XC62HR TOREX | Alldatasheet

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u CMOS Low Power Consumption u Small Input-Output Voltage Differential: 0.18V at 60mA, 0.58V at 160mA u Maximum Output Current: 165mA (VOUT =3.0V) u Highly Accurate: –2%(–1%) u Output Voltage Range: 2.0V~6.0V u Standby Supply Current 0.1µA(VOUT =3.0V) u SOT-25/SOT-89-5 Package n Applications l Battery Powered Instruments l Voltage supplies for cellular phones l Cameras and Video Recorders l Palmtops n Pin Assignment XC62HR Series Positive Voltage Regulators CEVINVSS VOUT (NC) VOUT (NC) V IN CE VSS 321 123 SOT-89-5 (TOP VIEW) SOT-25 (TOP VIEW) Preliminary Output On/Off Control n Function H=High, L=Low SERIES CE VOLTAGE OUTPUT XC62HR HO N LO F F XC62HP HO F F LO N PIN NUMBER SOT-25 SOT-89-5 PIN NAME FUNCTION 1 4 No Connection Supply Voltage Input Chip Enable (NC) VIN CE Ground Regulated Output Voltage VSS VOUT n General Description The XC62H series are highly precise, low power consumption, positive voltage regulators, manufactured using CMOS and laser trimming technologies. The series consists of a high precision voltage reference, an error correction circuit, and an output driver with current limitation. By way of the CE function, with output turned off, the series enters stand- by. In the stand-by mode, power consumption is greatly reduced. SOT-25 (150mW) and SOT-89-5 (500mW) packages are available. In relation to the CE function, as well as the positive logic XC62HR series, a negative logic XC62HP series (custom) is also available. n Features Maximum Output Current: 165mA (within Maximum power dissipation, VOUT =3.0V) Output Voltage Range: 2.0V ~ 6.0V in 0.1V increments (1.1V to 1.9V semi-custom) Highly Accurate: Set-up Voltage –2% (–1% for semi-custom products) Low power consumption: TYP 3.0µA (V OUT =3.0, Output enabled) TYP 0.1µA (Output disabled) Output voltage temperature characteristics: TYP –100ppm/: Input stability: TYP 0.2%/V Ultra small package: SOT-25 (150mW) mini-mold SOT-89-5 (500mW) mini-power mold HP010199

n Absolute Maximum Ratings n Standard Circuit Ta=25 : PARAMETER RATINGS UNITSSYMBOL Input Voltage 12 V VIN Output Current 500 mA IOUT Output Voltage VSS-0.3 ~ V IN+0.3 VVOUT CE Input Voltage VSS-0.3 ~ V IN+0.3 VVCE Continuous Total Power Dissipation 150Pd 500 mW Pd SOT-25 SOT-89-5 Operating Ambient Temperature -30 ~ +80 :Topr Storage Temperature -40 ~ +25 :Tstg Note: IOUT must be less than Pd / (VIN-VOUT ). VSS CE VIN VIN R LC L 1µF (Tantalum) C IN 1µF (Tantalum) VOUT w-45 XC62HR Series Positive Voltage Regulators

n Electrical Characteristics Ta=25: XC62HR2002 V OUT (T)=2.0V(Note1) PARAMETER SYMBOL CONDITIONS Output Voltage VOUT (E) (Note2) IOUT =40mA VIN=3.0V Load Stability ∆VOUT Input -Output Voltage Differential (Note3) Maximum Output Current I OUT max V IN=3.0V, VOUT (E) ³ 1.8V CE "High" Current ICEH V CE =VIN CE "Low" Current ICEL V CE =VSS VIN=3.0V 1mA ² IOUT ² 60mA w-46 MIN 1.960 2.9 115 TYP 2.000 45 90 -0.05 MAX 2.040 7.9 5.0 UNITS V mV µA mA µA µA CIRCUIT 0.2 0.3 %/V 1 180 360 mV 1Vdif1 I OUT =40mA 880580 mV 1Vdif2 I OUT =100mA VIN=VCE =3.0VSupply Current1 ISS1

10.0 V —Input Voltage V IN

0.1 µA2VIN=3.0V, VCE =VSSSupply Current2 ISS2 -0.2

1.5 V 1CE "High" Voltage VCEH

0.25 V 1CE "Low" Voltage VCEL

Input Stability IOUT =40mA 3.0V ² VIN ² 10.0V ∆VOUT ∆VIN • VOUT –100 ppm/ : 1Output Voltage Temperature Characteristics IOUT =40mA -30: ² Topr ² 80: ∆VOUT ∆Topr • VOUT 1. VOUT (T)=Specified Output Voltage . 3. Vdif= {VIN1 (Note5)-VOUT 1 (Note4)} 4. VOUT 1= A voltage equal to 98% of the Output Voltage whenever an amply stabilised IOUT {VOUT (T)+1.0V} is input. 5. VIN1= The Input Voltage when VOUT 1 appears as Input Voltage is gradually decreased. Note:

n Electrical Characteristics Ta=25: XC62HR3002 V OUT (T)=3.0V(Note1) PARAMETER SYMBOL CONDITIONS Output Voltage VOUT (E) (Note2) IOUT =40mA VIN=4.0V Load Stability ∆VOUT Input -Output Voltage Differential (Note3) Maximum Output Current I OUT max V IN=4.0V, VOUT (E)‡2.7V CE "High" Current ICEH V CE =VIN CE "Low" Current ICEL V CE =VSS VIN=4.0V 1mA ² IOUT ² 80mA w-47 XC62HR Series Positive Voltage Regulators MIN 2.940 3.0 165 TYP 3.000 45 90 -0.05 MAX 3.060 8.0 5.0 UNITS V mV µA mA µA µA CIRCUIT 0.2 0.3 %/V 1 180 360 mV 1Vdif1 I OUT =60mA 880580 mV 1Vdif2 I OUT =160mA VIN=VCE =4.0VSupply Current1 ISS1 0.1 µA2VIN=4.0V, VCE =VSSSupply Current2 ISS2 -0.2 Input Stability IOUT =40mA 4.0V ² VIN ² 10.0V ∆VOUT ∆VIN • VOUT –100 ppm/ : 1Output Voltage Temperature Characteristics IOUT =40mA -30: ² Topr ² 80: ∆VOUT ∆Topr • VOUT 1. VOUT (T)=Specified Output Voltage . 3. Vdif= {VIN1 (Note5)-VOUT 1 (Note4)} 4. VOUT 1= A voltage equal to 98% of the Output Voltage whenever an amply stabilised IOUT {VOUT (T)+1.0V} is input. 5. VIN1= The Input Voltage when VOUT 1 appears as Input Voltage is gradually decreased. 6. Semi-custom. Note:

n Electrical Characteristics Ta=25: XC62HR4002 V OUT (T)=4.0V(Note1) PARAMETER SYMBOL CONDITIONS Output Voltage VOUT (E) (Note2) IOUT =40mA VIN=5.0V Load Stability ∆VOUT Input -Output Voltage Differential (Note3) Maximum Output Current I OUT max V IN=5.0V, VOUT (E) ³ 3.6V CE "High" Current ICEH V CE =VIN CE "Low" Current ICEL V CE =VSS VIN=5.0V 1mA ² IOUT ² 100mA w-48 MIN 3.920 3.1 200 TYP 4.000 45 90 -0.05 MAX 4.080 8.1 5.0 UNITS V mV µA mA µA µA CIRCUIT 0.2 0.3 %/V 1 170 340 mV 1Vdif1 I OUT =80mA 840560 mV 1Vdif2 I OUT =180mA VIN=VCE =5.0VSupply Current1 ISS1 0.1 µA2VIN=5.0V, VCE =VSSSupply Current2 ISS2 -0.2 Input Stability IOUT =40mA 5.0V ² VIN ² 10.0V ∆VOUT ∆VIN • VOUT –100 ppm/ : 1Output Voltage Temperature Characteristics IOUT =40mA -30: ² Topr ² 80: ∆VOUT ∆Topr • VOUT 1. VOUT (T)=Specified Output Voltage . 3. Vdif= {VIN1 (Note5)-VOUT 1 (Note4)} 4. VOUT 1= A voltage equal to 98% of the Output Voltage whenever an amply stabilised IOUT {VOUT (T)+1.0V} is input. 5. VIN1= The Input Voltage when VOUT 1 appears as Input Voltage is gradually decreased. 6. Semi-custom. Note:

n Electrical Characteristics Ta=25: XC62HR5002 V OUT (T)=5.0V(Note1) PARAMETER SYMBOL CONDITIONS Output Voltage VOUT (E) (Note2) IOUT =40mA VIN=6.0V Load Stability ∆VOUT Input -Output Voltage Differential (Note3) Maximum Output Current I OUT max V IN=6.0V, VOUT (E) ³ 4.5V CE "High" Current ICEH V CE =VIN CE "Low" Current ICEL V CE =VSS VIN=6.0V 1mA ² IOUT ² 100mA w-49 XC62HR Series Positive Voltage Regulators MIN 4.900 3.1 220 TYP 5.000 40 80 -0.05 MAX 5.100 8.1 5.0 UNITS V mV µA mA µA µA CIRCUIT 0.2 0.3 %/V 1 165 320 mV 1Vdif1 I OUT =100mA 820540 mV 1Vdif2 I OUT =200mA VIN=VCE =6.0VSupply Current1 ISS1 0.1 µA2VIN=6.0V, VCE =VSSSupply Current2 ISS2 -0.2 Input Stability IOUT =40mA 6.0V ² VIN ² 10.0V ∆VOUT ∆VIN • VOUT –100 ppm/ : 1Output Voltage Temperature Characteristics IOUT =40mA -30: ² Topr ² 80: ∆VOUT ∆Topr • VOUT 1. VOUT (T)=Specified Output Voltage . 3. Vdif= {VIN1 (Note5)-VOUT 1 (Note4)} 4. VOUT 1= A voltage equal to 98% of the Output Voltage whenever an amply stabilised IOUT {VOUT (T)+1.0V} is input. 5. VIN1= The Input Voltage when VOUT 1 appears as Input Voltage is gradually decreased. 6. Semi-custom. Note:

qRepresents the integer of the Output Voltage eBased on internal standards rRepresents the assembly lot no. 0-9,A-Z repeated (G, I, J, O, Q, W excepted) wRepresents the decimal point of the Output Voltage XC62Hxxxxxxx 1 432 1 DESIGNATOR R TYPE POSITIVE VOLTAGE LOGIC SYMBOL VOLTAGE(V) P TYPE NEGATIVE VOLTAGE LOGIC SYMBOL VOLTAGE(V) SYMBOL VOLTAGE(V) SYMBOL SYMBOL VOLTAGE(V) 1.w 1– 0 0.w 0– 7 7.w 7– 6 6.w 6– 5 5.w 5– 9 9.w 9– 8 8.w 8– 4 4.w 4– 3 3.w 3– 2 2.w 1.w 0.w 7.w 6.w 5.w 9.w 8.w 4.w 3.w 2.w2– 1 q.1 1– 0 q.0 0– 7 q.7 7– 6 q.6 6– 5 q.5 5– 9 q.9 9– 8 q.8 8– 4 q.4 4– 3 q.3 3– 2 q.2 q.1 q.0 q.7 q.6 q.5 q.9 q.8 q.4 q.3 q.22– a e f b c d DESCRIPTION DESIGNATOR DESCRIPTION True Logic Level at CE Pin: R=Positive P=Negative(Custom) Output Voltage 30=3.0V 50=5.0V Output Voltage Accuracy: 1=–1.0%(Semi-custom) 2=–2.0% Package Type M=SOT-25 P=SOT-89-5 Device Orientation R=Embossed Tape (Orientation of Device:Right) L=Embossed Tape (Orientation of Device:Left) n Ordering Information SOT-89-5 (TOP VIEW) SOT-25 (TOP VIEW) a b c d e f w-5081

n Typical Application Circuit Circuit 1 n Typical Application Circuit Circuit 2 VIN VCE 1µF (Tantalum)1µF (Tantalum) VSS CE VIN VOUT VIN VCE Open VSS CE VIN VOUT V A A A w-51 XC62HR Series Positive Voltage Regulators

4.7 0 100 604020 80 140 160 120 180 4.8 4.9 5.0 5.1 (1) OUTPUT VOLTAGE vs. OUTPUT CURRENT OUTPUT VOLTAGE:V OUT (V) OUTPUT CURRENT:I OUT (mA) XC62HR5002 (5V) VIN=6V Topr=-30: 80:25: OUTPUT VOLTAGE:V OUT (V) OUTPUT CURRENT:I OUT (mA) XC62HR4002 (4V) 3.7 0 100 604020 80 140 160 120 180 3.8 3.9 4.0 4.1 VIN=5V Topr=-30: 80:25: 2.7 0 100 604020 80 140 160 120 180 2.8 2.9 3.0 3.1 OUTPUT VOLTAGE:V OUT (V) OUTPUT CURRENT:I OUT (mA) XC62HR3002 (3V) VIN=4V Topr=-30: 80:25: OUTPUT VOLTAGE:V OUT (V) OUTPUT CURRENT:I OUT (mA) XC62HR2002 (2V) 1.7 0 100 604020 80 140 160 120 180 1.8 1.9 2.0 2.1 VIN=3V Topr=-30: 80: 25:

XC62HR Series Positive Voltage Regulators 46 579 81 0 3.85 3.90 3.95 4.00 4.05 4.10 4.85 4.90 4.95 5.00 5.05 5.10 57 69 81 0 4.2 4.5 5.0 5.5 4.4 4.6 4.8 5.0 5.2 (2) OUTPUT VOLTAGE vs. INPUT VOLTAGE OUTPUT VOLTAGE:V OUT (V) INPUT VOLTAGE:V IN(V) XC62HR5002 (5V) Topr=25: IOUT =1mA 40mA 10mA OUTPUT VOLTAGE:V OUT (V) INPUT VOLTAGE:V IN(V) XC62HR5002 (5V) 3.2 3.5 4.0 4.5 3.4 3.6 3.8 4.0 4.2 Topr=25: IOUT =1mA 40mA 10mA Topr=25: IOUT=1mA 10mA 40mA OUTPUT VOLTAGE:V OUT (V) INPUT VOLTAGE:V IN(V) XC62HR4002 (4V) OUTPUT VOLTAGE:V OUT (V) INPUT VOLTAGE:V IN(V) XC62HR4002 (4V) Topr=25: IOUT =1mA 40mA 10mA

1.85 1.90 1.95 2.00 2.05 2.10 2.85 2.90 2.95 3.00 3.05 3.10 2.2 2.5 3.0 3.5 2.4 2.6 2.8 3.0 3.2 (2) OUTPUT VOLTAGE vs. INPUT VOLTAGE (CONTINUED) OUTPUT VOLTAGE:V OUT (V) INPUT VOLTAGE:V IN(V) XC62HR3002 (3V) Topr=25: IOUT =1mA 40mA 10mA OUTPUT VOLTAGE:V OUT (V) INPUT VOLTAGE:V IN(V) XC62HR3002 (3V) 1.2 1.5 2.0 2.5 1.4 1.6 1.8 2.0 2.2 Topr=25: IOUT =1mA 40mA 10mA Topr=25: IOUT=1mA 10mA 40mA OUTPUT VOLTAGE:V OUT (V) INPUT VOLTAGE:V IN(V) XC62HR2002 (2V) OUTPUT VOLTAGE:V OUT (V) INPUT VOLTAGE:V IN(V) XC62HR2002 (2V) Topr=25: IOUT =1mA 40mA 10mA

XC62HR Series Positive Voltage Regulators 0 100 604020 80 140 160 120 0 100 604020 80 140 160 120 0 100 604020 80 140 160 120 0.0 0.2 0.4 0.6 0.8 1.0 (3) INPUT/OUTPUT VOLTAGE DIFFERENTIAL vs. OUTPUT CURRENT DIFFERENTIAL:Vdif(V) OUTPUT CURRENT:I OUT (mA) XC62HR5002 (5V) Topr=-30: 80: 25: XC62HR4002 (4V) 0.0 0.2 0.4 0.6 0.8 1.0 DIFFERENTIAL:Vdif(V) OUTPUT CURRENT:I OUT (mA) Topr=-30: 80: 25: 0.0 0.2 0.4 0.6 0.8 1.0 DIFFERENTIAL:Vdif(V) OUTPUT CURRENT:I OUT (mA) Topr=-30: 80: 25: 0.0 0.2 0.4 0.6 0.8 1.0 0 100 604020 80 140 160 120 DIFFERENTIAL:Vdif(V) OUTPUT CURRENT:I OUT (mA) Topr=-30: 80: 25: XC62HR3002 (3V) XC62HR2002 (2V)

0.3 0.4 0.5 0.6 0.7 04 28 61 0 (4) CE PIN THRESHOLD VOLTAGE vs. INPUT VOLTAGE THRESHOLD VOLTAGE VCEH, VCEL (V) INPUT VOLTAGE:V IN(V) XC62HR5002 (5V) Topr=30: 25: 80: "H"Level Voltage "L"Level Voltage XC62HR4002 (4V) 0.3 0.4 0.5 0.6 0.7 04 28 61 0 THRESHOLD VOLTAGE VCEH, VCEL (V) INPUT VOLTAGE:V IN(V) Topr=30: 25: 80: "H"Level Voltage 0.3 0.4 0.5 0.6 0.7 04 28 61 0 THRESHOLD VOLTAGE VCEH, VCEL (V) INPUT VOLTAGE:V IN(V) Topr=30: 25: 80: "H"Level Voltage 0.3 0.4 0.5 0.6 0.7 04 28 61 0 THRESHOLD VOLTAGE VCEH, VCEL (V) INPUT VOLTAGE:V IN(V) Topr=30: 25: 80: "H"Level Voltage XC62HR3002 (3V) XC62HR2002 (2V) "L"Level Voltage"L"Level Voltage "L"Level Voltage

XC62HR Series Positive Voltage Regulators 46 579 81 0 2.5 3.0 3.5 4.0 04 28 61 0 Topr=-30: 25: 80: Topr=-30: 25: 80: 3.0 3.5 4.0 4.5 57 69 81 0 04 28 61 0 (5) SUPPLY CURRENT vs. INPUT VOLTAGE SUPPLY CURRENT ISS ( µA) INPUT VOLTAGE:V IN(V) XC62HR5002 (5V) Topr=-30: 25: 80: XC62HR5002 (5V) SUPPLY CURRENT ISS ( µA) INPUT VOLTAGE:V IN(V) Topr=-30: 25: 80: SUPPLY CURRENT ISS ( µA) INPUT VOLTAGE:V IN(V) SUPPLY CURRENT ISS ( µA) INPUT VOLTAGE:V IN(V) XC62HR4002 (4V) XC62HR4002 (4V)

Topr=-30: 25: 80: 34567 9 81 0 2.0 2.5 3.0 3.5 Topr=-30: 25: 80: 2.5 3.0 3.5 4.0 04 28 61 0 (5) SUPPLY CURRENT vs. INPUT VOLTAGE (CONTINUED) SUPPLY CURRENT ISS ( µA) INPUT VOLTAGE:V IN(V) XC62HR3002 (3V) Topr=-30: 25: 80: XC62HR3002 (3V) SUPPLY CURRENT ISS ( µA) INPUT VOLTAGE:V IN(V) Topr=-30: 25: 80: SUPPLY CURRENT ISS ( µA) INPUT VOLTAGE:V IN(V) SUPPLY CURRENT ISS ( µA) INPUT VOLTAGE:V IN(V) XC62HR2002 (2V) XC62HR2002 (2V)

XC62HR Series Positive Voltage Regulators 1.90 1.95 2.00 2.05 2.10 OUTPUT VOLTAGE:V OUT (V) VIN=3V -40 0 40 20-20 60 80 IOUT =30mA 100mA 2.90 2.95 3.00 3.05 3.10 OUTPUT VOLTAGE:V OUT (V) AMBIENT TEMP. :Topr(:) VIN=4V AMBIENT TEMP. :Topr(:) -40 0 40 20-20 60 80 IOUT =30mA 100mA 3.90 3.95 4.00 4.05 4.10 OUTPUT VOLTAGE:V OUT (V) VIN=5V -40 0 40 20-20 60 80 IOUT =30mA 100mA 4.90 4.95 5.00 5.05 5.10 (6) OUTPUT VOLTAGE vs. AMBIENT TEMPERATURE OUTPUT VOLTAGE:V OUT (V) AMBIENT TEMP. :Topr(:) XC62HR5002 (5V) VIN=6V AMBIENT TEMP. :Topr(:) XC62HR4002 (4V) XC62HR3002 (3V) XC62HR2002 (2V) -40 0 40 20-20 60 80 IOUT =30mA 100mA

SUPPLY CURRENT:ISS( µA) VIN=3V -40 0 40 20-20 60 80 SUPPLY CURRENT:ISS( µA) AMBIENT TEMP. :Topr(:) VIN=4V AMBIENT TEMP. :Topr(:) -40 0 40 20-20 60 80 SUPPLY CURRENT:ISS( µA) VIN=5V -40 0 40 20-20 60 80 (7) SUPPLY CURRENT vs. AMBIENT TEMPERATURE SUPPLY CURRENT:ISS( µA) AMBIENT TEMP. :Topr(:) XC62HR5002 (5V) VIN=6V AMBIENT TEMP. :Topr(:) XC62HR4002 (4V) XC62HR3002 (3V) XC62HR2002 (2V) -40 0 40 20-20 60 80

XC62HR Series Positive Voltage Regulators (8) INPUT TRANSIENT RESPONSE 1 INPUT VOLTAGE V IN(V) OUTPUT VOLTAGE V OUT (V) TIME (msec) XC62HR5002 (5V) IOUT =1mA XC62HR5002 (5V) XC62HR5002 (5V) Input Voltage Output Voltage INPUT VOLTAGE V IN(V) OUTPUT VOLTAGE V OUT (V) TIME (msec) IOUT =100mA Input Voltage Output Voltage INPUT VOLTAGE V IN(V) OUTPUT VOLTAGE V OUT (V) TIME (msec) IOUT =10mA Input Voltage Output Voltage

(8) INPUT TRANSIENT RESPONSE 1 (CONTINUED) XC62HR4002 (4V) IOUT =1mA XC62HR4002 (4V) XC62HR4002 (4V) Input Voltage Output Voltage Output Voltage IOUT =100mA Input Voltage INPUT VOLTAGE V IN(V) IOUT =10mA Input Voltage INPUT VOLTAGE V IN(V) OUTPUT VOLTAGE V OUT (V) TIME (msec) OUTPUT VOLTAGE V OUT (V) TIME (msec) INPUT VOLTAGE V IN(V) OUTPUT VOLTAGE V OUT (V) TIME (msec)

XC62HR Series Positive Voltage Regulators (8) INPUT TRANSIENT RESPONSE 1 (CONTINUED) XC62HR3002 (3V) IOUT =1mA XC62HR3002 (3V) XC62HR3002 (3V) Input Voltage Output Voltage Output Voltage Output Voltage IOUT =100mA Input Voltage IOUT =10mA Input Voltage INPUT VOLTAGE V IN(V) INPUT VOLTAGE V IN(V) OUTPUT VOLTAGE V OUT (V) TIME (msec) OUTPUT VOLTAGE V OUT (V) TIME (msec) INPUT VOLTAGE V IN(V) OUTPUT VOLTAGE V OUT (V) TIME (msec)

(8) INPUT TRANSIENT RESPONSE 1 (CONTINUED) XC62HR2002 (2V) IOUT =1mA XC62HR2002 (2V) XC62HR2002 (2V) Output Voltage Output Voltage IOUT =100mA Input Voltage IOUT =10mA Input Voltage Output Voltage Input Voltage INPUT VOLTAGE V IN(V) INPUT VOLTAGE V IN(V) OUTPUT VOLTAGE V OUT (V) TIME (msec) OUTPUT VOLTAGE V OUT (V) TIME (msec) INPUT VOLTAGE V IN(V) OUTPUT VOLTAGE V OUT (V) TIME (msec)

XC62HR Series Positive Voltage Regulators (9) INPUT TRANSIENT RESPONSE 2 XC62HR5002 (5V) IOUT =1mA XC62HR5002 (5V) XC62HR5002 (5V) Input Voltage Output Voltage Input Voltage Output Voltage Input Voltage Output Voltage IOUT =100mA IOUT =10mA INPUT VOLTAGE V IN(V) INPUT VOLTAGE V IN(V) OUTPUT VOLTAGE V OUT (V) TIME (msec) OUTPUT VOLTAGE V OUT (V) TIME (msec) INPUT VOLTAGE V IN(V) OUTPUT VOLTAGE V OUT (V) TIME (msec)

(9) INPUT TRANSIENT RESPONSE 2 (CONTINUED) XC62HR4002 (4V) IOUT =1mA XC62HR4002 (4V) XC62HR4002 (4V) Input Voltage Output Voltage Input Voltage Output Voltage Input Voltage Output Voltage IOUT =100mA IOUT =10mA INPUT VOLTAGE V IN(V) INPUT VOLTAGE V IN(V) OUTPUT VOLTAGE V OUT (V) TIME (msec) OUTPUT VOLTAGE V OUT (V) TIME (msec) INPUT VOLTAGE V IN(V) OUTPUT VOLTAGE V OUT (V) TIME (msec)

XC62HR Series Positive Voltage Regulators (9) INPUT TRANSIENT RESPONSE 2 (CONTINUED) XC62HR3002 (3V) IOUT =1mA XC62HR3002 (3V) XC62HR3002 (3V) Input Voltage Output Voltage Input Voltage Output Voltage Input Voltage Output Voltage IOUT =100mA IOUT =10mA INPUT VOLTAGE V IN(V) INPUT VOLTAGE V IN(V) OUTPUT VOLTAGE V OUT (V) TIME (msec) OUTPUT VOLTAGE V OUT (V) TIME (msec) INPUT VOLTAGE V IN(V) OUTPUT VOLTAGE V OUT (V) TIME (msec)

(9) INPUT TRANSIENT RESPONSE 2 (CONTINUED) XC62HR2002 (2V) IOUT =1mA XC62HR2002 (2V) XC62HR2002 (2V) Input Voltage Output Voltage Input Voltage Output Voltage Input Voltage Output Voltage IOUT =100mA IOUT =10mA INPUT VOLTAGE V IN(V) INPUT VOLTAGE V IN(V) OUTPUT VOLTAGE V OUT (V) TIME (msec) OUTPUT VOLTAGE V OUT (V) TIME (msec) INPUT VOLTAGE V IN(V) OUTPUT VOLTAGE V OUT (V) TIME (msec)

XC62HR Series Positive Voltage Regulators 02 13 4 (10) LOAD TRANSIENT RESPONSE OUTPUT VOLTAGE:V OUT (V) TIME (msec) XC62HR5002 (5V) VIN=6V XC62HR5002 (5V) XC62HR4002 (4V) XC62HR4002 (4V) Output Voltage Output Current40mA 1mA 02 13 4 VIN=6V Output Voltage Output Current80mA 1mA 02 13 4 VIN=5V Output Voltage Output Current40mA 1mA 02 13 4 VIN=5V Output Voltage Output Current80mA 1mA OUTPUT VOLTAGE:V OUT (V) TIME (msec) OUTPUT VOLTAGE:V OUT (V) TIME (msec) OUTPUT VOLTAGE:V OUT (V) TIME (msec) 100

(10) LOAD TRANSIENT RESPONSE (CONTINUED) XC62HR3002 (3V) VIN=4V XC62HR3002 (3V) XC62HR2002 (2V) XC62HR2002 (2V) Output Voltage Output Current40mA 1mA 02 13 4 VIN=4V Output Voltage Output Current80mA 1mA 02 13 4 VIN=3V Output Voltage Output Current40mA 1mA 02 13 4 VIN=3V Output Voltage Output Current80mA 1mA OUTPUT VOLTAGE:V OUT (V) TIME (msec) OUTPUT VOLTAGE:V OUT (V) TIME (msec) OUTPUT VOLTAGE:V OUT (V) TIME (msec) OUTPUT VOLTAGE:V OUT (V) TIME (msec) 101

XC62HR Series Positive Voltage Regulators 0.0 0.2 0.4 (11) CE PIN TRANSIENT RESPONSE XC62HR5002 (5V) IOUT =1mA XC62HR5002 (5V) XC62HR5002 (5V) CE=1.5V CE pin input Voltage CE=0.25V Output Voltage 0.0 0.2 0.4 CE=1.5V CE pin input Voltage CE=0.25V Output Voltage 0.0 0.2 0.4 CE=1.5V CE pin input Voltage CE=0.25V Output Voltage IOUT =10mA IOUT =100mA OUTPUT VOLTAGE:V OUT (V) TIME (msec) OUTPUT VOLTAGE:V OUT (V) TIME (msec) OUTPUT VOLTAGE:V OUT (V) TIME (msec) 102

0.0 0.2 0.4 (11) CE PIN TRANSIENT RESPONSE (CONTINUED) XC62HR4002 (4V) IOUT =1mA XC62HR4002 (4V) XC62HR4002 (4V) CE=1.5V CE pin input Voltage CE=0.25V Output Voltage 0.0 0.2 0.4 CE=1.5V CE pin input Voltage CE=0.25V Output Voltage 0.0 0.2 0.4 CE=1.5V CE pin input Voltage CE=0.25V Output Voltage IOUT =10mA IOUT =100mA OUTPUT VOLTAGE:V OUT (V) TIME (msec) OUTPUT VOLTAGE:V OUT (V) TIME (msec) OUTPUT VOLTAGE:V OUT (V) TIME (msec) 103

XC62HR Series Positive Voltage Regulators 0.0 0.2 0.4 (11) CE PIN TRANSIENT RESPONSE (CONTINUED) XC62HR3002 (3V) IOUT =1mA XC62HR3002 (3V) XC62HR3002 (3V) CE pin input Voltage CE=0.25V CE=1.5V Output Voltage 0.0 0.2 0.4 CE pin input Voltage CE=0.25V CE=1.5V Output Voltage 0.0 0.2 0.4 CE pin input Voltage CE=0.25V CE=1.5V Output Voltage IOUT =10mA IOUT =100mA OUTPUT VOLTAGE:V OUT (V) TIME (msec) OUTPUT VOLTAGE:V OUT (V) TIME (msec) OUTPUT VOLTAGE:V OUT (V) TIME (msec) 104

0.0 0.2 0.4 (11) CE PIN TRANSIENT RESPONSE (CONTINUED) XC62HR2002 (2V) IOUT =1mA XC62HR2002 (2V) XC62HR2002 (2V) CE pin input Voltage CE=0.25V CE=1.5V Output Voltage 0.0 0.2 0.4 CE pin input Voltage CE=0.25V CE=1.5V Output Voltage 0.0 0.2 0.4 CE pin input Voltage CE=0.25V CE=1.5V Output Voltage IOUT =10mA IOUT =100mA OUTPUT VOLTAGE:V OUT (V) TIME (msec) OUTPUT VOLTAGE:V OUT (V) TIME (msec) OUTPUT VOLTAGE:V OUT (V) TIME (msec) 105

XC62HR Series Positive Voltage Regulators (12) RIPPLE REJECTION RATE RIPPLE REJECTION RATE RR (dB) RIPPLE FREQUECY f (kHz) XC62HR5002 VIN=6VDC+1Vp-pAC, IOUT =30mA, Topr=25˚C XC62HR4002 XC62HR3002 0.01 0.1 1 10 VIN=4VDC+1Vp-pAC, IOUT =40mA, Topr=25˚C 0.01 0.1 1 10 VIN=5VDC+1Vp-pAC, IOUT =30mA, Topr=25˚C 0.01 0.1 1 10 RIPPLE REJECTION RATE RR (dB) RIPPLE FREQUECY f (kHz) RIPPLE REJECTION RATE RR (dB) RIPPLE FREQUECY f (kHz) 106