Delta IPM24S0B0 - Manual

Delta IPM24S0B0

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Table of Contents:

  • Page 2 – TECHNICAL SPECIFICATIONS; PARAMETER
  • Page 3 – ELECTRICAL CHARACTERISTICS CURVES; Figure 1: Converter efficiency vs. output current; ff
  • Page 5 – application of Vin
  • Page 7 – Note: Input reflected-ripple current is measured with a; Figure 23: Input reflected-ripple current test setup; Vo; GND; F PosCap and 1; Figure 24: Peak-peak output noise and startup transient; setup; Note: All measurements are taken at the module; Ii; DESIGN CONSIDERATIONS; Input Source Impedance; Figure 26: Input ripple voltage for various output models,
  • Page 8 – IPM; FEATURES DESCRIPTIONS; Over-Current Protection; The units; Output Voltage Programming; Rtrim is the external resistor in K
  • Page 9 – Figure 29: Trim down Circuit configuration for programming; Table 1 Rtrim is the external resistor in K; P max; Figure 32: Circuit configuration for output voltage margining
  • Page 10 – THERMAL CONSIDERATIONS; Thermal Testing Setup; Figure 31: Wind tunnel test setup figure dimensions are in
  • Page 11 – Figure 33: Output current vs. ambient temperature and air velocity; Figure 36: Output current vs. ambient temperature and air velocity; THERMAL CURVES
  • Page 12 – PICK AND PLACE LOCATION; All dimensions are in millimeters (inches); LEAD FREE PROCESS RECOMMEND TEMP. PROFILE; T e
  • Page 13 – Mechanical Drawing; SMD PACKAGE; : The copper pad is recommended to connec
  • Page 14 – PART NUMBERING SYSTEM; MODEL LIST
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Delphi Series IPM24S0B0, Non-Isolated,
Integrated Point-of-Load Power Modules:

11V~36V input, 3.3~6.5V and 3A Output

The Delphi Series IPM24S0B0 non-isolated, fully integrated
Point-of-Load (POL) power modules, are the latest offerings from a
world leader in power systems technology and manufacturing --
Delta Electronics, Inc. This product family provides up to 3A of
output current or 20W of output power in an industry standard,
compact, IC-like, molded package. It is highly integrated and does
not require external components to provide the point-of-load
function. A copper pad on the back of the module; in close contact
with the internal heat dissipation components; provides excellent
thermal performance. The assembly process of the modules is fully
automated with no manual assembly involved. These converters
possess outstanding electrical and thermal performance, as well as
extremely high reliability under highly stressful operating conditions.
IPM24S0B0 operates from an 11V~36V source and provides a
programmable output voltage from 3.3V to 6.5V. The IPM product
family is available in both a SMD or SIP package. IPM24S family is
also available for output 1.2V~2.5V. Please refer to IPM240A0
datasheet for details.

OPTIONS

SMD or SIP package


APPLICATIONS

Telecom/DataCom

Wireless Networks

Optical Network Equipment

Server and Data Storage

Industrial/Test Equipment

FEATURES

High efficiency: 91% @ 12Vin, 6.5V/3A

88% @ 24Vin, 6.5V/3A

Small size and low profile:

17.8x15.0x7.8mm (0.70”x0.59”x0.31”)

Output voltage adjustment: 3.3V~6.5V

Monotonic startup into normal and

pre-biased loads

Input UVLO, output OCP

Remote ON/OFF

Output short circuit protection

Fixed frequency operation

Copper pad to provide excellent thermal

performance

ISO 9001, TL 9000, ISO 14001, QS9000,

OHSAS18001 certified manufacturing

facility

UL/cUL 60950 (US & Canada) Recognized,

and TUV (EN60950) Certified

CE mark meets 73/23/EEC and

93/68/EEC directives

DATASHEET
IPM24S0B0S/R03_03202007

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Summary

Page 2 - TECHNICAL SPECIFICATIONS; PARAMETER

DS_IPM24S0B0_03202007 2 TECHNICAL SPECIFICATIONS T A = 25°C, airflow rate = 300 LFM, V in = 24Vdc, nominal Vout unless otherwise noted. PARAMETER NOTES and CONDITIONS IPM24S0B0R/S03FA Min. Typ. Max. Units ABSOLUTE MAXIMUM RATINGS Input Voltage (Continuous) 0 40 Vdc Operating Temperature Please refer...

Page 3 - ELECTRICAL CHARACTERISTICS CURVES; Figure 1: Converter efficiency vs. output current; ff

DS_IPM24S0B0_03202007 3 ELECTRICAL CHARACTERISTICS CURVES Figure 1: Converter efficiency vs. output current (3.30V output voltage) Figure 2: Converter efficiency vs. output current (4.0V output voltage) Figure 3: Converter efficiency vs. output current (5.0V output voltage) Figure 4: Converter effic...

Page 5 - application of Vin

DS_IPM24S0B0_03202007 5 ELECTRICAL CHARACTERISTICS CURVES Figure 13: Power on waveform at 12vin, 3.3V/3A out with application of Vin Figure 14: Power on waveform at 12vin, 6.5V/3A out with application of Vin Figure 15: Power off waveform at 12vin, 3.3V/3A out with application of Vin Figure 16: Power...

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