R1152N RICOH | Alldatasheet

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High Input Voltage Tolerant Boost Voltage Regulator NO.EA-108-0601 OUTLINE The R1152N Series are CMOS-based positive voltage regulator controller ICs with high output voltage accuracy, low supply current. The high output current regulator can be composed with this IC, an external power transistor, and capacitors. Each of these voltage regulator controllers consists of a voltage reference unit, an error amplifier, comparators, resistors for output voltage setting, a peak current limit protection circuit, a short current limit circuit, and a chip enable circuit. The output voltage of these ICs is internally fixed. In addition to low supply current by the merit of CMOS process, the chip enable function prolongs the battery life. Maximum operating input voltage is up to 18V, thus t hese ICs are very suitable for the power supply for hand-held equipment and other power management applications using various AC adapters. Since the package for these ICs is SOT-23-5 package, high density mounting of the ICs on boards is possible.

FEATURES

12.0V (Fixed type) or adjustable (with external divider resistors can be set more than12.1V, the reference voltage is 2.5V)

  • Built-in Chip Enable Circuit (“H” active)
  • Built-in Current Limit Circuit
  • Output Short Current Limit Circuit

APPLICATIONS

  • Power source for home appliances such as refrigerators, rice cookers, etc.
  • Power source for car audio equipment, car navigation system, and ETC system.
  • Power source for notebook PCs, digital TVs, cordless phones, and LAN system.
  • Power source for copiers, printers, facsimiles, and scanners.

The output voltage, mask option code, and the taping type for the ICs can be selected at the user's request. The selection can be made with designating the part number as shown below; R1152Nxxx B-xx ←Part Number ↑ ↑ ↑ a b c Code Contents a Designation of Voltage Setting: 0.1V Stepwise Setting in the range from 2.5V to 12.0V (Fixed) b Chip Enable Polarity: B: with CE (active at “H” type). c Designation of Taping Type : Ex. TR (Refer to Taping Specifications.)

Pin No Symbol Pin Description

1 CE Chip Enable Pin

2 GND Ground Pin

3 V IN Input pin

4 V DD External Transistor Drive Pin

5 V OUT Voltage Regulator Output Pin

VSURGE SURGE Input Voltage*2 26 V VCE Input Voltage (CE Pin) −0.3~ VIN+0.3 V VOUT Output Voltage (V OUT Pin) −0.3~ VIN+0.3 V VEXT Output Voltage (EXT Pin) −0.3~ VIN+0.3 V IEXT EXT Output Current 25 mA PD Power Dissipation (SOT-23-5* 1) 420 mW Topt Operating Temperature Range −40 ~ +105 °C Tstg Storage Temperature Range −55 ~ +125 °C *1) For Power Dissipation, please refer to PACKAGE INFORMATION to be described. *2) duration = 200ms

  • SOT-23-5 12 3 (mark side)

ELECTRICAL CHARACTERISTICS

  • R1152NxxxB Topt=25°C Symbol Item Conditions Min. Typ. Max. Unit VOUT Output Voltage VIN=Set VOUT+1V IOUT=100mA ×0.980 ×1.020 V IOUT Output Current Refer to the specification Table Note1 1 A ∆VOUT/∆IOUT Load Regulation VIN=Set VOUT+1V 1mA < = IOUT < = 100mA VDIF Dropout Voltage IOUT=300mA Refer to the specification table by output voltage ISS Supply Current VIN=Set VOUT+1V, IOUT=0mA 10 24 µA Istandby Supply Current (Standby) VIN=18V,CE=0V 0.1 1.0 µA IEXTleak EXT Leakage Current 0.1 µA ∆VOUT/∆VIN Line Regulation Set VOUT+0.5V < = VIN < = 18.0V IOUT=100mA 0.01 0.10 %/V VIN Input Voltage 18 V Ilim Current Limit Refer to the specification Table Base Current IB of PNP Tr. 10 25 mA IRPT Short Current Limit Base Current IB of PNP Tr. VOUT=0V 600 µA ∆VOUT/ ∆Topt Output Voltage Temperature Coefficient IOUT=100mA −40°C < = Topt < = 105°C ±50 ppm /°C VCEH CE Input Voltage "H" 2.0 V IN µA VCEL CE Input Voltage "L" 0.0 0.5 V Note1: This item depends on the capability of external PNP transistor. Use low saturation type transistor with h FE value range of 100 to 300.
  • Load Regulation Table (Topt=25°C) Load Regulation (mV) Output Voltage VOUT (V) Typ. Max. 2.5 < = VOUT < = 5.0 4 10 5.0 < = VOUT < = 12.0 4 18
  • Dropout Voltage Table (Topt=25°C) Dropout Voltage (mV) Output Voltage VOUT (V) Typ. Max. 2.5 < = VOUT < 5.0 150 290 5.0 < = VOUT < = 12.0 100 180 ∗This specification depends on an external transistor. ("2SB1642" is the reference item.)
  • Output Current Limit Condition Table (Topt=25°C) Output Voltage VOUT (V) Condition 2.5V < = VOUT < = 4.0 VIN=5.0V 4.0 < = VOUT < = 12.0 VIN=VOUT+1.0V
  • Output Current Condition Table (Topt=25°C) Output Voltage VOUT (V) Condition 2.5V < = VOUT < = 3.9 VIN=CE=5.0V 4.0 < = VOUT < = 12.0 VIN=CE=VOUT+1.0V

In these ICs, fluctuation of Output Voltage, V OUT is detected by the feed-back registers, and the result is compared with a reference voltage with the error amplif ier and control the base current of an external PNP transistor so that a constant voltage is output. The base current is monitored with the base current limit circuit. If the base current may be too large, the protection circuit works. TECHNICAL NOTES When using these ICs, consider the following points: Make V DD and GND lines sufficient. When their impedance is high, noise pickup or unstable operation may result. When you choose an external transistor, select wi th considering output current, input voltage, and power dissipation. Generally, low V CE(SAT) and hFE range from 100 to 300 are the appropriate characteristics. In these ICs, phase compensation is made for securing stable operation even if the load current is varied. For this purpose, be sure to use a 10µF or more output capacitor, as close as possible to the ICs. If you choose an electrolytic capacitor, ESR shift by temperature should be small. If you choose a ceramic capacitor, add an appropriate series resister. If the set output voltage is less than 4.0V, and I OUT>1A must be obtained, at least VIN≧5.0V is the appropriate condition. (Supposed as hFE=100) Voltage level for CE should not be floating, or middle range voltage. If the CE voltage is not appropriate, output voltage may be unstable or conduction current may flow. All external components should be located as close as possible to the IC, and wiring should be as short as possible. If h FE value of the PNP transistor is too high, output voltage may rise at low load current (less than 1mA).

Fig.1 Standard test Circuit C IN=0.1µF, COUT=10µF Fig.2 Supply Current Test Circuit VIN CE GND EXT VOUT COUT OUT PNP Tr P.G. IOUT VIN CE GND EXT VOUT COUT OUT PNP Tr I1 I2 CINVIN Fig.3 Ripple Rejection, Line Transient Respon se Fig.4 Load Transient Response Test Circuit Test Circuit C OUT=10µF C IN=0.1µF, COUT=10µF TYPICAL APPLICATIONS VIN CE GND EXT VOUT CIN OUT COUT PNP Tr IN VIN CE GND EXT VOUT COUT PNP Tr OUT CIN IN Fixed Type Output Adjustable Output (External Components) CIN=0.1µF, COUT=10µF

1) Output Voltage vs. Output Current (Topt =25°C) a. External Tr.: 2SB1642 R1152N025B R1152N033B 0.0 0.5 1.0 1.5 2.0 2.5 3.0 0 500 1000 1500 2000 Output Current I OUT(mA) VIN=5.0V VIN=3.5V VIN=3.0V Output Voltage VOUT(V) 0.0 1.0 2.0 3.0 4.0 0 2000 Output Current I OUT(mA) VIN=5.0V VIN=4.3V VIN=3.8V 500 1000 1500 Output Voltage VOUT(V) R1152N050B R1152N120B 0.0 1.0 2.0 3.0 4.0 5.0 6.0 500 1000 1500 2000 Output Current IOUT(mA) VIN=6.0V VIN=5.5V VIN=7.0V Output Voltage VOUT(V) 0.0 2.0 4.0 6.0 8.0 10.0 12.0 14.0 0 500 1000 1500 2000 Output Current I OUT(mA) Output Voltage VOUT(V) VIN=12.5V VIN=13.0V VIN=14.0V b. External Tr.:2SA1645 R1152N025B R1152N033B 0.0 0.5 1.0 1.5 2.0 2.5 3.0 0 1000 2000 3000 4000 5000 Output Current IOUT(mA) Output Voltage VOUT(V) VIN=5.0V VIN=3.5V VIN=3.0V 0.0 1.0 2.0 4.0 3.0 0 1000 2000 3000 4000 5000 Output Current IOUT(mA) Output Voltage VOUT(V) VIN=5.0V VIN=4.3V VIN=3.8V

0.0 1.0 2.0 3.0 4.0 5.0 6.0 0 1000 2000 3000 4000 6000 5000 Output Current IOUT(mA) Output Voltage VOUT(V) VIN=6.0V VIN=5.5V VIN=7.0V c. Output Voltage vs. Base Current (Topt=25°C) R1152N025B R1152N033B 0.0 0.5 1.0 1.5 2.0 2.5 3.0 0 5 10 15 20 30 25 Base Current IEXT(mA) Output Voltage VOUT(V) VIN=5.0V 0.0 1.0 2.0 4.0 3.0 01 0 2 0 3 0 VIN=5.0V Base Current IEXT(mA) Output Voltage VOUT(V) R1152N050B R1152N012B 0.0 1.0 2.0 6.0 5.0 4.0 3.0 01 0 52 0 2 5 15 30 V IN=6.0V Base Current IEXT(mA) Output Voltage VOUT(V) 0.0 2.0 4.0 14.0 12.0 10.0 8.0 6.0 01 0 52 0 2 5 15 30 V IN=13.0V Base Current IEXT(mA) Output Voltage VOUT(V)

2) Output Voltage vs. Input Voltage (Topt=25°C) External Transistor: 2SB1642 R1152N025B R1152N033B 1.7 1.9 2.1 2.7 2.5 2.3 13 25 7 648 Input Voltage V IN(V) Output Voltage VOUT(V) IOUT=1A IOUT=500mA IOUT=100mA IOUT=0mA 2.1 2.4 2.7 3.6 3.3 3.0 23 5 7 648 Input Voltage V IN(V) Output Voltage VOUT(V) IOUT=1A IOUT=500mA IOUT=100mA IOUT=0mA R1152N050B 4.2 4.4 4.6 5.2 5.0 4.8 45 7 68 Input Voltage V IN(V) Output Voltage VOUT(V) IOUT=1A IOUT=500mA IOUT=100mA IOUT=0mA 3) Output Voltage vs. Temperature R1152N025B R1152N033B 2.450 2.475 2.500 2.550 2.525 -40 -15 35 85 6010 110 Temperature Topt (°C) Output Voltage VOUT(V) IOUT=100mA VIN=3.5V 3.234 3.267 3.300 3.366 3.333 -40 -15 35 85 6010 110 Temperature Topt (°C) Output Voltage VOUT(V) IOUT=100mA VIN=4.3V

4.900 4.950 5.000 5.100 5.050 -40 -15 35 85 6010 110 Temperature Topt (°C) Output Voltage VOUT(V) IOUT=100mA VIN=6.0V 11.760 11.880 12.000 12.240 12.120 -40 -15 35 85 6010 110 Temperature Topt (°C) Output Voltage VOUT(V) IOUT=100mA VIN=13.0V 4) Supply Current vs. Input Voltage (Topt=25°C) R1152N033B R1152N050B 08 41 6 2 0 12 24 Input Voltage V IN(V) Supply Current ISS(µA) 08 41 6 2 0 12 24 Input Voltage V IN(V) Supply Current ISS(µA) R1152N120B 08 41 6 2 0 12 24 Input Voltage V IN(V) Supply Current ISS(µA)

5) Supply Current vs. Temperature R1152N025B R1152N033B -40 10-15 60 85 35 110 Temperature Topt (°C) Supply Current ISS(µA) VIN=VOUT=3.5V -40 10-15 60 85 35 110 Temperature Topt (°C) Supply Current ISS(µA) VIN=VOUT=4.3V R1152N050B R1152N120B -40 10-15 60 85 35 110 Temperature Topt (°C) Supply Current ISS(µA) VIN=VOUT=6.0V -40 10-15 60 85 35 110 Temperature Topt (°C) Supply Current ISS(µA) VIN=VOUT=13.0V 6) Ripple Rejection vs. Ripple Frequency (Topt=25°C) R1152N025B R1152N033B 100 0.01 1 0.1 10 100 Frequency f(kHz) Ripple Rejection RR(dB) VIN=3.5V+0.5Vp-p IOUT=100mA,COUT=10µF 2SB1642 2SA1645 100 0.01 1 0.1 10 100 Frequency f(kHz) Ripple Rejection RR(dB) VIN=4.3V+0.5Vp-p IOUT=100mA,COUT=10µF 2SB1642 2SA1645

0.01 1 0.1 10 100 Frequency f(kHz) Ripple Rejection RR(dB) VIN=6.0V+0.5Vp-p IOUT=100mA,COUT=10µF 2SB1642 2SA1645 100 0.01 1 0.1 10 100 Frequency f(kHz) Ripple Rejection RR(dB) VIN=13.0V+0.5Vp-p IOUT=100mA,COUT=10µF 2SA1645 2SB1642 7) Input Transient Response (Topt=25°C) a. External Tr.: 2SB1642 R1152N025B R1152N033B 2.3 2.4 2.9 2.7 2.6 2.8 2.5 -0.5 0.5 5.5 3.5 2.5 4.5 1.5 0 10050 200 250 150 300 Time (µs) Output VoltageVOUT(V) Input Voltage VIN(V)Input Voltage Output Voltage IOUT=100mA VOUT=10µF 3.1 3.2 3.7 3.5 3.4 3.6 3.3 0.3 1.3 6.3 4.3 3.3 5.3 2.3 0 10050 200 250 150 300 Time (µs) Output VoltageVOUT(V) Input Voltage VIN(V)Input Voltage Output Voltage IOUT=100mA VOUT=10µF R1152N050B R1152N120B 4.8 4.9 5.4 5.2 5.1 5.3 5.0 2.0 3.0 8.0 6.0 5.0 7.0 4.0 0 10050 200 250 150 300 Time (µs) Output VoltageVOUT(V) Input Voltage VIN(V)Input Voltage Output Voltage IOUT=100mA VOUT=10µF 0 10050 200 250 150 300 Time (µs) Input Voltage Output Voltage IOUT=100mA VOUT=10µF 11.8 11.9 12.4 12.2 12.1 12.3 12.0Output VoltageVOUT(V) 9.0 10.0 15.0 13.0 12.0 14.0 11.0 Input Voltage VIN(V)

b. External Tr.: 2SA1645 R1152N025B R1152N033B 2.3 2.4 2.9 2.7 2.6 2.8 2.5 -0.5 0.5 5.5 3.5 2.5 4.5 1.5 0 10050 200 250 150 300 Time (µs) Output Voltage VOUT(V) Input Voltage VIN(V)Input Voltage Output Voltage IOUT=100mA VOUT=10µF 3.1 3.2 3.7 3.5 3.4 3.6 3.3 0.3 1.3 6.3 4.3 3.3 5.3 2.3 0 10050 200 250 150 300 Time (µs) Output Voltage VOUT(V) Input Voltage VIN(V)Input Voltage Output Voltage IOUT=100mA VOUT=10µF R1152N050B R1152N120B 4.8 4.9 5.4 5.2 5.1 5.3 5.0 2.0 3.0 8.0 6.0 5.0 7.0 4.0 0 10050 200 250 150 300 Time (µs) Output Voltage VOUT(V) Input Voltage VIN(V)Input Voltage Output Voltage IOUT=100mA VOUT=10µF 0 10050 200 250 150 300 Time (µs) Input Voltage Output Voltage IOUT=100mA VOUT=10µF 11.8 11.9 12.4 12.2 12.1 12.3 12.0 9.0 10.0 15.0 13.0 12.0 14.0 11.0 Output Voltage VOUT(V) Input Voltage VIN(V) 8) Load Transient Response (Topt=25°C) a: External Tr.: 2SB1642 R1152N025B R1152N033B 2.40 2.50 2.45 2.75 2.65 2.60 2.70 2.55 120 100 0 400 200 800 600 1000 Time (µs) Output Voltage VOUT(V) Output Current IOUT(mA)Output Current Output Voltage CIN=0.1µF COUT=10µF 3.20 3.30 3.25 3.55 3.45 3.40 3.50 3.35 120 100 0 400 200 800 600 1000 Time (µs) Output Voltage VOUT(V) Output Current IOUT(mA)Output Current Output Voltage CIN=0.1µF COUT=10µF

4.90 5.00 4.95 5.25 5.15 5.10 5.20 5.05 120 100 0 400 200 800 600 1000 Time (µs) Output Voltage VOUT(V) Output Current IOUT(mA)Output Current Output Voltage CIN=0.1µF COUT=10µF 11.90 12.00 11.95 12.25 12.15 12.10 12.20 12.05 120 100 0 400 200 800 600 1000 Time (µs) Output Voltage VOUT(V) Output Current IOUT(mA)Output Current Output Voltage CIN=0.1µF COUT=10µF b. External Tr.: 2SA1645 R1152N025B R1152N033B 2.40 2.50 2.45 2.75 2.65 2.60 2.70 2.55 120 100 0 400 200 800 600 1000 Time (µs) Output Voltage VOUT(V) Output Current IOUT(mA)Output Current Output Voltage CIN=0.1µF COUT=10µF 3.20 3.30 3.25 3.55 3.45 3.40 3.50 3.35 120 100 0 400 200 800 600 1000 Time (µs) Output Voltage VOUT(V) Output Current IOUT(mA)Output Current Output Voltage CIN=0.1µF COUT=10µF R1152N050B R1152N120B 4.90 5.00 4.95 5.25 5.15 5.10 5.20 5.05 120 100 0 400 200 800 600 1000 Time (µs) Output Voltage VOUT(V) Output Current IOUT(mA)Output Current Output Voltage CIN=0.1µF COUT=10µF 11.90 12.00 11.95 12.25 12.15 12.10 12.20 12.05 120 100 0 400 200 800 600 1000 Time (µs) Output Voltage VOUT(V) Output Current IOUT(mA)Output Current Output Voltage CIN=0.1µF COUT=10µF

  • Technical Notes on Output Voltage Setting EXT VOUT GND R3 2.5V VOUT2 OUT PNP Tr IIC RIC The output voltage of regulator with R1152N025x may be adjustable for any output voltage between its 2.5V reference and VDD setting level. An external pair of resistors is required, as shown above figure. The complete equation for the output voltage is described step by step as follows; I Thus, Therefore, Put Equation (3) into Equation (4), then VOUT=2.5+R2×(IIC+2.5/R3) In 2nd term, or R2×IIC will produce an error in VOUT. In Equation(5), R2×IIC=R2×2.5/RIC For better accuracy, choosing R2 (<<RIC) reduces this error. ∗RIC is approximately 1.1MΩ.
  • Adjustable Resister vs. Output Voltage (Topt=25°C) R1125N025B R1125N025B 02 0 6 0 8 0 40 100 Resistance R2(kΩ) Output Voltage VOUT(V) R3=10kΩ Topt=25°C 0 200 600 800400 1000 R 3=100kΩ Topt=25°C Resistance R2(kΩ) Output Voltage VOUT(V) For Stable Operation Phase Compensation In these ICs, phase compensation is externally made fo r securing stable operation even if the load current is varied. For this purpose, be sure to use a capacitor fo r the output pin with good fr equency characteristics and ESR (Equivalent Series Resistance) of which is in the range described as follows: VIN CE GND EXT VOUT COUT OUT PNP Tr CIN Ceramic Capacitor 0.1µF Spectrum Analyze IN Ceramic Capacitor 10µF ESR IOUT S.A Measuring Circuit for white noise; R1152NxxxB The relations between I OUT (Output Current) and ESR of Output Ca pacitor are shown below. The conditions when the white noise level is under 40µV (Avg.) are marked as the hatched area in the graph. <Measurement conditions> (1)VIN=VOUT+1V (2)Frequency band: 10Hz to 1MHz (3)Temperature: 25°C (4)C OUT: Ceramic 10µF; ESR=0.075Ω(10kHz)

a) Tr.: 2SB1642 R1152N025B R1152N120Bx 0.01 0.1 1000 100 0 200 600 800400 1000 Output Current IOUT(mA) ESR(Ω) 0.01 0.1 1000 100 0 200 600 800400 1000 Output Current IOUT(mA) ESR(Ω) b) Tr.: 2SA1645 R1152N025B R1152N120B 0.01 0.1 1000 100 0 200 600 800400 1000 Output Current IOUT(mA) ESR(Ω) 0.01 0.1 1000 100 0 200 600 800400 1000 Output Current IOUT(mA) ESR(Ω)

PACKAGE INFORMATION PE-SOT-23-5-0510

  • SOT-23-5 (SC-74A) Unit: mm PACKAGE DIMENSIONS 2.9±0.2 0.4±0.1 1.9±0.2 (0.95) (0.95) 123 +0.2 −0.11.6 +0.2 −0.11.1 +0.1 −0.050.15 2.8±0.3 0 to 0.1 0.8±0.1 0.2 MIN. TAPING SPECIFICATION 2.0MAX. 0.3±0.1 4.0±0.1 2.0±0.05 4.0±0.1 3.3 3.2 8.0±0.3 1.75±0.13.5±0.05 φ1.5+0.1 ∅1.1±0.1 TR User Direction of Feed TAPING REEL DIMENSIONS (1reel=3000pcs) 2±0.5 11.4±1.0 9.0±0.313±0.2∅ 60∅ +1 180∅ 0 −1.5 21±0.8

PACKAGE INFORMATION PE-SOT-23-5-0510 POWER DISSIPATION (SOT-23-5) This specification is at mounted on board. Power Dissipation (PD) depends on conditions of mounting on board. This specification is based on the measurement at the condition below: (Power Dissipation (SOT-23-5) is substitution of SOT-23-6.) Measurement Conditions Standard Land Pattern Environment Mounting on Board (Wind velocity=0m/s) Board Material Glass cloth epoxy plactic (Double sided) Board Dimensions 40mm × 40mm × 1.6mm Copper Ratio Top side : Approx. 50% , Back side : Approx. 50% Through-hole φ0.5mm × 44pcs Measurement Result (Topt=25 °C,Tjmax=125°C) Standard Land Pattern Free Air Power Dissipation 420mW 250mW Thermal Resistance θja=(125−25°C)/0.42W=263°C/W 400 °C/W 0 50 10025 75 85 125 150 Ambient Temperature (°C) 200 100 300 400 250 420 500 600Power Dissipation PD(mW) On Board Free Air Power Dissipation Measurement Board Pattern IC Mount Area Unit : mm RECOMMENDED LAND PATTERN 0.7 MAX. 0.950.95 1.9 2.4 1.0 (Unit: mm)

MARK INFORMATION ME-R1152N-0409 R1152N SERIES MARK SPECIFICATION

  • SOT-23-5 (SC-74A) 1 2 3 4 5 1 , 2 , 3 : Product Code (refer to Part Number vs. Product Code) 4 , 5 : Lot Number
  • Part Number vs. Product Code Product Code Product Code Product Code Product Code Part Number 1 2 3 Part Number 1 2 3 Part Number 1 2 3 Part Number 1 2 3 R1152N025B B 2 5 R1152N056B B 5 6 R1152N087B B 8 7 R1152N118B B 1 8 R1152N026B B 2 6 R1152N057B B 5 7 R1152N088B B 8 8 R1152N119B B 1 9 R1152N027B B 2 7 R1152N058B B 5 8 R1152N089B B 8 9 R1152N120B B 2 0 R1152N028B B 2 8 R1152N059B B 5 9 R1152N090B B 9 0 R1152N029B B 2 9 R1152N060B B 6 0 R1152N091B B 9 1 R1152N030B B 3 0 R1152N061B B 6 1 R1152N092B B 9 2 R1152N031B B 3 1 R1152N062B B 6 2 R1152N093B B 9 3 R1152N032B B 3 2 R1152N063B B 6 3 R1152N094B B 9 4 R1152N033B B 3 3 R1152N064B B 6 4 R1152N095B B 9 5 R1152N034B B 3 4 R1152N065B B 6 5 R1152N096B B 9 6 R1152N035B B 3 5 R1152N066B B 6 6 R1152N097B B 9 7 R1152N036B B 3 6 R1152N067B B 6 7 R1152N098B B 9 8 R1152N037B B 3 7 R1152N068B B 6 8 R1152N099B B 9 9 R1152N038B B 3 8 R1152N069B B 6 9 R1152N100B B 0 0 R1152N039B B 3 9 R1152N070B B 7 0 R1152N101B B 0 1 R1152N040B B 4 0 R1152N071B B 7 1 R1152N102B B 0 2 R1152N041B B 4 1 R1152N072B B 7 2 R1152N103B B 0 3 R1152N042B B 4 2 R1152N073B B 7 3 R1152N104B B 0 4 R1152N043B B 4 3 R1152N074B B 7 4 R1152N105B B 0 5 R1152N044B B 4 4 R1152N075B B 7 5 R1152N106B B 0 6 R1152N045B B 4 5 R1152N076B B 7 6 R1152N107B B 0 7 R1152N046B B 4 6 R1152N077B B 7 7 R1152N108B B 0 8 R1152N047B B 4 7 R1152N078B B 7 8 R1152N109B B 0 9 R1152N048B B 4 8 R1152N079B B 7 9 R1152N110B B 1 0 R1152N049B B 4 9 R1152N080B B 8 0 R1152N111B B 1 1 R1152N050B B 5 0 R1152N081B B 8 1 R1152N112B B 1 2 R1152N051B B 5 1 R1152N082B B 8 2 R1152N113B B 1 3 R1152N052B B 5 2 R1152N083B B 8 3 R1152N114B B 1 4 R1152N053B B 5 3 R1152N084B B 8 4 R1152N115B B 1 5 R1152N054B B 5 4 R1152N085B B 8 5 R1152N116B B 1 6 R1152N055B B 5 5 R1152N086B B 8 6 R1152N117B B 1 7