NXP TEA1732LTS/1H

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  • Part Number:

    TEA1732LTS/1H

  • Manufacturer:

    NXP

  • Category:

    AC DC Converters, Offline Switches

  • RoHs:

    rohs RoHS Compliant

  • Datasheet:

    pdf TEA1732LTS/1H_Datesheet

  • Description:

    IC OFFLINE SWITCH FLYBACK SC74

  • In stock 0
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Specifications
Type
Paramete
Type
Paramete
Duty Cycle
80%
Frequency - Switching
65kHz
Voltage - Start Up
21.5 V
Operating Temperature
-40°C ~ 150°C (TJ)
Supplier Device Package
SC-74
Internal Switch(s)
No
Fault Protection
Current Limiting, Over Power, Over Temperature, Over Voltage
Grade
-
Topology
Flyback
Power (Watts)
75 W
Mounting Type
Surface Mount
Voltage - Supply (Vcc/Vdd)
12V ~ 30V
Control Features
-
Package / Case
SC-74, SOT-457
Qualification
-
Output Isolation
Isolated
Voltage - Breakdown
-
Overview

DESCRIPTION

· The TEA1732LTS is a cost-effective SMPS controller IC designed for flyback topologies.
· It operates in peak current and frequency control mode with frequency jitter for EMI reduction.
· Integrated slope compensation supports CCM operation.
· Features include OPP, brownout protection, OVP, and OTP with minimal external components.
· Optimizes efficiency across load ranges with frequency reduction at low power and fixed frequency at high power.
· Simplifies design of efficient, reliable power supplies up to 75W.



FEATURES

· Enables low-cost SMPS applications with a wide input voltage range (12V to 30V).
· Integrated OVP on VCC pin and accurate OVP via ISENSE pin.
· Low supply current: 10µA during start-up/restart, 0.58mA during normal operation.
· Internal overpower time-out and high/low line compensation.
· Fixed switching frequency with jitter for EMI reduction.
· Frequency reduction at low power and increase at peak power for efficiency.
· Slope compensation for CCM and integrated soft-start.



APPLICATIONS

· Ideal for designing low-cost, efficient power supplies up to 75W.
· Suitable for applications requiring minimal external components and robust protection features.
· Useful in systems needing high efficiency across varying load conditions.



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