R8151X NISSHINBO | Alldatasheet

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50 mA 36 V Input LDO Regulator for Automotive Applications NO. EC-223-220825 OUTLINE The R8151x series are CMOS-based positive voltage re gulator (VR) ICs featuring 50mA output current. The R8151xxxxB has features of high input voltage and ultra- low supply current. A peak current limit circuit, a short current limit circuit, and a thermal shutdown circuit are bu ilt in the R8151x series. The operating temperature is 40°C to 110°C and the maximum input voltage is 36V, the R8151x series are very suitable for power source of car accessories. The regulator output voltage is fixed in the R8151xxxxB and can be selected with a step of 0.1V in the range of 2.0V to 12.0V. Output voltage accuracy is 4%. The packages for these ICs are the SOT-89-5 for space saving and the HSOP-6J for higher power applications. The R8151xxxxB is designed specifically for the vital automotive security parts, which is also suitable for the vehicle electrical accessories. The design engineering guarantees the reliable operation of the ICs within the temperature range of 40°C to 110°C.

FEATURES

*For other voltages, please refer to MARK SPECIFICATION TABLE.  Built-in Peak Current Limit Circuit

APPLICATIONS

 Power supply for electronic control units such as EV inverter and battery charge control unit.

NO. EC-223-220825 BLOCK DIAGRAM R8151xxxxB VDD V OUT CE GND Current Limit Short Protection Vref Thermal Shutdown Circuit Internal VR SELECTION GUIDE The output voltage and the package for the ICs can be selected at the user’s request. Product Name Package Quantity per Reel Pb Free Halogen Free R8151HxxxB-T1-FE SOT-89-5 1,000pcs Yes Yes R8151SxxxB-E2-FE HSOP-6J 1,000pcs Yes Yes xxx: The output voltage can be designated in the range of 2.0V (020) to 12.0V(120) in 0.1V steps. (For other voltages, please refer to MARK SPECIFICATION TABLE). R8 Automotive Class Code Operating Temperature Range Guaranteed Specs Temperature Range Screening -40°C to 110°C -40°C to 110°C High and Low Temperature

NO. EC-223-220825 PIN DESCRIPTIONS  SOT-89-5  HSOP-6J 1 3 5 4 1 3 6 4  SOT-89-5 Pin No. Symbol Description

1 V OUT Output Pin

2 GND Ground Pin

3 CE Chip Enable Pin ("H" Active)

4 GND Ground Pin

5 V DD Input Pin

) The GND pin must be wired together when it is mounted on board.  HSOP-6J Pin No. Symbol Description

5 GND Ground Pin

6 V DD Input Pin

) The GND pin must be wired together when it is mounted on board.

NO. EC-223-220825 ABSOLUTE MAXIMUM RATINGS Symbol Item Rating Unit VIN Input Voltage 0.3 to 50 V VIN Peak Input Voltage1 60 V VCE Input Voltage (CE Pin) 0.3 to VIN0.3  50 V VOUT Output Voltage 0.3 to VIN0.3  50 V IOUT Output Current 150 mA PD Power Dissipation SOT-89-5 Standard Land Pattern 1120 mW High Wattage Land Pattern 1620 HSOP-6J Standard Land Pattern 2100 Ultra High Wattage Land Pattern 3400 Tj Junction Temperature 40 to 150 C Tstg Storage Temperature Range 55 to 150 C 1) Duration time: 200ms 2) Refer to PACKAGE INFORMATION for detailed information. ABSOLUTE MAXIMUM RATINGS Electronic and mechanical stress momentarily exceeded absolute maximum ratings may cause the permanent damages and may degrade the life time and safety for both device and system using the device in the field. The functional operation at or over these absolute maximum ratings is not assured. RECOMMENDED OPERATING RATINGS Symbol Item Rating Unit VIN Input Voltage 4 to 36 V Ta Operating Temperature Range −40 to 110 °C RECOMMENDED OPERATING RATINGS All of electronic equipment should be designed that the mounted semiconductor devices operate within the recommended operating ratings. The semiconductor devices cannot operate normally over the recommended operating ratings, even if when they are used over such ratings by momentary electronic noise or surge. And the semiconductor devices may receive serious damage when they continue to operate over the recommended operating ratings.

NO. EC-223-220825

ELECTRICAL CHARACTERISTICS

 R8151xxxxB (−40°C  Ta  110°C) Symbol Item Conditions Min. Typ. Max. Unit ISS Supply Current VINVOUT3.0V, IOUT0mA 9 20 A Istandby Standby Current VIN36V, VCE0V 0.1 1.0 A VOUT Output Voltage VINVOUT3.0V, IOUT1mA 0.96 1.04 V IOUT Output Current VINVOUT3.0V 50 mA VOUT/IOUT Load Regulation VINVOUT3.0V, 1mA  IOUT  40mA Refer to the Product-specific VOUT/VIN Line Regulation VOUT1.5V  VIN  36V, IOUT1mA 0.05 0.20 %/V VDIF Dropout Voltage IOUT40mA Refer to the Product-specific ISC Short Current Limit VOUT0V 50 mA VCEH CE Input Voltage "H" 1.5 V IN V VCEL CE Input Voltage "L" 0 0.35 V TTSD Thermal Shutdown Temperature Junction Temperature 130 *1 155 C TTSR Thermal Shutdown Released Temperature Junction Temperature 110 125 C *1 The minimum value of Thermal Shutdown Temperature is guaranteed by design engineering.

NO. EC-223-220825  Product-specific Electrical Characteristics Product Name VOUT [V] ΔVOUT/ΔIOUT [mV] V DIF [V] R8151x020B 1.920 2.000 2.080 10 27 2.0 R8151x021B 2.016 2.100 2.184 1.9 R8151x022B 2.112 2.200 2.288 1.8 R8151x023B 2.208 2.300 2.392 1.7 R8151x024B 2.304 2.400 2.496 1.6 R8151x025B 2.400 2.500 2.600 1.5 R8151x026B 2.496 2.600 2.704 1.47 R8151x027B 2.592 2.700 2.808 R8151x028B 2.688 2.800 2.912 R8151x029B 2.784 2.900 3.016 R8151x030B 2.880 3.000 3.120 1.17 R8151x031B 2.976 3.100 3.224 R8151x032B 3.072 3.200 3.328 R8151x033B 3.168 3.300 3.432 R8151x034B 3.264 3.400 3.536 0.6 R8151x035B 3.360 3.500 3.640 R8151x036B 3.456 3.600 3.744 R8151x037B 3.552 3.700 3.848 R8151x038B 3.648 3.800 3.952 R8151x039B 3.744 3.900 4.056 R8151x040B 3.840 4.000 4.160 0.4 0.78 R8151x041B 3.936 4.100 4.264 R8151x042B 4.032 4.200 4.368 R8151x043B 4.128 4.300 4.472 R8151x044B 4.224 4.400 4.576 R8151x045B 4.320 4.500 4.680 R8151x046B 4.416 4.600 4.784 R8151x047B 4.512 4.700 4.888 R8151x048B 4.608 4.800 4.992 R8151x049B 4.704 4.900 5.096 R8151x050B 4.800 5.000 5.200 0.32 0.58 R8151x051B 4.896 5.100 5.304 20 39 R8151x052B 4.992 5.200 5.408 R8151x053B 5.088 5.300 5.512 R8151x054B 5.184 5.400 5.616 R8151x055B 5.280 5.500 5.720 R8151x056B 5.376 5.600 5.824 R8151x057B 5.472 5.700 5.928 R8151x058B 5.568 5.800 6.032 R8151x059B 5.664 5.900 6.136

NO. EC-223-220825 Product Name VOUT [V] ΔVOUT/ΔIOUT [mV] V DIF [V] R8151x060B 5.760 6.000 6.240 20 39 0.32 0.58 R8151x061B 5.856 6.100 6.344 R8151x062B 5.952 6.200 6.448 R8151x063B 6.048 6.300 6.552 R8151x064B 6.144 6.400 6.656 R8151x065B 6.240 6.500 6.760 R8151x066B 6.336 6.600 6.864 R8151x067B 6.432 6.700 6.968 R8151x068B 6.528 6.800 7.072 R8151x069B 6.624 6.900 7.176 R8151x070B 6.720 7.000 7.280 R8151x071B 6.816 7.100 7.384 R8151x072B 6.912 7.200 7.488 R8151x073B 7.008 7.300 7.592 R8151x074B 7.104 7.400 7.696 R8151x075B 7.201 7.500 7.800 R8151x076B 7.296 7.600 7.904 R8151x077B 7.392 7.700 8.008 R8151x078B 7.489 7.800 8.112 R8151x079B 7.585 7.900 8.216 R8151x080B 7.681 8.000 8.320 R8151x081B 7.776 8.100 8.424 R8151x082B 7.873 8.200 8.528 R8151x083B 7.969 8.300 8.632 R8151x084B 8.065 8.400 8.736 R8151x085B 8.161 8.500 8.840 R8151x086B 8.257 8.600 8.944 R8151x087B 8.353 8.700 9.048 R8151x088B 8.449 8.800 9.152 R8151x089B 8.545 8.900 9.256 R8151x090B 8.641 9.000 9.360 R8151x091B 8.737 9.100 9.464 R8151x092B 8.833 9.200 9.568 R8151x093B 8.929 9.300 9.672 R8151x094B 9.025 9.400 9.776 R8151x095B 9.121 9.500 9.880 R8151x096B 9.217 9.600 9.984 R8151x097B 9.313 9.700 10.088 R8151x098B 9.409 9.800 10.192 R8151x099B 9.505 9.900 10.296

NO. EC-223-220825 Product Name VOUT [V] ΔVOUT/ΔIOUT [mV] V DIF [V] R8151x100B 9.600 10.000 10.400 20 39 0.32 0.58 R8151x101B 9.696 10.100 10.504 R8151x102B 9.792 10.200 10.608 R8151x103B 9.888 10.300 10.712 R8151x104B 9.984 10.400 10.816 R8151x105B 10.080 10.500 10.920 R8151x106B 10.176 10.600 11.024 R8151x107B 10.272 10.700 11.128 R8151x108B 10.368 10.800 11.232 R8151x109B 10.464 10.900 11.336 R8151x110B 10.560 11.000 11.440 R8151x111B 10.656 11.100 11.544 R8151x112B 10.752 11.200 11.648 R8151x113B 10.848 11.300 11.752 R8151x114B 10.944 11.400 11.856 R8151x115B 11.040 11.500 11.960 R8151x116B 11.136 11.600 12.064 R8151x117B 11.232 11.700 12.168 R8151x118B 11.328 11.800 12.272 R8151x119B 11.424 11.900 12.376 R8151x120B 11.520 12.000 12.480

NO. EC-223-220825 TYPICAL APPLICATION C1 R8151x Series VDD VOUT CE GND VOUT CE Control RCE External Parts Example: C1 0.1µF (Ceramic) C2 0.1µF (Ceramic) TECHNICAL NOTES When using these ICs, consider the following points: Phase Compensation Phase Compensation of the R8151x Series has been made internally for stable operation even though the load current would vary. Therefore, without the capacitors, C1 and C2, the output voltage is regulated, however, for more stable operation, use capacitors as C1 and C2. Especially, if the input line is long and impedance is high, C1 is necessary. Moreover, if you use rather large C2, transient response will be improved. Recommended value is in the range from 0.1F to 10F. Wiring should be made as short as possible. Connect the capacitor, C1 between VDD pin and GND pin and C2 between VOUT and GND as close as possible. GND wiring of mounting on board of HSOP-6J package must be wired to the GND plane when it is mounted on board. Thermal Shutdown Thermal shutdown function is included in the R8151x Se ries, if the junction temperature is equal or more than +155C (Typ.), the operation of regulator would stop. After that, when the junction temperature is equal or less than +125C (Typ.), the operation of regulator would restart. Unless the cause of rising temperature would remove, the regulator repeats on and off, and output waveform would be like consecutive pulses. Chip Enable Circuit Do not make voltage level of chip enable pin keep floating level, or in between V CEH and VCEL. Otherwise, the output voltage would be unstable or indefinite, or unexpected current would flow internally.

NO. EC-223-220825 TYPICAL APPLICATION FOR IC CHIP BREAKDOWN PREVENTION C1 R8151x Series VDD VOUT CE GND VOUT CE Control RCE When a sudden surge of electrical current travels along the V OUT pin and GND due to a short-circuit, electrical resonance of a circuit involving an output capacitor (C2) and a short circuit inductor generates a negative voltage and may damage the device or the load devices. Connecting a schottky diode (D1) between the V OUT pin and GND has the effect of preventing damage to them.

NO. EC-223-220825

PACKAGE INFORMATION

POWER DISSIPATION (SOT89-5) Power Dissipation (P D) depends on conditions of mounting on board. This specification is based on the measurement at the condition below: Measurement Conditions High Wattage Land Pattern Standard Land Pattern Environment Mounting on Board (Wind velocity=0 m/s) Mounting on Board (Wind velocity=0m/s) Board Material Glass cloth epoxy plastic (Double sided) Glass cloth epoxy plastic (Double sided) Board Dimensions 30mm  30mm  1.6mm 50mm  50mm  1.6mm Copper Ratio Top side : Approx. 20% , Back side : Approx. 100% Top side : Approx. 10% , Back side : Approx. 100% Through-hole 0.85mm  10pcs - Measurement Result (Ta=25C, Tjmax=150C) High Wattage Land Pattern Standard Land Pattern Free Air Power Dissipation 1620mW 1120mW 620mW Thermal Resistance 77C/W 111 C/W 200 C/W Power Dissipation 7.5 15 7.5 H i g h W a t t a g e Standard Measurement Board Pattern IC Mount Area (Unit : mm) 100 200 300 400 500 600 700 800 900 1000 1100 1200 1300 1400 1500 1600 1700 1800 0 25 50 75 100 125 150 Ambient Temperature(℃) Power Dissipation PD(mW) On Board High Wattage Land Pattern On Board Standard Land Pattern Free Air 110 1620 1120 620

NO. EC-223-220825 PACKAGE DIMENSIONS (SOT89-5) 1.5±0.1 1.5±0.1 0.47±0.1 0.42±0.1 0.42±0.1 1.5±0.1 0.4±0.1 0.4±0.1 0.1 S S 0.3±0.2 0.3±0.2 4 5 3 2 1 Bottom View 0.42±0.1 4.5±0.1 1.6±0.2 4.35±0.1 2.5±0.1 0.4±0. 3 5 4 1 2 3 φ1.0 1.00±0.2 Unit: mm MARK SPECIFICATIONS (SOT-89-5) : Product Code … Refer to R8151H MARK SPECIFICATION TABLE : Lot Number … Alphanumeric Serial Number : Lot Sub Number …Alphanumeric Serial Number ①②③ ④⑤⑥ ⑦⑧⑨

NO. EC-223-220825 R8151H MARK SPECIFICATION TABLE (SOT-89-5) Product Name  VSET Product Name  VSET Product Name  VSET R8151H020B V 0 2 0 2.0 V R8151H060B V 0 6 0 6.0 V R8151H100B V 1 0 0 10.0 V R8151H021B V 0 2 1 2.1 V R8151H061B V 0 6 1 6.1 V R8151H101B V 1 0 1 10.1 V R8151H022B V 0 2 2 2.2 V R8151H062B V 0 6 2 6.2 V R8151H102B V 1 0 2 10.2 V R8151H023B V 0 2 3 2.3 V R8151H063B V 0 6 3 6.3 V R8151H103B V 1 0 3 10.3 V R8151H024B V 0 2 4 2.4 V R8151H064B V 0 6 4 6.4 V R8151H104B V 1 0 4 10.4 V R8151H025B V 0 2 5 2.5 V R8151H065B V 0 6 5 6.5 V R8151H105B V 1 0 5 10.5 V R8151H026B V 0 2 6 2.6 V R8151H066B V 0 6 6 6.6 V R8151H106B V 1 0 6 10.6 V R8151H027B V 0 2 7 2.7 V R8151H067B V 0 6 7 6.7 V R8151H107B V 1 0 7 10.7 V R8151H028B V 0 2 8 2.8 V R8151H068B V 0 6 8 6.8 V R8151H108B V 1 0 8 10.8 V R8151H029B V 0 2 9 2.9 V R8151H069B V 0 6 9 6.9 V R8151H109B V 1 0 9 10.9 V R8151H030B V 0 3 0 3.0 V R8151H070B V 0 7 0 7.0 V R8151H110B V 1 1 0 11.0 V R8151H031B V 0 3 1 3.1 V R8151H071B V 0 7 1 7.1 V R8151H111B V 1 1 1 11.1 V R8151H032B V 0 3 2 3.2 V R8151H072B V 0 7 2 7.2 V R8151H112B V 1 1 2 11.2 V R8151H033B V 0 3 3 3.3 V R8151H073B V 0 7 3 7.3 V R8151H113B V 1 1 3 11.3 V R8151H034B V 0 3 4 3.4 V R8151H074B V 0 7 4 7.4 V R8151H114B V 1 1 4 11.4 V R8151H035B V 0 3 5 3.5 V R8151H075B V 0 7 5 7.5 V R8151H115B V 1 1 5 11.5 V R8151H036B V 0 3 6 3.6 V R8151H076B V 0 7 6 7.6 V R8151H116B V 1 1 6 11.6 V R8151H037B V 0 3 7 3.7 V R8151H077B V 0 7 7 7.7 V R8151H117B V 1 1 7 11.7 V R8151H038B V 0 3 8 3.8 V R8151H078B V 0 7 8 7.8 V R8151H118B V 1 1 8 11.8 V R8151H039B V 0 3 9 3.9 V R8151H079B V 0 7 9 7.9 V R8151H119B V 1 1 9 11.9 V R8151H040B V 0 4 0 4.0 V R8151H080B V 0 8 0 8.0 V R8151H120B V 1 2 0 12.0 V R8151H041B V 0 4 1 4.1 V R8151H081B V 0 8 1 8.1 V R8151H042B V 0 4 2 4.2 V R8151H082B V 0 8 2 8.2 V R8151H043B V 0 4 3 4.3 V R8151H083B V 0 8 3 8.3 V R8151H044B V 0 4 4 4.4 V R8151H084B V 0 8 4 8.4 V R8151H045B V 0 4 5 4.5 V R8151H085B V 0 8 5 8.5 V R8151H046B V 0 4 6 4.6 V R8151H086B V 0 8 6 8.6 V R8151H047B V 0 4 7 4.7 V R8151H087B V 0 8 7 8.7 V R8151H048B V 0 4 8 4.8 V R8151H088B V 0 8 8 8.8 V R8151H049B V 0 4 9 4.9 V R8151H089B V 0 8 9 8.9 V R8151H050B V 0 5 0 5.0 V R8151H090B V 0 9 0 9.0 V R8151H051B V 0 5 1 5.1 V R8151H091B V 0 9 1 9.1 V R8151H052B V 0 5 2 5.2 V R8151H092B V 0 9 2 9.2 V R8151H053B V 0 5 3 5.3 V R8151H093B V 0 9 3 9.3 V R8151H054B V 0 5 4 5.4 V R8151H094B V 0 9 4 9.4 V R8151H055B V 0 5 5 5.5 V R8151H095B V 0 9 5 9.5 V R8151H056B V 0 5 6 5.6 V R8151H096B V 0 9 6 9.6 V R8151H057B V 0 5 7 5.7 V R8151H097B V 0 9 7 9.7 V R8151H058B V 0 5 8 5.8 V R8151H098B V 0 9 8 9.8 V R8151H059B V 0 5 9 5.9 V R8151H099B V 0 9 9 9.9 V

NO. EC-223-220825 POWER DISSIPATION (HSOP-6J) The power dissipation of the package is dependent on PCB material, layout, and environmental conditions. The following conditions are used in this measurement. Measurement Conditions Ultra-high Wattage Land Pattern Standard Land Pattern Environment Mounting on Board (Wind Velocity = 0 m/s) Mounting on Board (Wind Velocity = 0 m/s) Board Material Glass Cloth Epoxy Plastic (Four-layer Board) Glass Cloth Epoxy Plastic (Double-sided Board) Board Dimensions 76.2 mm × 114.3 mm × 0.8 mm 50 mm × 50 mm × 1.6 mm Copper Ratio 96% 50% Through-holes  0.3 mm × 28 pcs  0.5 mm × 24 pcs Measurement Result (Ta = 25°C, Tjmax = 150°C) Ultra-high Wattage Land Pattern Standard Land Pattern Free Air Power Dissipation 3400 mW 2100 mW 675 mW Thermal Resistance 37°C/W 59°C/W 185°C/W Ultra-high Wattage Standard IC Mount Area (mm) Power Dissipation vs. Ambient Temperature Measurement Board Pattern 250 500 750 1000 1250 1500 1750 2000 2250 2500 2750 3000 3250 3500 0 25 50 75 100 125 150 Power Dissipation PD (mW) Ambient Temperature (°C) 3400 2100 On Board Ultra-high Wattage Land Pattern On Board Standard Land Pattern 675 Free Air 110 76.2 114.3

NO. EC-223-220825    PACKAGE DIMENSIONS (HSOP-6J) 3.81 123 5.02±0.3 654 Unit: mm 0.10 0.12 M 0.605TYP . 0.15±0.1 1.5±0.1 1.67±0.1 0.4±0.1 0.60±0.2 0.2-0.05 6.0±0.3 3.9±0.2 +0.10 MARK SPECIFICATIONS (HSOP-6J) : Product Code … Refer to R8151S MARK SPECIFICATION TABLE : Lot Number … Alphanumeric Serial Number : Lot Sub Number …Alphanumeric Serial Number

NO. EC-223-220825 R8151S MARK SPECIFICATION TABLE (HSOP-6J) Product Name  VSET Product Name  VSET Product Name  VSET R8151S020B K 0 2 0 2.0 V R8151S060B K 0 6 0 6.0 V R8151S100B K 1 0 0 10.0 V R8151S021B K 0 2 1 2.1 V R8151S061B K 0 6 1 6.1 V R8151S101B K 1 0 1 10.1 V R8151S022B K 0 2 2 2.2 V R8151S062B K 0 6 2 6.2 V R8151S102B K 1 0 2 10.2 V R8151S023B K 0 2 3 2.3 V R8151S063B K 0 6 3 6.3 V R8151S103B K 1 0 3 10.3 V R8151S024B K 0 2 4 2.4 V R8151S064B K 0 6 4 6.4 V R8151S104B K 1 0 4 10.4 V R8151S025B K 0 2 5 2.5 V R8151S065B K 0 6 5 6.5 V R8151S105B K 1 0 5 10.5 V R8151S026B K 0 2 6 2.6 V R8151S066B K 0 6 6 6.6 V R8151S106B K 1 0 6 10.6 V R8151S027B K 0 2 7 2.7 V R8151S067B K 0 6 7 6.7 V R8151S107B K 1 0 7 10.7 V R8151S028B K 0 2 8 2.8 V R8151S068B K 0 6 8 6.8 V R8151S108B K 1 0 8 10.8 V R8151S029B K 0 2 9 2.9 V R8151S069B K 0 6 9 6.9 V R8151S109B K 1 0 9 10.9 V R8151S030B K 0 3 0 3.0 V R8151S070B K 0 7 0 7.0 V R8151S110B K 1 1 0 11.0 V R8151S031B K 0 3 1 3.1 V R8151S071B K 0 7 1 7.1 V R8151S111B K 1 1 1 11.1 V R8151S032B K 0 3 2 3.2 V R8151S072B K 0 7 2 7.2 V R8151S112B K 1 1 2 11.2 V R8151S033B K 0 3 3 3.3 V R8151S073B K 0 7 3 7.3 V R8151S113B K 1 1 3 11.3 V R8151S034B K 0 3 4 3.4 V R8151S074B K 0 7 4 7.4 V R8151S114B K 1 1 4 11.4 V R8151S035B K 0 3 5 3.5 V R8151S075B K 0 7 5 7.5 V R8151S115B K 1 1 5 11.5 V R8151S036B K 0 3 6 3.6 V R8151S076B K 0 7 6 7.6 V R8151S116B K 1 1 6 11.6 V R8151S037B K 0 3 7 3.7 V R8151S077B K 0 7 7 7.7 V R8151S117B K 1 1 7 11.7 V R8151S038B K 0 3 8 3.8 V R8151S078B K 0 7 8 7.8 V R8151S118B K 1 1 8 11.8 V R8151S039B K 0 3 9 3.9 V R8151S079B K 0 7 9 7.9 V R8151S119B K 1 1 9 11.9 V R8151S040B K 0 4 0 4.0 V R8151S080B K 0 8 0 8.0 V R8151S120B K 1 2 0 12.0 V R8151S041B K 0 4 1 4.1 V R8151S081B K 0 8 1 8.1 V R8151S042B K 0 4 2 4.2 V R8151S082B K 0 8 2 8.2 V R8151S043B K 0 4 3 4.3 V R8151S083B K 0 8 3 8.3 V R8151S044B K 0 4 4 4.4 V R8151S084B K 0 8 4 8.4 V R8151S045B K 0 4 5 4.5 V R8151S085B K 0 8 5 8.5 V R8151S046B K 0 4 6 4.6 V R8151S086B K 0 8 6 8.6 V R8151S047B K 0 4 7 4.7 V R8151S087B K 0 8 7 8.7 V R8151S048B K 0 4 8 4.8 V R8151S088B K 0 8 8 8.8 V R8151S049B K 0 4 9 4.9 V R8151S089B K 0 8 9 8.9 V R8151S050B K 0 5 0 5.0 V R8151S090B K 0 9 0 9.0 V R8151S051B K 0 5 1 5.1 V R8151S091B K 0 9 1 9.1 V R8151S052B K 0 5 2 5.2 V R8151S092B K 0 9 2 9.2 V R8151S053B K 0 5 3 5.3 V R8151S093B K 0 9 3 9.3 V R8151S054B K 0 5 4 5.4 V R8151S094B K 0 9 4 9.4 V R8151S055B K 0 5 5 5.5 V R8151S095B K 0 9 5 9.5 V R8151S056B K 0 5 6 5.6 V R8151S096B K 0 9 6 9.6 V R8151S057B K 0 5 7 5.7 V R8151S097B K 0 9 7 9.7 V R8151S058B K 0 5 8 5.8 V R8151S098B K 0 9 8 9.8 V R8151S059B K 0 5 9 5.9 V R8151S099B K 0 9 9 9.9 V

NO. EC-223-220825 TEST CIRCUITS C1 R8151x Series VDD VOUT CE GND V C2 VOUT IOUT C1=Ceramic 0.1F C2=Ceramic 0.1F Basic Test Circuit C1 R8151x Series VDD VOUT CE GND C2 A ISS C1=Ceramic 0.1F C2=Ceramic 0.1F VOUT Test Circuit for Supply Current R8151x Series VDD VOUT CE GND Pulse Generator IOUT C2=Ceramic 0.1F P. G. Test Circuit for Line Transient Response

NO. EC-223-220825 C1 R8151x Series VDD VOUT CE GND IOUTa IOUTb C1=Ceramic 0.1F C2=Ceramic 0.1F VOUT Test Circuit for Load Transient Response

NO. EC-223-220825 TYPICAL CHARACTERISTICS Note: Typical Characteristics are intended to be used as reference data; they are not guaranteed. 1) Output Voltage vs. Output Current R8151x020B R8151x030B R8151x050B R8151x090B 2) Output Voltage vs. Input Voltage (Ta=25C) R8151x020B R8151x030B 0 15010050 200 Output Current IOUT(mA) Output Voltage VOUT(V) 2.5 1.5 1.0 0.5 2.0 VIN=3.5V VIN=4.0V VIN=4.5V VIN=5.0V 0 15010050 200 Output Current IOUT(mA) Output Voltage VOUT(V) 3.5 1.5 1.0 0.5 2.5 2.0 3.0 VIN=4.5V VIN=5.0V VIN=5.5V VIN=6.0V 0 15010050 200 Output Current IOUT(mA) Output Voltage VOUT(V) VIN=6.5V VIN=7.0V VIN=7.5V VIN=8.0V 0 15010050 200 Output Current IOUT(mA) Output Voltage VOUT(V) VIN=10.5V VIN=11.0V VIN=11.5V VIN=12.0V 03 02010 40 Input Voltage VIN(V) Output Voltage VOUT(V) 1.0 3.0 2.5 2.0 1.5 IOUT= 1mA IOUT=20mA IOUT=40mA 03 02010 40 Input Voltage VIN(V) Output Voltage VOUT(V) 2.0 4.0 3.5 3.0 2.5 IOUT= 1mA IOUT=20mA IOUT=40mA

NO. EC-223-220825 R8151x050B R8151x090B 3) Dropout Voltage vs. Output Current R8151x050B R8151x120B 4) Output Voltage vs. Temperature R8151x020B R8151x050B 03 02010 40 Input Voltage VIN(V) Output Voltage VOUT(V) 4.0 6.0 5.5 5.0 4.5 IOUT= 1mA IOUT=20mA IOUT=40mA 03 02010 40 Input Voltage VIN(V) Output Voltage VOUT(V) 8.0 10.0 9.5 9.0 8.5 IOUT= 1mA IOUT=20mA IOUT=40mA 1.900 1.925 1.950 1.975 2.000 2.025 2.050 2.075 2.100 -50 -25 0 25 50 75 100 125 Temperature Topt [°C] Output Voltage VOUT [V] 4.80 4.85 4.90 4.95 5.00 5.05 5.10 5.15 5.20 -50 -25 0 25 50 75 100 125 Temperature Topt [°C] Output Voltage VOUT [V] 0.0 0.5 1.0 1.5 2.0 2.5 3.0 0 1 02 03 04 05 0 Output Current I OUT [mA] Dropout Voltage VDIF [V] 110°C 25°C -40°C 0.0 0.5 1.0 1.5 2.0 2.5 3.0 0 1 02 03 04 05 0 Output Current I OUT [mA] Dropout Voltage VDIF [V] 110°C 25°C -40°C

NO. EC-223-220825 R8151x120B 5) Supply Current vs. Input Voltage (Ta=25C) R8151x025B R8151x050B R8151x120B 11.6 11.7 11.8 11.9 12.0 12.1 12.2 12.3 12.4 -50 -25 0 25 50 75 100 125 Temperature Topt [°C] Output Voltage VOUT [V] 01 0 2 0 3 0 4 0 Input Voltage VIN [V] Supply Current ISS [μA] 110°C 25°C -40°C 0 1 02 03 04 0 Input Voltage VIN [V] Supply Current ISS [μA] 110°C 25°C -40°C 0 1 02 03 04 0 Input Voltage VIN [V] Supply Current ISS [μA] 110°C 25°C -40°C

NO. EC-223-220825 6) Supply Current vs. Temperature R8151x020B R8151x050B R8151x120B 7) Input Transient Response (IOUT=1mA, tr=tf=50s, C2=Ceramic 0.1F, Ta=25C) R8151x030B R8151x050B -50 -25 0 25 50 75 100 125 Temperature Topt [°C] Suppuly Current ISS [μA] VIN=8V, IOUT=0mA -50 -25 0 25 50 75 100 125 Temperature Topt [°C] Supply Current ISS [μA] VIN=5V, IOUT=0mA - 5 0 - 2 50 2 55 07 5 1 0 0 1 2 5 Temperature Topt [°C] Supply Current ISS [μA] VIN=15V, IOUT=0mA 2.6 2.8 3.0 3.2 3.4 3.6 3.8 4.0 4.2 4.4 4.6 Time t [ms] Output Voltage VOUT [V] Input Voltage VIN [V] C2=1.0μF C2=10μF Output Voltage Input Voltage 4.4 4.6 4.8 5.0 5.2 5.4 5.6 5.8 6.0 6.2 6.4 Time t [ms] Output Voltage V OUT [V] Input Voltage V IN [V] C2=1.0μF C2=10μF Output Voltage Input Voltage

NO. EC-223-220825 R8151x120B 8) Load Transient Response (VIN=14V, Ta=25C) R8151x030B R8151x050B R8151x120B 10.0 10.5 11.0 11.5 12.0 12.5 13.0 13.5 14.0 14.5 15.0 Time t [ms] Output Voltage V OUT [V] Input Voltage V IN [V] C2=1.0μF C2=10μF Output Voltage Input Voltage 2.2 2.4 2.6 2.8 3.0 3.2 3.4 Time t [ms] Output Voltage VOUT [V] 100 120 Output Current IOUT [mA] C2=1.0μF C2=10μF Output Voltage Output Current 4.2 4.4 4.6 4.8 5.0 5.2 5.4 Time t [ms] Output Voltage VOUT [V] 100 120 Output Current IOUT [mA] C2=1.0μF C2=10μF Output Voltage Output Current 10.4 10.8 11.2 11.6 12.0 12.4 12.8 Time t [ms] Output Voltage VOUT [V] 100 120 Output Current IOUT [mA] C2=1.0μF C2=10μF Output Voltage Output Current 10mA⇔30mA 10mA⇔30mA 10mA⇔30mA

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