NCP1205 ON Semiconductor, NCP1205 Datasheet

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NCP1205

Manufacturer Part Number
NCP1205
Description
Single Ended Pwm Controller Featuring Qr Operation And Soft Frequency Foldback
Manufacturer
ON Semiconductor
Datasheet

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NCP1205
Single Ended PWM
Controller Featuring QR
Operation and Soft
Frequency Foldback
and a demagnetization detector to ensure full Discontinuous
Conduction Mode in any load/line conditions and minimum drain
voltage switching (Quasi−Resonant operation, also called critical
conduction operation). With its inherent Variable Frequency Mode
(VFM), the controller decreases its operating frequency at constant
peak current whenever the output power demand diminishes.
Associated with automatic multiple valley switching, this unique
architecture guarantees minimum switching losses and the lowest
power drawn from the mains when operating at no−load conditions.
Thus, the NCP1205 is optimal for applications targeting the newest
International Energy Agency (IEA) recommendations for standby
power.
charging path for the V
startup sequence without deteriorating the efficiency once off.
Overcurrent fault Protection circuitry (OCP) makes the final design
rugged and reliable. The PDIP−14 offers an adjustable version of the
OVP threshold via an external resistive network.
Features
Applications
*For additional information on our Pb−Free strategy and soldering details, please
© Semiconductor Components Industries, LLC, 2006
October, 2006 − Rev. 7
download the ON Semiconductor Soldering and Mounting Techniques
Reference Manual, SOLDERRM/D.
The NCP1205 combines a true Current Mode Control modulator
The internal High−Voltage current source provides a reliable
The continuous feedback signal monitoring implemented with an
Operation (QR)
at Light−Load
Natural Drain Valley Switching for Lower EMI and Quasi−Resonant
Smooth Frequency Foldback for Low Standby and Minimum Ripple
Adjustable Maximum Switching Frequency
Internal 200 ns Leading Edge Blanking on Current Sense
250 mA Sink and Source Driver
Wide Operating Voltages: 8.0 to 30 V
Wide UVLO Levels: 7.2 to 15 V Typical
Auto−Recovery Internal Short−Circuit Protection (OCP)
Integrated 3.0 mA Typ Startup Source
Current Mode Control
Adjustable Overvoltage Level
Pb−Free Packages are Available*
High Power AC/DC Adapters for Notebooks, etc.
Offline Battery Chargers
Power Supplies for DVD, CD Players, TVs, Set−Top Boxes, etc.
Auxiliary Power Supplies (USB, Appliances, etc.)
CC
capacitor and ensures a clean and short
1
16
14
NCP1205P2G
NCP1205DR2G
†For information on tape and reel specifications,
NCP1205P
NCP1205P2
NCP1205DR2
NCP1205PG
including part orientation and tape sizes, please
refer to our Tape and Reel Packaging Specifications
Brochure, BRD8011/D.
8
1
Device
1
1
ORDERING INFORMATION
A
WL
YY, Y
WW
G
http://onsemi.com
CASE 751B
CASE 626
CASE 646
= Assembly Location
= Wafer Lot
= Year
= Work Week
= Pb−Free Package
N SUFFIX
D SUFFIX
P SUFFIX
SOIC−16
PDIP−14
(Pb−Free)
(Pb−Free)
(Pb−Free)
PDIP−8
SOIC−16
Package
PDIP−14
PDIP−14
SOIC−16
PDIP−8
PDIP−8
Publication Order Number:
16
14
2500/Tape & Reel
1
2500/Tape & Reel
1
8
1
50 Units/Rail
25 Units/Rail
25 Units/Rail
50 Units/Rail
Shipping
AWLYYWWG
MARKING
DIAGRAM
NCP1205DG
NCP1205P2
YYWWG
NCP1205/D
AWLYWW
1205P
AWL

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NCP1205 Summary of contents

Page 1

... Associated with automatic multiple valley switching, this unique architecture guarantees minimum switching losses and the lowest power drawn from the mains when operating at no−load conditions. Thus, the NCP1205 is optimal for applications targeting the newest International Energy Agency (IEA) recommendations for standby power. ...

Page 2

Demag 2 7 Drive Isense GND PDIP−8 PIN FUNCTION DESCRIPTION Pin No. PDIP−8 PDIP−14 SOIC−16 Pin Name Demag ...

Page 3

... R2 D2 150 1N4148 + C14 R10 MTD1N60E NCP1205P C12 1N4148 + C14 33 mF/ R10 15 k NCP1205P2 MTD1N60E 6 C12 1 nF http://onsemi.com 1N5819 10 mH C10 + + 470 mF C11 10 V ...

Page 4

HV 1 Last Pulse of Demag after DEMAG ? Demag − 2.5 V − Over Current Protection (OCP) V(−) < 1.5 V Lasts more than 128 ms? ...

Page 5

HV 1 Last Pulse of Demag after DEMAG ? Demag − 2.5 V − OVP 6 Over Current Protection (OCP) V(−) < 1 ...

Page 6

MAXIMUM RATINGS Rating Power Supply Voltage Thermal Resistance Junction−to−Air Operating Junction Temperature Range Maximum Junction Temperature Storage Temperature Range ESD Capability, HBM Model ESD Capability, Machine Model Demagnetization Pin Current Stresses exceeding Maximum Ratings may damage the device. Maximum Ratings ...

Page 7

ELECTRICAL CHARACTERISTICS (continued) Max T = 150° unless otherwise noted Characteristics Current Sense Comparator (continued) Propagation Delay from Current Detection to Gate OFF State Leading Edge Blanking (LEB) Frequency Modulator Minimum Frequency Operation @ ...

Page 8

TEMPERATURE (°C) Figure 5. Ct Charging Current versus Temperature 16.5 16 15.5 15 14.5 14 13.5 − TEMPERATURE (°C) Figure 7. Startup Threshold versus Temperature 8 7.75 ...

Page 9

... Ip the peak current at which the MOSFET is turned off Fsw the nominal switching frequency To adjust the transmitted power, the PWM controller can play on the switching frequency or the peak current setpoint. To refine the control, the NCP1205 offers the ability to play on both parameters either altogether on an individual basis. http://onsemi.com 9 ...

Page 10

... IC smoothly resumes its FB operation. Advantages of the Method By implementing the aforementioned control scheme, the NCP1205 brings the following advantages: • Discontinuous only operation: in DCM, the Flyback is a first order system (at low frequencies) and thus naturally eases the feedback loop compensation. ...

Page 11

... Figure 11. A Typical Behavior of Free Running Systems with a Smooth Frequency Foldback with the NCP1205 The typical above diagram shows how the frequency moves with the output power demand. The components used for the simulation were: Vin = 300 6.5 mH, Vout = 10 V, Np/ ...

Page 12

... SMPS. Various solutions can be purposely implemented such as the TL431 or a dedicated circuit like the MC33341. In the NCP1205, the internal OPAMP is used to create a virtual ground permanently biased at 2.5 V (Figure 14), an internal reference level. By monitoring this virtual ground further called V(− ...

Page 13

low 1.5 V Figure 14. This Typical Arrangement Allows for an Easy Fault Detection Management To illustrate how the system reacts to a variable FB level, we have entered the above circuit into ...

Page 14

... Figure 16. In the PDIP−8 Version, the OVP Pad is not Pinned Out and is Available with PDIP−14 Devices Protecting Pin 1 Against Negative Spikes As any CMOS controller, NCP1205 is sensitive to negative voltages that could appear on it’s pins. To avoid any adverse latch−up of the IC, we strongly recommend inserting resistor in series with pin 1 and the high− ...

Page 15

V CC Drive Figure 17. When the V Maximum Value, the Device Enters Safe Burst Mode V CC Arbitrary V Representation CC Drive V(−) Figure 18. When the Internal V(−) Passes Below 1.5 V, the IC OVP detected on Pin ...

Page 16

F −A− NOTE 2 C −T− N SEATING PLANE 0.13 (0.005 −T− SEATING PLANE 0.13 (0.005) PACKAGE DIMENSIONS PDIP−8 N SUFFIX ...

Page 17

... F C 1.35 1.75 0.054 0.068 D 0.35 0.49 0.014 0.019 F 0.40 1.25 0.016 0.049 G 1.27 BSC 0.050 BSC J 0.19 0.25 0.008 0.009 K 0.10 0.25 0.004 0.009 5.80 6.20 0.229 0.244 R 0.25 0.50 0.010 0.019 ON Semiconductor Website: www.onsemi.com Order Literature: http://www.onsemi.com/orderlit For additional information, please contact your local Sales Representative NCP1205 ...

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