PFC-CCM (continuous conduction mode) ICs

 
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PFC-CCM (continuous conduction mode) ICs


The ICE1PCS01/02 are 8-pin controller IC for active CCM power factor correction converters.
The unique average current control allows for low THD at all load ranges and excellent compensation of line voltage variations.The soft-start and the open-loop-protection provide high reliability and optimum operating conditions for SIC(silicon carbide) diodes.

 

ICE2PCS01/02 are the 2nd generation of Continuous Conduction Mode (CCM) PFC controllers, which employ BiCMOS technology. Compared to the 1 st generation of ICE1PCS01/02, the new ICs have lower internal reference trimmed at 3V. They also have other advantages such as wider Vcc operating range, improved internal oscillator and additional direct bulk capacitor over-voltage protection.

 

ICE3PCS01G is the new 14-pin wide input range ( 85VAC to 265VAC ) controller IC for active CCM power factor correction converter. Compared to the 1st and 2nd generation of ICE1PCS0x and ICE2PCS0x, the 3rd generation PFC have the lowest internal reference trimmed at 2.5V and integrated digital control voltage loop.They also have other advantages such as low peak current limit at 0.2V, adjustable gate switching frequency range from 21kHz to 250kHz and able to synchronise with external frequency range from 50kHz to 150kHz. They are now able to achieve 95% efficiency at full load for all input voltage range.


Features

  • Ease of use with few external components
  • Average current control
  • Bulk voltage good signal for inrush relay control or PWM IC enabling
  • Integrated digital voltage loop compensation
  • External current compensation for greater user fexibility
  • Programmable switching (20kHZ-250kHz)
  • External synchronzation ( 50kHz~150kHz)
  • Direct sensing, input brown-out detection with hysteresis
  • Max. duty cycle of 95% (typ)
  • Trimmed internal reference voltage (2.5V +/-1.2%)
  • Vcc under-voltage lock-out
  • Low peak current limit threshold
  • Second over-voltage protection
  • Open loop detection
  • Output under-voltage detection
  • PFC enable function
  • Enhanced dynamic response
  • Fulfills class D spec. of IEC1000-3-2
 

Product Product Status Order Online Packages Green Applications Output Current Type VCC ICC Iq
Matching Results: 14
descending ascending         descending ascending descending ascending descending ascending descending ascending descending ascending descending ascending
DIP-8
ICE2PCS02 

not for new design

 

 

PG-DIP-8

SMPS
MOSFET Gate Driver
11.0 V
25.0 V
13.0 mA
300.0 µA
ICE2PCS01 

discontinued

 

 

PG-DIP-8

SMPS
MOSFET Gate Driver
11.0 V
25.0 V
20.0 mA
300.0 µA
ICE2PCS03 

discontinued

 

 

PG-DIP-8

SMPS
MOSFET Gate Driver
11.0 V
25.0 V
16.0 mA
-
ICE2PCS04 

discontinued

 

 

PG-DIP-8

SMPS
MOSFET Gate Driver
11.0 V
25.0 V
20.0 mA
-
ICE2PCS05 

discontinued

 

 

---

SMPS
MOSFET Gate Driver
11.0 V
25.0 V
20.0 mA
300.0 µA
ICE2PCS06 

discontinued

 

 

PG-DIP-8

SMPS
MOSFET Gate Driver
11.0 V
25.0 V
- -
ICE1PCS01 

discontinued

 

 

PG-DIP-8

SMPS
MOSFET Gate Driver
10.2 V
21.0 V
22.5 mA
100.0 µA
ICE1PCS02 

not for new design

 

 

PG-DIP-8

SMPS
MOSFET Gate Driver
10.2 V
21.0 V
16.3 mA
100.0 µA
DSO-14
ICE3PCS01G 

active and preferred

 

 

PG-DSO-14

SMPS
MOSFET Gate Driver
11.0 V
25.0 V
9.0 mA
380.0 µA
DSO-8
ICE2PCS01G 

active and preferred

Buy online

PG-DSO-8

SMPS
MOSFET Gate Driver
11.0 V
25.0 V
20.0 mA
300.0 µA
ICE2PCS02G 

active and preferred

Buy online

PG-DSO-8

SMPS
MOSFET Gate Driver
11.0 V
25.0 V
13.0 mA
300.0 µA
ICE2PCS05G 

active and preferred

 

 

PG-DSO-8

SMPS
MOSFET Gate Driver
11.0 V
25.0 V
20.0 mA
300.0 µA
ICE3PCS02G 

active and preferred

coming soon

 

 

 

PG-DSO-8

PG-DSO-8

SMPS
MOSFET Gate Driver
11.0 V
25.0 V
8.5 mA
380.0 µA
ICE3PCS03G 

active and preferred

 

 

PG-DSO-8

SMPS
MOSFET Gate Driver
11.0 V
25.0 V
8.5 mA
380.0 µA

PFC-CCM (continuous conduction mode) ICs

Application Notes

Title Size Date Version
285 KB 29 Oct 2008 01_03
431 KB 24 Jul 2007
511 KB 26 Jul 2011 01_01
671 KB 29 Apr 2008 01_00

Product Brief

Title Size Date Version
440 KB 07 Dec 2010 01_00
544 KB 10 Dec 2010 01_00

PFC-CCM (continuous conduction mode) ICs

Evaluation Boards

Board OPN Family Description Status
EVAL 300W CCM PFC P6 EVAL300WCCMPFCP6TOBO1 600V N-Channel CoolMOS™ Power MOSFET, Silicon Carbide (SiC), PFC-CCM (continuous conduction mode) ICs 300W CCM PFC Evaluation Board featuring CoolMOS™ P6 and thinQ!™ Generation 5 diodes, with ICE3PCS01G
  • IPP60R190P6
  • IDH02G65C5
  • ICE3PCS01G
coming soon
EVALPFC2-ICE2PCS01 EVALPFC2ICE2PCS01TOBO1 Power Control ICs, PFC-CCM (continuous conduction mode) ICs, 600V N-Channel CoolMOS™ Power MOSFET Programmable FF CCM PFC controller ICE2PCS01 for 300W 393V PFC evaluation board with 85~265V AC universal input
  • ICE2PCS01
  • SPP20N60C3
  • SDT04S60
active and preferred
EVALPFC2-ICE2PCS02 EVALPFC2ICE2PCS02TOBO1 Power Control ICs, PFC-CCM (continuous conduction mode) ICs, 600V N-Channel CoolMOS™ Power MOSFET Programmable FF CCM PFC controller ICE2PCS02 for 300W 393V PFC evaluation board with 85~265V AC universal input
  • ICE2PCS02
  • SPP20N60C3
  • SDT04S60
active and preferred
EVALPFC2-ICE2PCS03 EVALPFC2ICE2PCS03TOBO1 Power Control ICs, PFC-CCM (continuous conduction mode) ICs, 600V N-Channel CoolMOS™ Power MOSFET FF CCM PFC controller ICE2PCS03 for 300W 393V PFC evaluation board with 85~265V AC universal input
  • ICE2PCS03
  • SPP20N60C3
  • SDT04S60
active and preferred
EVALPFC2-ICE2PCS04 EVALPFC2ICE2PCS04TOBO1 Power Control ICs, PFC-CCM (continuous conduction mode) ICs, 600V N-Channel CoolMOS™ Power MOSFET FF CCM PFC controller ICE2PCS04 for 300W 393V PFC evaluation board with 85~265V AC universal input
  • ICE2PCS04
  • SPP20N60C3
  • SDT04S60
active and preferred

Reference Design

Title Size Date Version
623 KB 29 Oct 2008 01_00
560 KB 29 Oct 2008 02_00
521 KB 13 Oct 2009 01_01
521 KB 13 Oct 2009 01_01
881 KB 11 Apr 2008 01_00
413 KB 11 Apr 2008 01_00
2.2 MB 04 Jan 2011 01_00
1.6 MB 17 Feb 2012 01_01

PFC-CCM (continuous conduction mode) ICs

PFC-CCM (continuous conduction mode) ICs

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