Payment Terms | T/T, Western Union, Paypal |
Supply Ability | 6300pcs |
Delivery Time | 1 day |
Packaging Details | Please contact me for details |
ESD Capability, Machine Model | 200 V |
Storage Temperature Range | −60 to +150 °C |
Operating Temperature Range | −40 to +125 °C |
Maximum Junction Temperature | 150 °C |
Thermal Resistance, Junction−to−Case | 57 °C/W |
Thermal Resistance, Junction−to−Air, SOIC Version | 178 °C/W |
Brand Name | Anterwell |
Model Number | NCP1337P |
Certification | new & original |
Place of Origin | original factory |
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Product Specification
Payment Terms | T/T, Western Union, Paypal | Supply Ability | 6300pcs |
Delivery Time | 1 day | Packaging Details | Please contact me for details |
ESD Capability, Machine Model | 200 V | Storage Temperature Range | −60 to +150 °C |
Operating Temperature Range | −40 to +125 °C | Maximum Junction Temperature | 150 °C |
Thermal Resistance, Junction−to−Case | 57 °C/W | Thermal Resistance, Junction−to−Air, SOIC Version | 178 °C/W |
Brand Name | Anterwell | Model Number | NCP1337P |
Certification | new & original | Place of Origin | original factory |
High Light | chip in electronics ,integrated components |
PWM Current−Mode Controller for Free Running Quasi−Resonant Operation
The NCP1337 combines a true current mode modulator and a demagnetization detector which ensures full Borderline/Critical Conduction Mode in any load/line conditions together with minimum drain voltage switching (Quasi−Resonant operation). The transformer core reset detection is done internally, without using any external signal, due to the Soxyless concept. The frequency is internally limited to 130 kHz, preventing the controller to operate above the 150 kHz CISPR−22 EMI starting limit.
By monitoring the feedback pin activity, the controller enters ripple mode as soon as the power demand falls below a predetermined level. As each restart is softened by an internal soft−start, and as the frequency cannot go below 25 kHz, no audible noise can be heard.
The NCP1337 also features an efficient protective circuitry which, in presence of an overcurrent condition, disables the output pulses and enters a safe burst mode, trying to restart. Once the default has gone, the device auto−recovers. Also included is a bulk voltage monitoring function (known as brown−out protection), an adjustable overpower compensation, and a VCC OVP. Finally, an internal 4.0 ms soft−start eliminates the traditional startup stress.
Features
• Free−Running Borderline/Critical Mode Quasi−Resonant Operation
• Current−Mode
• Soft Ripple Mode with Minimum Switching Frequency for Standby
• Auto−Recovery Short−Circuit Protection Independent of Auxiliary Voltage
• Overvoltage Protection
• Brown−Out Protection
• Two Externally Triggerable Fault Comparators (one for a disable function, and the other for a permanent latch)
• Internal 4.0 ms Soft−Start
• 500 mA Peak Current Drive Sink Capability
• 130 kHz Max Frequency
• Internal Leading Edge Blanking
• Internal Temperature Shutdown
• Direct Optocoupler Connection
• Dynamic Self−Supply with Levels of 12 V (On) and 10 V (Off)
• SPICE Models Available for TRANsient and AC Analysis
• These are Pb−Free Devices*
Typical Applications
• AC−DC Adapters for Notebooks, etc.
• Offline Battery Chargers
• Consumer Electronics (DVD Players, Set−Top Boxes, TVs, etc.)
• Auxiliary Power Supplies (USB, Appliances, TVs, etc.)
MAXIMUM RATINGS
Rating | Symbol | Value | Unit |
Voltage on Pin 8 (HV) when Pin 6 (VCC) is Decoupled to Ground with 10 μF | VHV | −0.3 to 500 | V |
Maximum Current in Pin 8 (HV) | - | 20 | mA |
Power Supply Voltage, Pin 6 (VCC) and Pin 5 (DRV) | VCCmax | −0.3 to 20 | V |
Maximum Current in Pin 6 (VCC) | - | ±30 | mA |
Maximum Voltage on all Pins except Pin 8 (HV), Pin 6 (VCC) and Pin 5 (DRV) | - | −0.3 to 10 | V |
Maximum Current into all Pins except Pin 8 (HV), Pin 6 (VCC) and Pin 5 (DRV) | - | ±10 | mA |
Maximum Current into Pin 6 (DRV) during ON Time and TBLANK | - | ±1.0 | A |
Maximum Current into Pin 6 (DRV) after TBLANK during OFF Time | - | ±15 | mA |
Thermal Resistance, Junction−to−Case | RθJC | 57 | °C/W |
Thermal Resistance, Junction−to−Air, SOIC Version | RθJA | 178 | °C/W |
Thermal Resistance, Junction−to−Air, DIP Version | RθJA | 100 | °C/W |
Maximum Junction Temperature | TJMAX | 150 | °C |
Operating Temperature Range | - | −40 to +125 | °C |
Storage Temperature Range | - | −60 to +150 | °C |
ESD Capability, HBM Model per Mil−std−883, Method 3015 (All Pins except HV) | - | 2.0 | kV |
ESD Capability, Machine Model | - | 200 | V |
Maximum ratings are those values beyond which device damage can occur. Maximum ratings applied to the device are individual stress limit values (not normal operating conditions) and are not valid simultaneously. If these limits are exceeded, device functional operation is not implied, damage may occur and reliability may be affected.
1. This device contains latchup protection and exceeds 100 mA per JEDEC standard JESD78.
Figure 1. Typical Application Schematic
NCP1337
Figure 2. Internal Circuit Architecture
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Company Details
Business Type:
Distributor/Wholesaler,Trading Company
Year Established:
2004
Total Annual:
500000-1000000
Employee Number:
20~30
Ecer Certification:
Site Member
King--- Originator of ANTERWELL, engaged in the IC electronics industry in 1998 and establish ANTERWELL in 2004. The company is located in Shenzhen Huaqiang North, the largest electronic center in Asia. Our main business is the technical development and ... King--- Originator of ANTERWELL, engaged in the IC electronics industry in 1998 and establish ANTERWELL in 2004. The company is located in Shenzhen Huaqiang North, the largest electronic center in Asia. Our main business is the technical development and ...
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