)
•Supply current
nTypical operation mode: 350 µA
nStandby mode: <1.0 µA
•Dropout voltage
n150 mV Typ @ IOUT = 1 A, VOUT = 2.5 V
n510 mV Typ @ IOUT = 3 A, VOUT = 2.5 V
•Output voltage accuracy: 1%
•Line regulation: 0.15%/V Typ
0.3
85°C
0.25
25°C
0.2
0.15
40°C
0.1
0.05
0
0
0.5
1
1.5
2
2.5
3
OUTPUT CURRENT (A)
Dropout Voltage vs. Output Current at NCP4632xDT33
Linear Voltage Regulators
Device
VI Max
IOUT Typ
VOUT** (V)
VDO Typ
Package(s)
NCP4632
NCP5663
NCP59300/1/2
NCP59749
NCP5662
NCP59150/1/2
NCP59748
NCP565
NCP5661
NCP690/1/2
NCP693
NCP694
NCP3335A
NCP4629
NCP5500
NCP5501
NCP605
NCP705
NCP752
NCP4623
NCP4641
NCP571
NCP600
LP2950
LP2951
NCP716
NCP4640
NCP508
NCP715
NCP51460
6V
9V
18 V
5.5 V
9V
18 V
5.5 V
9V
9V
6V
7V
6V
12 V
24 V
18 V
18 V
6V
6V
5.5 V
24 V
35 V
12 V
6V
30 V
30 V
24 V
50 V
13 V
24 V
30 V
3.0 A
3.0 A
3.0 A
3.0 A
2.0 A
1.5 A
1.5 A
1.5 A
1.0 A
1.0 A
1.0 A
1.0 A
500 mA
500 mA
500 mA
500 mA
500 mA
500 mA
200 mA
150 mA
150 mA
150 mA
150 mA
100 mA
100 mA
80 mA
50 mA
50 mA
50 mA
20 mA
0.8, 1.5, 2.8, 3.3
1.5, 1.8, Adj
1.8, 2.5, 2.8, 3.0, 3.3, Adj
Adj
1.2, 1.5, 1.8, 2.5, 2.8, 3.0, 3.3, Adj
1.8, 2.5, 2.8, 3.0, 3.3, Adj
Adj
1.2, 1.5, 2.8, 3.0, 3.3, Adj
1.2, 1.5, 1.8, 2.5, 2.8, 3.0, 3.3, Adj
1.25, 1.5, 1.8, 2.5, 3.3, 5
0.8, 1.0, 1.2, 2.5, 3.3
0.8, 1.0, 1.2, 2.5, 3.3, Adj
1.5, 1.8, 2.5, 2.8, 2.85, 3.0, 3.3, 5.0, Adj
5.0, 6.0, 12.0
1.5, 3.3, 5.0, Adj
1.5, 3.3, 5.0
1.5, 1.8, 2.5, 2.8, 3.0, 3.3, 5.0, Adj
0.8, 1.8, 2.8, 3.0, 3.3
1.8, 2.8, 3.0, 3.3
3.3, 4.5, 4.8, 5.0, 10.0, 12.0, Adj
3.0, 5.0, 8.0
0.8, 0.9, 1.0, 1.2
1.3, 1.5, 1.8, 2.5, 2.8, 3.0, 3.3, 3.5, 5.0, Adj
3.0, 3.3, 5.0
3.0, 3.3, Adj
1.2, 1.5, 1.8, 2.5, 3.0, 3.3, 5.0
2.0, 3.0, 3.3, 8.0, 12.0
1.5, 1.8, 2.5, 2.8, 3.0, 3.3
1.2, 1.5, 1.8, 2.5, 3.0, 3.3, 5.0
3.3
480 mV
1.0 V
300 mV
120 mV
1.0 V
300 mV
60 mV
900 mV
1.0 V
120 mV
450 mV
180 mV
340 mV
135 mV
230 mV
300 mV
150 mV
250 mV
130 mV
200 mV
200 mV
350 mV
75 mV
350 mV
350 mV
tbd
200 mV
155 mV
tbd
900 mV
DPAK
D2PAK
D2PAK, DFN-8
QFN-20
D2PAK, DFN-8
D2PAK, DFN-8
QFN-20, DFN-10
D2PAK, DFN-6, SOT-223
DFN-6, DPAK
DFN-6
UDFN-6
HSON-6, SOT-89
DFN-10, Micro8
DPAK
DPAK, SOIC-8
DPAK
DFN-6
SOT-223, WDFN-6
SOT-223, XDFN-6
SOT-23, XDFN-6
SOT-89
DFN-6, TSOP-5
DFN-6, TSOP-5
DPAK, TO-92
Micro8, PDIP-8, SOIC-8
WDFN-6
SOT-89
SC-70, WDFN-6
SC-70, XDFN-6
SOT-23
** Consult factory for other output voltage options.
Page 14
Power Supply & Power Adapter Solutions
Voltage References
NCP431 Features
•Programmable Precision Reference
•Pin to pin upgrade of the TL431 product
•Reduces no load power consumption in SMPS applications
•Reduced minimum cathode current (40 mA)
•Programmable output voltage to 36 V
•Voltage reference tolerance: 0.5% @ 25°C (NCP431B)
•Integrated temperature compensation
Vout
Rbias
~1 V
NCP431
25 mW
Savings*
TL431 Ibias =
NCP431 Ibias =
1
Vf
=
= 1 mA
Rbias 1K
1
Vf
=
= 100 μA
Rbias 10K
* for 19 V output adapter
Voltage References
Device
NCP431A
NCP431B
TL431
TL431A
TL431B
LM285
LM385
LM385B
ON Semiconductor
Type
Tolerance
Package
Adjustable
Adjustable
Adjustable
Adjustable
Adjustable
Fixed
Fixed
Fixed
1%
0.5%
2.2%
1.0%
0.4%
1%, 1.5%
1%, 1.5%, 2%, 3%
1%, 1.5%
TO-92, SOIC-8, SOT-23-3
SOT-23-3
SOIC-8, PDIP-8, Micro8, TO-92
SOIC-8, PDIP-8, Micro8, TO-92
SOIC-8, PDIP-8, Micro8, TO-92
SOIC-8, TO-92
SOIC-8, TO-92
SOIC-8, TO-92
Page 15
N-Channel MOSFETs for Power Conversion
ORing MOSFETs
Features
•Low RDS(on) for low
conduction loss
•30 V for IM bus ORing
•100 V for 48 V bus ORing
=
MOSFETs as ORing Diodes
Device
NTMFS4H01N
NTMFS4H01NF
NTMFS4H013NF
NTMFS4H02N
NTMFS4H02NF
NTMFS4C01N
NTMFS4931N
NTMFS5C404NL
NTMFS5C410NL
NTMFS5C430NL
NTMFS5C423NL
NTMFS5C442NL
NTMFS5C450NL
NTMFS5C456NL
NTMFS5C460NL
NTMFS5C468NL
NTMFS5H400NL
NTMFS5H409NL
NTTFS5C453NL
NTTFS5C454NL
NTMFS5C604NL
NTMFS5C612NL
NTMFS5C628NL
NTMFS5C645NL
NTMFS5C646NL
NTMFS5C670NL
NTMFS5C673NL
NTMFS5H600NL
NTTFS5C670NL
NTTFS5C673NL
NTMFS6B03N
NTMFS6B05N
NTMFS6B14N
Page 16
Configuration
VDS
(V)
VGS
(V)
Single
Int. Schottky
Single
Single
Int. Schottky
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
25
25
25
25
25
30
30
40
40
40
40
40
40
40
40
40
40
40
40
40
60
60
60
60
60
60
60
60
60
60
100
100
100
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
RDS(ON) mΩ
VGS = 10 V VGS = 4.5 V
Typ
Typ
0.55
0.56
0.72
1.1
1.1
0.71
0.85
0.56
0.71
1.2
1.7
2.2
2.4
3.1
3.7
8.6
0.65
0.9
2.5
3.2
0.93
1.2
2
3.3
3.8
5.1
7.2
1
5.4
8
3.8
6.5
12.2
0.76
0.79
1.1
1.7
1.6
0.94
1.2
0.85
1
1.7
2.5
3.2
3.4
4.8
5.8
14.5
0.9
1.2
3.8
4.8
1.25
1.65
2.6
4.6
5
7
11
1.4
7.3
11
—
—
—
Qg
(nC)
Qgd
(nC)
RG
(Ω)
Package
39
37.8
26
18
18.7
63
62.1
81
66
32
23
23
16
8.2
11
3.4
54
41
16
8.2
52
41
24
15.7
15.7
9
4.5
30
9
4.5
58
44
20
8.5
8
5.8
4.2
4.3
13
10.1
23.8
22
9
7
6.7
5
2.1
3
1
19
16
5
2.1
12.7
10.9
4.5
5
5.1
2
0.8
13
2
0.8
17
12
6.5
1.2
1.3
1
1
1
1
0.7
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
1
1
—
SO8-FL
SO8-FL
SO8-FL
SO8-FL
SO8-FL
SO8-FL
SO8-FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
u8FL
u8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
u8FL
u8FL
SO8-FL
SO8-FL
SO8-FL
Power Supply & Power Adapter Solutions
N-Channel MOSFETs for Power Conversion
Isolated Topology DC-DC (Bricks)
Features
•Low RDS(on) for low conduction loss
•Low capacitance for low switching loss
•Integrated Schottky for low diode loss
48 V
Device
Configuration
VDS
(V)
VGS
(V)
RDS(ON) mΩ
VGS =
VGS =
10 V
4.5 V
Typ
Typ
NTMFS4H01N
NTMFS4H01NF
NTMFS4H013NF
NTMFS4H02N
NTMFS4H02NF
NTTFS4H05N
NTTFS4H07N
NTMFS4C05N
NTMFS4C06N
NTMFS4C08N
NTTFS4C05N
NTMFS5C404NL
NTMFS5C410NL
NTMFS5C430NL
NTMFS5C423NL
NTMFS5C442NL
NTMFS5C450NL
NTMFS5C456NL
NTMFS5C460NL
NTMFS5C468NL
NTMFS5H400NL
NTMFS5H409NL
NTTFS5C453NL
NTTFS5C454NL
NTMFS5C604NL
NTMFS5C612NL
NTMFS5C628NL
NTMFS5C645NL
NTMFS5C646NL
NTMFS5C670NL
NTMFS5C673NL
NTMFS5H600NL
NTTFS5C670NL
NTTFS5C673NL
NTMFS6B03N
NTMFS6B05N
NTMFS6B14N
Single
Int. Schottky
Single
Single
Int. Schottky
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
25
25
25
25
25
25
25
30
30
30
30
40
40
40
40
40
40
40
40
40
40
40
40
40
60
60
60
60
60
60
60
60
60
60
100
100
100
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
0.55
0.56
0.72
1.1
1.1
2.5
3.8
2.7
3.2
4.6
2.9
0.56
0.71
1.2
1.7
2.2
2.4
3.1
3.7
8.6
0.65
0.9
2.5
3.2
0.93
1.2
2
3.3
3.8
5.1
7.2
1
5.4
8
3.8
6.5
12.2
ON Semiconductor
Forward
Flyback
Push Pull
Half Bridge
Full Bridge
0.76
0.79
1.1
1.7
1.6
3.8
5.8
4
4.8
6.8
4.1
0.85
1
1.7
2.5
3.2
3.4
4.8
5.8
14.5
0.9
1.2
3.8
4.8
1.25
1.65
2.6
4.6
5
7
11
1.4
7.3
11
—
—
—
Vout
Qg
(nC)
Qgd
(nC)
Ciss
(pF)
Crss
(pF)
RG
(Ω)
39
37.8
26
18
18.7
8.7
5.7
14
11.6
8.4
14.5
81
66
32
23
23
16
8.2
11
3.4
54
41
16
8.2
52
41
24
15.7
15.7
9
4.5
30
9
4.5
58
44
20
8.5
8
5.8
4.2
4.3
1.88
1.26
5
4
3.3
5.5
23.8
22
9
7
6.7
5
2.1
3
1
19
16
5
2.1
12.7
10.9
4.5
5
5.1
2
0.8
13
2
0.8
17
12
6.5
5693
5538
3923
2651
2652
1205
771
1972
1683
1113
1988
12168
8862
4300
3100
3100
2100
1600
1300
570
7700
5700
2100
1600
8900
6660
3600
2200
2164
1400
880
7100
1400
880
4200
3100
1300
212
175.3
114
103
94
45
34
59
40
39
71
79.8
116
72
1300
37
42
21
22
11
87
79
42
21
40
45
28
19
17
15
11
81
15
11
31
28
18
1.2
1.3
1
1
1
1
1
1
1
1
1
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
1
1
—
Application
Package
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
Secondary
u8FL
Synchronous
u8FL
SO-8FL
SO-8FL
SO-8FL
u8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
u8FL
Primary/Secondary u8FL
Synchronous
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
u8FL
u8FL
SO8-FL
SO8-FL
SO8-FL
Page 17
N-Channel MOSFETs for Power Conversion
Non-Isolated Topology “Buck” DC-DC
Control
Features
•Low RDS(on) for low conduction loss
•Low capacitance for low switching loss
•Integrated Schottky for enhanced light load efficiency
Device
NTMFS4H01N
NTMFS4H01NF
NTMFS4H013NF
NTMFS4H02N
NTMFS4H02NF
NTTFS4H05N
NTTFS4H07N
NTMFS4C05N
NTMFS4C06N
NTMFS4C08N
NTMFS4C09N
NTMFS4C10N
NTMFS4C13N
NTTFS4C05N
NTTFS4985NF
NTTFS4C08N
NTTFS4C10N
NTTFS4C13N
NTMFS5C404NL
NTMFS5C410NL
NTMFS5C430NL
NTMFS5C423NL
NTMFS5C442NL
NTMFS5C450NL
NTMFS5C456NL
NTMFS5C460NL
NTMFS5C468NL
NTMFS5H400NL
NTMFS5H409NL
NTTFS5C453NL
NTTFS5C454NL
Page 18
Configuration
VDS
(V)
VGS
(V)
Single
Int. Schottky
Single
Single
Int. Schottky
Single
Single
Single
Single
Single
Single
Single
Single
Single
Int. Schottky
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
25
25
25
25
25
25
25
30
30
30
30
30
30
30
30
30
30
30
40
40
40
40
40
40
40
40
40
40
40
40
40
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
RDS(ON) mΩ
VGS = 10 V VGS = 4.5 V
Typ
Typ
0.55
0.56
0.72
1.1
1.1
2.5
3.8
2.7
3.2
4.6
4.6
5.8
7.3
2.9
2.8
4.7
5.9
7.5
0.56
0.71
1.2
1.7
2.2
2.4
3.1
3.7
8.6
0.65
0.9
2.5
3.2
0.76
0.79
1.1
1.7
1.6
3.8
5.8
4
4.8
6.8
6.8
8.9
11.4
4.1
4.16
7.2
8.8
11.2
0.85
1
1.7
2.5
3.2
3.4
4.8
5.8
14.5
0.9
1.2
3.8
4.8
Vin
Cin
Sync
PWM
Controller
Cout
Vout
Qg
(nC)
Qgd
(nC)
Ciss
(pF)
Crss
(pF)
RG
(Ω)
Application
Package
39
37.8
26
18
18.7
8.7
5.7
14
11.6
8.4
10.9
9.8
7.8
14.5
13.6
8.4
10.1
7.8
81
66
32
23
23
16
8.2
11
3.4
54
41
16
8.2
8.5
8
5.8
4.2
4.3
1.88
1.26
5
4
3.3
5.4
3.7
3.7
5.5
4.1
3.3
6.1
3.7
23.8
22
9
7
6.7
5
2.1
3
1
19
16
5
2.1
5693
5538
3923
2651
2652
1205
771
1972
1683
1113
1252
987
770
1988
2075
1113
993
770
12168
8862
4300
3100
3100
2100
1600
1300
570
7700
5700
2100
1600
212
175.3
114
103
94
45
34
59
40
39
126
162
127
71
46
39
163
127
79.8
116
72
1300
37
42
21
22
11
87
79
42
21
1.2
1.3
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
1
—
—
—
—
—
—
—
—
—
—
—
—
—
Secondary Synchronous
Secondary Synchronous
Secondary Synchronous
Secondary Synchronous
Secondary Synchronous
Secondary Synchronous
Secondary Synchronous
Synchronous
Synchronous
Synchronous
Synchronous
Synchronous
Synchronous
Control
Synchronous
Control
Control
Control
Control/Synchronous
Control/Synchronous
Control/Synchronous
Control/Synchronous
Control/Synchronous
Control/Synchronous
Control/Synchronous
Control/Synchronous
Control/Synchronous
Control/Synchronous
Control/Synchronous
Control/Synchronous
Control/Synchronous
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
u8FL
u8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
u8FL
u8FL
u8FL
u8FL
u8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
u8FL
u8FL
Power Supply & Power Adapter Solutions
N-Channel MOSFETs for Power Conversion
AC-DC Secondary Side
Features
•Low RDS(on) for low conduction loss
•Low capacitance for low switching loss
•Compact, thermally efficient pacakaging
Device
NTMFS5C404NL
NTMFS5C410NL
NTMFS5C430NL
NTMFS5C423NL
NTMFS5C442NL
NTMFS5C450NL
NTMFS5C456NL
NTMFS5C460NL
NTMFS5C468NL
NTMFS5H400NL
NTMFS5H409NL
NTMFS5C604NL
NTMFS5C612NL
NTMFS5C628NL
NTMFS5C645NL
NTMFS5C646NL
NTMFS5C670NL
NTMFS5C673NL
NTMFS5H600NL
NTMFS6B03N
NTMFS6B05N
NTMFS6B14N
NTTFS5C453NL
NTTFS5C454NL
NTTFS5C670NL
NTTFS5C673NL
ON Semiconductor
Configuration
VDS
(V)
VGS
(V)
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
Single
40
40
40
40
40
40
40
40
40
40
40
60
60
60
60
60
60
60
60
100
100
100
40
40
60
60
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
20
RDS(ON) mΩ
VGS = 10 V VGS = 4.5 V
Typ
Typ
0.56
0.71
1.2
1.7
2.2
2.4
3.1
3.7
8.6
0.65
0.9
0.93
1.2
2
3.3
3.8
5.1
7.2
1
3.8
6.5
12.2
2.5
3.2
5.4
8
0.85
1
1.7
2.5
3.2
3.4
4.8
5.8
14.5
0.9
1.2
1.25
1.65
2.6
4.6
5
7
11
1.4
—
—
—
3.8
4.8
7.3
11
Qg
(nC)
Qgd
(nC)
Ciss
(pF)
Crss
(pF)
RG
(Ω)
Application
Package
81
66
32
23
23
16
8.2
11
3.4
54
41
52
41
24
15.7
15.7
9
4.5
30
58
44
20
16
8.2
9
4.5
23.8
22
9
7
6.7
5
2.1
3
1
19
16
12.7
10.9
4.5
5
5.1
2
0.8
13
17
12
6.5
5
2.1
2
0.8
12168
8862
4300
3100
3100
2100
1600
1300
570
7700
5700
8900
6660
3600
2200
2164
1400
880
7100
4200
3100
1300
2100
1600
1400
880
79.8
116
72
1300
37
42
21
22
11
87
79
40
45
28
19
17
15
11
81
31
28
18
42
21
15
11
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
—
1
1
—
—
—
—
—
Secondary Sync
Secondary Sync
Secondary Sync
Secondary Sync
Secondary Sync
Secondary Sync
Secondary Sync
Secondary Sync
Secondary Sync
Secondary Sync
Secondary Sync
Secondary Sync
Secondary Sync
Secondary Sync
Secondary Sync
Secondary Sync
Secondary Sync
Secondary Sync
Secondary Sync
Secondary Sync
Secondary Sync
Secondary Sync
Secondary Sync
Secondary Sync
Secondary Sync
Secondary Sync
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO-8FL
SO8-FL
SO8-FL
SO8-FL
u8FL
u8FL
u8FL
u8FL
Page 19
N-Channel MOSFETs for Power Conversion
PFC Switch
Primary Side Switch
Sync FETs
85 to
265 Vac
Control
PFC
Controller
PWM
Isolation
Control
PFC Switch and Primary Side Switch MOSFETs
Device
VDS
(V)
ID
(A)
VGS
(V)
Max RDS(on) @ 50% ID
(Ω)
Qg Typ
(nC)
Package
NDD03N80Z
800
3
30
4.5
20
DPAK, IPAK
NDF10N62ZG
620
10
30
0.75
47
TO-220 FP
NDF06N62ZG
620
6
30
1.2
31
TO-220 FP
NDF04N62ZG
620
4
30
2
19
TO-220 FP
NDF10N60ZH
600
10
30
0.75
47
TO-220 FP
NDF08N60ZH
600
8
30
0.95
39
TO-220 FP
NDF06N60ZH
600
6
30
1.2
31
TO-220 FP
NDF04N60ZH
600
4
30
2
19
TO-220 FP
NDD04N60Z
600
4
30
2
19
DPAK, IPAK
NDF03N60ZH
600
3
30
3.6
12
TO-220 FP
NDD03N60Z
600
3
30
3.6
12
DPAK, IPAK
NDF02N60ZH
600
2
30
4.8
10.1
TO-220 FP
NDD02N60Z
600
2
30
4.8
10.1
DPAK, IPAK
NDF11N50ZH
500
11
30
0.52
46
TO-220 FP
NDF08N50ZH
500
8
30
0.85
31
TO-220 FP
NDF05N50ZH
500
5
30
1.5
18.5
TO-220 FP
NDD05N50Z
500
5
30
1.5
18.5
DPAK, IPAK
NDD04N50Z
500
4
30
2.7
12
DPAK, IPAK
NDD03N50Z
500
3
30
3.3
10
DPAK, IPAK
GaN Primary Side Transistors
Device
NTP8G202N
NTP8G206N
Page 20
Configuration Polarity
VDS
(V)
VGS
(V)
RDS(ON)
mΩ
Qg
(nC)
Co(tr)
(pF)
Qrr
(nC)
Package
GaN Cascode
GaN Cascode
600
600
18
18
290
150
6.2
6.2
63
63
29
29
TO-220
TO-220
N
N
Power Supply & Power Adapter Solutions
MOSFET Drivers
Features
•Drives high voltage power MOSFETs and IGBTs,
provides two outputs
•Suitable for multiple topologies like half-bridge,
asymmetrical half-bridge, active clamp, full bridge
•High voltage range, up to 600 V
•Robust devices with dV/dt immunity of ±50 V/ns
•Pin to pin compatible with industry standards
MOSFET Drivers
Device
Function
Type
No of Drivers
Package
NCP5104
Single Input High and Low Side Power MOSFET Driver
Half-Bridge
2
SOIC-8, PDIP-8
NCP5111
Single Input Half-Bridge Power MOSFET or IGBT Driver
Half-Bridge
2
SOIC-8, PDIP-8
NCP5106A/B
Dual Inputs High Voltage High and Low-Side MOSFET or IGBT Driver
Half-Bridge
2
SOIC-8, PDIP-8
NCP5304
Dual Inputs High Voltage High and Low-Side MOSFET or IGBT Driver
Half-Bridge
2
SOIC-8, PDIP-8
NCP5181
Dual Inputs High Voltage High and Low-Side MOSFET or IGBT Driver
Half-Bridge
2
SOIC-8, PDIP-8
ON Semiconductor
Page 21
Trench Schottky Rectifiers for Improved Efficiency
90.0
89.5
89.0
88.5
Features
88.0
Efficiency (%)
•Low VF
•High operating temperature
capabilities
•Enhanced efficiency
87.5
87.0
86.5
86.0
85.5
85.0
Competitive 30A Planar
84.5
NTST30100SG
84.0
83.5
83.0
12.5
25.0
37.5
50.0
62.5
75.0
87.5
100.0
Load (% of rated maximum)
65 W Adapter Low Line Efficiency
Trench Schottky Rectifiers
Device
NTSAF345
NTSAF545
NTSA4100
NTSAF5100
NTSS5100
NTS(x)2080CT
NTS(x)3080CT
NTS8100MFS
NTS10100(x)MFS
NTS12100(x)MFS
NTS(x)20100CT
NTSV20100CT
NTSV30100SG
NTS(x)30100CT
NTSV30H100CT
NTS10120(x)MFS
NTS12120(x)MFS
NTS1045MFS
NTS1245MFS
NTS1545MFS
NTS560MFS
NTS860MFS
NTS1260MFS
NTS(x)20120CT
NTS(x)30120CT
NTS(x)40100CT
NTS(x)40120CT
VRRM
(V)
VF Max
(V)
IR Max
(uA)
IO
(A)
IFSM
(A)
Package
45
45
100
100
100
80
80
100
100
100
100
100
100
100
100
120
120
45
45
45
60
60
60
120
120
100
120
0.63
0.6
0.66
0.69
0.69
0.68- 0.82
0.65-0.82
0.62
0.59-0.61
0.64
0.68
0.82
0.85
0.68
0.82
0.63
0.68
0.57
0.57
0.57
0.6
0.62
0.6
0.72-0.86
0.76-0.92
0.68
0.71
0.0075
0.0095
0.025
0.025
0.025
0.6
0.7
7
15
15
0.8
0.8
1
0.5
0.5
3.1
9.2
0.12
0.12
0.12
0.055
0.055
0.09
0.7
0.8
0.8
0.5
3
5
4
5
5
20
30
8
10
12
20
20
30
30
30
10
12
10
12
15
5
8
12
20
30
40
40
100
100
50
50
50
100-150
160
150
200
200
150
100
100
160
500
200
200
210
210
210
100
150
210
120
150
160
250
SMA-FL
SMA-FL
SMA-FL
SMA-FL
SMB
TO-220-FP, TO-220
TO-220-FP, TO-220
SO-8 FL / DFN-5
SO-8 FL / DFN-5
SO-8 FL / DFN-5
I2PAK, D2PAK, TO-220-FP, TO-220
TO-220
TO-220
I2PAK, D2PAK, TO-220, TO-220-FP
TO-220
SO-8 FL / DFN-5
SO-8 FL / DFN-5
SO-8 FL / DFN-5
SO-8 FL / DFN-5
SO-8 FL / DFN-5
SO-8 FL / DFN-5
SO-8 FL / DFN-5
SO-8 FL / DFN-5
I2PAK, D2PAK, TO-220-FP, TO-220
I2PAK, D2PAK, TO-220-FP, TO-220
I2PAK, D2PAK, TO-220-FP, TO-220
I2PAK, D2PAK, TO-220-FP, TO-220
Note: All VF data is taken at rated current, 125°C ambient. All IR data is taken at rated voltage, 25°C, per leg.
Page 22
Power Supply & Power Adapter Solutions
Rectifiers
Device
MBRF10H150CT
MBR(x)20H150CT
MBR(x)30H150CT
MBR16100CT
MBR(x)41H100CT
MBR60H100CT
MBR(x)10L60CT
MBR(x)2060CT
MBR(x)20L60CT
MBR(x)30L60CT
MBRB30H60CT
MBR40L60CT
MBR560MFS
MBR460MFS
MBR1545CT
MBRF2045CT
MBR(x)20L45CT
MBR2545CT
MBRF2545CT
MBR3045ST
MBRB3045CT-1
MBRF30L45CT
MBR40L45CT
MBR60L45CT
MBR540MFS
MBR440MFS
MBR2030CTL
MBR(x)30H30CT
VRRM
(V)
VF Max
(V)
IR Max
(uA)
IO
(A)
IFSM
(A)
Package
150
150
150
100
100
100
60
60
60
60
60
60
60
60
45
45
45
45
45
45
45
45
45
45
40
40
30
30
0.69
0.68
0.73
0.6
0.67
0.72
0.49
0.75
0.54
0.57
0.56
0.58
0.75
0.74
0.57
0.57
0.47
0.57
0.62
0.57
0.57
0.44
0.48
0.53
0.57
0.63
0.4
0.4
45
50
60
100
10
10
220
150
380
350
300
550
0.15
0.2
100
100
500
200
200
200
200
650
1200
1200
0.06
0.8
5000
800
10
20
30
16
40
60
10
20
20
30
30
40
5
4
15
20
20
30
25
30
30
30
40
60
5
4
20
30
150
180
200
150
350
350
200
150
240
240
260
240
60
40
150
150
180
150
150
150
150
190
200
200
40
40
150
260
TO-220-FP
TO-220, TO-220-FP
TO-220, TO-220-FP
TO-220
TO-220, I2PAK
TO-220
TO-220, TO-220-FP
TO-220, TO-220-FP
TO-220, TO-220-FP
TO-220, TO-220-FP
I2PAK
TO-220
SO-8 FL / DFN-5
SO-8 FL / DFN-5
TO-220
TO-220-FP
TO-220, TO-220-FP
TO-220
TO-220-FP
TO-220
I2PAK
TO-220-FP
TO-220
TO-220
SO-8 FL / DFN-5
SO-8 FL / DFN-5
TO-220
TO-220, I2PAK
Note: All VF data is taken at rated current, 125°C ambient. All IR data is taken at rated voltage, 25°C, per leg.
Planar Ultrafast Rectifiers — PFC-Boost Diodes
VRRM
(V)
VF Max
(V)
IR Max
(uA)
IO
(A)
IFSM
(A)
Package
NHPD660
600
1.8
300
6
30
TO-220, TO-220-FP
NHP(x)08S600G
600
1.8
400
8
40
TO-220, TO-220-FP
NHP(x)15S600G
600
1.8
800
15
45
TO-220, TO-220-FP
NHP(x)220(x)T3G
200
0.9
35
2
50
SOD-123FL, POWERMITE®
NHP120SF
200
0.85
25
1
30
SOD-123FL
Device
ON Semiconductor
Page 23
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