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PDF ICE3AR1080VJZ Data sheet ( Hoja de datos )

Número de pieza ICE3AR1080VJZ
Descripción Off-Line SMPS Current Mode Controller
Fabricantes Infineon 
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CoolSET™ F3R80
ICE3AR1080VJZ
Off-Line SMPS Current Mode Controller with
i n t e g r a t e d 8 0 0 V CoolMOS™ a n d S t a r t u p c e l l
(input OVP & frequency jitter) in DIP-7
Data Sheet
V2.0 2014-01-20
Power Management & Multimarket

1 page




ICE3AR1080VJZ pdf
CoolSET™ F3R80
ICE3AR1080VJZ
Table of Contents
Revision History ..............................................................................................................................................4
Table of Contents ............................................................................................................................................5
Off-Line SMPS Current Mode Controller with integrated 800V CoolMOS™ and Startup cell (input OVP &
frequency jitter) in DIP-7.................................................................................................................7
1 Pin Configuration and Functionality ...........................................................................................8
1.1 Pin Configuration with PG-DIP-7 ....................................................................................................8
1.2 Pin Functionality.............................................................................................................................8
2 Representative Block Diagram..................................................................................................10
3
3.1
3.2
3.3
3.3.1
3.3.2
3.4
3.5
3.5.1
3.5.2
3.5.3
3.6
3.6.1
3.6.2
3.7
3.7.1
3.7.2
3.7.2.1
3.7.2.2
3.7.2.3
3.7.2.4
3.7.3
3.7.3.1
3.7.3.2
3.7.4
3.7.5
Functional Description...............................................................................................................11
Introduction ..................................................................................................................................11
Power Management .....................................................................................................................11
Improved Current Mode ...............................................................................................................12
PWM-OP.................................................................................................................................14
PWM-Comparator ...................................................................................................................14
Startup Phase ..............................................................................................................................14
PWM Section ...............................................................................................................................17
Oscillator.................................................................................................................................17
PWM-Latch FF1......................................................................................................................17
Gate Driver .............................................................................................................................17
Current Limiting............................................................................................................................18
Leading Edge Blanking ...........................................................................................................19
Propagation Delay Compensation (patented)...........................................................................19
Control Unit..................................................................................................................................20
Basic and Extendable Blanking Mode......................................................................................20
Active Burst Mode (patented) ..................................................................................................21
Selectable burst entry level.................................................................................................22
Entering Active Burst Mode ................................................................................................23
Working in Active Burst Mode.............................................................................................23
Leaving Active Burst Mode .................................................................................................23
Protection Modes ....................................................................................................................24
Vcc OVP, OTP and Vcc under voltage................................................................................25
Over load, open loop protection..........................................................................................26
Input OVP Mode......................................................................................................................27
Action sequence at BV pin ......................................................................................................28
4
4.1
4.2
4.3
4.3.1
4.3.2
4.3.3
4.3.4
4.3.5
4.3.6
Electrical Characteristics...........................................................................................................30
Absolute Maximum Ratings..........................................................................................................30
Operating Range..........................................................................................................................31
Characteristics .............................................................................................................................31
Supply Section ........................................................................................................................31
Internal Voltage Reference......................................................................................................32
PWM Section ..........................................................................................................................32
Soft Start time .........................................................................................................................32
Control Unit.............................................................................................................................33
Current Limiting.......................................................................................................................34
Data Sheet
5 V2.0, 2014-01-20

5 Page





ICE3AR1080VJZ arduino
CoolSET™ F3R80
ICE3AR1080VJZ
Functional Description
3 Functional Description
All values which are used in the functional description are typical values. For calculating the worst cases the
min/max values which can be found in section 4 Electrical Characteristics have to be considered.
3.1 Introduction
ICE3AR1080VJZ input OVP and jitter 800V version is the modified version of the ICE3ARxx80JZ. It is particular
good for high voltage margin low power SMPS application such as white goods, auxiliary power supply for PC and
server. The major characteristics are that the IC is developed with 800V CoolMOS™ with start up cell, having
adjustable input OVP feature, running at 100kHz switching frequency and packed in DIP-7 package.
The familiar features are BiCMOS technology to reduce power consumption and increase the Vcc voltage range,
cycle by cycle current mode control, built-in 10ms soft start to reduce the stress of switching elements during start up,
built-in 20ms and extended blanking time for short period of peak power before entering protection, active burst mode
for lowest standby power and propagation delay compensation for close power limit between high line and low line,
frequency jittering for low EMI performance, the built-in auto-restart mode protections for open loop, over load, Vcc
OVP, Vcc under voltage, etc.
Besides, it also includes narrowing the feedback voltage swing from 0.5V to 0.3V during burst mode so that the
output voltage ripple can be reduced by 40%, reduction of the fast voltage fall time of the MOSFET by increasing
the soft turn-on time and addition of 50turn-on resistor, faster start up time by optimizing the Vcc capacitor to
10uF and over temperature protection with 50°C hysteresis.
Furthermore, it includes adjustable input OVP to suppress the abnormal input stress to damage the device,
selectable entry and exit burst mode for smaller entry/exit power to burst mode or even no burst mode is possible and
the propagation delay compensation for burst mode so that the entry/exit burst mode power is close between high
line and low line.
In summary, the ICE3AR1080VJZ provides good voltage margin of MOSFET, lowest standby power, flexible
burst level, reduced output ripple during burst mode, robust for abnormal input stress with input OVP feature,
accurate power limit for both maximum power and burst power, low EMI with frequency jittering and soft gate
drive, built-in and flexible protections, etc. Therefore, ICE3AR1080VJZ is a complete solution for the low power
SMPS application typically for white goods.
3.2 Power Management
Drain
Startup Cell
VCC
CoolMOS®
Power Management
Internal Bias
Power-Down Reset
Soft Start block
Undervoltage Lockout
17V
10.5V
Voltage
Reference
5.0V
Auto Restart
Mode
Active Burst Mode
Figure 4:
Power Management
The Undervoltage Lockout monitors the external supply voltage VVCC. When the SMPS is plugged to the main line the
internal Startup Cell is biased and starts to charge the external capacitor CVCC which is connected to the VCC pin. This
Data Sheet
11 V2.0, 2014-01-20

11 Page







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