
UCC3580N-2
ObsoleteIC OFFLINE SWITCH MULT TOP 16DIP
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UCC3580N-2
ObsoleteIC OFFLINE SWITCH MULT TOP 16DIP
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Technical Specifications
Parameters and characteristics for this part
| Specification | UCC3580N-2 |
|---|---|
| Control Features | Soft Start |
| Duty Cycle | 66 % |
| Internal Switch(s) | False |
| Mounting Type | Through Hole |
| Operating Temperature [Max] | 150 °C |
| Operating Temperature [Min] | -55 °C |
| Output Isolation | Isolated |
| Package / Case | 0.3 in |
| Package / Case | 16-DIP |
| Package / Case | 7.62 mm |
| Supplier Device Package | 16-PDIP |
| Topology | Flyback, Forward |
| Voltage - Start Up | 15 V |
| Voltage - Supply (Vcc/Vdd) [Max] | 15 V |
| Voltage - Supply (Vcc/Vdd) [Min] | 8.5 V |
UCC3580-2 Series
16V active clamp current mode PWM controller with P-channel clamp FET and 10V turn-on, 0°C to 70°C
| Part | Package / Case | Package / Case [x] | Package / Case [y] | Mounting Type | Output Isolation | Internal Switch(s) | Operating Temperature [Min] | Operating Temperature [Max] | Control Features | Duty Cycle | Topology | Voltage - Start Up | Voltage - Supply (Vcc/Vdd) [Max] | Voltage - Supply (Vcc/Vdd) [Min] | Supplier Device Package | Package / Case | Package / Case | Frequency - Switching | Number of Outputs | Clock Sync | Output Phases | Function | Output Type | Output Configuration | Duty Cycle (Max) [Max] | Synchronous Rectifier |
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
Texas Instruments | 16-SOIC | 0.154 in | 3.9 mm | Surface Mount | Isolated | -55 °C | 150 °C | Soft Start | 66 % | Flyback Forward | 15 V | 15 V | 8.5 V | 16-SOIC | ||||||||||||
Texas Instruments | 16-DIP | Through Hole | Isolated | -55 °C | 150 °C | Soft Start | 66 % | Flyback Forward | 15 V | 15 V | 8.5 V | 16-PDIP | 0.3 in | 7.62 mm | ||||||||||||
Texas Instruments | 16-DIP | Through Hole | Isolated | -55 °C | 150 °C | Soft Start | 66 % | Flyback Forward | 15 V | 15 V | 8.5 V | 16-PDIP | 0.3 in | 7.62 mm | ||||||||||||
Texas Instruments | 16-DIP | Through Hole | 0 °C | 70 °C | Enable Ramp Soft Start | Forward Converter | 16 V | 8.5 V | 16-PDIP | 0.3 in | 7.62 mm | 400 kHz | 2 | 1 | Step-Up/Step-Down | Transistor Driver | Positive | 66 % | ||||||||
Texas Instruments | 16-SOIC | 0.154 in | 3.9 mm | Surface Mount | 0 °C | 70 °C | Enable Ramp Soft Start | Forward Converter | 16 V | 8.5 V | 16-SOIC | 400 kHz | 2 | 1 | Step-Up/Step-Down | Transistor Driver | Positive | 66 % | ||||||||
Texas Instruments | 16-DIP | Through Hole | 0 °C | 70 °C | Enable Ramp Soft Start | Forward Converter | 16 V | 8.5 V | 16-PDIP | 0.3 in | 7.62 mm | 400 kHz | 2 | 1 | Step-Up/Step-Down | Transistor Driver | Positive or Negative | 66 % | ||||||||
Texas Instruments | 16-SOIC | 0.154 in | 3.9 mm | Surface Mount | 0 °C | 70 °C | Enable Ramp Soft Start | Forward Converter | 16 V | 8.5 V | 16-SOIC | 400 kHz | 2 | 1 | Step-Up/Step-Down | Transistor Driver | Positive or Negative | 66 % | ||||||||
Texas Instruments | 16-DIP | Through Hole | Isolated | -55 °C | 150 °C | Soft Start | 66 % | Flyback Forward | 15 V | 15 V | 8.5 V | 16-PDIP | 0.3 in | 7.62 mm | ||||||||||||
Texas Instruments | 16-SOIC | 0.154 in | 3.9 mm | Surface Mount | 0 °C | 70 °C | Enable Ramp Soft Start | Forward Converter | 16 V | 8.5 V | 16-SOIC | 400 kHz | 2 | 1 | Step-Up/Step-Down | Transistor Driver | Positive | 66 % | ||||||||
Texas Instruments | 16-SOIC | 0.154 in | 3.9 mm | Surface Mount | Isolated | -55 °C | 150 °C | Soft Start | 66 % | Flyback Forward | 15 V | 15 V | 8.5 V | 16-SOIC |
Pricing
Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly
| Distributor | Package | Quantity | $ | |
|---|---|---|---|---|
Description
General part information
UCC3580-2 Series
The UCC3580 family of PWM controllers is designed to implement a variety of active clamp/reset and synchronous rectifier switching converter topologies. While containing all the necessary functions for fixed frequency, high performance pulse width modulation, the additional feature of this design is the inclusion of an auxiliary switch driver which complements the main power switch, and with a programmable deadtime or delay between each transition. The active clamp/reset technique allows operation of single ended converters beyond 50% duty cycle while reducing voltage stresses on the switches, and allows a greater flux swing for the power transformer. This approach also allows a reduction in switching losses by recovering energy stored in parasitic elements such as leakage inductance and switch capacitance.
The oscillator is programmed with two resistors and a capacitor to set switching frequency and maximum duty cycle. A separate synchronized ramp provides a voltage feedforward pulse width modulation and a programmed maximum volt-second limit. The generated clock from the oscillator contains both frequency and maximum duty cycle information.
The main gate drive output (OUT1) is controlled by the pulse width modulator. The second output (OUT2) is intended to activate an auxiliary switch during the off time of the main switch, except that between each transition there is deadtime where both switches are off, programmed by a single external resistor. This design offers two options for OUT2, normal and inverted. In the -1 and -2 versions, OUT2 is normal and can be used to drive PMOS FETs. In the -3 and -4 versions, OUT2 is inverted and can be used to drive NMOS FETs. In all versions, both the main and auxiliary switches are held off prior to startup and when the PWM command goes to zero duty cycle. During fault conditions, OUT1 is held off while OUT2 operates at maximum duty cycle with a guaranteed off time equal to the sum of the two deadtimes.
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