UCS16005SG-S08-R [UTC]

HIGH PERFORMANCE CURRENT MODE POWER SWITCH;
UCS16005SG-S08-R
型号: UCS16005SG-S08-R
厂家: Unisonic Technologies    Unisonic Technologies
描述:

HIGH PERFORMANCE CURRENT MODE POWER SWITCH

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UNISONIC TECHNOLOGIES CO., LTD  
UCS16005S  
Preliminary  
LINEAR INTEGRATED CIRCUIT  
HIGH PERFORMANCE  
CURRENT MODE POWER  
SWITCH  
DIP-8  
DESCRIPTION  
The UTC UCS16005S is an integrated PWM controller and Power  
MOSFET specifically designed for switching operation with minimal  
external components. The UTC UCS16005S is designed to provide  
several special enhancements to satisfy the needs, for example,  
Power-Saving mode for low standby power, Frequency Hopping,  
Constant Output Power Limiting , Slope Compensation ,Over Current  
Protection (OCP), Over Voltage Protection (OVP), Over Load  
Protection (OLP), Under Voltage Lock Out (UVLO), Over Temperature  
Protection (OTP), etc. IC will be shutdown or can auto-restart in  
situations.  
SOP-8  
FEATURE  
* Internal Power MOSFET (600V)  
* Programming Gate Driver Capability  
* Frequency hopping for Improved EMI Performance.  
* Lower than 0.3W Standby Power Design  
* Gate Output Maximum Voltage Clamp(16V)  
* Over temperature protection  
* Over load protection  
* Over voltage protection  
* Linearly decreasing frequency to 20~35KHz during light load * Leading edge blanking  
* Internal Soft start  
* Internal Slope Compensation  
* Cycle-by-Cycle current limiting  
* Under Voltage Lock Out  
* Constant Power Limiting for universal AC input Range  
ORDERING INFORMATION  
Ordering Number  
Lead Free  
Package  
Packing  
Halogen Free  
UCS16005SL-D08-T  
UCS16005SL-S08-R  
UCS16005SG-D08-T  
UCS16005SG-S08-R  
DIP-8  
Tube  
SOP-8  
Tape Reel  
MARKING  
www.unisonic.com.tw  
Copyright © 2017 Unisonic Technologies Co., Ltd  
1 of 7  
QW-R103-124.c  
UCS16005S  
Preliminary  
LINEAR INTEGRATED CIRCUIT  
PIN CONFIGURATION  
PIN DESCRIPTION  
PIN NO.  
PIN NAME  
VCC-G  
VCC  
DESCRIPTION  
1
2
3
4
5
6
7
8
Supply voltage  
Supply voltage  
Feedback  
FB  
CS  
Current sense input  
Power MOSFET drain  
Power MOSFET drain  
Ground  
DRAIN  
DRAIN  
GND  
GND  
Ground  
BLOCK DIAGRAM  
Notes: OLP (Over Load Protection)  
OVP (Over Voltage Protection)  
OTP (Over Temperature Protection)  
OCP (Over Current Protection)  
UVLO (Under Voltage Latch-Out)  
LEB (Led Edge Blanking)  
UNISONIC TECHNOLOGIES CO., LTD  
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UCS16005S  
Preliminary  
LINEAR INTEGRATED CIRCUIT  
ABSOLUTE MAXIMUM RATING (TA=25°C, unless otherwise specified)  
PARAMETER  
SYMBOL  
VCC  
RATINGS  
32  
UNIT  
V
Supply Voltage  
Input Voltage to FB Pin  
Input Voltage to CS Pin  
Junction Temperature  
Operating Temperature  
Storage Temperature  
VFB  
-0.3 ~ 6.5  
-0.3 ~ 6.5  
+150  
V
VCS  
V
TJ  
°C  
°C  
°C  
TOPR  
TSTG  
-40 ~ +125  
-50 ~ +150  
Note: Absolute maximum ratings are those values beyond which the device could be permanently damaged.  
Absolute maximum ratings are stress ratings only and functional device operation is not implied.  
OPERATING RANGE  
PARAMETER  
SYMBOL  
VCC  
RATINGS  
10 ~ 24  
51 ~ 510  
8
UNIT  
V
Supply Voltage  
VCC-G Pin Series Resistor  
VCC_GR  
PO_MAX  
Open Frame Output Power for 85~264VAC  
W
ELECTRICAL CHARACTERISTICS (TA=25°C, VCC=15V, unless otherwise specified)  
PARAMETER  
SYMBOL  
TEST CONDITIONS  
MIN TYP MAX UNIT  
SUPPLY SECTION  
Start Up Current  
IST  
IOP  
VCC=VTHD(ON)-1V  
VFB=3.5V  
2
15  
3.5  
32  
μA  
mA  
V
Supply Current with Switch  
VDD Zener Clamp Current  
UNDER-VOLTAGE LOCKOUT SECTION  
Start Threshold Voltage  
Min. Operating Voltage  
2.2  
30  
vCLAMP  
IVDD=20mA  
29  
VTHD(ON)  
VCC(MIN)  
18  
20  
8
22  
V
V
6.5  
9.5  
CONTROL SECTION  
Feedback Source Current  
VFB Open Loop Voltage Level  
Burst-Mode Out FB Voltage  
Burst-Mode Enter FB Voltage  
IFB  
VFB=0  
240  
5.4  
1.8  
1.6  
65  
μA  
V
VFB_Open  
VFB(OUT)  
VFB(IN)  
VCS =0  
V
VCS =0  
V
Switching  
Normal Initial  
VFB=3.5V  
60  
20  
70  
-9  
70  
kHz  
kHz  
%
F(SW)  
Frequency  
Burst Mode Base Frequency  
Duty Cycle  
DMAX  
FJ(SW)  
FDV  
VFB=3.5V, VCS=0  
80  
90  
+9  
10  
10  
Frequency Hopping  
%
Frequency Variation vs. VCC Deviation  
Frequency Variation vs. Temperature Deviation  
Soft-Start Time  
VCC=10~20V  
T=-40~110°C  
%
FDT  
%
TSOFTS  
5
ms  
PROTECTION SECTION  
OVP Threshold  
VOVP  
VFB(OLP)  
TD-OLP  
T(THR)  
VFB=3.5V  
VCS=0  
25  
60  
27  
4.2  
88  
28  
V
OLP Threshold  
V
Delay Time Of OLP  
120  
ms  
°C  
OTP Threshold  
140  
CURRENT LIMITING SECTION  
Leading Edge Blanking Time  
Peak Current Limitation  
tLEB  
200  
350  
550  
nS  
V
VSENSE_H  
VSENSE_L  
VFB=3.9V  
VFB=3.9V  
0.92  
Threshold Voltage For Valley  
POWER MOS-TRANSISTOR SECTION  
Drain-Source Breakdown Voltage  
Drain-Source Diode Continuous Source Current  
Static Drain-Source On-State Resistance  
0.73 0.79 0.85  
V
VDSS  
IS  
VGS=0V, ID=250μA  
600  
0.45  
13  
V
A
RDS(ON)  
VGS=10V, ID=0.3A  
Notes: 1. Pulse Test: Pulse width 300μs, Duty cycle 2%.  
2. Essentially independent of operating temperature.  
UNISONIC TECHNOLOGIES CO., LTD  
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QW-R103-124.c  
www.unisonic.com.tw  
UCS16005S  
Preliminary  
LINEAR INTEGRATED CIRCUIT  
FUNCTIONAL DESCRIPTION  
The internal reference voltages and bias circuit work at VCC> VTHD(ON), and shutdown at VCC<VCC(MIN)  
.
(1) Soft-Start  
When every IC power on, driver output duty cycle will be decided by inter-slope voltage VSOFTS and VCS on  
current sense resistor at beginning. After the whole soft-start phase end, and driver duty cycle depend on VFB and  
V
CS. The relation among VSOFTS, VFB and VOUT as followed Fig.3. Furthermore, soft-start phase should end before VCC  
reach VCC(MIN) during VCC power on. Otherwise, if soft-start phase remain not end before VCC reach VCC(MIN) during  
CC power on, IC will enter auto-restart phase and not set up VOUT  
V
.
Fig.3 Soft-start phase  
(2) Internal Synchronized Slope Compensation  
Built-in slope compensation circuit adds voltage ramp onto the current sense input voltage for PWM generation,  
this greatly improves the close loop stability at CCM and prevents the sub-harmonic oscillation and thus reduces the  
output ripple voltage.  
(3) Frequency Hopping For EMI Improvement  
The Frequency Hopping is implemented in the IC; there are two oscillators built-in the IC. The first oscillator is to  
set the normal switching frequency; the switching frequency is modulated with a period signal generated by the 2nd  
oscillator. The relation between the first oscillator and the 2nd oscillator as followed Fig.4. So the tone energy is  
evenly spread out, the spread spectrum minimizes the conduction band EMI and therefore eases the system design  
in meeting stringent EMI requirement.  
Fig.4 Frequency Hopping  
UNISONIC TECHNOLOGIES CO., LTD  
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QW-R103-124.c  
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UCS16005S  
Preliminary  
LINEAR INTEGRATED CIRCUIT  
FUNCTIONAL DESCRIPTION (Cont.)  
(4) Constant Output Power Limit  
When the primary current, across the primary wind of transformer, reaches the limit current, the output GATE  
driver will be turned off after a small propagation delay tD. This propagation delay will introduce an additional current  
proportional to tD×VIN/Lp. Since the propagation delay is nearly constant regardless of the input line voltage VIN.  
Higher input line voltage will result in a larger additional current and hence the output power limit is also higher than  
that under low input line voltage. To compensate for this output power limit variation across a wide AC input range,  
the threshold voltage is adjusted by adding a positive ramp. This ramp signal rises from VSENSE-L to VSENSE_H, and  
then flattens out at VSENSE_H. A smaller threshold voltage forces the output GATE drive to terminate earlier. This  
reduces the total PWM turn-on time and makes the output power equal to that of low line input. This proprietary  
internal compensation ensures a constant output power limit for a wide AC input voltage range (90VAC to 264VAC).  
(5) Protection section  
The IC takes on more protection functions such as OLP, OVP and OTP etc. In case of those failure modes for  
continual blanking time, the driver is shut down. At the same time, IC enters auto-restart, VCC power on and driver is  
reset after VCC power on again.  
OLP  
After power on, IC will shutdown driver if over load state occurs for continual TD-OLP. OLP case as followed Fig.5.  
OVP  
OVP will shutdown the switching of the power MOSFET whenever VCC>VOVP. The OVP case as followed Fig.6.  
Fig.5 OLP case  
Fig.6 OVP case  
OTP  
OTP will shut down driver when junction temperature TJ>T(THR) for continual a blanking time.  
UNISONIC TECHNOLOGIES CO., LTD  
5 of 7  
QW-R103-124.c  
www.unisonic.com.tw  
UCS16005S  
Preliminary  
LINEAR INTEGRATED CIRCUIT  
FUNCTIONAL DESCRIPTION (Cont.)  
(6) Driver Output Section  
The driver-stage drives the gate of the MOSFET and is optimized to minimize EMI and to provide high circuit  
efficiency. This is done by reducing the switch on slope when reaching the MOSFET threshold. This is achieved by a  
slope control of the rising edge at the driver’s output. The output driver is clamped by an internal 16V Zener diode in  
order to protect power MOSFET transistors against undesirable gate over voltage.  
In addition to the gate drive control scheme mentioned, the gate drive strength can also be adjusted externally  
by a resistor connected between VDD and VDDG, the falling edge of the Drain output can be well controlled. It provides  
great flexibility for system EMI design.  
(7) Inside power switch MOS transistor  
Specific power MOS transistor parameter is as “POWER MOS TRANSISTOR SECTION” in electrical  
characteristics table.  
UNISONIC TECHNOLOGIES CO., LTD  
6 of 7  
QW-R103-124.c  
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UCS16005S  
Preliminary  
LINEAR INTEGRATED CIRCUIT  
TYPICAL APPLICATION CIRCUIT  
Fig.7 UTC UCS16005S Typical Application Circuit  
UTC assumes no responsibility for equipment failures that result from using products at values that  
exceed, even momentarily, rated values (such as maximum ratings, operating condition ranges, or  
other parameters) listed in products specifications of any and all UTC products described or contained  
herein. UTC products are not designed for use in life support appliances, devices or systems where  
malfunction of these products can be reasonably expected to result in personal injury. Reproduction in  
whole or in part is prohibited without the prior written consent of the copyright owner. The information  
presented in this document does not form part of any quotation or contract, is believed to be accurate  
and reliable and may be changed without notice.  
UNISONIC TECHNOLOGIES CO., LTD  
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