UP9503Q UPI | Alldatasheet
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1uP9503Q-DS-F0000, June 2017 www.upi-semi.com 3/2/1+2/1/0-Phase Driver Embedded PWM Controller with SMBus Digital Interface for FM2+ CPU Core Power AMD SVI2 CPU Compliant RCOT +TM Control Topology Smooth Mode Transition Fast Transition Response 2 Integrated 12V MOSFET Drivers for VDD Embedded Bootstrap Diode Flexible Operation Phase Configuration 3/2/1-Phase PWM Controller for VDD 2/1/0-Phase PWM Controller for VDDA Support Operation Phase Disable Function Support 4+1 Phase Application SVI2 VR Address Selection SMBus Interface for Performance and Efficiency Optimization Dynamic Programmable VR Parameters Programmable Protection Thresholds VR Output Reporting Programmable Loop Gain Programmable Operation Frequency Inductor DCR Current Sensing for Droop/ Channel OCP/ Total OCP Differential Current Sense Amplifier for Current Balance Differential Remote Output Voltage Sense Transient Boost for Fast Transient Response High Accuracy DAC OCP/UVP/OVP/Thermal Shutdown RoHS Compliant and Halogen Free General Description Features
Applications
AMD FM2+ Desktop CPU Power Supplies AMD VGA Card GPU Power Supplies Note: (1) Please check the sample/production availability with uPI representatives. (2) uPI products are compatible with the current IPC/JEDEC J-STD-020 requirement. They are halogen-free, RoHS compliant and 100% matte tin (Sn) p lating that are suitable for use in SnPb or Pb-free soldering processes. r e b m u N r e d rOe g a k c aPk r a m e R WG Q Q 3 0 5 9 PuL 2 5 - 6 x 6 N F Q V
Ordering Information
The uP9503Q is an AMD SVI2 compliant desktop CPU voltage regulator controller that integrates a 3-phase PWM controller for VDD and a 2-phase controller for VDDA. The VDD controller can be configured as 3/2/1-phase, and the VDDA controller can be configured as 2/1/0-phase (0 denotes VDDA controller is disabled) for platform power design flexibility. This part integrates 2 bootstrap diode embedded 12V MOSFET drivers. For the typical 3+2-phase application, the 3-phase VDD controller has 2 embedded MOSFET driver and 1 PWM output. The 2-phase VDDA controller has 2 PWM outputs. The controller provides further flexible operating phase configurations to support 4+1 phase application.The integrated SMBus interface programmability makes this part with high performance and easy design. Designer can define different power scenario for different current states to optimize the performance and efficiency. The uP9503Q combines true differential output voltage sense, differential inductor DCR current sense, input voltage feed-forward sense and adaptive voltage positioning to provide accurately regulated power for desktop CPU. It adopts uPI proprietary RCOT+TM (Robust Constant On- Time) topology to have fast transient response and smooth mode transition. Similar to digital based PWM controller, the loop gain is also programmable by SMBus interface to achieve design flexibility. The uP9503Q has built-in serial interface to communicate with AMD SVI2 compliant CPU. It supports mode transition function with various operating states. This part provides two different VID on-the-fly slew rates, which can be programmed by the SMBus register. The uP9503Q provides power good indicator and selectable VR parameters, such as SVI2 VR address and Vboot voltage. It also provides complete fault protection functions, including over voltage, under voltage, over current, over temperature and under voltage lockout. The uP9503Q is available in VQFN6x6-52L package. Pin Configuration CSPA CSNA 39 38 37 36 4321 65 35 34
53 GND
VRHOT# SDA SVC SVT VDDIO SVD VCC5 SCL EN
2 uP9503Q-DS-F0000, June 2017 www.upi-semi.com Typical Application Circuit 3+2 Phase Application PWM3 BOOT2 BOOT1 12V VDD UG1 PH1 LG1 UG2 PH2 LG2 BOOT GND PWM EN VCC PH LG UG uP1962 VDD_1 VDD_2 VDD_3 CSP CSN VDD_3 VDD_2 VDD_1 FB COMP VDD_SENS E FBRTN VSS_SENS E DAC EAP VCC5 CSP1 CSN1 PH1 VDD_1 CSP2 CSN2 PH2 VDD_2 CSP3 CSN3 PH3 VDD_3 SVC SVT SVD SVC SVD SVT IMON IMONA CSPA CSNA CSP1A CSN1A EAPA DACA COMPA FBAVDDA_SENSE VSSA_SENSE PWM1A BOOT GND PWM EN VCCPH LG UG uP1962 VDDA_1 PWM2A VDDA_2 uP1962 PH1A VDDA_1 PH2A VDDA_2 CSP2A CSN2A VDDA_2 VDDA_1 VDDA TONSET POK EN PWROK VDDIO 12V VCC12 BOOT GND PWM EN VCCPH LG UG SCL SDA FBRTNA GND 0.1uF 0.1uF 0.1uF 0.1uF 0.1uF 1uF PH1A PH2A PH3 PH2 PH1 12V 12V 12V 12V TSENA TSEN VRHOT#
3uP9503Q-DS-F0000, June 2017 www.upi-semi.com Typical Application Circuit 4+1 Phase Application PWM3 BOOT2 BOOT1 12V VDD UG1 PH1 LG1 UG2 PH2 LG2 BOOT GND PWM EN VCC PH LG UG uP1962 VDD_1 VDD_2 VDD_3 SVC SVT SVD SVC SVD SVT CSPA CSNA EAPA DACA COMPA FBAVDDA_SENSE VSSA_SENSE PWM1A BOOT GND PWM EN VCCPH LG UG uP1962 VDDA_1 PH1A CSP1A CSN1A VDDA POK EN PWROK VDDIO 12V CSP CSN VDD_3 VDD_2 VDD_1 PH1 VDD_1 PH2 VDD_2 PH3 PH4 VDD_3 VDD_4 SCL SDA PWM2A BOOT GND PWM EN VCC PH LG UG uP1962 VDD_4 CSP2A CSN2A VDD_4 FB COMP VDD_SENS E FBRTN VSS_SENS E DAC EAP FBRTNA CSP1 CSN1 CSP2 CSN2 CSP3 CSN3 VDDA_1 IMON IMONA TONSET 12V VCC12 0.1uF 0.1uF 0.1uF 1uF 0.1uF *Note 1: Use 1kohm resistor to pull up CSN1A and CSN1P to 5V. *Note 1 PH4 PH3 PH2 PH1 12V 12V 12V PH1A VCC5 GND 0.1uF TSENA TSEN VRHOT#
4 uP9503Q-DS-F0000, June 2017 www.upi-semi.com Functional Pin Description . o N e m aNn o i t c n u F n i P 1A 2 M W P . t u p t u OM W P 2 e s a h P A D D V si h T . r e v i r d T E F S O M l a n r e t x e f o t u p n i M W P e h t o t n i p s i h t t c e n no C . l i a r A D D V r o f r e v i r d T E F S O M e t e r c s i d l a n r e t x e r o f l a n g i s c ig o l M W P a s t u p t u o n i p 2A N T R B F . A D D V r o f n r u t e R k c a b d e e F e g a t l o V t u p t u Oe s n e s e g a t l o v l a i t n e r e f f i d e h t o t t u p n i g n i t r e v n I n i p s i h t t c e n n o C . t n e m e r u s a e m e g a t l o v t u p t u o A C A D n i t n i o p ec n e r e f e r e h t s i A N T R B F . r e i f i l p m a . E S N E S _ A S S V y l e m a n ,t n i o p e s n e s n r u t e r k c a b d e e f e g a t l o v t u p t u o r o s s e c o r p e h t o ty l t c e r i d 3A C A D . A D D V r o f t u p t u OC A D . l i a r A D D V e h t r o f e g a t l o v e c n e r e f e r e h t s i n i p s i h t f o e g a t l ov t u p t u o e h T .A N T R B F o t n i p s i h t m o r f r o t i c a p a c a t c e n n o C . A N T R B F o t t c e p s er h t i w d e r u s a e m s i e g a t l o v A C A D 4A P A E . A D D V r o f r e i f i l p m A r o r r E e h t f o t u p n I g n i t r e v n I - n o Nd n a n i p s i h t n e e w t e b r o t s i s e r a t c e n n o C . n o i t c n u f ) e n i l d a o l ( p o o r d e h t t e s o t A C A D 5A B F . A D D V r o f r e i f i l p m A r o r r E e h t f o t u p n I g n i t r e v n I 6A P M O C A D D V r o f r e i f i l p m A r o r r E p o o L l o r t n o C f o t u p t u Or o t i c a p a c a h t i w s e i r e s n i r o t s i s e r a t c e n n o C . . n o i t a s n e p m o c p o o l l o r t n o c e g a t l o v r o f D N G o t n i p s i h t m o r f 7D V S . a t a D D I V l a i r e S e h t y b n e v i r d e b n a c D V S . r o s s e c o r p e h t f o t u p t u o Z - h g i h h t i w ll u p - h s u p a s i D V S . e s a h p t n e m e g d e l w o n k c A e h t g n i r u d R V 8T V S . y r t e m e l e T D I V l a i r e S. r o s s e c o r p e h t f o t u p t u o l l u p - h s u p a s i T V S 9C V S . k c o l C D I V l a i r e S . r o s s e c o r p e h t f o t u p t u o l l u p - h s u p a s i C V S 01O I D D V . e c a f r e t n i y r o m e m e h t r o f r o s s e c o r p e h t r o f e c n e r e f e r e h Tn e e w t e b r o t i c a p a c a t c e n n o C . s n i p T V S , D V S , C V S e h t e c n e r e f e r d n a r e w o p o t D N G d n a O I D D V 11A D S . t u p n I a t a D s u B M S . l a n g i s a t a d s u b l a i r e s f o t u p t u o r o t u p n i s i n i p s i h T 21L C S . t u p n I k c o l C s u B M S t u p n i l a n g i s k c o l c s u b l a i r e s s e v i e c e r n i p s i h T. 315 C C V i u c r i C l o r t n o C c i g o L r o f t u p n I y l p p u S. r e t l i f C R n a a i v e c r u o s eg a t l o v V 5 a o t n i p s i h t t c e n n o C . t . t i u c r i c l o r t n o c c i g o l e h t r o f t u p n i y l p p u s e h t s i 5 C C V 41N E t u p n I l o r t n o C e l b a n E p i h C o t V 8 . 0 w o l e b n i p s i h t l l u P . p i h c e h t s e l b a n e V 2 e v o b a n i p s i h tl l u P . . p i h c e h t e l b a s i d 51A N E S T . A D D V r o f g n i s n e S l a m r e h T r e l l o r t n o c e h T . g n i s n e s l a m r e h t r o f n i p s i h t o t k r o w t e n C T N tc e n n o C s i r o t s i m r e h t C T N d e d n e m m o c e r e h T . g n i t r o p e r l a m r e h t n i r e tr e v n o c D / A r a e n i l n o n c i f i c e p s s e s u k 0 1β / Ω s i r o t s i s e r g n i d i v i d r e w o l d e d n e m m o c e r e h t d n a , ) B R 3 0 F 3 0 1 HX 8 1 P C N ( a t a r u M y b 0 8 3 3 = k 6Ω. 61N E S T . D D V r o f g n i s n e S l a m r e h T r e l l o r t n o c e h T . g n i s n e s l a m r e h t r o f n i p s i h t o t k r o w t e n C T N tc e n n o C s i r o t si m r e h t C T N d e d n e m m o c e r e h T . g n i t r o p e r l a m r e h t n i r e t r e v n o cD / A r a e n i l n o n c i f i c e p s s e s u k 0 1β / Ω s i r o t s i s e r g n i d i v i d r e w o l d e d n e m m o c e r e h t d n a , ) B R 3 0 F 3 0 1 HX 8 1 P C N ( a t a r u M y b 0 8 3 3 = k 6Ω. 71# T O H R V . t u p t u O # T O H R V e h t n e h w # T O H R V s t r e s s a r e l l o r t n o c e h T . t u p t u o n i a r d - n e p o na s i n i p s i h T e h t h c i h w n i , ) T O H R V _ P M E T ( h 9 2 x 0 r e t s i g e r s u B M S f o e u l a v e h tn a h t r e h g i h s i e r u t a r e p m e t d e s n e s 6 0 1 ( h 5 0 s i e u l a v t l u a f e do ) C 81A N O M I A D D V r o f g n i s n e S d n a g n i t t e S d l o h s e r h T n o i t c e t o r P t n e r r u C re v O si h t m o r f r o t s i s e r a t c e n n o C . eh T . n i p s i h t o t r o t i c a p a c y n a t c e n n o c t o n o D . d l o h s e r h t n o i t ce t o r p t n e r r u c r e v o e h t t e s o t D N G o t n i p dn a d e s n e s s i t n e r r u c d a o l l a t o t e h T . t n e r r u c d a o l l a t o t e h t o tl a n o i t r o p o r p s i n i p s i h t f o t n e r r u c t u p t u o eh t o t l a n o i t r o p o r p e g a t l o v A N O M I e h t s e k a mD N G o t n i p s i h t m o r f r o t s i s e r a d n a , n i p s i h t f o t u o s w o l f eb l l i w n o i t c e t o r p t n e r r u c r e v o e h t , V 6 5 . 2 s d e e c x e n i p A N O M I no e g a t l o v e h t n e h W . t n e r r u c t u p t u o l a t o t . r e l l o r t n o c e h t n w o d t u h s o t d e p p i r t
5uP9503Q-DS-F0000, June 2017 www.upi-semi.com Functional Pin Description . oNe m aNn o i t c n u F n i P 91N O M I . D D V r o f g n i s n e S d n a g n i t t e S d l o h s e r h T n o i t c e t o r P t n e r r u C re v O m o r f r o t s i s e r a t c e n n o C si h t o t r o t i c a p a c y n a t c e n n o c t o n o D . d l o h s e r h t n o i t c e t o r p t ne r r u c r e v o e h t t e s o t D N G o t n i p s i h t si t n e r r u c d a o l l a t o t e h T . t n e r r u c d a o l l a t o t e h t o t l a n o i t r o po r p s i n i p s i h t f o t n e r r u c t u p t u o e h T . n i p eg a t l o v N O M I e h t s e k a mD N G o t n i p s i h t m o r f r o t s i s e r a d n a , n i p s i h t f o t u o s w o l f d n a d es n e s re v o e h t , V 6 5 . 2 s d e e c x e n i p N O M I n o e g a t l o v e h t n e h W . t n e r r u c tu p t u o l a t o t e h t o t l a n o i t r o p o r p . r e l l o r t n o c e h t n w o d t u h s o t d e p p i r t e b l l i w n o i t c e t o r p t n e rr u c 02T E S N O T . n o i t c e l e S s s e r d d AR V 2 I V S d n a g n i t t e S e m i T - n OMW P o t n i p s i h t m o r f r o t s i s er a t c e n n o C e r a h s R V A D D V d n a R V D D V e h T . n o i t c e l e s s s e r d d a R V 2 I V S d n a e m it - n o MW P e h t t e s o t D N G . g n i t t e s e m i t - n o MW P e m a s eh t 12P M O C D D V r o f r e i f i l p m A r o r r E p o o L l o r t n o C f o t u p t u Oro t i c a p a c a h t i w s e i r e s n i r o t s i s e r a t c e n n o C . . n o i t a s n e p m o c p o o l l o r t n o c e g a t l o v r o f D N G o t n i p s i h t m o r f 22B F . D D V r o f r e i f i l p m A r o r r E e h t f o t u p n I g n i t r e v n I 32P A E D D V r o f r e i f i l p m A r o r r E e h t f o t u p n I g n i t r e v n I - n o Nd n a n i p s i h t n e e w t e b r o t s i s er a t c e n n o C . n o i t c n u f ) e n i l d a o l ( p o o r d e h t t e s o t C A D. 42C A D . D D V r o f t u p t u OC A D . li a r D D V e h t r o f e g a t l o v e c n e r e f e r e h t s i n i p s i h t f o e g a t l o v t up t u o e h T .N T R B F o t n i p s i h t m o r f r o t i c a p a c a t c e n n o C . N T R B F o t t c e p s e r ht i w d e r u s a e m s i e g a t l o v C A D 52N T R B F . D D V r o f n r u t e R k c a b d e e Fe g a t l o V t u p t u O es n e s e g a t l o v l a i t n e r e f f i d e h t o t t u p n i g n i t r e v n I ni p s i h t t c e n n o C . t n e m e r u s a e me g a t l o v t u p t u o C A D n i t n i o p e c n e r e f e r e h t s i N T R B F . r e i f i l p ma . E S N E S _ S S V y l e m a n , t n i o p e s n e s n r u t e r k c a b d e e f e g a t l o v t u pt u o r o s s e c o r p e h t o t y l t c e r i d 623 MW P . t u p t u OMW P 3 e s a h P D D V si h T . r e v i r d T E F S O M l a n r e t x e f o t u p n i MW P e h t o t n i p s i h t t c e n n o C . l i a r D D V r o f r e v i r d T E F S O M e t e r c s i d l a n r e t x e r o f l a n g i s c i go l MW P a s t u p t u o n i p
722 T O O B
. 2 e s a h PD D V r o f r e v i r D e t a G r e p p U r o f y l p p u S p a r t s t o o Bro f t u p n i y l p p u s e h t s i n i p s i h T C r o t i c a p a c p a r t s t o o b e h t t c e n n o C . r e v i r d e t a g T E F S O M r e p p ue h t T O O B dn a n i p 2 T O O B n e e w t e b ts a e l t a e s U . T E F S O M r e p p u e h t n o n r u t o t e g r a h c e h t s e d i v o r p r ot i c a p a c p a r t s t o o b e h T . n i p 2 H P C s a C C L MF u 1 . 0 T O O B C e r u s e k a m d n a ,T O O B . r e l l o r t n o c e h t o t e s o l c d e c a l p s i
822 G U
. 2 e s a h P D D V r o f t u p t u O r e v i r D e t a G r e p p U.T E F S O M r e p p u f o e t a g e h t o t n i p s i h t t c e n n o C f fo / n o n r u t o t n e h w e n i m r e t e d o t y r t i u c r i c n o i t c e t o r p h g u o r h t- t o o h s e h t y b d e r o t i n o m s i n i p s i h T . T E F S O M r e p p u
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. 2 e s a h P D D V r o f e d o N h c t i w S ro t c u d n i , e c r u o s T E F S O M r e p p u f o t n i o j e h t o t n i p s i h t t c e n n o C .e v i r d g n i t a o l f T E F S O M r e p p u r o f d n u o r g n r u t e r e h t s a d e s u s i ni p s i h T . n i a r d T E F S O M r e w o l d n a ot n e h w e n i m r e t e d o t y r t i u c r i c n o i t c e t o r p h g u o r h t - t o o h s e h ty b d e r o t i n o m s i n i p s i h t n o e g a t l o V . T E F S O M r e w o l e h t n o n r u t
032 G L
. 2 e s a h PD D V r o f t u p t u O r e v i r D e t a G r e w o L.T E F S O M r e w o l f o e t a g e h t o t n i p s i h t t c e n n o C eh t n o n r u t o t n e h w e n i m r e t e d o t y r t i u c r i c n o i t c e t o r p h g u o r h t- t o o h s e h t y b d e r o t i n o m s i n i p s i h T . T E F S O M r e p p u 132 1 C C V . r e v i r D T E F S O Md e d d e b m E r o f t u p n I y l p p u S d n a , e c r u o s e g a t l o v V 2 1 a o t n i p s i h t t c e n n o C 21 C C V . n i p 2 1 C C V e h t o t e s o l c y r e v d e c a l p C C L MF u 0 . 1 t s a e l t a h t i wD N G o t n i p s i h t s s a p y b e t a g l a n r e t n i r o f t n e r r u c s e i l p p u s n i p s i h T . s r e v i r d T E F S O Md e d d e b m e e h t r o f t u p n i y l p p u s e h t s i . s r e v i r d
231 G L
. 1 e s a h PD D V r o f t u p t u O r e v i r D e t a G r e w o L.T E F S O M r e w o l f o e t a g e h t o t n i p s i h t t c e n n o C eh t n o n r u t o t n e h w e n i m r e t e d o t y r t i u c r i c n o i t c e t o r p h g u o r h t- t o o h s e h t y b d e r o t i n o m s i n i p s i h T . T E F S O M r e p p u
331 H P
. 1 e s a h P D D V r o f e d o N h c t i w S ro t c u d n i , e c r u o s T E F S O M r e p p u f o t n i o j e h t o t n i p s i h t t c e n n o C .e v i r d g n i t a o l f T E F S O M r e p p u r o f d n u o r g n r u t e r e h t s a d e s u s i ni p s i h T . n i a r d T E F S O M r e w o l d n a ot n e h w e n i m r e t e d o t y r t i u c r i c n o i t c e t o r p h g u o r h t - t o o h s e h ty b d e r o t i n o m s i n i p s i h t n o e g a t l o V . T E F S O M r e w o l e h t n o n r u t
6 uP9503Q-DS-F0000, June 2017 www.upi-semi.com Functional Pin Description . oNe m aNn o i t c n u F n i P
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. 1 e s a h PD D V r o f t u p t u O r e v i r D e t a G r e p p U.T E F S O M r e p p u f o e t a g e h t o t n i p s i h t t c e n n o C f fo / n o n r u t o t n e h w e n i m r e t e d o t y r t i u c r i c n o i t c e t o r p h g u o r h t- t o o h s e h t y b d e r o t i n o m s i n i p s i h T . T E F S O M r e p p u
531 T O O B
T . 1 e s a h PD D V r o f r e v i r D e t a G r e p p U r o f y l p p u S p a r t s t o o Bro f t u p n i y l p p u s e h t s i n i p s i h C r o t i c a p a c p a r t s t o o b e h t t c e n n o C . r e v i r d e t a g T E F S O M r e p p ue h t T O O B dn a n i p 1 T O O B n e e w t e b ts a e l t a e s U . T E F S O M r e p p u e h t n o n r u t o t e g r a h c e h t s e d i v o r p r ot i c a p a c p a r t s t o o b e h T . n i p 1 H P C s a C C L MF u 1 . 0 T O O B C e r u s e k a m d n a ,T O O B . r e l l o r t n o c e h t o t e s o l c d e c a l p s i 63K O P . n o i t a c i d n I K O r e w o P tu p t u o o t p u t r a t s r e w o p e h t s e t a c i d n i t a h t t u p t u o n i a r d - n e p on a s i n i p s i h T . s n e p p a h t l u a f o n d n a t o o b V e g a t l o v 731 P S C . 1 e sa h PD D V r o f t u p n I e s n e S t n e r r u C l a i t n e r e f f i D e v i t i s o P 831 N S C . 1 e s a h PD D V r o f t u p n I e s n e S t n e r r u C l a i t n e r e f f i D e v i t a g e N 932 P S C . 2 e s a h P D D V r o f t u p n I e s n e S t n e r r u C l a i t n e r e f f i D e v i t i s o P,d e s u t o n s i 2 e s a h p D D V n e h W . n o i t a r u g i f n o c e s a h p - e l g n i s n i d e r u g i f n o c s i R VD D V n e h wD N G o t n i p s i h t t r o h s
042 N S C
. 2 e s a h PDD V r o f t u p n I e s n e S t n e r r u C l a i t n e r e f f i D e v i t a g e Nt o n s i 2 e s a h p D D V n e h W k 1 a h g u o r h t 5 C C V o t n i p s i h t h g i h l l u p , d e s uΩ R VD D V t e l o t 2 MW P e l b a s i d o t r o t s i s e r . n o i t a r u g i f n o c e s a h p - e l g n i s n i e t a r e p o 143 P S C . 3 e s a h P D D V r o f t u p n I e s n e S t n e r r u C l a i t n e r e f f i D e v i t i s o P,d e s u t o n s i 3 e s a h p D D V n e h W . n o i t a r u g i f n o c e s a h p - 2 n i d e r u g i f n o c s i R VD D V n e h wD N G o t n i p s i h t t r o h s
243 N S C
. 3 e s a h PD D V r o f t u p n I e s n e S t n e r r u C l a i t n e r e f f i D e v i t a g e Nto n s i 3 e s a h p D D V n e h W 5 C C V o t n i p s i h t h g i h l l u p , d e suk 1 a h g u o r h t tΩ o t s i s ere t a r e p o R V D D V t e l o t 3 MW P e l b a s i d o t r . n o i t a r u g i f n o c e s a h p - 2 n i 34P S C . D D V r o f r e i f i l p m A e s n e S t n e r r u C l a t o T f o t u p n I g n i t r e v n I - no N 44N S C . D D V r o f r e i f i l p m A e s n e S t n e r r u C l a t o T f o t u p n I g n i t r e v n I 54A N S C . A D D V r o f r e i f i l p m A e s n e S t n e r r u C l a t o T f o t u p n I g n i t r e v n I 64A P S C . A D D V r o f r e i f i l p m A e s n e S t n e r r u C l a t o T f o t u p n I g n i t r e v n I -n o N 74A 1 N S C . 1 e s a h P A D D V r o f t u p n I e s n e S t n e r r u C l a i t n e r e f f i D e v i t a g e Nto n s i 1 e s a h p A D D V n e h W k 1 a h g u o r h t 5 C C V o t n i p s i h t h g i h l l u p , d e s uΩ R V A D D V t e l o t A 1 MW P e l b a s i d o t r o t s i s e r . n o i t a r u g i f n oc e s a h p - o r e z n i e t a r e p o 84A 1 P S C . 1 e s a h P A D D V r o f t u p n I e s n e S t n e r r u C l a i t n e r e f f i D e v i t i s o Pto n s i 1 e s a h p A D D V n e h W . n o i t a r u g i f n o c e s a h p - o r e z n i d e r u g i f n o c s i R V A D D V n e h wD N G o t n i p s i h t t r o h s , d e s u 94A 2 N S C . 2 e s a h P A D D V r o f t u p n I e s n e S t n e r r u C l a i t n e r e f f i D e v i t a g e Nto n s i 2 e s a h p A D D V n e h W k 1 a h g u o r h t 5 C C V o t n i p s i h t h g i h l l u p , d e s uΩ R V A D D V t e l o t A 2 MW P e l b a s i d o t r o t s i s e r . n o i t a r u g i f n oc e s a h p - e l g n i s n i e t a r e p o 05A 2 P S C . 2 e s a h P A D D V r o f t u p n I e s n e S t n e r r u C l a i t n e r e f f i D e v i t i s o Pto n s i 2 e s a h p A D D V n e h W . n o i t a r u g i f n o c e s a h p - e l g n i s n i d e r u g i f n o c s i R V A D D V n e h wD N G o t n i p s i h t t r o h s , d e s u 15K O R W P . n o i ta c i d n I K O r e w o Pm e t s y S .k o s i r e w o p m e t s y s e h t s e t a c i d n i t a h t h g i h e v i t c a e h t s i n i p s ih T ni h t i w e r a s k c o l c g n i n n u r - e e r f d n a s e n a l p e g a t l o v l l a t a h t s et a c i d n i t i , d e t r e s s a s i K O R W P n e h W . n o i t a c i f i c e p s 25A 1 MW P .t u p t u OMW P 1 e s a h P A D D V . re v i r d T E F S O M l a n r e t x e f o t u p n i MW P e h t o t n i p s i h t t c e n n o C . l i a r A D D V r o f r e v i r d T E F S O M e t e r c s i d l a n r e t x e r o f l a n g i s c ig o l MW P a s t u p t u o n i p s i h T d a P d e s o p x E. d n u o r G l o r t n o c c i g o l d n a s r e v i r d T E F S O M d e d d e b m e f o d n u o r g e h t s i d ap d e s o p x e e h T . D N G o t d e t c e n n o c d n a B C P e g r a l a o t d e r e d l o s e b t s u m t i d n a , s ti u c r i c
7uP9503Q-DS-F0000, June 2017 www.upi-semi.com Functional Block Diagram PWROK PORSVI2/SMBus/ADC EN On Time Generation and PWM Control Logic Ramp Generation TONSE T PWM3 FBRTN VDDIO SVT SCL SDA CSP1 CSN1 DAC VCC12 GND FBRTNA SVD EAP IMON CSN CSP FB COMP UVP OVP EAP + 325mV SVC EAP - 325mV Operation Phase Selection GM GM GM Current Balance GM Per-Phase OCP CSP2 CSN2 CSP3 CSN3 ICSN ICSN ICSN DACA ICSNA CSP1A CSN1A GM GM CSP2A CSN2A Operation Phase Selection On Time Generation and PWM Control Logic Current Balance Per-Phase OCP EAPA IMONA CSNA CSPA FBA COMPA UVP OVP EAPA + 325mVEAPA - 325mV GM ICSNA ICSNA TONSET VCC12 D/A BUF D/A BUF Ramp Generation TONSET Gate Control Logic BOOT1 UG1 PH1 LG1 Gate Control Logic BOOT2 UG2 PH2 LG2 PWM1 A PWM2 A TP VCC5 VINSEN/TPA POK Power OK TSENA TSEN VRHOT #
controller detects all the CSNx and CSP1A voltage at VCC5 power on reset to determine operation phase number. CSNA to VCC5 through 1kΩ resistor and tied CSPA to ground. Table 3 shows the operation phase number setting. number are shown as Table 2. Table 2. SVI2 Command and VDD & VDDA Operating Phase Number
11 M C C e s a h P l l uFM C C e s a h P l l u F
10 M C C e s a h P l l uFM C C e s a h P l l u F
01 M C C e s a h P1M C C e s a h P 1
00 M S P e s a h P1M S P e s a h P 1
Table 3. Operation Phase Number Setting
Table 5. VID Table
13uP9503Q-DS-F0000, June 2017 www.upi-semi.com Functional Description ] 0 : 7 [ D I VS) V ( e g a t l oV] 0 : 7 [ D I VS) V ( e g a t l oV] 0 : 7 [ D I VS) V ( e g a t l oV] 0 : 7 [ D I VS) V ( e g a t l o V 0 0 0 0 _ 0 0 010 0 0 5 7 .00 0 0 0 _ 0 1 010 0 0 5 5 .00 0 0 0 _ 0 0 110 0 0 5 3 .00 0 0 0 _ 0 1 110 0 0 5 1 . 0 1 0 0 0 _ 0 0 015 7 3 4 7 .01 0 0 0 _ 0 1 015 7 3 4 5 .01 0 0 0 _ 0 0 115 7 3 4 3 .01 0 0 0 _ 0 1 115 7 3 4 1 . 0 0 1 0 0 _ 0 0 010 5 7 3 7 .00 1 0 0 _ 0 1 010 5 7 3 5 .00 1 0 0 _ 0 0 110 5 7 3 3 .00 1 0 0 _ 0 1 110 5 7 3 1 . 0 1 1 0 0 _ 0 0 015 2 1 3 7 .01 1 0 0 _ 0 1 015 2 1 3 5 .01 1 0 0 _ 0 0 115 2 1 3 3 .01 1 0 0 _ 0 1 115 2 1 3 1 . 0 0 0 1 0 _ 0 0 010 0 5 2 7 .00 0 1 0 _ 0 1 010 0 5 2 5 .00 0 1 0 _ 0 0 110 0 5 2 3 .00 0 1 0 _ 0 1 110 0 5 2 1 . 0 1 0 1 0 _ 0 0 015 7 8 1 7 .01 0 1 0 _ 0 1 015 7 8 1 5 .01 0 1 0 _ 0 0 115 7 8 1 3 .01 0 1 0 _ 0 1 115 7 8 1 1 . 0 0 1 1 0 _ 0 0 010 5 2 1 7 .00 1 1 0 _ 0 1 010 5 2 1 5 .00 1 1 0 _ 0 0 110 5 2 1 3 .00 1 1 0 _ 0 1 110 5 2 1 1 . 0 1 1 1 0 _ 0 0 015 2 6 0 7 .01 1 1 0 _ 0 1 015 2 6 0 5 .01 1 1 0 _ 0 0 115 2 6 0 3 .01 1 1 0 _ 0 1 115 2 6 0 1 . 0 0 0 0 1 _ 0 0 010 0 0 0 7 .00 0 0 1 _ 0 1 010 0 0 0 5 .00 0 0 1 _ 0 0 110 0 0 0 3 .00 0 0 1 _ 0 1 110 0 0 0 1 . 0 1 0 0 1 _ 0 0 015 7 3 9 6 .01 0 0 1 _ 0 1 015 7 3 9 4 .01 0 0 1 _ 0 0 115 7 3 9 2 .01 0 0 1 _ 0 1 115 7 3 9 0 . 0 0 1 0 1 _ 0 0 010 5 7 8 6 .00 1 0 1 _ 0 1 010 5 7 8 4 .00 1 0 1 _ 0 0 110 5 7 8 2 .00 1 0 1 _ 0 1 110 5 7 8 0 . 0 1 1 0 1 _ 0 0 015 2 1 8 6 .01 1 0 1 _ 0 1 015 2 1 8 4 .01 1 0 1 _ 0 0 115 2 1 8 2 .01 1 0 1 _ 0 1 115 2 1 8 0 . 0 0 0 1 1 _ 0 0 010 0 5 7 6 .00 0 1 1 _ 0 1 010 0 5 7 4 .00 0 1 1 _ 0 0 110 0 5 7 2 .00 0 1 1 _ 0 1 110 0 5 7 0 . 0 1 0 1 1 _ 0 0 015 7 8 6 6 .01 0 1 1 _ 0 1 015 7 8 6 4 .01 0 1 1 _ 0 0 115 7 8 6 2 .01 0 1 1 _ 0 1 115 7 8 6 0 . 0 0 1 1 1 _ 0 0 010 5 2 6 6 .00 1 1 1 _ 0 1 010 5 2 6 4 .00 1 1 1 _ 0 0 110 5 2 6 2 .00 1 1 1 _ 0 1 110 5 2 6 0 . 0 1 1 1 1 _ 0 0 015 2 6 5 6 .01 1 1 1 _ 0 1 015 2 6 5 4 .01 1 1 1 _ 0 0 115 2 6 5 2 .01 1 1 1 _ 0 1 115 2 6 5 0 . 0 0 0 0 0 _ 1 0 010 0 0 5 6 .00 0 0 0 _ 1 1 010 0 0 5 4 .00 0 0 0 _ 1 0 110 0 0 5 2 .00 0 0 0 _ 1 1 110 0 0 5 0 . 0 1 0 0 0 _ 1 0 015 7 3 4 6 .01 0 0 0 _ 1 1 015 7 3 4 4 .01 0 0 0 _ 1 0 115 7 3 4 2 .01 0 0 0 _ 1 1 115 7 3 4 0 . 0 0 1 0 0 _ 1 0 010 5 7 3 6 .00 1 0 0 _ 1 1 010 5 7 3 4 .00 1 0 0 _ 1 0 110 5 7 3 2 .00 1 0 0 _ 1 1 110 5 7 3 0 . 0 1 1 0 0 _ 1 0 015 2 1 3 6 .01 1 0 0 _ 1 1 015 2 1 3 4 .01 1 0 0 _ 1 0 115 2 1 3 2 .01 1 0 0 _ 1 1 115 2 1 3 0 . 0 0 0 1 0 _ 1 0 010 0 5 2 6 .00 0 1 0 _ 1 1 010 0 5 2 4 .00 0 1 0 _ 1 0 110 0 5 2 2 .00 0 1 0 _ 1 1 110 0 5 2 0 . 0 1 0 1 0 _ 1 0 015 7 8 1 6 .01 0 1 0 _ 1 1 015 7 8 1 4 .01 0 1 0 _ 1 0 115 7 8 1 2 .01 0 1 0 _ 1 1 115 7 8 1 0 . 0 0 1 1 0 _ 1 0 010 5 2 1 6 .00 1 1 0 _ 1 1 010 5 2 1 4 .00 1 1 0 _ 1 0 110 5 2 1 2 .00 1 1 0 _ 1 1 110 5 2 1 0 . 0 1 1 1 0 _ 1 0 015 2 6 0 6 .01 1 1 0 _ 1 1 015 2 6 0 4 .01 1 1 0 _ 1 0 115 2 6 0 2 .01 1 1 0 _ 1 1 115 2 6 0 0 . 0 0 0 0 1 _ 1 0 010 0 0 0 6 .00 0 0 1 _ 1 1 010 0 0 0 4 .00 0 0 1 _ 1 0 110 0 0 0 2 .00 0 0 1 _ 1 1 1 1F F O 1 0 0 1 _ 1 0 015 7 3 9 5 .01 0 0 1 _ 1 1 015 73 9 3 .01 0 0 1 _ 1 0 115 7 3 9 1 .01 0 0 1 _ 1 1 11F F O 0 1 0 1 _ 1 0 010 5 7 8 5 .00 1 0 1 _ 1 1 010 5 7 8 3 .00 1 0 1 _ 1 0 110 5 7 8 1 .00 1 0 1 _ 1 1 11F F O 1 1 0 1 _ 1 0 015 2 1 8 5 .01 1 0 1 _ 1 1 015 2 1 8 3 .01 1 0 1 _ 1 0 115 2 1 8 1 .01 1 0 1 _ 1 1 11F F O 0 0 1 1 _ 1 0 010 0 5 7 5 .00 0 1 1 _ 1 1 010 0 5 7 3 .00 0 1 1 _ 1 0 110 0 5 7 1 .00 0 1 1 _ 1 1 11F F O 1 0 1 1 _ 1 0 015 7 8 6 5 .01 0 1 1 _ 1 1 015 7 8 6 3 .01 0 1 1 _ 1 0 115 7 8 6 1 .01 0 1 1 _ 1 1 11F F O 0 1 1 1 _ 1 0 010 5 2 6 5 .00 1 1 1 _ 1 1 010 5 2 6 3 .00 1 1 1 _ 1 0 110 5 2 6 1 .00 1 1 1 _ 1 1 11F F O 1 1 1 1 _ 1 0 015 2 6 5 5 .01 1 1 1 _ 1 1 015 2 6 5 3 .01 1 1 1 _ 1 0 115 2 6 5 1 .01 1 1 1 _ 1 1 11F F O
Figure 6. Total Output OCP decreased, the total output OCP level is decreased as well. Table 6. Total Output OCP and Operating Phase Number
the time constant can expressed as follows. current signal ICSNx can be expressed as follows. Figure 7. Phase Current Sense protection, and it can only be reset by VCC5 or EN toggling. voltage and the sensed temperature is shown in Figure 8. regulators exceeds the maximum temperature threshold. and the recommended lower dividing resistor is 6kΩ.
Figure 8. TSEN/TSENA Pin Voltage and Sensed Temperature technology. The RCOT uses the constant on-time modulator. level of output current that the load current state is entered. settings (frequency, offset and operating phase number). LCS4: VM3 > VIMON , lowest load current state. defined as the ratio of IMON pin voltage to 2.56V. content setting with 6.25mV/step. Define the switching frequency in each load current state. setting per RTONSET and VIN. The default is 1000 for 100%.
17uP9503Q-DS-F0000, June 2017 www.upi-semi.com Functional Description IICP0~IICP4 (AIICP0, AIICP1 for VDDA): Define the operating phase number in each load current state. The operating phase number can be full-phase to single phase IICLL0~ IICLL4 (AIICLL0, AIICLL1 for VDDA): Define the load line value in each load current state. The load line adjustment is defined as the ratio to current droop setting. The default is 0110 for 100%. 0000 = 0%; 0001 = 1010 = 140%; 1011 = 150%; 1100 = 160%; 1101 =170%; 1110 = 180%; 1111 = 190%. RCOMP1, RCOMP2 (ARCOMP1, ARCOMP2 for VDDA) : Define the compensation resistor value. The compensation resistor value for the regulator operating in single-phase operation and multi-phase operation can be adjusted separately. GCOMP (AGCOMP for VDDA) : For OTA transconductance setting for voltage control loop. It is defined as the ratio to the default value of 2020 uA/V. OC/UV/OV: OC/UV/OV is used for the threshold adjustment of per-phase OCP, UVP and OVP, respectively. OCP Delay: For total OCP threshold and per-phase OCP delay time setting. LCHVID (ALCHVID for VDDA): This register stores the 8-bits VID code. When latch VID function is enabled, controller will ignore the SetVID command from CPU and move output voltage to the targeted value. IMON (IMONA for VDDA): The register reports real IMON value (FFh when VIMON = 2.56V). VFB (VFBA for VDDA): This register reports the output voltage that is converted by the internal ADC with 6.25mV/LSB.
Table 7. SMBus Configuration Register
1 S C L > = 1 l e v e L > N O M I V
2 S C L > = 1 l e v e L < N O M I V
2 S C L > = 2 l e v e L > N O M I V
3 S C L > = 2 l e v e L < N O M I V
3 S C L > = 3 l e v e L > N O M I V
4 S C L > = 3 l e v e L < N O M I V
0 S C L D D V f o r e b m u N e s a h P : ] 4 : 6 [ t i B
1 S C L D D V f o r e b m u N e s a h P : ] 0 : 2 [ t i B
2 S C L D D V f o r e b m u N e s a h P : ] 4 : 6 [ t i B
3 S C L D D V f o r e b m u N e s a h P : ] 0 : 2 [ t i B
19uP9503Q-DS-F0000, June 2017 www.upi-semi.com Functional Description . g e R . r d d A s u c o F l i a R e m a N . g eRs s e c cAt l u a f eDn o i t p i r c s e D B 0 x0D D V ] 4 : 6 [ 4 P C I IW /Rh 6 6 g n i t t e S r e b m u N e s a h P n o i t a r e p OD D V
4 S C L D D V f o r e b m u N e s a h P : ] 4 : 6 [ t i B
; e s a h P 3 : 1 1 0 ; e s a h P 4 : 0 0 1 ; e s a h P 5 : 1 0 1 ; e s a h P 6 : 0 1 1 M S P e s a h P 1 : 0 0 0 ; M C C e s a h P 1 : 1 0 0 ; e s a h P 2 : 0 1 0 C 0 x0D D V ] 0 : 7 [ 0 S F O VW /Rh 0 0 ) p e t s / V m 5 2 . 6 ( . 0 S C L D D V f o t e s f f o e g a t l o V t e s f f o e v i t a g e n = " 1 " ; t e s f f o e v i t i s o p = " 0 " , t i b n g i s s i 7 t i B V m 0 5 7 - / + = s t i m i l r e w o l d n a r e p p U V m 0 + = 0 0 0 0 0 0 0 0 V m 5 2 . 6 + = 1 0 0 0 0 0 0 0 V m 5 7 3 + = 0 0 1 1 1 1 0 0 V m 0 5 7 + = 0 0 0 1 1 1 1 0 V m 0 5 7 + = 1 1 1 1 1 1 1 0 V m 0 - = 0 0 0 0 0 0 0 1 V m 5 2 . 6 - = 1 0 0 0 0 0 0 1 V m 5 7 3 - = 0 0 1 1 1 1 0 1 V m 0 5 7 - = 0 0 0 1 1 1 1 1 V m 0 5 7 - = 1 1 1 1 1 1 1 1D 0 x0D D V ] 0 : 7 [ 1 S F O VW /Rh 0 0 ) p e t s / V m 5 2 . 6 ( . 1 S C L D D V f o t e s f f o e g a t l o V t e s f f o e v i t a g e n = " 1 " ; t e s f f o e v i t i s o p = " 0 " , t i b n g i s s i 7 t i B V m 0 5 7 - / + = s t i m i l r e w o l d n a r e p p U V m 0 + = 0 0 0 0 0 0 0 0 V m 5 2 . 6 + = 1 0 0 0 0 0 0 0 V m 5 7 3 + = 0 0 1 1 1 1 0 0 V m 0 5 7 + = 0 0 0 1 1 1 1 0 V m 0 5 7 + = 1 1 1 1 1 1 1 0 V m 0 - = 0 0 0 0 0 0 0 1 V m 5 2 . 6 - = 1 0 0 0 0 0 0 1 V m 5 7 3 - = 0 0 1 1 1 1 0 1 V m 0 5 7 - = 0 0 0 1 1 1 1 1 V m 0 5 7 - = 1 1 1 1 1 1 1 1 E 0 x 0D D V ] 0 : 7 [ 2 S F O VW /Rh 0 0 ) p e t s / V m 5 2 . 6 ( . 2 S C L D D V f o t e s f f o e g a t l o V t e s f f o e v i t a g e n = " 1 " ; t e s f f o e v i t i s o p = " 0 " , t i b n g i s s i 7 t i B V m 0 5 7 - / + = s t i m i l r e w o l d n a r e p p U V m 0 + = 0 0 0 0 0 0 0 0 V m 5 2 . 6 + = 1 0 0 0 0 0 0 0 V m 5 7 3 + = 0 0 1 1 1 1 0 0 V m 0 5 7 + = 0 0 0 1 1 1 1 0 V m 0 5 7 + = 1 1 1 1 1 1 1 0 V m 0 - = 0 0 0 0 0 0 0 1 V m 5 2 . 6 - = 1 0 0 0 0 0 0 1 V m 5 7 3 - = 0 0 1 1 1 1 0 1 V m 0 5 7 - = 0 0 0 1 1 1 1 1 V m 0 5 7 - = 1 1 1 1 1 1 1 1F 0 x0D D V ] 0 : 7 [ 3 S F O VW /Rh 0 0 ) p e t s / V m 5 2 . 6 ( . 3 S C L D D V f o t e s f f o e g a t l o V t e s f f o e v i t a g e n = " 1 " ; t e s f f o e v i t i s o p = " 0 " , t i b n g i s s i 7 t i B V m 0 5 7 - / + = s t i m i l r e w o l d n a r e p p U V m 0 + = 0 0 0 0 0 0 0 0 V m 5 2 . 6 + = 1 0 0 0 0 0 0 0 V m 5 7 3 + = 0 0 1 1 1 1 0 0 V m 0 5 7 + = 0 0 0 1 1 1 1 0 V m 0 5 7 + = 1 1 1 1 1 1 1 0 V m 0 - = 0 0 0 0 0 0 0 1 V m 5 2 . 6 - = 1 0 0 0 0 0 0 1 V m 5 7 3 - = 0 0 1 1 1 1 0 1 V m 0 5 7 - = 0 0 0 1 1 1 1 1 V m 0 5 7 - = 1 1 1 1 1 1 1 1
20 uP9503Q-DS-F0000, June 2017 www.upi-semi.com Functional Description . g e R . r d d A s u c o F l i a R e m a N . g eRs s e c cAt l u a f eDn o i t p i r c s e D 0 1 x0D D V ] 0 : 7 [ 4 S F O VW /Rh 0 0 ) p e t s / V m 5 2 . 6 ( . 4 S C L D D V f o t e s f f o e g a t l o V t e s f f o e v i t a g e n = " 1 " ; t e s f f o e v i t i s o p = " 0 " , t i b n g i s s i 7 t i B V m 0 5 7 - / + = s t i m i l r e w o l d n a r e p p U V m 0 + = 0 0 0 0 0 0 0 0 V m 5 2 . 6 + = 1 0 0 0 0 0 0 0 V m 5 7 3 + = 0 0 1 1 1 1 0 0 V m 0 5 7 + = 0 0 0 1 1 1 1 0 V m 0 5 7 + = 1 1 1 1 1 1 1 0 V m 0 - = 0 0 0 0 0 0 0 1 V m 5 2 . 6 - = 1 0 0 0 0 0 0 1 V m 5 7 3 - = 0 0 1 1 1 1 0 1 V m 0 5 7 - = 0 0 0 1 1 1 1 1 V m 0 5 7 - = 1 1 1 1 1 1 1 1 2 1 x0D D V ] 4 : 7 [ 0 F C I I ] 0 : 3 [ 1 F C I IW /Rh 8 8 g n i t t e S y c n e u q e r F n o i t a r e p OD D V % 0 0 1 = t l u a f e d , 0 S C L D D V f o r e b m u N e s a h P : ] 4 : 7 [ t i B % 0 0 1 = t l u a f e d , 1 S C L D D V f o r e b m u N e s a h P : ] 0 : 3 [ t i B ; % 5 7 = 1 1 0 0 ; % 0 7 = 0 1 0 0 ; % 5 6 = 1 0 0 0 ; % 0 6 = 0 0 0 0 ; % 5 9 = 1 1 1 0 ; % 0 9 = 0 1 1 0 ; % 5 8 = 1 0 1 0 ; % 0 8 = 0 0 1 0 ; % 5 7 1 = 1 1 0 ; % 0 5 1 = 0 1 0 1 ; % 5 2 1 = 1 0 0 1 ; ) t l u a f e d ( % 0 0 1 = 0 0 0 1 % 5 7 2 = 1 1 1 1 ; % 0 5 2 = 0 1 1 1 ; % 5 2 2 = 1 0 1 1 ; % 0 0 2 = 0 0 1 1 3 1 x0D D V ] 4 : 7 [ 2 F C I I ] 0 : 3 [ 3 F C I I W /Rh 8 8 g n i t t e S y c n e u q e r F n o i t a r e p OD D V % 0 0 1 = t l u a f e d , 2 S C L D D V f o r e b m u N e s a h P : ] 4 : 7 [ t i B % 0 0 1 = t l u a f e d , 3 S C L D D V f o r e b m u N e s a h P : ] 0 : 3 [ t i B ; % 5 7 = 1 1 0 0 ; % 0 7 = 0 1 0 0 ; % 5 6 = 1 0 0 0 ; % 0 6 = 0 0 0 0 ; % 5 9 = 1 1 1 0 ; % 0 9 = 0 1 1 0 ; % 5 8 = 1 0 1 0 ; % 0 8 = 0 0 1 0 ; % 5 7 1 = 1 1 0 ; % 0 5 1 = 0 1 0 1 ; % 5 2 1 = 1 0 0 1 ; ) t l u a f e d ( % 0 0 1 = 0 0 0 1 % 5 7 2 = 1 1 1 1 ; % 0 5 2 = 0 1 1 1 ; % 5 2 2 = 1 0 1 1 ; % 0 0 2 = 0 0 1 1 4 1 x0D D V ] 4 : 7 [ 4 F C I IW /Rh 8 8 g n i t t e S y c n e u q e r F n o i t a r e p OD D V % 0 0 1 = t l u a f e d , 4 S C L D D V f o r e b m u N e s a h P : ] 4 : 7 [ t i B ; % 5 7 = 1 1 0 0 ; % 0 7 = 0 1 0 0 ; % 5 6 = 1 0 0 0 ; % 0 6 = 0 0 0 0 ; % 5 9 = 1 1 1 0 ; % 0 9 = 0 1 1 0 ; % 5 8 = 1 0 1 0 ; % 0 8 = 0 0 1 0 ; % 5 7 1 = 1 1 0 ; % 0 5 1 = 0 1 0 1 ; % 5 2 1 = 1 0 0 1 ; ) t l u a f e d ( % 0 0 1 = 0 0 0 1 % 5 7 2 = 1 1 1 1 ; % 0 5 2 = 0 1 1 1 ; % 5 2 2 = 1 0 1 1 ; % 0 0 2 = 0 0 1 1 5 1 x0D D V ] 4 : 7 [ 0 L L C I I ] 0 : 3 [ 1 L L C I IW /Rh 6 6 g n i t t e S e n i L d a o L D D V % 0 0 1 = t l u a f e d , 0 S C L D D V f o g n i t t e s e n i l d a o L : ] 4 : 7 [ t i B % 0 0 1 = t l u a f e d , 1 S C L D D V f o g n i t t e s e n i l d a o L : ] 0 : 3 [ t i B ; % 0 8 = 0 0 1 0 ; % 0 7 = 1 1 0 0 ; % 0 6 = 0 1 0 0 ; % 0 4 = 1 0 0 0 ; % 0 = 0 0 0 0 ; % 0 2 1 = 0 0 0 1 ; % 0 1 1 = 1 1 1 0 ; ) t l u a f e d ( % 0 0 1 = 0 1 1 0 ; % 0 9 = 1 0 1 0 ; % 0 6 1 = 0 0 1 1 ; % 0 5 1 = 1 1 0 1 ; % 0 4 1 = 0 1 0 1 ; % 0 3 1 = 1 0 0 1 % 0 9 1 = 1 1 1 1 ; % 0 8 1 = 0 1 1 1 ; % 0 7 1 = 1 0 1 1 6 1 x0D D V ] 4 : 7 [ 2 L L C I I ] 0 : 3 [ 3 L L C I I W /Rh 6 6 g n i t t e S e n i L d a o L D D V % 0 0 1 = t l u a f e d , 2 S C L D D V f o g n i t t e s e n i l d a o L : ] 4 : 7 [ t i B % 0 0 1 = t l u a f e d , 3 S C L D D V f o g n i t t e s e n i l d a o L : ] 0 : 3 [ t i B ; % 0 8 = 0 0 1 0 ; % 0 7 = 1 1 0 0 ; % 0 6 = 0 1 0 0 ; % 0 4 = 1 0 0 0 ; % 0 = 0 0 0 0 ; % 0 2 1 = 0 0 0 1 ; % 0 1 1 = 1 1 1 0 ; ) t l u a f e d ( % 0 0 1 = 0 1 1 0 ; % 0 9 = 1 0 1 0 ; % 0 6 1 = 0 0 1 1 ; % 0 5 1 = 1 1 0 1 ; % 0 4 1 = 0 1 0 1 ; % 0 3 1 = 1 0 0 1 % 0 9 1 = 1 1 1 1 ; % 0 8 1 = 0 1 1 1 ; % 0 7 1 = 1 0 1 1 7 1 x0D D V ] 4 : 7 [ 4 L L C I IW /Rh 6 6 g n i t t e S e n i L d a o L D D V % 0 0 1 = t l u a f e d , 4 S C L D D V f o g n i t t e s e n i l d a o L : ] 4 : 7 [ t i B ; % 0 8 = 0 0 1 0 ; % 0 7 = 1 1 0 0 ; % 0 6 = 0 1 0 0 ; % 0 4 = 1 0 0 0 ; % 0 = 0 0 0 0 ; % 0 2 1 = 0 0 0 1 ; % 0 1 1 = 1 1 1 0 ; ) t l u a f e d ( % 0 0 1 = 0 1 1 0 ; % 0 9 = 1 0 1 0 ; % 0 6 1 = 0 0 1 1 ; % 0 5 1 = 1 1 0 1 ; % 0 4 1 = 0 1 0 1 ; % 0 3 1 = 1 0 0 1 % 0 9 1 = 1 1 1 1 ; % 0 8 1 = 0 1 1 1 ; % 0 7 1 = 1 0 1 1
21uP9503Q-DS-F0000, June 2017 www.upi-semi.com Functional Description . g e R . r d d A s u c o F l i a R e m a N . g eRs s e c cAt l u a f eDn o i t p i r c s e D 8 1 x0D D V ] 7 [ N E _ B C ] 4 : 6 [ N I A G I _ 1 H P ] 0 : 2 [ N I A G I _ 2 H P W /Rh 4 4 , n o i t c n u f e c n a l a b t n e r r u c D D V f o l o r t n o c f f O / n O : ] 7 [ t i B F F O = " 1 " , N O = " 0 " , N O = t l u a f e d % 0 0 1 = t l u a f e d , t s u j d a n i a g e c n a l a b t n e r r u c 1 e s a h P D D V : ] 4 : 6[ t i B % 0 0 1 = 0 0 1 ; % 5 . 7 8 = 1 1 0 ; % 5 7 = 0 1 0 ; % 5 . 2 6 = 1 0 0 ; % 0 5 = 0 0 0 % 5 . 7 3 1 = 1 1 1 ; % 5 2 1 = 0 1 1 ; % 5 . 2 1 1 = 1 0 1 ; ) t l u a f e d ( e r a c t ' n o D : ] 3 [ t i B % 0 0 1 = t l u a f e d , t s u j d a n i a g e c n a l a b t n e r r u c 2 e s a h P D D V : ] 0 : 2[ t i B % 0 0 1 = 0 0 1 ; % 5 . 7 8 = 1 1 0 ; % 5 7 = 0 1 0 ; % 5 . 2 6 = 1 0 0 ; % 0 5 = 0 0 0 % 5 . 7 3 1 = 1 1 1 ; % 5 2 1 = 0 1 1 ; % 5 . 2 1 1 = 1 0 1 ; ) t l u a f e d ( 9 1 x0D D V ] 4 : 6 [ N I A G I _ 3 H PW /Rh 4 4 e r a c t ' n o D : ] 7 [ t i B % 0 0 1 = t l u a f e d , t s u j d a n i a g e c n a l a b t n e r r u c 3 e s a h P D D V : ] 4 : 6[ t i B % 0 0 1 = 0 0 1 ; % 5 . 7 8 = 1 1 0 ; % 5 7 = 0 1 0 ; % 5 . 2 6 = 1 0 0 ; % 0 5 = 0 0 0 % 5 . 7 3 1 = 1 1 1 ; % 5 2 1 = 0 1 1 ; % 5 . 2 1 1 = 1 0 1 ; ) t l u a f e d ( e r a c t ' n o D : ] 3 [ t i B B 1 x 0D D V ] 4 : 6 [ S O I _ 1 H P ] 0 : 2 [ S O I _ 2 H PW /Rh 0 0 e r a c t ' n o D : ] 7 [ t i B A u 0 = t l u a f e d , t e s f f o e c n a l a b t n e r r u c 1 e s a h P D D V : ] 4 : 6 [ t i B ; A u 8 = 0 0 1 ; A u 6 = 1 1 0 ; A u 4 = 0 1 0 ; A u 2 = 1 0 0 ; ) t l u a f e d ( A u 0 = 0 0 0 A u 4 1 = 1 1 1 ; A u 2 1 = 0 1 1 ; A u 0 1 = 1 0 1 e r a c t ' n o D : ] 3 [ t i B A u 0 = t l u a f e d , t e s f f o e c n a l a b t n e r r u c 2 e s a h P D D V : ] 0 : 2 [ t i B ; A u 8 = 0 0 1 ; A u 6 = 1 1 0 ; A u 4 = 0 1 0 ; A u 2 = 1 0 0 ; ) t l u a f e d ( A u 0 = 0 0 0 A u 4 1 = 1 1 1 ; A u 2 1 = 0 1 1 ; A u 0 1 = 1 0 1 C 1 x0D D V ] 4 : 6 [ S O I _ 3 H PW /Rh 0 0 e r a c t ' n o D : ] 7 [ t i B A u 0 = t l u a f e d , t e s f f o e c n a l a b t n e r r u c 3 e s a h P D D V : ] 4 : 6 [ t i B ; A u 8 = 0 0 1 ; A u 6 = 1 1 0 ; A u 4 = 0 1 0 ; A u 2 = 1 0 0 ; ) t l u a f e d ( A u 0 = 0 0 0 A u 4 1 = 1 1 1 ; A u 2 1 = 0 1 1 ; A u 0 1 = 1 0 1 e r a c t ' n o D : ] 3 [ t i B E 1 x0D D V ] 4 : 7 [ 1 P M O C R ] 0 : 3 [ 2 P M O C RW /Rh 3 7 g n i t t e S r o t s i s e R P M O C R P M O C R n o i t a r e p o e s a h p - e l g n i S : ] 4 : 7 [ t i B K 0 2 = t l u a f e d , ) ] 4 : 7 [ + 1 ( x K 5 . 2 = P M O C R P M O C R n o i t a r e p o e s a h p - i t l u M : ] 0 : 3 [ t i B K 0 1 = t l u a f e d , ) ] 0 : 3 [ + 1 ( x K 5 . 2 = P M O C R F 1 x0D D V ] 0 : 3 [ P M O C GW /Rh 0 8 n o i t c e l e s e u l a v m G A T OD D V n o i t c e l e s e u l a v m G A T OD D V : ] 3 [ P M O C G l l i w g n i t t e s ] 0 : 2 [ P M O C G , ) V / A u 0 2 0 2 ( e u l a v t l u a f e d e s u o t e cr o f = 0 ; ) t l u a f e d ( d e r o n g i e b ] 0 : 2 [ P M O C G n i t e s e u l a v e h t e s u = 1 l l a o t d e i l p p a , g n i t t e s m G e c n a t c u d n o c s n a r t D D V : ] 0 : 2 [ P M O CG )V / A u 0 2 0 2 = ( t l u a f e d o t o i t a r e h t s a d e n i f e d , r e b m u n e s a h p g n it a r e p o ; X 5 4 . 1 = 1 1 0 ; X 1 3 . 1 = 0 1 0 ; X 7 1 . 1 = 1 0 0 ; ) t l u a f e d ( X 1 = 0 0 0 X 3 3 . 0 = 1 1 1 ; X 6 . 0 = 0 1 1 ; X 1 8 . 0 = 1 0 1 ; X 9 6 . 1 = 0 0 1 0 2 x0D D V ] 0 : 7 [ D I V H C LW /Rh 8 4 V 1 . 1 = h 8 4 = t l u a f e D . r e t s i g e R D I V h c t a L D D V 1 2 x0D D V ] 0 : 7 [ N O M IOR- - g n i t r o p e r N O M I D D V 2 2 x0D D V ] 0 : 7 [ B F VOR- - g n i d a e R e g a t l o v D D V l a u t c a f o t l u s e r D / A m o r f s i ] 0 : 7 [ B F V n i s e u l a v g n i d a e r e g a t lo V . t l u a f e d y b e g a t l o v t u p t u o
22 uP9503Q-DS-F0000, June 2017 www.upi-semi.com Functional Description . g e R . r d d A s u c o F l i a R e m a N . g eRs s e c cAt l u a f eDn o i t p i r c s e D 3 2 x0D D V ] 0 : 6 [ d n I _ t c e t o r PORh 0 0 d e r e g g i r t s i n o i t c e t o r p h c i h w g n i t a c i d n i , r o t a c i d n i n o i t ce t o r p D D V e r a c t ' n o D : ] 7 [ t i B r o t a c i d n I P V O : ] 6 [ t i B e v i t c A = " 1 " , e v i t c A t o N = " 0 " r o t a c i d n I P V U : ] 5 [ t i B e v i t c A = " 1 " , e v i t c A t o N = " 0 " r o t a c i d n I P C O : ] 4 [ t i B e v i t c A = " 1 " , e v i t c A t o N = " 0 " r o t a c i d n I P C O e s a h P r e P : ] 3 [ t i B e v i t c A = " 1 " , e v i t c A t o N = " 0 " 1 = ] 3 [ t i B f i r o t a c i d n I P C O e s a h P r e P : ] 0 : 2 [ t i B
3 H P = 1 1 0 ; 2 H P = 0 1 0 ; 1 H P = 1 0 0
5 H P = 1 0 1 ; 4 H P = 0 0 1
1 = ] 3 [ t i B n e h w y l n o d i l a v s i ] 0 : 2 [ t i B f o e u l a v t r o p e R 4 2 x0d e r a h s y a l e D P C O ] 0 : 6 [ W /Rh 2 3 g n i t t e s e m a s e h t e r a h s A D D V d n a D D V h t o B e r a c t ' n o D : ] 7 [ t i B e m i T y a l e D P C O l a t o T : ] 4 : 6 [ t i B ; ) t l u a f e d ( s u 0 2 = 1 1 0 ; s u 5 1 = 0 1 0 ; s u 0 1 = 1 0 0 ; s u 5 = 0 0 0 s u 0 4 = 1 1 1 ; s u 5 3 = 0 1 1 ; s u 0 3 = 1 0 1 ; s u 5 2 = 0 0 1 e r a c t ' n o D : ] 3 [ t i B e m i T y a l e D P C O e s a h P r e P : ] 0 : 2 [ t i B ; s u 0 1 = 0 0 1 ; s u 8 = 1 1 0 ; ) t l u a f e d ( s u 6 = 0 1 0 ; s u 4 = 1 0 0 ; s u 2 = 0 0 0 s u 6 1 = 1 1 1 ; s u 4 1 = 0 1 1 ; s u 2 1 = 1 0 1 5 2 x0d e r a h s V O / V U / C O ] 0 : 5 [ W /Rh 0 0 g n i t t e s e m a s e h t e r a h s A D D V d n a D D V h t o B e r a c t ' n o D : ] 7 [ t i B t n e r r u C P C O e s a h P r e P : ] 4 : 5 [ t i B A u 0 6 1 = 1 1 ; A u 0 4 1 = 0 1 ; A u 0 2 1 = 1 0 ; ) t l u a f e d ( A u 0 0 1 = 0 0 d l o h s e r h T P V U : ] 2 : 3 [ t i B V m 0 7 5 = 1 1 ; V m 5 8 4 = 0 1 ; V m 5 0 4 = 1 0 ; ) t l u a f e d ( V m 5 2 3 = 0 0 d l o h s e r h T P V O : ] 0 : 1 [ t i B V m 0 7 5 = 1 1 ; V m 5 8 4 = 0 1 ; V m 5 0 4 = 1 0 ; ) t l u a f e d ( V m 5 2 3 = 0 0 6 2 x0d e r a h s ] 4 : 6 [ R S _ R V A ] 0 : 2 [ R S _ R VW /Rh 2 2 e r a c t ' n o D : ] 7 [ t i B n o i t c e l e s e t a r w e l s d r a w p u D I V - d D D V : ] 4 : 6 [ t i B n o i t c e l e s e t a r w e l s d r a w p u D I V - d A D D V : ] 0 : 2 [ t i B . S u / V m 2 2 o t 8 m o r f e g n a r g n i t t e S . n o i t c e l e s e t a r w e l s d r a w p uD I V D . s u / V m 2 1 s i t l u a f e D . B S L - r e p s u / V m 2 d n a s p e t s 7 l a t o T ; ) t l u a f e d ( s u / V m 2 1 = 0 1 0 ; s u / V m 0 1 = 1 0 0 ; s u / V m 8 = 0 0 0 ; s u / V m 0 2 = 0 1 1 ; s u / V m 8 1 = 1 0 1 ; s u / V m 6 1 = 0 0 1 ; s u / V m 4 1 = 1 1 0 ; s u / V m 2 2 = 1 1 1 7 2 x0D D V ] 0 : 7 [ 1 c s i MW /Rh F 0 2 l o r t n o c S F O : ] 7 [ t i B 1 = ] 4 [ t i B n e h w y l n o d i l a v s i ] 7 [ t i B f o e u l a v t r o p e R s u B M S + 2 I V S = " 1 " , s u B M S y l n O = " 0 " l o r t n o C C A D V : ] 6 [ t i B
2 I V S e r o n g I = " 1 " , 2 I V S w o l l o F = " 0 "
l o r t n o C e t a t S R W P : ] 5 [ t i B 1 l o r t n o c S F O : ] 4 [ t i B ] 7 [ t i B w o l l o F = " 1 " , 2 I V S w o l l o F = " 0 " l o r t n o C P C O l a t o T : ] 3 [ t i B ) t l u a f e d ( e l b a n E = " 1 " , e l b a s i D = " 0 " l o r t n o C P C O e s a h p - r e P : ] 2 [ t i B ) t l u a f e d ( e l b a n E = " 1 " , e l b a s i D = " 0 " l o r t n o C P V O : ] 1 [ t i B ) t l u a f e d ( e l b a n E = " 1 " , e l b a s i D = " 0 " l o r t n o C P V U : ] 0 [ t i B ) t l u a f e d ( e l b a n E = " 1 " , e l b a s i D = " 0 "
23uP9503Q-DS-F0000, June 2017 www.upi-semi.com Functional Description . g e R . r d d A s u c o F l i a R e m a N . g eRs s e c cAt l u a f eDn o i t p i r c s e D 8 2 x0D D V ] 0 : 7 [ 2 c s i MW /Rh 4 0 l o r t n o C e n i L d a o L : ] 7 [ t i B
2 I V S w o l l o F = " 0 "
2 I V S e r o n g I = " 1 "
y c n e u q e r f g n i h c t i w s r o f m u r t c e p S d a e r p S : ] 6 [ t i B ) t l u a f e d ( m u r t c e p S d a e r p S e l b a s i D = " 0 " m u r t c e p S d a e r p S e l b a n E = " 1 " . g e R s u B M S f o e c r u o s a t a d e h t f o n o i t c e l e S : ] 5 [ t i B ) ] 0 : 7 [ B F V ( g n i d a e r e g a t l o v t u p t u o D D V h 2 2 x 0 ) t l u a f e d ( D / A m o r F = " 0 "
2 I V S m o r F = " 1 "
l o r t n o C e l b a n E e s a h P o t u A : ] 4 [ t i B ) t l u a f e d ( e s a h P o t u A e l b a s i D = " 0 " e s a h P o t u A e l b a n E = " 1 " l o r t n o C e l b a n E e n i L d a o L : ] 3 [ t i B ) t l u a f e d ( e n i L d a o L e l b a n E = " 0 " ) 0 = L L ( e n i L d a o L e l b a s i D = " 1 " l o r t n o C e l b a n E M S P : ] 2 [ t i B M S P e l b a s i D = " 0 " ) t l u a f e d ( M S P e l b a n E = " 1 " l o r t n o C e l b a n E M S U : ] : 1 [ t i B ) t l u a f e d ( M S U e l b a s i D = " 0 " M S U e l b a n E = " 1 " 9 2 x 0 , D D V d e r a h s ] 7 [ 1 N E P T O ] 6 [ 2 N E P T O T O H R V _ P M E T ] 0 : 4 [ W /Rh 5 4 ) A N E S T / N E S T ( l o r t n o C e l b a n E n w o d t u h S P T O : ] 7 [ t i B e l b a n E = " 1 " , ) t l u a f e d ( e l b a s i D = " 0 " ) n w o d t u h s l a m r e h t r e l l o r t n o c ( l o r t n o C e l b a n E ) l a n r e t n i ( PT O : ] 6 [ t i B ) t l u a f e d ( e l b a n E = " 1 " , e l b a s i D = " 0 " e r a c t ' n o D : ] 5 [ t i B l o r t n o C e l b a n E # T O H R V : ] 4 [ t i B e l b a s i D = " 1 " , ) t l u a f e d ( e l b a n E = " 0 " 1 9 m o r f e g n a r p m e T , B S L y b t f e l t f i h S : ] 0 : 3 [ t i Bo 1 2 1 o t Co = t l u a f e d , C 6 0 1o 3 , Co B S L / C ; B S L 2 t f i h S = 0 1 0 0 ; B S L 1 t f i h S = 1 0 0 0 ; t f i h S o N = 0 0 0 0 ;) t l u a f e d ( B S L 5 t f i h S = 1 0 1 0 ; B S L 4 t f i h S = 0 0 1 0 ; B S L 3 t f i h S = 1 10 0 ; B S L 8 t f i h S = 0 0 0 1 ; B S L 7 t f i h S = 1 1 1 0 ; B S L 6 t f i h S = 0 1 1 0 B S L 0 1 t f i h S = 0 1 0 1 ; B S L 9 t f i h S = 1 0 0 1 A 2 x0d e r a h s ] 5 : 7 [ D W t u o e m i T _ C V S ] 0 : 2 [ W /Rh 5 0 r e m i T g o d h c t a W ) t l u a f e d ( e l b a s i D = " 0 " ; e l b a n E = " 1 " : ] 7 [ t i B s u t a t s g o d h c t a W : ] 6 [ t i B d o i r e p g o d h c t a w n i h t i w d e r r u c c o s n o i t c a s n a r t s u B M S = " 0 " d o i r e p g o d h c t a w s d e e c x e n o i t c a s n a r t s u B M S n e e w t e b e m i t = " 1" s n o i t c a s n a r t s u B M S o n f i , d e l b a n e s i n o i t c n u f g o d h c t a w e h t ne h W r e t s i g e r l l a , ) s m 0 0 2 1 r o s m 0 0 6 ( d o i r e p d e t c e l e s a n i h t i w r u cc o s u B M S y b d e r a e l c s i t i b s i h T . e u l a v t l u a f e d o t t e s e r e b l l i w s tn e t n o c . r e t s i g e r s i h t m o r f d a e r d o i r e p g o d h c t a W : ] 5 [ t i B ) t l u a f e d ( s m 0 0 6 = " 0 " s m 0 0 2 1 = " 1 " ; . . . ; s u 2 = 0 1 0 ; s u 1 = 1 0 0 ; s u 5 . 0 = 0 0 0 : ] 0 : 2 [ t i B : t u o e m i T _ C V S s u 4 6 = 1 1 1 ; s u 2 3 = 0 1 1
24 uP9503Q-DS-F0000, June 2017 www.upi-semi.com Functional Description . g e R . r d d A s u c o F l i a R e m a N . g eRs s e c cAt l u a f eDn o i t p i r c s e D E 2 x0D D V P M O C _ p m a R ] 0 : 7 [ W /Rh 8 8 % 0 0 1 = t l u a f e d , n o i t a r e p o e s a h p - i t l u m r o f s i ] 4 : 7 [ P M O C _ p m aR ; % 0 8 = 0 0 1 0 ; % 5 7 = 1 1 0 0 ; % 0 7 = 0 1 0 0 ; % 5 6 = 1 0 0 0 ; % 0 6 = 0 0 0 0 ; ) t l u a f e d ( % 0 0 1 = 0 0 0 1 ; % 5 9 = 1 1 1 0 ; % 0 9 = 0 1 1 0 ; % 5 8 = 1 0 1 0 ; % 5 2 1 = 1 0 1 1 ; % 0 2 1 = 0 0 1 1 ; % 5 1 1 = 1 1 0 1 ; % 0 1 1 = 0 1 0 1 ; % 5 0 1 = 1 0 0 1 % 5 3 1 = 1 1 1 1 ; % 0 3 1 = 0 1 1 1 % 0 0 1 = t l u a f e d , n o i t a r e p o e s a h p - e l g n i s r o f s i ] 0 : 3 [ P M O C _ p ma R ; % 0 8 = 0 0 1 0 ; % 5 7 = 1 1 0 0 ; % 0 7 = 0 1 0 0 ; % 5 6 = 1 0 0 0 ; % 0 6 = 0 0 0 0 ; ) t l u a f e d ( % 0 0 1 = 0 0 0 1 ; % 5 9 = 1 1 1 0 ; % 0 9 = 0 1 1 0 ; % 5 8 = 1 0 1 0 ; % 5 2 1 = 1 0 1 1 ; % 0 2 1 = 0 0 1 1 ; % 5 1 1 = 1 1 0 1 ; % 0 1 1 = 0 1 0 1 ; % 5 0 1 = 1 0 0 1 % 5 3 1 = 1 1 1 1 ; % 0 3 1 = 0 1 1 1 F 2 x0D D V ] 0 : 7 [ M TW /R- - . g n i d a e R e u l a V r o t i n o M l a m r e h T s u B M S D D V n i p N E S T r o f n o i s r e v n o c D / A f o e u l a v e h t s e r o t s r e t s i g e r s i h T 0 3 x0A D D V ] 2 : 3 [ 0 P C I I A ] 0 : 1 [ 1 P C I I AW /Rh 5 0 g n i t t e S r e b m u N e s a h P n o i t a r e p O A D D V
0 S C L A D D V f o r e b m u N e s a h P : ] 2 : 3 [ t i B
1 S C L A D D V f o r e b m u N e s a h P : ] 0 : 1 [ t i B
e s a h P 1 : 0 0 ; e s a h P 2 : 1 0 1 3 x0A D D V ] 0 : 7 [ 0 S F O V AW /Rh 0 0 ) p e t s / V m 5 2 . 6 ( . 0 S C L A D D V f o t e s f f o e g a t l o V t e s f f o e v i t a g e n = " 1 " ; t e s f f o e v i t i s o p = " 0 " , t i b n g i s s i 7 t i B V m 0 5 7 - / + = s t i m i l r e w o l d n a r e p p U V m 0 + = 0 0 0 0 0 0 0 0 V m 5 2 . 6 + = 1 0 0 0 0 0 0 0 V m 5 7 3 + = 0 0 1 1 1 1 0 0 V m 0 5 7 + = 0 0 0 1 1 1 1 0 V m 0 5 7 + = 1 1 1 1 1 1 1 0 V m 0 - = 0 0 0 0 0 0 0 1 V m 5 2 . 6 - = 1 0 0 0 0 0 0 1 V m 5 7 3 - = 0 0 1 1 1 1 0 1 V m 0 5 7 - = 0 0 0 1 1 1 1 1 V m 0 5 7 - = 1 1 1 1 1 1 1 12 3 x0A D D V ] 0 : 7 [ 1 S F O V AW /Rh 0 0 ) p e t s / V m 5 2 . 6 ( . 1 S C L A D D V f o t e s f f o e g a t l o V t e s f f o e v i t a g e n = " 1 " ; t e s f f o e v i t i s o p = " 0 " , t i b n g i s s i 7 t i B V m 0 5 7 - / + = s t i m i l r e w o l d n a r e p p U V m 0 + = 0 0 0 0 0 0 0 0 V m 5 2 . 6 + = 1 0 0 0 0 0 0 0 V m 5 7 3 + = 0 0 1 1 1 1 0 0 V m 0 5 7 + = 0 0 0 1 1 1 1 0 V m 0 5 7 + = 1 1 1 1 1 1 1 0 V m 0 - = 0 0 0 0 0 0 0 1 V m 5 2 . 6 - = 1 0 0 0 0 0 0 1 V m 5 7 3 - = 0 0 1 1 1 1 0 1 V m 0 5 7 - = 0 0 0 1 1 1 1 1 V m 0 5 7 - = 1 1 1 1 1 1 1 1 3 3 x0A D D V ] 2 : 3 [ 0 F C I I A ] 0 : 1 [ 1 F C I I AW /Rh 8 8 g n i t t e S y c n e u q e r F n o i t a r e p O A D D V % 0 0 1 = t l u a f e d , 0 S C L A D D V f o r e b m u N e s a h P : ] 4 : 7 [ t i B % 0 0 1 = t l u a f e d , 1 S C L A D D V f o r e b m u N e s a h P : ] 0 : 3 [ t i B ; % 0 8 = 0 0 1 0 ; % 5 7 = 1 1 0 0 ; % 0 7 = 0 1 0 0 ; % 5 6 = 1 0 0 0 ; % 0 6 = 0 0 0 0 ; ) t l u a f e d ( % 0 0 1 = 0 0 0 1 ; % 5 9 = 1 1 1 0 ; % 0 9 = 0 1 1 0 ; % 5 8 = 1 0 1 0 ; % 0 0 2 = 0 0 1 1 ; % 5 7 1 = 1 1 0 1 ; % 0 5 1 = 0 1 0 1 ; % 5 2 1 = 1 0 0 1 % 5 7 2 = 1 1 1 1 ; % 0 5 2 = 0 1 1 1 ; % 5 2 2 = 1 0 1 1 4 3 x0A D D V ] 2 : 3 [ 0 L L C I I A ] 0 : 1 [ 1 L L C I I AW /Rh 6 6 g n i t t e S e n i L d a o L A D D V % 0 0 1 = t l u a f e d , 0 S C L A D D V f o g n i t t e s e n i l d a o L : ] 4 : 7 [ t i B % 0 0 1 = t l u a f e d , 1 S C L A D D V f o g n i t t e s e n i l d a o L : ] 0 : 3 [ t i B ; % 0 8 = 0 0 1 0 ; % 0 7 = 1 1 0 0 ; % 0 6 = 0 1 0 0 ; % 0 4 = 1 0 0 0 ; % 0 = 0 0 0 0 ; % 0 2 1 = 0 0 0 1 ; % 0 1 1 = 1 1 1 0 ; ) t l u a f e d ( % 0 0 1 = 0 1 1 0 ; % 0 9 = 1 0 1 0 ; % 0 6 1 = 0 0 1 1 ; % 0 5 1 = 1 1 0 1 ; % 0 4 1 = 0 1 0 1 ; % 0 3 1 = 1 0 0 1 % 0 9 1 = 1 1 1 1 ; % 0 8 1 = 0 1 1 1 ; % 0 7 1 = 1 0 1 1
25uP9503Q-DS-F0000, June 2017 www.upi-semi.com Functional Description . g e R . r d d A s u c o F l i a R e m a N . g eRs s e c cAt l u a f eDn o i t p i r c s e D 5 3 x0A D D V ] 7 [ N E _ B C A N I A G I _ 1 H P A ] 4 : 6 [ N I A G I _ 2 H P A ] 0 : 2 [ W /Rh 4 4 ,N O = t l u a f e d , n o i t c n u f e c n a l a b t n e r r u c A D D V f o l o r t n o c f f O / nO : ] 7 [ t i B % 0 0 1 = t l u a f e d , t s u j d a n i a g e c n a l a b t n e r r u c 1 e s a h P A D D V : ] 4 :6 [ t i B % 0 0 1 = 0 0 1 ; % 5 . 7 8 = 1 1 0 ; % 5 7 = 0 1 0 ; % 5 . 2 6 = 1 0 0 ; % 0 5 = 0 0 0 % 5 . 7 3 1 = 1 1 1 ; % 5 2 1 = 0 1 1 ; % 5 . 2 1 1 = 1 0 1 ; ) t l u a f e d ( e r a c t ' n o D : ] 3 [ t i B % 0 0 1 = t l u a f e d , t s u j d a n i a g e c n a l a b t n e r r u c 2 e s a h P A D D V : ] 0 :2 [ t i B % 0 0 1 = 0 0 1 ; % 5 . 7 8 = 1 1 0 ; % 5 7 = 0 1 0 ; % 5 . 2 6 = 1 0 0 ; % 0 5 = 0 0 0 % 5 . 7 3 1 = 1 1 1 ; % 5 2 1 = 0 1 1 ; % 5 . 2 1 1 = 1 0 1 ; ) t l u a f e d ( 6 3 x0A D D V ] 4 : 6 [ S O I _ 1 H P A ] 0 : 2 [ S O I _ 2 H P AW /Rh 0 0 e r a c t ' n o D : ] 7 [ t i B A u 0 = t l u a f e d , t e s f f o e c n a l a b t n e r r u c 1 e s a h P A D D V : ] 4 : 6 [ t i B ; A u 8 = 0 0 1 ; A u 6 = 1 1 0 ; A u 4 = 0 1 0 ; A u 2 = 1 0 0 ; ) t l u a f e d ( A u 0 = 0 0 0 A u 4 1 = 1 1 1 ; A u 2 1 = 0 1 1 ; A u 0 1 = 1 0 1 e r a c t ' n o D : ] 3 [ t i B A u 0 = t l u a f e d , t e s f f o e c n a l a b t n e r r u c 2 e s a h P A D D V : ] 0 : 2 [ t i B ; A u 8 = 0 0 1 ; A u 6 = 1 1 0 ; A u 4 = 0 1 0 ; A u 2 = 1 0 0 ; ) t l u a f e d ( A u 0 = 0 0 0 A u 4 1 = 1 1 1 ; A u 2 1 = 0 1 1 ; A u 0 1 = 1 0 1 7 3 x0A D D V ] 4 : 7 [ 1 P M O C R A ] 0 : 3 [ 2 P M O C R AW /Rh 3 7 g n i t t e S r o t s i s e R P M O C R A P M O C R A n o i t a r e p o e s a h p - e l g n i s : ] 4 : 7 [ t i B K 0 2 = t l u a f e d , ) ] 4 : 7 [ + 1 ( x K 5 . 2 = P M O C R A P M O C R A n o i t a r e p o e s a h p - i t l u m : ] 0 : 3 [ t i B K 0 1 = t l u a f e d , ) ] 0 : 3 [ + 1 ( x K 5 . 2 = P M O C R A 8 3 x0A D D V ] 0 : 3 [ P M O C G AW /Rh 0 0 n o i t c e l e s e u l a v m G A T O A D D V n o i t c e l e s e u l a v m G A T O A D D V : ] 3 [ P M O C G A l l i w g n i t t e s ] 0 : 2 [ P M O C G A , ) V / A u 0 2 0 2 ( e u l a v t l u a f e d e s u o t ec r o f = 0 ; ) t l u a f e d ( d e r o n g i e b ] 0 : 2 [ P M O C G A n i t e s e u l a v e h t e s u = 1 l l a o t d e i l p p a , g n i t t e s m G e c n a t c u d n o c s n a r t A D D V : ] 0 : 2 [ P M OC G A ) V / A u 0 2 0 2 = ( t l u a f e d o t o i t a r e h t s a d e n i f e d , r e b m u n e s a h p g ni t a r e p o ; X 5 4 . 1 = 1 1 0 ; X 1 3 . 1 = 0 1 0 ; X 7 1 . 1 = 1 0 0 ; ) t l u a f e d ( X 1 = 0 0 0 X 3 3 . 0 = 1 1 1 ; X 6 . 0 = 0 1 1 ; X 1 8 . 0 = 1 0 1 ; X 9 6 . 1 = 0 0 1 9 3 x0A D D V P M O C _ p m a R A ] 0 : 7 [ W /Rh 8 8 % 0 0 1 = t l u a f e d , n o i t a r e p o e s a h p - i t l u m r o f s i ] 4 : 7 [ P M O C _ p m aR A ; % 0 8 = 0 0 1 0 ; % 5 7 = 1 1 0 0 ; % 0 7 = 0 1 0 0 ; % 5 6 = 1 0 0 0 ; % 0 6 = 0 0 0 0 ; ) t l u a f e d ( % 0 0 1 = 0 0 0 1 ; % 5 9 = 1 1 1 0 ; % 0 9 = 0 1 1 0 ; % 5 8 = 1 0 1 0 ; % 5 2 1 = 1 0 1 1 ; % 0 2 1 = 0 0 1 1 ; % 5 1 1 = 1 1 0 1 ; % 0 1 1 = 0 1 0 1 ; % 5 0 1 = 1 0 0 1 % 5 3 1 = 1 1 1 1 ; % 0 3 1 = 0 1 1 1 % 0 0 1 = t l u a f e d , n o i t a r e p o e s a h p - e l g n i s r o f s i ] 0 : 3 [ P M O C _ p ma R A ; % 0 8 = 0 0 1 0 ; % 5 7 = 1 1 0 0 ; % 0 7 = 0 1 0 0 ; % 5 6 = 1 0 0 0 ; % 0 6 = 0 0 0 0 ; ) t l u a f e d ( % 0 0 1 = 0 0 0 1 ; % 5 9 = 1 1 1 0 ; % 0 9 = 0 1 1 0 ; % 5 8 = 1 0 1 0 ; % 5 2 1 = 1 0 1 1 ; % 0 2 1 = 0 0 1 1 ; % 5 1 1 = 1 1 0 1 ; % 0 1 1 = 0 1 0 1 ; % 5 0 1 = 1 0 0 1 % 5 3 1 = 1 1 1 1 ; % 0 3 1 = 0 1 1 1 A 3 x0A D D V ] 0 : 7 [ A N O M IOR- - g n i t r o p e r A N O M I A D D V B 3 x0A D D V ] 0 : 7 [ A B F VOR- - g n i d a e R e g a t l o V A D D V l a u t c a f o t l u s e r D / A m o r f s i ] 0 : 7 [ A B F V n i s e u l a v g n i d a e r e g a tl o V . t l u a f e d y b e g a t l o v t u p t u o
26 uP9503Q-DS-F0000, June 2017 www.upi-semi.com Functional Description . g e R . r d d A s u c o F l i a R e m a N . g eRs s e c cAt l u a f eDn o i t p i r c s e D C 3 x0A D D V ] 0 : 7 [ 1 c s i M AW /Rh F 0 2 l o r t n o c S F O : ] 7 [ t i B 1 = ] 4 [ t i B n e h w y l n o d i l a v s i ] 7 [ t i B f o e u l a v t r o p e R s u B M S + 2 I V S = " 1 " , s u B M S y l n O = " 0 " l o r t n o C C A D V : ] 6 [ t i B l o r t n o C e t a t S R W P : ] 5 [ t i B 1 l o r t n o c S F O : ] 4 [ t i B ] 7 [ t i B w o l l o F = " 1 " , 2 I V S w o l l o F = " 0 " l o r t n o C P C O l a t o T : ] 3 [ t i B ) t l u a f e d ( e l b a n E = " 1 " , e l b a s i D = " 0 " l o r t n o C P C O e s a h p - r e P : ] 2 [ t i B ) t l u a f e d ( e l b a n E = " 1 " , e l b a s i D = " 0 " l o r t n o C P V O : ] 1 [ t i B ) t l u a f e d ( e l b a n E = " 1 " , e l b a s i D = " 0 " l o r t n o C P V U : ] 0 [ t i B ) t l u a f e d ( e l b a n E = " 1 " , e l b a s i D = " 0 " D 3 x0A D D V ] 0 : 7 [ 2 c s i M AW /Rh 4 0 l o r t n o C e n i L d a o L : ] 7 [ t i B y c n e u q e r f g n i h c t i w s r o f m u r t c e p S d a e r p S : ] 6 [ t i B ) t l u a f e d ( m u r t c e p S d a e r p S e l b a s i D = " 0 " m u r t c e p S d a e r p S e l b a n E = " 1 " . g e R s u B M S f o e c r u o s a t a d e h t f o n o i t c e l e S : ] 5 [ t i B ) ] 0 : 7 [ A B F V ( g n i d a e r e g a t l o v t u p t u o A D D V h B 3 x 0 ) t l u a f e d ( D A m o r F = " 0 " l o r t n o C e l b a n E e s a h P o t u A : ] 4 [ t i B ) t l u a f e d ( e s a h P o t u A e l b a s i D = " 0 " e s a h P o t u A e l b a n E = " 1 " l o r t n o C e l b a n E e n i L d a o L : ] 3 [ t i B ) t l u a f e d ( e n i L d a o L e l b a n E = " 0 " ) 0 = L L ( e n i L d a o L e l b a s i D = " 1 " l o r t n o C e l b a n E M S P : ] 2 [ t i B M S P e l b a s i D = " 0 " ) t l u a f e d ( M S P e l b a n E = " 1 " l o r t n o C e l b a n E M S U : ] : 1 [ t i B ) t l u a f e d ( M S U e l b a s i D = " 0 " M S U e l b a n E = " 1 " E 3 x0A D D V T O H R V _ P M E T A ] 0 : 4 [ W /Rh 5 0 e r a c t ' n o D : ] 7 [ t i B e r a c t ' n o D : ] 6 [ t i B e r a c t ' n o D : ] 5 [ t i B l o r t n o C e l b a n E # T O H R V : ] 4 [ t i B e l b a s i D = " 1 " , ) t l u a f e d ( e l b a n E = " 0 1 9 m o r f e g n a r p m e T , B S L y b t f e l t f i h S : ] 0 : 3 [ t i B o 1 2 1 o t CoC 6 0 1 = t l u a f e do 3 , Co B S L / C ; B S L 2 t f i h S = 0 1 0 0 ; B S L 1 t f i h S = 1 0 0 0 ; t f i h S o N = 0 0 0 0 ) t l u a f e D ( B S L 5 t f i h S = 1 0 1 0 ; B S L 4 t f i h S = 0 0 1 0 ; B S L 3 t f i h S = 1 10 0 ; B S L 8 t f i h S = 0 0 0 1 ; B S L 7 t f i h S = 1 1 1 0 ; B S L 6 t f i h S = 0 1 1 0 B S L 0 1 t f i h S = 0 1 0 1 ; B S L 9 t f i h S = 1 0 0 1 F 3 x0A D D V ] 0 : 7 [ D I V H C L AW /Rh 8 4 V 1 . 1 = h 8 4 = t l u a f e D , r e t s i g e R D I V h c t a L A D D V 4 4 x0A D D V ] 0 : 7 [ 0 M V AW /Rh 0 0
0 S C L > = 0 l e v e L > A N O M I V
e s a h p - 2 r o F ( ) e t a t s t n e r r u c t s e w o l ( 1 S C L > = 0 l e v e L < A N O M I V ) A D D V f o n o i t a r e p o e r a c t ' n o D : ] 0 : 1 [ t i B 6 5 . 2 x ) 4 6 / ] 2 : 7 [ t i B ( = 0 M V A V 6 5 . 2 o t e g a t l o v N O M I o t o i t a r e h t s a d e n i f e d s i g n i t t e s 0 M V A
27uP9503Q-DS-F0000, June 2017 www.upi-semi.com Functional Description . g e R . r d d A s u c o F l i a R e m a N . g eRs s e c cAt l u a f eDn o i t p i r c s e D 5 4 x0A D D V ] 0 : 7 [ M T AORh 0 0 . g n i d a e R e u l a V r o t i n o M l a m r e h T s u B M S A D D V n i p A N E S T r o f n o i s r e v n o c D / A f o e u l a v e h t s e r o t s r e t s i g e r s i hT 6 4 x0A D D V d n I _ t c e t o r P A ] 0 : 6 [ ORh 0 0 d e r e g g i r t s i n o i t c e t o r p h c i h w g n i t a c i d n i , r o t a c i d n i n o i t ce t o r p A D D V e r a c t ' n o D : ] 7 [ t i B r o t a c i d n I P V O : ] 6 [ t i B e v i t c A = " 1 " , e v i t c A t o N = " 0 " r o t a c i d n I P V U : ] 5 [ t i B e v i t c A = " 1 " , e v i t c A t o N = " 0 " r o t a c i d n I P C O : ] 4 [ t i B e v i t c A = " 1 " , e v i t c A t o N = " 0 " r o t a c i d n I P C O e s a h P r e P : ] 3 [ t i B e v i t c A = " 1 " , e v i t c A t o N = " 0 " e r a c t ' n o D : ] 1 : 2 [ t i B
1 H P = " 1 " , 2 H P = " 0 " : ] 0 [ t i B
1 = ] 3 [ t i B n e h w y l n o d i l a v s i ] 0 [ t i B f o e u l a v t r o p e R 7 4 x0D D V ] 4 : 7 [ D S R V s y H D S R V ] 0 : 3 [ W /Rh 0 7 g n i t t e s d l o h s e r h t n w o d t u h s P T O r e l l o r t n o c M W P D D V 2 , s p e t s 6 1 : ] 4 : 7 [ t i Bo p e t s / C 1 1 1 = N D H S _ R Vo , 2 x ) ] 4 : 7 [ t i B ( + C 1 1 1 m o r f e g n a r p m e to 1 4 1 o t Co 5 2 1 = t l u a f e d , CoC g n i t t e S s i s e r e t s y H N D H S _ R V 2 , s p e t s 6 1 : ] 0 : 3 [ t i Bo p e t s / C 2 x ) ] 0 : 3 [ t i B ( = s y H N D H S _ R V 8 4 x0A D D V ] 4 : 7 [ D S R V A s y H D S R V A ] 0 : 3 [ W /Rh 0 7 g n i t t e s d l o h s e r h t n w o d t u h s P T O r e l l o r t n o c M W P D D V 2 , s p e t s 6 1 : ] 4 : 7 [ t i Bo p e t s / C 1 1 1 = N D H S _ R Vo , 2 x ) ] 4 : 7 [ t i B ( + C 1 1 1 m o r f e g n a r p m e to 1 4 1 o t Co 5 2 1 = t l u a f e d , CoC g n i t t e S s i s e r e t s y H N D H S _ R V 2 , s p e t s 6 1 : ] 0 : 3 [ t i Bo p e t s / C 2 x ) ] 0 : 3 [ t i B ( = s y H N D H S _ R V A 4 x0d e r a h s D I P I H CORh 9 2
28 uP9503Q-DS-F0000, June 2017 www.upi-semi.com (Note 1) PHx to GND BOOTx to GND UGx to PHx LGx to GND ESD Rating (Note 2) Package Thermal Resistance (Note 3) Power Dissipation, PD @ TA = 25oC (Note 4) Absolute Maximum Rating Thermal Information Recommended Operation Conditions Note 1. Stresses listed as the above Absolute Maximum Ratings may cause permanent damage to the device. These are for stress ratings. Functional operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to absolute maximum rating conditions for extended periods may remain possibility to affect device reliability. Note 2. Devices are ESD sensitive. Handling precaution recommended. Note 3. θJA is measured in the natural convection at TA = 25oC on a low effective thermal conductivity test board of JEDEC 51-3 thermal measurement standard. Note 4. The device is not guaranteed to function outside its operating conditions.
29uP9503Q-DS-F0000, June 2017 www.upi-semi.com
Electrical Characteristics
r e t e m a r aPl o b m ySs n o i t i d n o C t s eTn iMp yTx a M st i n U t u p n I y l p p u S d l o h s e r h T R O P 5 C CVR O P 5 C C V g n i s i r 5 C CV1 .43 .45 .4V s i s e r e t s y HR O P 5 C CVS Y H R O P 5 C C V --3 .0- -V t n e r r u C y l p p uSI 5 C C V , V 0 =D I V A D D V d n a D D V , V 5 = N E g n i h c t i w s o nMWP --0 1- -A m t n e r r u C n w o d t u hSI N D H S _ 5 C C VV 0 = NE- -0 6- -A u t u p n I y l p p u S 2 1 C C V d l o h s e r h T R O P 2 1 C CVR O P 2 1 C C V g n i s i r 2 1 C CV- -0 1- -V s i s e r e t s y HR O P 2 1 C CVS Y H R O P 2 1 C C V --2- -V t n e r r u C y l p p uSI 2 1 C C V , V 0 =D I V A D D V d n a D D V , V 5 = N E g n i h c t i w s o nMWP --0 52- -A u t n e r r u C n w o d t u hSI N D H S _ 2 1 C C VV 0 = NE- -0 6- -A u t u p n I N E w o L t u p nIV L I --- -8 .0V h g i H t u p nIV H I 2- -- -V t n e r r u Cw o L - l l uPI L P _ N E 123 A u ) n g i s e d y b d e e t n a r a u G ( s r e t e m a r a P g n i m i T s u B 2 I V S d o i r e PC VST D O I R E P 6 . 74- -- -s n y c n e u q e r FC VSF C V S 1 .0- -1 2z H M e m i T h g i HC VST H G I H 02- -- -s n e m i T w o L C VST W O L 03- -- -s n C V S o t e m i T p u t e S T V S , D V S e g d e g n i s i r T p u t e S 5- -- -s n C V Sm o r f e m i T d l o H T V S , D V S e g d e g n i l l a f T d l o H 5- -- -s n C V S o t e m i T t r a t S T V S , D V S e g d e g n i l l a f T T R A T S 51- -- -s n C V Sm o r f e m i T p o t S T V S , D V S e g d e g n i s i r T P O T S 5- -- -s n e m i T l l a F , T V S , D V S , C VST L L A F V C D _ H OV o tC D _ L O --- -1 s n e m i T e s i R , T V S , D V S , C VST E S I R V C D _ L OV o tC D _ H O --- -1 s n (VCC5 = 5V, VCC12 = 12V, TA = 25oC, unless otherwise specified)
30 uP9503Q-DS-F0000, June 2017 www.upi-semi.com r e t e m a r aPl o b m ySs n o i t i d n o C t s eTn iMp yTx a M st i n U
2 I V S
t u p n i K O R W P d n a T V S , D V S , C V S e g a t l o V w o L V C D _ L I 0- - * 5 3 . 0 O I D D VV t u p n i K O R W P d n a T V S , D V S , C V S e g a t l o V h g i HV C D _ H I * 7 . 0 O I D D V- - O I D D VV K O R W P d n a T V S , D V S , C V S e g a t l o V s i s e r e t s y HV T S Y H * 1 . 0 O I D D V--- - V t u p t u O l e v e L w o L T V S , D V S , C V S e g a t l o V V L O 0- -2 . 0 V t u p t u O l e v e L h g i H T V S , D V S , C V S e g a t l o V V H O O I D D V 2 . 0 -- - O I D D VV t n e r r u C t u p t u O T V S , D V S , C VSI H O V g n i v i r d n e h wH O 4- -- - A m t u p n I K O R W P , T V S , D V S , C V S t n e r r u C e g a k a e LIL 0 0 1 -- - 0 0 1 A u e g a k a e L t u p t u O Z h g i HD V S t n e r r u C IZ O 0 0 1-- -0 0 1 A u s e c n a t i c a p a C t u p n I T V S , D V S , C VSC N I n g i s e d y b d e e t n a r a u G--- -5 F p C D A d n a y r t e m e l e T y c a r u c c AC D A V 2 . 1 o t V 8 .01 -- - 1 B S L V 8 . 0 < r o V 2 . 1>2 -- - 2 ) A C A D , C A D ( y c a r u c c A e g a t l o VC A D y c a r u c c A e g a t l o VC ADV C A D V 8 . 0 < D I V < V 5 .05 1-- -5 1V m V 0 . 1 < D I V < V 8 .00 1-- -0 1V m V 5 5 . 1 < D I V < V 0 .11 -- -1 % ) A C A D , C A D ( e t a Rw e l S e t a Rw e lSR S8 212 2 / V m s u r e i f i l p m A r o r r E eg a t l o V t e s f fOV ) A E ( S O 1-- -1 V m e c n a t c u d n o C - s n a rTM G- -0 2 02- -V / A u t c u d o r P h t d i w d n a B n i aGG ) A E ( W B n g i s e D y b d e e t n a r a uG- -0 1- -z H M g n i t t e S e m i T - n OMW P e m i T n OMWPT N O , V 2 . 1 = D I V , V 2 1 = N E S N I V R T E S N O Tk 0 5 =Ω z H k 0 0 2 = w s F ,--0 05- -s n e m i T - f f Om u m i n iMT N I M _ F F O n o i t a r e p o e s a h p e l g n iS- -0 03- -s n g n i mm u S t n e r r u C l a t o T r o f r e i f i l p m A e s n e S t n e r r u C e g a t l o V t e s f fOV ) A S C ( S O 1-- -1 V m t n e r r u C s a i B t u p nII ) A S C ( C BV x P S C n g i s e d y b d e e t n a r a u g , V 2 . 1=0 1-- -0 1A n
31uP9503Q-DS-F0000, June 2017 www.upi-semi.com r e t e m a r aPl o b m ySs n o i t i d n o C t s eTn iMp yTx a M st i n U ) d ' t n o c ( g n i mm u S t n e r r u C l a t o T r o f r e i f i l p m A e s n e S t n e r r u C t n e r r u C g n i c r u o Sm u m i x aMI C R S X A M 0 01- -- -A u t c u d o r P h t d i w d n a B n i aGG ) A S C ( W B n g i s e D y b d e e t n a r a uG- -0 1- -z H M e c n a l a B t n e r r u C e s a h P r o f r e i f i l p m A e s n e S t n e r r u C e g a t l o V t e s f fOV ) A S C ( S O 1-- -1V m t n e r r u C s a i B t u p nII ) A S C ( C BV x P S C n g i s e d y b d e e t n a r a u g , V 2 . 1=0 1-- -0 1A n t n e r r u C g n i c r u o Sm u m i x aMI C R S X A M 0 01- -- -A u t c u d o r P h t d i w d n a B n i aGG ) A S C ( W B n g i s e D y b d e e t n a r a uG- -0 1- -z H M t u p t u OMWP e g a t l o Vw o L t u p t uOV ) M W P ( L OI K N I S A m 4=- -- -2 .0V e g a t l o V h g i H t u p t uOV ) M W P ( H OI E C R U O SA m 4=7 .4- -- -V e g a k a e L e t a t S e c n a d e p m I h g i H I 0 k a e l _ M W PV M W P V 0=1 -- -0A u I 1 k a e l _ M W PV M W P V 5=0 --1 A u p o o r D r o f g n i r o t i n o M t n e r r u C D D V r o f o i t a R r o r r i M t n e r r uCI P A E I o tN S C o i t ar5 90 015 01% A D D V r o f o i t a R r o r r i M t n e r r uCI A P A EI o tA N S Co i t ar5 90 015 01% s r e v i r D e t a GT E F S O M e c r u o S e t a G r e p pUR C R S _ G U V , A m 0 8 = t n e r r u c e c r u o sT O O BV -H P V 2 1 =--2 4 Ω k n i S e t a G r e p pUR K N S _ G U V , A m 0 8 = t n e r r u c k n i sT O O BV -H P V 2 1 = --1 2 Ω e c r u o S e t a G r e w oLR C R S _ G L A m 0 8 = t n e r r u c e c r u o s--2 4 Ω k n i S e t a G r e w oLR K N S _ G L A m 0 8 = t n e r r u c k n i s--8 .06 . 1 Ω e m i T d a eDT G L - G U _ T D V 1 > G L o t V 1 < G Um o r f --0 3- -s n e m i T d a eDT G U - G L _ T D V 1 > G U o t V 1 < G L m o r f--0 3- -s n e d o i Dp a r t s t s o o B e g a t l o V d r a w r o F A m 5 . 3 = t n e r r u c s a i b d r a w r o F--3 3 .0- -V K O P , # T O H R V e g a t l o Vw o L t u p t uOV L O I K N I S A m 4=- -- -2 .0V t n e r r u C e g a k a e L t u p t uOI L V 5 o t p u l l uP- -- -1 A u n o i t c e t o r P t n e r r u C r e v O D D V r o f o i t a R r o r r i M t n e r r uCI N O M I o tN S C o i t ar5 90 015 01% A D D V r o f o i t a R r o r r i M t n e r r uCI A N O MI o tA N S Co i t ar5 90 015 01% d l o h s e r h T P C O t n e r r u C l a t oTV P C O _ N O M I 4 5 .26 5 .28 5 .2V e m i T y a l e DP C O t n e r r u C l a t oTT Y A L E D _ 1 P C O --0 2- -s u
32 uP9503Q-DS-F0000, June 2017 www.upi-semi.com r e t e m a r aPl o b m ySs n o i t i d n o C t s eTn iMp yTx a M st i n U ) d ' t n o c ( n o i t c e t o r P t n e r r u C r e v O d l o h s e r h T P C Oe s a h P - r ePI 2 P C O I e r u s a e MX N S C t n e r r uc- -0 01- -A u e m i T y a l e DP C Oe s a h P - r ePT Y A L E D _ 2 P C O --6- -s u n o i t c e t o r P e g a t l o V r e d n U d l o h s e r h T P VUV P V U V P A EV -B FV ; A P A EV -A B F 0 035 230 53V m e m i T y a l e DP VUT P V U --8- -s u n o i t c e t o r P e g a t l o V r e v O d l o h s e r h T P VOV P V O V B F V -P A EV ;A B FV - A P A E 0 035 230 53V m e m i T y a l e DP VOT P V O --6- -s u n o i t c e t o r P n w o d t u h S l a m r e h T d l o h s e r h T P TOT P T O --0 61- - oC g n i r o t i n o M l a m r e h T d l o h s e r h T t r e s s A # T O H RVV R _ N E S T 6 0 1 = t l u s e r C D A e r u t a r e p m e To , C e g a t l o v A N E S T / N E S T e r u s a e m- - 3 8 3 . 4--V d l o h s e r h T t r e s s A - e D # T O H RVV F _ N E S T 2 0 1 = t l u s e r C D A e r u t a r e p m e To , C e g a t l o v A N E S T / N E S T e r u s a e m- - 6 2 3 . 4--V
33uP9503Q-DS-F0000, June 2017 www.upi-semi.com EN (5V/Div) VDD (500mV/Div) POK (5V/Div) VDDA (500mV/Div) EN (5V/Div) VDD (500mV/Div) POK (5V/Div) VDDA (500mV/Div) SVC (2V/Div) VDD (500mV/Div) SVT (2V/Div) SVD (2V/Div) SVC (2V/Div) VDD (500mV/Div) SVT (2V/Div) SVD (2V/Div) SVC (2V/Div) VDD (500mV/Div) SVT (2V/Div) SVD (2V/Div) SVC (2V/Div) VDD (500mV/Div) SVT (2V/Div) SVD (2V/Div) Typical Operation Characteristics VDD VR Dynamic VID Up Time : 10us/Div VID = 1V to 1.2V, ILOAD = 45A Power On from EN Time : 100us/Div VIN = 12V, no load Power Off from EN Time : 1ms/Div VIN = 12V, IOUT = 1A VDD VR Dynamic VID Up Time : 10us/Div VID = 0.4V to 1V, ILOAD = 9A VDD VR Dynamic VID Up Time : 10us/Div VID = 1V to 1.06875V, ILOAD = 45A VDD VR Dynamic VID Up Time : 10us/Div VID = 1V to 1.1V, ILOAD = 45A
34 uP9503Q-DS-F0000, June 2017 www.upi-semi.com UGATE1 (20V/Div) VDD (1V/Div) POK (5V/Div) IOUT (50A/Div) UGATE1 (20V/Div) VFB (1V/Div) POK (5V/Div) LGATE1 (10V/Div) VDD (100mV/Div) SVC (2V/Div) VDD (500mV/Div) SVT (2V/Div) SVD (2V/Div) VDD VR Dynamic VID Up Time : 10us/Div VID = 1V to 1.4V, ILOAD = 45A Typical Operation Characteristics VDD VR Load Transient Time : 10us/Div FLOAD = 10kHz, VDD = 1V, ILOAD = 35A ~ 120A VDD VR OVP Time : 4us/Div VDD VR OCP Time : 200us/Div
35uP9503Q-DS-F0000, June 2017 www.upi-semi.com VDDA (100mV/Div) SVC (2V/Div) VDDA (500mV/Div) SVT (2V/Div) SVD (2V/Div) SVC (2V/Div) VDDA (500mV/Div) SVT (2V/Div) SVD (2V/Div) SVC (2V/Div) VDDA (500mV/Div) SVT (2V/Div) SVD (2V/Div) SVC (2V/Div) VDDA (500mV/Div) SVT (2V/Div) SVD (2V/Div) SVC (2V/Div) VDDA (500mV/Div) SVT (2V/Div) SVD (2V/Div) VDDA VR Dynamic VID Up Time : 10us/Div VID = 1V to 1.4V, ILOAD = 20.5A VDDA VR Load Transient Time : 10us/Div FLOAD = 10kHz, VDDA = 1V, ILOAD = 20A ~ 60A Typical Operation Characteristics VDDA VR Dynamic VID Up Time : 10us/Div VID = 1V to 1.2V, ILOAD = 20.5A VDDA VR Dynamic VID Up Time : 10us/Div VID = 0.4V to 1V, ILOAD = 4.1A VDDA VR Dynamic VID Up Time : 10us/Div VID = 1V to 1.06875V, ILOAD = 20.5A VDDA VR Dynamic VID Up Time : 10us/Div VID = 1V to 1.1V, ILOAD = 20.5A
36 uP9503Q-DS-F0000, June 2017 www.upi-semi.com UGATE1A (20V/Div) VDDA (1V/Div) POK (5V/Div) IOUT (50A/Div) UGATE1A (20V/Div) VFBA (1V/Div) POK (5V/Div) LGATE1A (10V/Div) Typical Operation Characteristics VDDA VR OVP Time : 4us/Div VDDA VR OCP Time : 200us/Div
37uP9503Q-DS-F0000, June 2017 www.upi-semi.com
Package Information
1.Package Outline Unit Description: BSC: Basic. Represents theoretical exact dimension or dimension target MIN: Minimum dimension specified. MAX: Maximum dimension specified. REF: Reference. Represents dimension for reference use only. This value is not a device specification. TYP. Typical. Provided as a general value. This value is not a device specification. 2.Dimensions in Millimeters. 3.Drawing not to scale. 4.These dimensions do not include mold flash or protrusions. Mold flash or protrusions shall not exceed 0.15mm. VQFN6x6 - 52L Package 5.90 - 6.10 Pin 1 mark Bottom View - Exposed Pad 0.15 - 0.25 5.90 - 6.10 0.00 - 0.05 0.20 REF 0.80 -1.00 0.30 - 0.40 0.13 - 0.23
38 uP9503Q-DS-F0000, June 2017 www.upi-semi.com Important Notice uPI and its subsidiaries reserve the right to make corrections, modifications, enhancements, improvements, and other changes to its products and services at any time and to discontinue any product or service without notice. Customers should obtain the latest relevant information before placing orders and should verify that such information is current and complete. uPI products are sold subject to the taerms and conditions of sale supplied at the time of order acknowledgment. However, no responsibility is assumed by uPI or its subsidiaries for its use or application of any product or circuit; nor for any infringements of patents or other rights of third parties which may result from its use or application, including but not limited to any consequential or incidental damages. No uPI components are designed, intended or authorized for use in military, aerospace, automotive applications nor in systems for surgical implantation or life-sustaining. No license is granted by implication or otherwise under any patent or patent rights of uPI or its subsidiaries. COPYRIGHT ( C ) 2016, UPI SEMICONDUCTOR CORP. uPI Semiconductor Corp. Headquarter 9F.,No.5, Taiyuan 1st St. Zhubei City, Hsinchu Taiwan, R.O.C. uPI Semiconductor Corp. Sales Branch Office 12F-5, No. 408, Ruiguang Rd. Neihu District, Taipei Taiwan, R.O.C.