LCD Segment Drivers Standard Segment Drivers BU9795AKV/FV/GUW,BU9794AKV,BU97950FUV/KS Rev.B 1/15

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LCD Segment Drivers Standard Segment Drivers BU9795AKV/FV/GUW,BU9794AKV,BU97950FUV/KS2 No.11044EBT06 Description ROHM standard function segment series achieve UltraLow power consumption. Also these s need not external components. And this series is very simple that only has segment function. So, these series are very suitable to add in LCD display function for various applications. Features (BU9795AKV/FV/GUW, BU9794AKV) 1) 3wire serial interface 2) Integrated RAM for display data (DDRAM) 3) Power supply circuit for LCD driving 1/2, 1/3Bias selectable 1/4Duty Integrated Buffer AMP 4) Integrated Oscillation circuit 5) Integrated Poweron Reset circuit 6) No external components 7) Support blink function 8) Support standby mode 9) Low voltage / Ultra low power consumption design 10) Support unity voltage supply (BU9795AKV/FV/GUW) 11) Support Independent power supply circuit for LCD driving (BU9794AKV) Features (BU97950FUV/KS2) 1) 2wire serial interface 2) Integrated RAM for display data (DDRAM) 3) Integrated Power supply circuit for LCD driving 1/4 Bias 1/8 Duty Integrated Buffer AMP 4) Integrated Oscillation circuit 5) Integrated Poweron Reset circuit 6) No external components 7) Support standby mode 8) Low voltage / Ultra low power consumption design 9) Integrated Electrical volume register (EVR) function 10) Support Register Read function 11) Support Independent power supply circuit for LCD driving Applications Telephone, FAX, Portable equipment (POS, ECR, PDA etc.), DSC, Digital video camera, Home electrical appliance, Meter equipment, Healthcare equipment etc. 1/15 2011.11 Rev.B

Line up matrix BU9795A BU97950 BU9794AKV KV FV GUW FUV KS2 Segment output 35 27 31 50 35 35 Common output 4 4 4 4 8 8 Total display dot number 140 108 124 200 280 280 Adjustable contrast function Yes Yes Support split voltage supply Yes Yes Yes Interface 3wire 3wire 3wire 3wire 2wire 2wire Package VQFP48C SSOPB40 VBGA48W040 VQFP64 TSSOPC48V SQFPT52 Absolute maximum ratings (=0V) BU9795AKV /FV/GUW BU9794AKV BU97950FUV /KS2 Remarks Power Supply Voltage 1 () Power Supply Voltage 2 () Allowable Loss (Pd) Input Voltage Range (VIN) Operational Temperature Range (Topr) 0.5~7.0 V Power supply LCD drive 0.5~ 0.5~7.0 0.5~7.0 V Voltage 0.6* 1 0.7* 2 0.75* 4 0.64 *5 0.27* 3 0.85 *6 W Allowable loss at package only 0.5~0.5 40~85 V Storage Temperature Range (Tstg) *1 When use more than Ta=25 C, subtract 6.0mW per degree (BU9795AKV) *2 When use more than Ta=25 C, subtract 7.0mW per degree (BU9795AFV) *3 When use more than Ta=25 C, subtract 2.7mW per degree (BU9795AGUW) *4 When use more than Ta=25 C, subtract 7.5mW per degree (BU9794AKV) *5 When use more than Ta=25 C, subtract 6.4mW per degree (BU97950FUV) *6 When use more than Ta=25 C, subtract 8.5mW per degree (BU97950FUV) 55~125 Recommend operating conditions (Ta=40~85 C, =0V) BU9795AKV /FV/GUW * 7 BU9794AKV BU97950KV/KS2 Remarks MIN TYP MAX MIN TYP MAX MIN TYP MAX Power Supply Voltage 1 () 2.5 5.5 2.5 5.5 2.5 5.5 V Power supply Power Supply Voltage 2 () 0 2.4 2.5 5.5 2.5 5.5 V LCD drive Voltage *7 Please use 2.4V condition. 2/15 2011.11 Rev.B

Electrical characteristics <BU9795AKV/FV/GUW> DC Characteristics (=2.5~5.5V, =0V, Ta=40~85 C, unless otherwise specified) Limits Symbol MIN TYP MAX Condition H level input voltage VIH 0.7 V SD,, CSB L level input voltage VIL 0.3 V SD,, CSB H level input current IIH 1 µa SD,, CSB L level input current IIL 1 µa SD,, CSB LCD Driver on resistance SEG RON 3.5 kω Iload=±10µA COM RON 3.5 kω supply voltage 0 2.4 V 2.4V Standby current Ist 5 µa Display off, Oscillator off Power consumption 1 IDD1 12.5 30 µa Power consumption 2 IDD2 20 40 µa =3.3[V], Ta=25 C, Power save mode1, FR=70Hz 1/3 bias, Frame inverse =3.3[V], Ta=25 C, Normal mode, FR=80Hz 1/3 bias, Line inverse Oscillation Characteristics (=2.5~5.5V,=0V, Ta=40~85 C) Limits Symbol MIN TYP MAX Condition Frame frequency fclk 56 80 104 Hz FR = 80Hz setting Frame frequency1 fclk1 70 80 90 Hz =3.5V, 25 C MPU interface Characteristics(=2.5V~5.5V,=0V, Ta=40~85 C) Limits Symbol MIN TYP MAX Condition Input rise time tr 80 ns Input fall time tf 80 ns cycle time tscyc 400 ns H pulse width tshw 100 ns L pulse width tslw 100 ns SD setup time tsds 20 ns SD hold time tsdh 50 ns CSB setup time tcss 50 ns CSB hold time tcsh 50 ns H CSB pulse width tchw 50 ns tchw CSB tf tcss tscyc tr tcsh tslw tshw tsds tsdh SD Fig.1 Interface Timing (BU9795AKV/FV/GUW) 3/15 2011.11 Rev.B

<BU9794AKV> DC Characteristics (=2.5~5.5V, =2.5~5.5V, =0V, Ta=40~85 C, unless otherwise specified) Symbol Limits MIN TYP MAX Condition H level input voltage VIH 0.8 V SD,,CSB L level input voltage VIL 0.2 V SD,,CSB H level input current IIH 1 µa SD,,CSB L level input current IIL 1 µa SD,,CSB LCD Driver on resistance SEG RON 3.5 kω Iload=±10µA COM RON 3.5 kω Standby current Ist 5 µa Display off, Oscillation off Power consumption 1 IDD 5 15 µa Power consumption 2 ILCD 10 20 µa =3.3V, =5V, Ta=25 C Power save mode1, FR=70Hz 1/3 bias, Frame inverse =3.3V, =5V, Ta=25 C Power save mode1, FR=70Hz 1/3 bias, Frame inverse Oscillation Characteristics (=2.5~5.5V, =2.5~5.5V, =0V, Ta=40~85 C, unless otherwise specified) Limits Symbol Condition MIN TYP MAX Frame frequency fclk 68 80 92 Hz FR = 80Hz setting, =3.3V MPU interface Characteristics (=2.5~5.5V, =2.5~5.5V, =0V, Ta=40~85 C, unless otherwise specified) Symbol Limits MIN. TYP. MAX. Condition Input rise time tr 80 ns Input fall time tf 80 ns cycle time tscyc 400 ns H pulse width tshw 100 ns L pulse width tslw 100 ns SD setup time tsds 20 ns SD hold time tsdh 50 ns CSB setup time tcss 50 ns CSB hold time tcsh 50 ns H CSB pulse time tchw 50 ns tchw CSB tcss tcsh tf tscyc tr tslw tshw tsds tsdh SD Fig.2 Interface Timing (BU9794AKV) 4/15 2011.11 Rev.B

<BU97950FUV/KS2> DC Characteristics (=2.5~5.5V, =2.5~5.5V, =0V, Ta=40~85 ºC, unless otherwise specified) Symbol Limits MIN TYP MAX Conditions H level input voltage VIH 0.7 V SDA, L level input voltage VIL 0.3 V SDA, H level input current IIH 1 µa SDA, L level input current IIL 1 µa SDA, LCD Driver on resistance SEG RON 3.5 kω Iload=±10µA COM RON 3.5 kω Standby current Ist 5 µa Display off, Oscillation off Power consumption 1 IDD 2.5 15 µa =3.3V, =5V, Ta=25 ºC Power save mode1, FR=80Hz 1/4 bias, Frame inverse Power consumption 2 ILCD 10 20 µa =3.3V, =5V, Ta=25 ºC Power save mode1, FR=80Hz 1/4 bias, Frame inverse Oscillation Characteristics (=2.5~5.5V, =0V, Ta=40~85 C, unless otherwise specified) Limits Symbol Condition MIN TYP MAX Frame frequency fclk 56 80 104 Hz Power save mode FR = Normal mode MPU interface Characteristics (=2.5~5.5V, =0V, =0V, Ta=40~85 C, unless otherwise specified) Symbol Limits MIN. TYP. MAX. Condition Input rise time tr 0.3 µs Input fall time tf 0.3 µs cycle time tscyc 2.5 µs H pulse width tshw 0.6 µs L pulse width tslw 1.3 µs SDA setup time tsds 100 ns SDA hold time tsdh 100 ns Bus free time tbuf 1.3 µs START condition hold time thd;sta 0.6 µs START condition setup time tsu;sta 0.6 µs STOP condition setup time tsu;sto 0.6 µs SDA t BUF tslw tr tf tscyc S CL SDA thd;sta tr tsdh tshw tsds tsu;sta t SU;STO Fig.3 interface timing (BU97950FUV) 5/15 2011.11 Rev.B

Block Diagram / Pin Arrangement / Terminal Description <BU9795AKV> Block Diagram Pin Arrangement COM0 COM3 SEG0 SEG34 LCD voltage generator Segment 36 COM0 SEG34 SEG33 SEG32 SEG31 SEG30 SEG29 SEG28 SEG27 SEG26 SEG25 SEG24 25 LCD BIAS SELECTOR 37 COM1 COM2 COM3 24 SEG23 SEG22 SEG21 counter blink timing generator DDRAM SEG20 SEG19 SEG18 SEG17 INHb OSCILLATOR Power On Reset register serial inter face Data Decoder CSB SD TEST INHb 48 SEG16 SEG15 SEG14 SEG13 SEG12 13 IF FILTER 1 SEG0 SEG1 SEG2 SEG3 SEG4 SEG5 SEG6 SEG7 SEG8 SEG9 SEG10 SEG11 12 12 TEST CSB SD Fig.4 Block Diagram (BU9795AKV) Fig.5 Pin Arrangement (BU9795AKV) Terminal Description Terminal Terminal No. I/O Function INHb 48 I TEST 47 I 43 I Input terminal for turn off display H: turn on display L: turn off display Test input (ROHM use only) Must be connect to External clock input Ext clock and Int clock can be changed by command. Must be connect to when use internal oscillation circuit. SD 46 I serial data input 45 I serial data transfer clock CSB 44 I Chip select : L active 42 GND 41 Power supply 40 Power supply for LCD driving SEG034 135 O SEGMENT output for LCD driving COM03 3639 O COMMON output for LCD driving 6/15 2011.11 Rev.B

<BU9795AFV> Block Diagram Pin Arrangement COM0 COM3 SEG4 SEG30 LCD voltage generator Segment LCD BIAS SELECTOR counter blink timing generator DDRAM INHb register Data Decoder SEG8 SEG9 SEG10 SEG11 SEG12 SEG13 SEG14 SEG15 SEG16 SEG17 SEG18 SEG19 SEG20 SEG21 SEG22 SEG23 SEG24 SEG7 SEG6 SEG5 SEG4 INHb TEST SDA CSB COM3 COM2 COM1 COM0 SEG30 SEG29 SEG28 40 21 1 20 SEG25 SEG26 SEG27 OSCILLATOR Power On Reset serial inter face IF FILTER TEST CSB SD Fig.6 Block Diagram (BU9795AFV) Fig.7 Pin Arrangement (BU9795AFV) Terminal Description Terminal Terminal No. I/O Function INHb 36 I TEST 35 I 31 I Input terminal for turn off display H: turn on display L: turn off display Test input (ROHM use only) Must be connect to External clock input Ex clock and Int clock can be changed by command. Must be connect to when use internal oscillation circuit. SD 34 I serial data input 33 I serial data transfer clock CSB 32 I Chip select : L active 30 GND 29 Power supply 28 I Power supply for LCD driving SEG430 123, 3740 O SEGMENT output for LCD driving COM03 2427 O COMMON output for LCD driving 7/15 2011.11 Rev.B

<BU9795AGUW> Block Diagram Pin Arrangement COM0 COM3 SEG2 SEG32 1 2 3 4 5 6 7 LCD voltage generator Segment G (NC) SEG13 SEG15 SEG18 SEG20 SEG22 (NC) F SEG11 SEG12 SEG16 SEG17 SEG21 SEG23 SEG24 LCD BIAS SELECTOR counter blink timing generator DDRAM E SEG9 SEG10 SEG14 SEG19 SEG25 SEG27 SEG26 D SEG7 SEG6 SEG8 SEG5 SEG30 SEG28 SEG29 INHb register Data Decoder C SEG4 SEG3 SEG2 CSB COM3 SEG32 SEG31 OSCILLATOR Power On Reset serial inter face B INHb SD COM1 COM0 IF FILTER A (NC) TEST2 COM2 (NC) TEST CSB SD Fig.8 Block Diagram (BU9795AGUW) Fig.9 Pin Arrangement (BU9795AGUW) Terminal Description Terminal I/O Function INHb TEST I I I Input terminal for turn off display H: turn on display L: turn off display Test input (ROHM use only) Must be connect to External clock input Ex clock and Int clock can be changed by command. Must be connect to when use internal oscillation circuit. SD I serial data input I serial data transfer clock CSB I Chip select : L active GND Power supply I Power supply for LCD driving SEG232 O SEGMENT output for LCD driving COM03 O COMMON output for LCD driving (Caution) About terminal number, please refer to above pin arrangement 8/15 2011.11 Rev.B

<BU9794AKV> Block Diagram Pin Arrangement COM0 COM3 SEG0 SEG49 LCD voltage generator Segment 48 SEG37 SEG36 SEG35 SEG34 SEG33 SEG32 SEG31 SEG30 SEG29 SEG28 SEG27 SEG26 SEG25 SEG24 SEG23 SEG22 33 49 SEG38 32 SEG21 SEG39 SEG20 LCD BIAS SELECTOR counter blink timing generator DDRAM SEG40 SEG41 SEG42 SEG43 SEG44 SEG19 SEG18 SEG17 SEG16 SEG15 SEG45 SEG14 SEG46 SEG13 INHb register Data Decoder SEG47 SEG48 SEG49 COM0 COM1 SEG12 SEG11 SEG10 SEG9 SEG8 OSCILLATOR Power On Reset serial inter face COM2 COM3 64 SEG7 SEG6 17 IF FILTER 1 CSB SD INHb TEST1 TEST2 SEG0 SEG1 SEG2 SEG3 SEG4 SEG5 16 16 TEST2 TEST1 CSB SD Fig.10 Block Diagram (BU9794AKV) Fig.11 Pin Arrangement (BU9794AKV) Terminal Description Terminal Terminal No. I/O Function INHb 8 I TEST1 9 I TEST2 10 I 4 I Input terminal for turn off display H: turn on display, L: turn off display Test input (ROHM use only) Must be connect to Test input (ROHM use only) Must be connect to External clock input Ex clock and Int clock can be changed by command. Must be connect to when use internal oscillation circuit. SD 7 I serial data input 6 I serial data transfer clock CSB 5 I Chip select : L active 3 GND 2 Power supply 1 Power supply for LCD driving SEG049 1160 O SEGMENT output for LCD driving COM03 6164 O COMMON output for LCD driving 9/15 2011.11 Rev.B

<BU97950FUV> Block Diagram Pin Arrangement COM0 COM7 SEG0 SEG34 LCD voltage generator Segment LCD BIAS SELECTOR SDA SEG21 SEG22 SEG23 SEG24 SEG25 SEG26 SEG27 SEG28 SEG29 SEG30 SEG31 SEG32 SEG33 SEG34 COM0 COM1 COM2 COM3 COM4 COM5 COM6 COM7 counter DDRAM OSCILLATOR Power On Reset register serial inter face Data Decoder SEG20 SEG19 SEG18 SEG17 SEG16 SEG15 SEG14 SEG13 SEG12 SEG11 SEG10 SEG9 SEG8 SEG7 SEG6 SEG5 SEG4 SEG3 SEG2 SEG1 SEG0 IF FILTER SDA Fig.12 Block Diagram (BU97950FUV) Fig.13 Pin Arrangement (BU97950FUV) Terminal Description Terminal Terminal No. I/O Function SDA 48 I/O serial data input register read data output port 47 I serial data transfer clock 3 I GND 1 I Power supply 2 I Power supply for LCD driving SEG035 424 3346 O SEGMENT output for LCD driving COM07 2532 O COMMON output for LCD driving 10/15 2011.11 Rev.B

<BU97950KS2> Block Diagram Pin Arrangement LCD voltage generator COM0 COM7 SEG0 SEG34 Segment 39 40 SEG5 SEG6 SEG7 SEG8 SEG9 SEG10 SEG11 SEG12 SEG13 SEG14 SEG15 SEG16 NC SEG17 27 26 SEG18 SEG4 SEG19 LCD BIAS SELECTOR counter DDRAM SEG3 SEG2 SEG1 SEG0 COM7 SEG20 SDA COM6 COM5 SEG21 register Data Decoder COM4 COM3 SEG22 SEG23 OSCILLATOR Power On Reset serial inter face IF FILTER COM2 COM1 52 1 13 14 SEG24 SEG25 SDA NC COM0 SEG34 SEG33 SEG32 SEG31 SEG30 SEG29 SEG28 SEG27 SEG26 NC NC Fig.14 Block Diagram (BU97950KS2) Fig.15 Pin Arrangement (BU97950KS2) Terminal Description Terminal Terminal No. I/O Function SDA 20 I/O serial data input 19 I serial data transfer clock 23 I GND 21 I Power supply 22 I Power supply for LCD driving SEG035 311 2427 2945 O SEGMENT output for LCD driving COM07 2 4652 O COMMON output for LCD driving NC 1,12,13,28 No connected 11/15 2011.11 Rev.B

IO Equivalent Circuit <BU9795AKV/FV/GUW> SD, CSB, INHb, TEST SEG/COM Fig.16 I/O equivalent circuit (BU9795AKV/FV/GUW) <BU9794AKV> CSB, SD, SEG/COM INHb,TEST1,TEST2 Fig.17 I/O equivalent circuit (BU9794AKV) 12/15 2011.11 Rev.B

<BU97950FUV> SDA SEG/COM Fig.18 I/O equivalent circuit (BU97950FUV/KS2) 13/15 2011.11 Rev.B

Ordering part number B U 9 7 9 4 A K V E 2 Part No. Part No. BU9794A BU9795A BU97950 Package FV : SSOPB40 GUW : VBGA048W040 KV : VQFP48C KV : VQFP64 FUV : TSSOPC48V KS2 : SQFPT52 Packaging and forming specification E2: Embossed tape and reel SSOPB40 13.6 ± 0.2 (MAX 13.95 include BURR) <Tape and Reel information> Tape Embossed carrier tape Quantity 2000pcs 7.8 ± 0.3 5.4 ± 0.2 40 21 0.5 ± 0.2 Direction of feed E2 The direction is the 1pin of product is at the upper left when you hold reel on the left hand and you pull out the tape on the right hand ( ) 1 20 1.8 ± 0.1 0.1 0.65 0.22 ± 0.1 0.08 M 0.1 S 0.15 ± 0.1 ( : mm) Reel Direction of feed 1pin Order quantity needs to be multiple of the minimum quantity. VBGA048W040 1PIN MARK 4.0±0.1 4.0±0.1 0.10 0.9MAX S <Tape and Reel information> Tape Embossed carrier tape (with dry pack) Quantity 2500pcs Direction of feed E2 The direction is the 1pin of product is at the upper left when you hold reel on the left hand and you pull out the tape on the right hand ( ) 0.08 S 0.5±0.1 P=0.5 6 48φ0.295±0.05 A 0.5 φ0.05 S AB G M F E B D C B A 1 2 3 4 5 6 7 0.5±0.1 0.5 P=0.5 6 ( : mm) Reel 1pin Direction of feed Order quantity needs to be multiple of the minimum quantity. TSSOPC48V 12.5±0.1 (MAX 12.85 include BURR) 48 25 6 4 4 <Tape and Reel information> Tape Embossed carrier tape (with dry pack) Quantity 2000pcs 8.1±0.2 6.1±0.1 0.5±0.15 1.0±0.2 Direction of feed E2 The direction is the 1pin of product is at the upper left when you hold reel on the left hand and you pull out the tape on the right hand ( ) 1 24 0.5 1PIN MARK 0.17 0.05 0.03 1.0MAX S 0.85±0.05 0.08±0.08 0.5 0.08 S 0.05 0.22 0.04 0.08 M ( : mm) Reel 1pin Direction of feed Order quantity needs to be multiple of the minimum quantity. 14/15 2011.11 Rev.B

VQFP48C 9.0±0.2 7.0±0.1 37 48 9.0±0.2 7.0±0.1 36 25 24 13 0.75 0.5±0.15 1.0±0.2 <Tape and Reel information> Tape Embossed carrier tape Quantity 1500pcs Direction of feed E2 The direction is the 1pin of product is at the upper left when you hold reel on the left hand and you pull out the tape on the right hand ( ) 1 0.75 12 1PIN MARK 0.05 0.145 0.03 1.6MAX 6 4 4 1.4±0.05 0.1±0.05 0.5±0.1 0.08 S 0.05 0.220.04 0.08 M ( : mm) Reel 1pin Direction of feed Order quantity needs to be multiple of the minimum quantity. VQFP64 12.0±0.2 10.0±0.1 12.0±0.2 10.0±0.1 48 33 49 32 64 17 1.25 0.5±0.15 1.0±0.2 <Tape and Reel information> Tape Quantity Direction of feed Embossed carrier tape (with dry pack) 1000pcs E2 The direction is the 1pin of product is at the upper left when you hold reel on the left hand and you pull out the tape on the right hand ( ) 1.6MAX 1.25 1 16 1PIN MARK 6 4 4 0.145 0.05 0.03 1.4±0.05 0.1±0.05 0.5±0.1 0.08 S 0.2 0.05 0.04 0.08 M ( : mm) Reel 1pin Direction of feed Order quantity needs to be multiple of the minimum quantity. SQFPT52 40 12.0±0.3 10.0±0.2 39 27 26 <Tape and Reel information> Container Tray (with dry pack) Quantity 1000pcs Direction of feed Direction of product is fixed in a tray 12.0±0.3 10.0±0.2 52 14 0.5 1pin 1 13 0.125±0.1 1.4±0.1 0.1±0.1 0.65 0.3±0.1 0.15 ( : mm) Order quantity needs to be multiple of the minimum quantity. 15/15 2011.11 Rev.B

Datasheet Notice Precaution on using ROHM Products 1. Our Products are designed and manufactured for application in ordinary electronic equipments (such as AV equipment, OA equipment, telecommunication equipment, home electronic appliances, amusement equipment, etc.). If you intend to use our Products in devices requiring extremely high reliability (such as medical equipment (Note 1), transport equipment, traffic equipment, aircraft/spacecraft, nuclear power controllers, fuel controllers, car equipment including car accessories, safety devices, etc.) and whose malfunction or failure may cause loss of human life, bodily injury or serious damage to property ( Specific Applications ), please consult with the ROHM sales representative in advance. Unless otherwise agreed in writing by ROHM in advance, ROHM shall not be in any way responsible or liable for any damages, expenses or losses incurred by you or third parties arising from the use of any ROHM s Products for Specific Applications. (Note1) Medical Equipment Classification of the Specific Applications JAPAN USA EU CHINA CLASSⅢ CLASSⅡb CLASSⅢ CLASSⅢ CLASSⅣ CLASSⅢ 2. ROHM designs and manufactures its Products subject to strict quality control system. However, semiconductor products can fail or malfunction at a certain rate. Please be sure to implement, at your own responsibilities, adequate safety measures including but not limited to failsafe design against the physical injury, damage to any property, which a failure or malfunction of our Products may cause. The following are examples of safety measures: [a] Installation of protection circuits or other protective devices to improve system safety [b] Installation of redundant circuits to reduce the impact of single or multiple circuit failure 3. Our Products are designed and manufactured for use under standard conditions and not under any special or extraordinary environments or conditions, as exemplified below. Accordingly, ROHM shall not be in any way responsible or liable for any damages, expenses or losses arising from the use of any ROHM s Products under any special or extraordinary environments or conditions. If you intend to use our Products under any special or extraordinary environments or conditions (as exemplified below), your independent verification and confirmation of product performance, reliability, etc, prior to use, must be necessary: [a] Use of our Products in any types of liquid, including water, oils, chemicals, and organic solvents [b] Use of our Products outdoors or in places where the Products are exposed to direct sunlight or dust [c] Use of our Products in places where the Products are exposed to sea wind or corrosive gases, including Cl2, H2S, NH3, SO2, and NO2 [d] Use of our Products in places where the Products are exposed to static electricity or electromagnetic waves [e] Use of our Products in proximity to heatproducing components, plastic cords, or other flammable items [f] Sealing or coating our Products with resin or other coating materials [g] Use of our Products without cleaning residue of flux (even if you use noclean type fluxes, cleaning residue of flux is recommended); or Washing our Products by using water or watersoluble cleaning agents for cleaning residue after soldering [h] Use of the Products in places subject to dew condensation 4. The Products are not subject to radiationproof design. 5. Please verify and confirm characteristics of the final or mounted products in using the Products. 6. In particular, if a transient load (a large amount of load applied in a short period of time, such as pulse. is applied, confirmation of performance characteristics after onboard mounting is strongly recommended. Avoid applying power exceeding normal rated power; exceeding the power rating under steadystate loading condition may negatively affect product performance and reliability. 7. Derate Power Dissipation (Pd) depending on Ambient temperature (Ta). When used in sealed area, confirm the actual ambient temperature. 8. Confirm that operation temperature is within the specified range described in the product specification. 9. ROHM shall not be in any way responsible or liable for failure induced under deviant condition from what is defined in this document. Precaution for Mounting / Circuit board design 1. When a highly active halogenous (chlorine, bromine, etc.) flux is used, the residue of flux may negatively affect product performance and reliability. 2. In principle, the reflow soldering method must be used; if flow soldering method is preferred, please consult with the ROHM representative in advance. For details, please refer to ROHM Mounting specification Notice GE 2014 ROHM Co., Ltd. All rights reserved. Rev.002

Datasheet Precautions Regarding Application Examples and External Circuits 1. If change is made to the constant of an external circuit, please allow a sufficient margin considering variations of the characteristics of the Products and external components, including transient characteristics, as well as static characteristics. 2. You agree that application notes, reference designs, and associated data and information contained in this document are presented only as guidance for Products use. Therefore, in case you use such information, you are solely responsible for it and you must exercise your own independent verification and judgment in the use of such information contained in this document. ROHM shall not be in any way responsible or liable for any damages, expenses or losses incurred by you or third parties arising from the use of such information. Precaution for Electrostatic This Product is electrostatic sensitive product, which may be damaged due to electrostatic discharge. Please take proper caution in your manufacturing process and storage so that voltage exceeding the Products maximum rating will not be applied to Products. Please take special care under dry condition (e.g. Grounding of human body / equipment / solder iron, isolation from charged objects, setting of Ionizer, friction prevention and temperature / humidity control). Precaution for Storage / Transportation 1. Product performance and soldered connections may deteriorate if the Products are stored in the places where: [a] the Products are exposed to sea winds or corrosive gases, including Cl2, H2S, NH3, SO2, and NO2 [b] the temperature or humidity exceeds those recommended by ROHM [c] the Products are exposed to direct sunshine or condensation [d] the Products are exposed to high Electrostatic 2. Even under ROHM recommended storage condition, solderability of products out of recommended storage time period may be degraded. It is strongly recommended to confirm solderability before using Products of which storage time is exceeding the recommended storage time period. 3. Store / transport cartons in the correct direction, which is indicated on a carton with a symbol. Otherwise bent leads may occur due to excessive stress applied when dropping of a carton. 4. Use Products within the specified time after opening a humidity barrier bag. Baking is required before using Products of which storage time is exceeding the recommended storage time period. Precaution for Product Label QR code printed on ROHM Products label is for ROHM s internal use only. Precaution for Disposition When disposing Products please dispose them properly using an authorized industry waste company. Precaution for Foreign Exchange and Foreign Trade act Since our Products might fall under controlled goods prescribed by the applicable foreign exchange and foreign trade act, please consult with ROHM representative in case of export. Precaution Regarding Intellectual Property Rights 1. All information and data including but not limited to application example contained in this document is for reference only. ROHM does not warrant that foregoing information or data will not infringe any intellectual property rights or any other rights of any third party regarding such information or data. ROHM shall not be in any way responsible or liable for infringement of any intellectual property rights or other damages arising from use of such information or data.: 2. No license, expressly or implied, is granted hereby under any intellectual property rights or other rights of ROHM or any third parties with respect to the information contained in this document. Other Precaution 1. This document may not be reprinted or reproduced, in whole or in part, without prior written consent of ROHM. 2. The Products may not be disassembled, converted, modified, reproduced or otherwise changed without prior written consent of ROHM. 3. In no event shall you use in any way whatsoever the Products and the related technical information contained in the Products or this document for any military purposes, including but not limited to, the development of massdestruction weapons. 4. The proper names of companies or products described in this document are trademarks or registered trademarks of ROHM, its affiliated companies or third parties. Notice GE 2014 ROHM Co., Ltd. All rights reserved. Rev.002

Datasheet General Precaution 1. Before you use our Pro ducts, you are requested to care fully read this document and fully understand its contents. ROHM shall n ot be in an y way responsible or liabl e for fa ilure, malfunction or acci dent arising from the use of a ny ROHM s Products against warning, caution or note contained in this document. 2. All information contained in this docume nt is current as of the issuing date and subj ect to change without any prior notice. Before purchasing or using ROHM s Products, please confirm the la test information with a ROHM sale s representative. 3. The information contained in this doc ument is provi ded on an as is basis and ROHM does not warrant that all information contained in this document is accurate an d/or errorfree. ROHM shall not be in an y way responsible or liable for any damages, expenses or losses incurred by you or third parties resulting from inaccuracy or errors of or concerning such information. Notice WE 2014 ROHM Co., Ltd. All rights reserved. Rev.001