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XC6504A501MR-G

XC6504A501MR-G

  • 厂商:

    TOREX(特瑞仕)

  • 封装:

    SOT-25

  • 描述:

    IC REG LINEAR 5V 150MA SOT25

  • 详情介绍
  • 数据手册
  • 价格&库存
XC6504A501MR-G 数据手册
XC6504 Series ETR03047-008 0.6μA Ultra Low Power Consumption Small Voltage Regulator (CL Capacitor-Less) ■ GENERAL DESCRIPTION The XC6504 series is a highly accurate CMOS voltage regulator that achieves very low supply current operation of 0.6μA. Even output current is 1μA (when light load), the XC6504 can provide high accurate outputs, which is ideally suited for the applications to draw less output current. The usage of super small package USPN-4B02 (0.75 x 0.95mm) and the advantage of capacitor-less stable operation can contribute the board space saving outstandingly. The IC consists of a reference voltage source, an error amplifier, a driver transistor, over-current protection circuit, and a phase compensation circuit. Output voltage is fixed internally by laser trimming technology and can be selectable in 0.1V increments within the range of 1.1V to 5.0V. ■ FEATURES ■ APPLICATIONS ● Mobile devices / terminals ● Wireless LAN ● Modules (wireless, cameras, etc.) Supply Current Input Voltage Range Output Voltage Range Output Accuracy : : : : Temperature Stability Maximum Output Current Low On Resistance Protection Functions CE Function : : : : : Output Capacitor : Operating Temperature Packages Ambient Environmentally Friendly ■ TYPICAL APPLICATION CIRCUIT 0.6μA 1.4V ~ 6.0V 1.1V ~ 5.0V (0.1V increments) ±0.02V@VOUT<2.0V ±1%@VOUT≧2.0V ±50ppm/℃ 150mA 3.3Ω@VOUT=3.0V Current Limiter CL Auto Discharge ON/OFF Logic=Enable High Low ESR Ceramic Capacitor (CL Capacitor-Less Compatible) : -40℃~ 85℃ : USPN-4B02 SSOT-24 SOT-25 USPQ-4B04 EU RoHS Compliant, Pb Free : ■TYPICAL PERFORMANCE CHARACTERISTICS V CE =V IN IOUT =0mA CIN=CL=open XC6504x181xR VIN 1.2 CE VSS Supply Current: I SS [μA] CIN=0.1μF (Ceramic) 1.4 VOUT Ta=-40℃ Ta=25℃ 1.0 Ta=85℃ 0.8 0.6 0.4 0.2 0.0 0 1 2 3 4 5 6 Input Voltage: VIN [V] 1/27 XC6504 Series ■BLOCK DIAGRAM Type A VIN Voltage Reference -Error Amp + Current Limit VOUT R1 CEB ON/OFF Control CE CEB each circuit CE RDCHG R2 VSS * Diodes inside the circuits are ESD protection diodes and parasitic diodes. ■PRODUCT CLASSIFICATION ●Ordering Information XC6504①②③④⑤⑥-⑦ DESIGNATOR ITEM SYMBOL ① Type A Refer to Selection Guide ②③ Output Voltage 11~50 e.g. 1.8V → ②=1, ③=8 ④ Output Voltage Accuracy 1 Packages (Order Unit) 7R-G NR-G MR-G 9R-G ⑤⑥-⑦(*1) (*1) DESCRIPTION ±0.02V (VOUT<2.0V), ±1% (VOUT≧2.0V) USPN-4B02 (5,000pcs/Reel) SSOT-24 (3,000pcs/Reel) SOT-25 (3,000pcs/Reel) USPQ-4B04 (3,000pcs/Reel) The “-G” suffix denotes Halogen and Antimony free as well as being fully EU RoHS compliant. ●Selection Guide 2/27 TYPE CURRENT LIMITTER CE PULL-DOWN RESISTOR CL AUTO-DISCHARGE A Yes No Yes XC6504 Series ■PIN CONFIGURATION VIN 4 1 VOUT CE 3 2 VSS CE 3 VIN 4 2 VSS 1 VOUT USPQ-4B04 (BOTTOM VIEW) USPN-4B02 (BOTTOM VIEW) VOUT NC 4 VIN 4 VOUT 3 5 1 CE 2 VSS 1 2 3 VIN VSS CE SSOT-24 (TOP VIEW) SOT-25 (TOP VIEW) *The dissipation pad for the USPQ-4B04 package should be solder-plated in reference mount pattern and metal masking so as to enhance mounting strength and heat release. If the pad needs to be connected to other pins, it should be connected to the VSS (No. 2) pin. ■PIN ASSIGNMENT PIN NUMBER PIN NAME FUNCTIONS 5 VOUT Output 2 2 VSS Ground 3 1 3 CE ON/OFF Control 4 4 4 1 VIN Power Supply Input - - - 4 NC No Connection USPN-4B02 USPQ-4B04 SSOT-24 SOT-25 1 1 3 2 2 3 ■FUNCTION CHART PIN NAME SIGNAL STATUS L Stand-by CE H Active OPEN Unstable * Please avoid the state of OPEN, and connect CE pin to any arbitrary voltage. 3/27 XC6504 Series ■ABSOLUTE MAXIMUM RATINGS Ta=25℃ PARAMETER SYMBOL RATINGS UNITS Input Voltage VIN -0.3 ~ 6.5 V Output Current IOUT Output Voltage VOUT -0.3 ~ VIN + 0.3 or 6.5 (*2) V CE Input Voltage VCE -0.3 ~ 6.5 V USPN-4B02 Pd SSOT-24 550 (40mm x 40mm Standard board) (*3) 100 (IC only) 550 (40mm x 40mm Standard board) (*3) 150 (IC only) 250 (IC only) 600 (40mm x 40mm Standard board) (*3) Operating Ambient Temperature Topr -40 ~ 85 ℃ Storage Temperature Tstg -55 ~ 125 ℃ All voltages are described based on the VSS. (*2) (*3) Please use within the range of IOUT≦Pd / (VIN-VOUT) The maximum rating corresponds to the lowest value between VIN+0.3V or 6.5V. The power dissipation figure shown is PCB mounted and is for reference only Please see the power dissipation page for the mounting condition. . 4/27 mW 500 (40mm x 40mm Standard board) (*3) SOT-25 (*1) mA 100 (IC only) USPQ-4B04 Power Dissipation 470 (*1) XC6504 Series ■ELECTRICAL CHARACTERISTICS Ta=25℃ PARAMETER SYMBOL Input Voltage VIN Output Voltage VOUT(E) (*1) Maximum Output Current IOUTMAX Load Regulation ΔVOUT Dropout Voltage Supply Current Stand-by Current Line Regulation IOUT=1μA Vdif1 (*3) Vdif2 CONDITIONS (*3) ISS ISTB TYP. MAX. UNITS CIRCUIT 1.4 - 6.0 V ① V ① mA ① mV ① V ① μA ② μA ② %/V ① VOUT(T)<2.0V -0.02 VOUT(T)≧2.0V ×0.99 VOUT(T)(*2) +0.02 ×1.01 150 - - 1μA≦IOUT≦1mA - 3 16 1mA≦IOUT≦150mA - 17 50 IOUT=50mA - E-1 (*4) IOUT=150mA - E-2 (*4) VOUT(T)<1.9V - 0.60 1.27 1.9V≦VOUT(T)<4.0V - 0.65 1.50 VOUT(T)≧4.0V - 0.80 1.80 VIN=6.0V, VCE=VSS - 0.01 0.10 IOUT=1μA - 0.01 0.13 - 0.01 0.19 - ±50 - ppm/℃ ① 150 270 - mA ① - 80 - mA ① 280 450 640 Ω ① 0.91 - 6.00 V ③ IOUT=0mA VOUT(T)+0.5V≦VIN≦6.0V VOUT(T)<1.2V, ΔVOUT/ (ΔVIN・VOUT) MIN. IOUT=1mA 1.7V≦VIN≦6.0V VOUT(T)≧1.2V, VOUT(T)+0.5V≦VIN≦6.0V Output Voltage Temperature ΔVOUT/ IOUT=10mA, (ΔTopr ・VOUT) -40℃≦Topr≦85℃ Current Limit ILIM VOUT=VOUT(E)×0.95 Short-Circuit Current ISHORT VOUT=VSS RDCHG VCE=VSS, VOUT=VOUT(T) Characteristics CL Auto-Discharge Resistance CE "H" Level Voltage VCEH CE "L" Level Voltage VCEL VSS - 0.38 V ③ CE "H" Level Current ICEH VIN= 6.0V -0.1 - 0.1 μA ③ CE "L" Level Current ICEL VIN=6.0V, VCE=VSS -0.1 - 0.1 μA ③ NOTE: Unless otherwise stated, VCE=VIN, IOUT=1mA, CIN=CL=open, VIN is below: VOUT(T)<2.5V : VIN=3.5V VOUT(T)≧2.5V : VIN=VOUT(T)+1.0V (*1) VOUT(E) is Effective output voltage (*2) VOUT(T) is Nominal output voltage (*3) Vdif={VIN1-VOUT1} VIN1 is the input voltage when VOUT1 appears at the VOUT pin while input voltage is gradually decreased. VOUT1 is the voltage equal to 98% of the normal output voltage when amply stabilized VOUT(T) +1.0V is input at the VIN pin. (*4) E-1 / E-2: DROPOUT VOLTAGE (Refer to the Voltage Chart) 5/27 XC6504 Series ■ELECTRICAL CHARACTERISTICS (Continued) Voltage Chart Ta=25℃ NOMINAL - E-1 E-2 OUTPUT OUTPUT VOLTAGE DROPOUT VOLTAGE VOLTAGE (V) (V) VOUT(T) VOUT(E) 6/27 Vdif1 Vdif2 (V) MIN. MAX. TYP. MAX. TYP. MAX. 1.1 1.0800 1.1200 0.96 1.35 1.51 2.05 1.2 1.1800 1.2200 0.87 1.23 1.41 1.93 1.3 1.2800 1.3200 0.77 1.12 1.33 1.83 1.4 1.3800 1.4200 0.69 1.01 1.24 1.72 1.5 1.4800 1.5200 0.62 0.91 1.17 1.63 1.6 1.5800 1.6200 0.56 0.84 1.10 1.54 1.7 1.6800 1.7200 0.51 0.77 1.04 1.47 1.8 1.7800 1.8200 0.47 0.72 0.99 1.40 1.9 1.8800 1.9200 0.42 0.64 0.92 1.29 2.0 1.9800 2.0200 2.1 2.0790 2.1210 0.37 0.58 0.86 1.20 2.2 2.1780 2.2220 2.3 2.2770 2.3230 0.31 0.47 0.75 1.05 2.4 2.3760 2.4240 2.5 2.4750 2.5250 0.26 0.40 0.67 0.92 2.6 2.5740 2.6260 2.7 2.6730 2.7270 0.23 0.34 0.60 0.82 2.8 2.7720 2.8280 2.9 2.8710 2.9290 0.20 0.30 0.54 0.74 3.0 2.9700 3.0300 3.1 3.0690 3.1310 3.2 3.1680 3.2320 0.17 0.26 0.50 0.67 3.3 3.2670 3.3330 3.4 3.3660 3.4340 3.5 3.4650 3.5350 3.6 3.5640 3.6360 3.7 3.6630 3.7370 0.15 0.22 0.43 0.59 3.8 3.7620 3.8380 3.9 3.8610 3.9390 4.0 3.9600 4.0400 4.1 4.0590 4.1410 4.2 4.1580 4.2420 0.13 0.19 0.38 0.51 4.3 4.2570 4.3430 4.4 4.3560 4.4440 4.5 4.4550 4.5450 4.6 4.5540 4.6460 4.7 4.6530 4.7470 0.11 0.17 0.35 0.47 4.8 4.7520 4.8480 4.9 4.8510 4.9490 5.0 4.9500 5.0500 0.10 0.16 0.32 0.43 XC6504 Series ■TEST CIRCUITS Circuit ① VIN VOUT A SW2 V CE SW1 V RL VSS Circuit ② A V VIN VOUT CE SW1 VSS Circuit ③ VIN V SW1 A V VOUT CE A V RL VSS 7/27 XC6504 Series ■ OPERATIONAL EXPLANATION The voltage divided by resistors R1 & R2 is compared with the internal reference voltage by the error amplifier. The VOUT pin is then driven by the subsequent output signal. The output voltage at the VOUT pin is controlled and stabilized by a system of negative feedback. VIN Voltage Reference -Error Amp + Current Limit VOUT R1 CEB CE ON/OFF Control CEB each circuit CE RDCHG R2 VSS XC6504 Series, Type A The XC6504 series includes a combination of a fixed current limiter circuit & a foldback circuit, which aid the operations of the current limiter and circuit protection. When the load current reaches the current limit level, the fixed current limiter circuit operates and output voltage drops. As a result of this drop in output voltage, the foldback circuit operates, output voltage drops further and output current decreases. The XC6504 internal circuitry can be shutdown via the signal from the CE pin with the XC6504 series. In shutdown mode with CE low level voltage is input, output at the VOUT pin will be pulled down to the VSS level via parallel to R1 & R2 and CL discharge resistance (RDCHG). If this IC is used with the correct output voltage for the CE pin, the logic is fixed and the IC will operate normally. However, supply current may increase as a result of through current in the IC's internal circuitry when medium voltage is input. The output voltage becomes unstable when the CE pin is opened. The XC6504 series can quickly discharge the electric charge at the output capacitor (CL), when a low signal to the CE pin, which enables a whole IC circuit put into OFF state, is inputted via an internal switch located between the VOUT pin and the VSS pin. In this state, the application is protected from a glitch operation caused by the electric charge at the output capacitor (CL). Moreover, discharge time of the output capacitor (CL) is set by the CL auto-discharge resistance (RDCHG) and the output capacitor (CL). By setting time constant of a CL auto-discharge resistance value (RDCHG) and an output capacitor value (CL) as τ(τ= CL x RDCHG), the output voltage after discharge via the internal switch is calculated by the following formulas. Please also note RDCHG is depended on VIN and When VIN is high, RDCHG is low. V = VOUT(E)×e-t/τ or t=τln(VOUT(E) / V) V: Output voltage after discharge VOUT(E): Output voltage t: Discharge time τ: CL x RDCHG The XC6504 series can provide a stable output voltage even if without CL capacitor or with a low ESR CL capacitor because of a built-in phase compensation circuit. In case of adding a CL capacitor, we suggest that an output capacitor (CL) is connected as close as possible to the VOUT pin and the VSS pin. When VIN stabilization is needed, please place an input capacitor (CIN) as close as to the VIN pin and the VSS pin. 8/27 XC6504 Series ■NOTES ON USE 1. For temporary, transitional voltage drop or voltage rising phenomenon, the IC is liable to malfunction should the ratings be exceeded. 2. Where wiring impedance is high, operations may become unstable due to noise and/or phase lag depending on output current. Please keep the resistance low between VIN and VSS wiring in particular. 3. Please wire the input capacitor (CIN) and the output capacitor (CL) as close to the IC as possible. 4. Capacitances of these capacitors (CIN, CL) are decreased by the influences of bias voltage and ambient temperature. Care shall be taken for capacitor selection to ensure stability of phase compensation from the point of ESR influence. 5. Torex places an importance on improving our products and their reliability. We request that users incorporate fail-safe designs and post-aging prevention treatment when using Torex products in their systems. 9/27 XC6504 Series ■TYPICAL PERFORMANCE CHARACTERISTICS Unless otherwise stated, Ta=25℃, VCE=VIN, IOUT=1mA, CIN=CL=open, VIN is below. VOUT(T)<2.5V : VIN=3.5V VOUT(T)≧2.5V : VIN=VOUT(T)+1.0V (1) Output Voltage vs. Output Current XC6504x121xR 1.4 800 1.2 1.2 700 1.0 VIN=2.5V VIN=3.5V VIN=4.5V VIN=6.0V 0.8 0.6 0.4 0.2 0.0 Dropout Voltage: Vdif [mV] 1.4 Output Voltage: VOUT [V] Output Voltage: VOUT [V] XC6504x121xR 1.0 Ta=-40℃ 0.8 Ta=25℃ 0.6 Ta=85℃ 0.4 0.2 0.0 0 50 100 150 200 250 300 350 400 600 500 400 300 200 100 0 0 50 Output Current: IOUT [mA] 100 150 200 250 300 350 400 0 Output Current: IOUT [mA] (4) Supply Cur XC6504x181xR 2.1 2.1 1.8 1.8 1.5 VIN=2.5V VIN=3.5V VIN=4.5V VIN=6.0V 1.2 0.9 0.6 0.3 0.0 1.4 1.5 Ta=-40℃ 1.2 Ta=25℃ 0.9 Ta=85℃ 0.6 0.3 0.0 50 100 150 200 250 300 350 400 0 50 Output Current: IOUT [mA] 2.8 2.8 Output Voltage: VOUT [V] Output Voltage: VOUT [V] 3.2 2.4 VIN=3.5V VIN=3.8V VIN=4.5V VIN=6.0V 1.2 0.8 Output Current: IOUT [mA] 350 400 Ta=25℃ Ta=85℃ 1.2 0.8 0.0 200 250 300 Ta=-40℃ 1.6 0.0 100 150 0.6 0.4 0.2 0.0 1.4 2.0 0.4 50 0.8 0 2.4 0.4 0 350 400 1.0 XC6504x281xR 3.2 1.6 200 250 300 1.2 Output Current: IOUT [mA] XC6504x281xR 2.0 100 150 Supply Current: ISS [μA] 0 10/27 Supply Current: ISS [μA] Output Voltage: VOUT [V] Output Voltage: VOUT [V] XC6504x181xR 0 50 100 150 200 250 300 Output Current: IOUT [mA] 350 400 1.2 1.0 0.8 0.6 0.4 0.2 0.0 0 XC6504 Series ■TYPICAL PERFORMANCE CHARACTERISTICS (Continued) Unless otherwise stated, Ta=25℃, VCE=VIN, IOUT=1mA, CIN=CL=open, VIN is below. VOUT(T)<2.5V : VIN=3.5V VOUT(T)≧2.5V : VIN=VOUT(T)+1.0V (1) Output Voltage vs. Output Current XC6504x421xR 4.9 4.2 4.2 3.5 VIN=4.5V 2.8 VIN=5.2V 2.1 VIN=6.0V 1.4 0.7 0.0 1.30 Output Voltage: VOUT [V] 4.9 Output Voltage: VOUT [V] Output Voltage: VOUT [V] XC6504x421xR 3.5 Ta=-40℃ 2.8 Ta=25℃ 2.1 Ta=85℃ 1.4 0.7 50 100 150 200 250 300 350 400 1.20 1.15 1.10 0.0 0 1.25 0 50 100 150 Output Current: IOUT [mA] 200 250 300 -50 350 400 Output Current: IOUT [mA] (2) Output Voltage vs. Input Voltage XC6504x121xR XC6504x121xR 2.90 1.2 1.0 0.8 0.6 IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA 0.4 0.2 0.0 1.250 1.200 IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA 1.150 1.100 2.85 2.80 2.75 2.70 -50 1.050 0 1 2 3 4 Input Voltage: VIN [V] 5 6 2.5 3 3.5 4 4.5 5 Input Voltage: VIN [V] 5.5 6 (6) Supply Cur XC6504x181xR XC6504x181xR 1.4 1.900 Output Voltage: VOUT [V] 1.8 1.5 1.2 0.9 IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA 0.6 0.3 0.0 Supply Current: ISS [μA] 2.1 Output Voltage: VOUT [V] Output Voltage: VOUT [V] 1.300 Output Voltage: VOUT [V] Output Voltage: VOUT [V] 1.4 1.850 1.800 IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA 1.750 1.700 1.650 0 1 2 3 4 Input Voltage: VIN [V] 5 6 3 3.5 4 4.5 5 Input Voltage: VIN [V] 5.5 6 11/27 1.2 1 0.8 0.6 0.4 0.2 0 -50 XC6504 Series ■TYPICAL PERFORMANCE CHARACTERISTICS (Continued) Unless otherwise stated, Ta=25℃, VCE=VIN, IOUT=1mA, CIN=CL=open, VIN is below. VOUT(T)<2.5V : VIN=3.5V VOUT(T)≧2.5V : VIN=VOUT(T)+1.0V (2) Output Voltage vs. Input Voltage XC6504x281xR XC6504x281xR 3.2 2.900 6.0 2.4 2.0 1.6 IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA 1.2 0.8 0.4 0.0 4.0 2.850 2.800 2.750 IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA 2.700 1 2 3 4 5 6 3.5 4 Input Voltage: VIN [V] XC6504x421xR 4.5 5 5.5 Input Voltage: VIN [V] 2.0 0.0 -2.0 -4.0 -6.0 -8.0 2.650 0 6 -10.0 XC6504x421xR 4.9 6.0 4.300 4.0 3.5 2.8 2.1 IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA 1.4 0.7 0.0 4.250 Input Voltage: VIN [V] 4.2 Output Voltage: VOUT [V] Output Voltage: VOUT [V] Input Voltage: VIN [V] Output Voltage: VOUT [V] Output Voltage: VOUT [V] 2.8 4.200 4.150 IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA 4.100 1 2 3 4 Input Voltage: VIN [V] 5 6 5 5.2 5.4 5.6 5.8 Input Voltage: VIN [V] 0.0 -2.0 -4.0 -6.0 -8.0 4.050 0 2.0 6 -10.0 (3) Dropout Voltage vs. Output Current XC6504x121xR XC6504x181xR 1800 1600 1400 1200 1000 800 600 400 ※ Below the minimum operating Voltage 200 0 1600 4.0 Ta=-40℃ Ta=25℃ Ta=85℃ 1400 1200 1000 800 600 400 200 3.0 2.0 1.0 0.0 0 0 12/27 5.0 Input Voltage: VIN [V] Ta=-40℃ Ta=25℃ Ta=85℃ Dropout Voltage: Vdif [mV] Dropout Voltage: Vdif [mV] 1800 50 100 Output Current: IOUT [mA] 150 0 50 100 Output Current: IOUT [mA] 150 -1.0 XC6504 Series ■TYPICAL PERFORMANCE CHARACTERISTICS (Continued) Unless otherwise stated, Ta=25℃, VCE=VIN, IOUT=1mA, CIN=CL=open, VIN is below. VOUT(T)<2.5V : VIN=3.5V VOUT(T)≧2.5V : VIN=VOUT(T)+1.0V (3) Dropout Voltage vs. Output Current XC6504x281xR XC6504x421xR 800 Ta=-40℃ Ta=25℃ Ta=85℃ 600 500 400 300 200 100 0 5.0 700 4.0 Ta=-40℃ Ta=25℃ Ta=85℃ 600 500 Input Voltage: VIN [V] 700 Dropout Voltage: Vdif [mV] Dropout Voltage: Vdif [mV] 800 400 300 200 3.0 2.0 1.0 100 0.0 0 0 50 100 Output Current: IOUT [mA] 150 0 50 100 Output Current: IOUT [mA] 150 -1.0 (4) Supply Current vs. Input Voltage XC6504x121xR XC6504x181xR 1.4 Ta=-40℃ Ta=25℃ Ta=85℃ 1.2 1.0 Supply Current: ISS [μA] Supply Current: ISS [μA] 1.4 0.8 0.6 0.4 0.2 0.0 4.0 Ta=-40℃ Ta=25℃ Ta=85℃ 1.2 1.0 0.8 0.6 0.4 1 2 3 4 Input Voltage: VIN [V] 5 6 1 2 3 4 Input Voltage: VIN [V] 5 6 XC6504x421xR 7.0 IOUT=0mA 1.4 6.0 0.8 0.6 0.4 0.2 0.0 1.2 Input Voltage: VIN [V] Supply Current: ISS [μA] Ta=-40℃ Ta=25℃ Ta=85℃ 1.0 1.0 0.8 0.6 0.4 Ta=-40℃ Ta=25℃ Ta=85℃ 0.2 1 2 3 4 Input Voltage: VIN [V] 5 6 0 1 2 3 4 Input Voltage: VIN [V] 5 5.0 4.0 3.0 2.0 1.0 0.0 0 1.0 -1.0 0 IOUT=0mA 1.2 2.0 0.0 XC6504x281xR 1.4 3.0 0.2 0.0 0 Supply Current: ISS [μA] 5.0 IOUT=0mA Input Voltage: VIN [V] IOUT=0mA 6 13/27 XC6504 Series ■TYPICAL PERFORMANCE CHARACTERISTICS (Continued) Unless otherwise stated, Ta=25℃, VCE=VIN, IOUT=1mA, CIN=CL=open, VIN is below. VOUT(T)<2.5V : VIN=3.5V VOUT(T)≧2.5V : VIN=VOUT(T)+1.0V (5) Supply Current vs. Output Current XC6504x121xR XC6504x181xR V IN=3.5V Ta=-40℃ Ta=25℃ Ta=85℃ 40 30 20 10 VIN=3.5V 50 Supply Current: ISS [μA] Supply Current: ISS [μA] 50 0 Ta=-40℃ Ta=25℃ Ta=85℃ 40 30 20 10 0 0 30 60 90 120 150 0 30 Output Current: IOUT [mA] XC6504x281xR V IN=3.8V 120 150 30 20 10 V IN=5.2V 50 Supply Current: ISS [μA] Supply Current: ISS [μA] Ta=-40℃ Ta=25℃ Ta=85℃ 0 Ta=-40℃ Ta=25℃ Ta=85℃ 40 30 20 10 0 0 30 60 90 120 Output Current: IOUT [mA] 14/27 90 XC6504x421xR 50 40 60 Output Current: IOUT [mA] 150 0 30 60 90 120 Output Current: IOUT [mA] 150 XC6504 Series ■TYPICAL PERFORMANCE CHARACTERISTICS (Continued) Unless otherwise stated, Ta=25℃, VCE=VIN, IOUT=1mA, CIN=CL=open, VIN is below. VOUT(T)<2.5V : VIN=3.5V VOUT(T)≧2.5V : VIN=VOUT(T)+1.0V (6) (5) Output Voltage vs. Ambient Temperature XC6504x121xR XC6504x181xR 3 1.25 1.20 IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA 1.15 1.10 1.85 1.80 IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA 1.75 -25 0 25 50 75 Ambient Temperature: Ta [℃] 100 -50 XC6504x281xR 1 0 -1 -25 0 25 50 75 Ambient Temperature: Ta [℃] 100 -2 XC6504x421xR 3 2.85 2.80 IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA 2.75 2.70 Output Voltage: VOUT [V] 4.30 Output Voltage: VOUT [V] 2.90 4.25 4.20 IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA 4.15 2 1 0 -1 4.10 -50 -25 0 25 50 75 Ambient Temperature: Ta [℃] 100 (7) (6) Supply Current vs. Ambient Temperature -50 1 VOUT=1.2V VOUT=1.8V VOUT=2.8V VOUT=4.2V 0.8 0.6 0.4 0.2 0 -50 -2 XC6504xxx1xR 3 IOUT=0mA -25 0 25 50 75 Ambient Temperature: Ta [℃] 1.0 CE Threshold Voltage: VCE [V] 1.2 100 (8) (7) CE Threshold Voltage vs. Ambient Temperature XC6504xxx1xR 1.4 -25 0 25 50 75 Ambient Temperature: Ta [℃] 100 Output Voltage: VOUT [V] Output Voltage: VOUT [V] 2 1.70 -50 Supply Current: ISS [μA] Output Voltage: VOUT [V] 1.90 Output Voltage: VOUT [V] Output Voltage: VOUT [V] 1.30 0.8 0.6 0.4 CE"H"LEVEL 0.2 0.0 -50 CE"L"LEVEL -25 0 25 50 75 Ambient Temperature: Ta [℃] 2 1 0 -1 -2 100 15/27 Ou XC6504 Series ■TYPICAL PERFORMANCE CHARACTERISTICS (Continued) Unless otherwise stated, Ta=25℃, VCE=VIN, IOUT=1mA, CIN=CL=open, VIN is below. VOUT(T)<2.5V : VIN=3.5V VOUT(T)≧2.5V : VIN=VOUT(T)+1.0V (9) (8) Rising Response Time -6.0 Output Voltage 2.5 2.0 1.5 1.0 2.0 0.0 -2.0 -8.0 -10.0 0.0 -10.0 Time (100μs/div) XC6504x281xR XC6504x421xR Input Voltage IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA 0.0 -2.0 -4.0 -6.0 Output Voltage -8.0 -10.0 8.0 6.0 7.0 4.0 6.0 5.0 4.0 3.0 2.0 Input Voltage: VIN [V] 4.0 2.0 IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA Time (100μs/div) VIN=0V→3.8V , tr=5μs VIN=0V→5.2V , tr=5μs Input Voltage 2.0 0.0 Output Voltage IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA -6.0 0.0 -10.0 Time (100μs/div) 2 1 0 -1 0.5 0.0 -2 8.0 4 7.0 5.0 4.0 -4.0 -8.0 1.0 6.0 -2.0 1.0 2.0 1.5 -6.0 0.5 3.0 2.5 Output Voltage -4.0 -8.0 6.0 Input Voltage: VIN [V] 3.0 3.5 Input Voltage Output Voltage: VOUT [V] -4.0 4.0 3 4.0 3.0 2.0 Output Voltage: VOUT [V] -2.0 3.5 VIN=0V→3.5V , tr=5μs Output Voltage: VOUT [V] IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA 0.0 6.0 Input Voltage: VIN [V] 2.0 Input Voltage 4.0 Output Voltage: VOUT [V] Input Voltage: VIN [V] 4.0 XC6504x181xR Output Voltage: VOUT [V] 6.0 VIN=0V→3.5V , tr=5μs Output Voltage: VOUT [V] XC6504x121xR 3 2 1 0 1.0 -1 0.0 Time (100μs/div) (10) (9) Input Transient Response XC6504x121xR IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA 2.0 1.0 3.0 4.0 2.5 2.0 1.5 0.0 1.0 2.0 16/27 4 3.5 3.0 2.5 without CL CL=0.1μF(ceramic) 1.0 2.0 1.5 0.0 1.0 Output Voltage 0.5 Time (100μs/div) Input Voltage 3.0 Output Voltage -1.0 VIN=3.5V⇔4.5V , tr=tf=5μs -1.0 3 2 1 0 -1 0.5 Time (100μs/div) Output Voltage: VOUT [V] 3.0 5.0 Output Voltage: VOUT [V] Input Voltage 3.5 Input Voltage: VIN [V] Input Voltage: VIN [V] 4.0 VIN=3.5V⇔4.5V , tr=tf=5μs Output Voltage: VOUT [V] 5.0 XC6504x121xR XC6504 Series ■TYPICAL PERFORMANCE CHARACTERISTICS (Continued) Unless otherwise stated, Ta=25℃, VCE=VIN, IOUT=1mA, CIN=CL=open, VIN is below. VOUT(T)<2.5V : VIN=3.5V VOUT(T)≧2.5V : VIN=VOUT(T)+1.0V (10) (9) Input Transient Response XC6504x181xR 2.0 0.0 1.5 Output Voltage 4.0 3.0 2.0 2.5 1.0 2.0 0.0 1.5 -1.0 Time (100μs/div) XC6504x281xR XC6504x281xR VIN=3.8V⇔4.8V , tr=tf=5μs Input Voltage IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA 5.0 5.0 4.5 4.0 4.0 3.5 3.0 Output Voltage -1.0 2.5 3.0 VIN=3.8V⇔4.8V , tr=tf=5μs Input Voltage without CL CL=0.1μF(ceramic) 4.5 4.0 2.5 XC6504x421xR XC6504x421xR 5 Ou 4 3 2 1 2.0 Time (100μs/div) 2 6 3.0 -1.0 3 5.0 1.0 Time (100μs/div) 4 1 3.5 Output Voltage 5 1.0 2.0 0.0 2.0 3.0 2.0 Time (100μs/div) 1.0 0.0 without CL CL=0.1μF(ceramic) Output Voltage 1.0 Input Voltage: VIN [V] 5.0 3.0 3.5 Output Voltage: VOUT [V] 2.5 1.0 -1.0 Input Voltage: VIN [V] 3.0 Input Voltage 6 Output Voltage: VOUT [V] 2.0 4.0 4.0 Output Voltage: VOUT [V] IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA 3.5 VIN=3.5V⇔4.5V , tr=tf=5μs Output Voltage: VOUT [V] 3.0 5.0 Input Voltage: VIN [V] Input Voltage 4.0 Output Voltage: VOUT [V] Input Voltage: VIN [V] 4.0 VIN=3.5V⇔4.5V , tr=tf=5μs Output Voltage: VOUT [V] 5.0 XC6504x181xR (11) CE Rising 6.5 7.0 5.0 5.5 3.0 2.0 Output Voltage 1.0 Time (100μs/div) 5.0 4.5 Input Voltage: VIN [V] 6.0 Output Voltage: VOUT [V] Input Voltage: VIN [V] 6.0 4.0 6.5 Input Voltage Input Voltage IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA VIN=5.2V⇔6.0V , tr=tf=5μs 4.0 6.0 6.0 5.0 5.5 4.0 without CL CL=0.1μF(ceramic) 5.0 3.0 4.5 4.0 2.0 4.0 3.5 1.0 Output Voltage CE Input Voltage: VCE [V] VIN=5.2V⇔6.0V , tr=tf=5μs Output Voltage: VOUT [V] 7.0 2.0 0.0 -2.0 -4.0 -6.0 3.5 Time (100μs/div) -8.0 17/27 XC6504 Series ■TYPICAL PERFORMANCE CHARACTERISTICS (Continued) Unless otherwise stated, Ta=25℃, VCE=VIN, IOUT=1mA, CIN=CL=open, VIN is below. VOUT(T)<2.5V : VIN=3.5V VOUT(T)≧2.5V : VIN=VOUT(T)+1.0V (11) (10) Load Transient Response Output Voltage 50 3 40 2 1 30 0 20 Output Current -1 10 -2 0 3 Output Voltage: VOUT [V] 2 IOUT=1μA⇔10mA , tr=tf=5μs Output Current: IOUT [mA] Output Voltage: VOUT [V] 3 XC6504x121xR IOUT=10mA⇔30mA , tr=tf=5μs 120 Output Voltage 1 90 0 60 Output Current -1 30 -2 0 Time (200μs/div) Time (200μs/div) XC6504x121xR XC6504x121xR IOUT=1mA⇔10mA , tr=tf=5μs 50 150 3 IOUT=1mA⇔10mA , tr=tf=5μs 6.0 Output Current: IOUT [mA] XC6504x121xR 4.0 2.0 0.0 -2.0 -4.0 -6.0 50 1 40 30 0 20 Output Current -1 10 -2 0 2 Output Voltage 40 1 30 without CL CL=0.1μF CL=1.0μF 0 20 Output Current -1 10 -2 0 Output Current: IOUT [mA] Output Voltage Output Voltage: VOUT [V] 2 Output Current: IOUT [mA] Output Voltage: VOUT [V] 100 90 80 70 60 50 40 30 20 10 Time (200μs/div) XC6504x181xR XC6504x181xR IOUT=1μA⇔10mA , tr=tf=5μs 50 3 40 1 30 0 20 Output Current -1 10 -2 0 Output Voltage: VOUT [V] 2 150 100 Output Voltage Output Current: IOUT [mA] Output Voltage: VOUT [V] Output Voltage IOUT=10mA⇔30mA , tr=tf=5μs 10 2 120 1 90 0 60 Output Current -1 30 -2 0 Output Current: IOUT [mA] 3 Time (200μs/div) 0 90 80 70 60 50 40 30 20 10 Time (200μs/div) 18/27 Time (200μs/div) 0 10 XC6504 Series ■TYPICAL PERFORMANCE CHARACTERISTICS (Continued) Unless otherwise stated, Ta=25℃, VCE=VIN, IOUT=1mA, CIN=CL=open, VIN is below. VOUT(T)<2.5V : VIN=3.5V VOUT(T)≧2.5V : VIN=VOUT(T)+1.0V (11) (10) Load Transient Response XC6504x181xR 1.0 2 40 1 30 0 IOUT=1mA⇔10mA , tr=tf=5μs 50 100 90 Output Voltage 20 Output Current -1 10 -2 0 Output Voltage: VOUT [V] 1.5 3 Output Current: IOUT [mA] 2.0 Output Voltage: VOUT [V] 2.5 50 Output Voltage 3.5 3.0 IOUT=1mA⇔10mA , tr=tf=5μs 2 40 without CL CL=0.1μF CL=1.0μF 1 0 30 20 Output Current -1 10 -2 0 80 Output Current: IOUT [mA] 3 4.0 XC6504x181xR 70 60 50 40 30 20 10 0.5 0 4 Time (200μs/div) Time (200μs/div) XC6504x281xR XC6504x281xR IOUT=1μA⇔10mA , tr=tf=5μs 50 4 40 2 30 1 20 Output Current 0 10 -1 0 Output Voltage: VOUT [V] 3 Output Current: IOUT [mA] Output Voltage: VOUT [V] Output Voltage 3 IOUT=10mA⇔30mA , tr=tf=5μs 10 100 150 90 Output Voltage 120 2 90 1 60 Output Current 0 30 -1 0 80 Output Current: IOUT [mA] 0.0 70 60 50 40 30 20 10 0 Time (200μs/div) XC6504x281xR XC6504x281xR IOUT=1mA⇔10mA , tr=tf=5μs IOUT=1mA⇔10mA , tr=tf=5μs 50 4 2 30 1 20 Output Current 0 10 -1 0 Output Voltage: VOUT [V] 40 Output Current: IOUT [mA] Output Voltage: VOUT [V] Output Voltage 3 Time (200μs/div) 50 Output Voltage 3 40 without CL CL=0.1μF CL=1.0μF 2 1 30 20 Output Current 0 10 -1 0 Output Current: IOUT [mA] 4 Time (200μs/div) 10 Time (200μs/div) 19/27 XC6504 Series ■TYPICAL PERFORMANCE CHARACTERISTICS (Continued) Unless otherwise stated, Ta=25℃, VCE=VIN, IOUT=1mA, CIN=CL=open, VIN is below. VOUT(T)<2.5V : VIN=3.5V VOUT(T)≧2.5V : VIN=VOUT(T)+1.0V (11) (10) Load Transient Response XC6504x421xR 40 5 30 3 20 Output Current 2 10 1 0 2 30 1 0 XC6504x421xR 50 6 40 5 30 3 20 Output Current 2 10 1 0 Output Voltage: VOUT [V] Output Voltage 4 60 Output Current Time (200μs/div) Output Current: IOUT [mA] Output Voltage: VOUT [V] 5 90 3 XC6504x421xR IOUT=1mA⇔10mA , tr=tf=5μs 150 120 Output Voltage 4 Time (200μs/div) 6 IOUT=10mA⇔30mA , tr=tf=5μs Output Current: IOUT [mA] 4 6 IOUT=1mA⇔10mA , tr=tf=5μs 50 40 Output Voltage 4 30 without CL CL=0.1μF CL=1.0μF 3 20 Output Current 2 10 1 0 Time (200μs/div) Output Current: IOUT [mA] Output Voltage 50 Output Voltage: VOUT [V] 5 IOUT=1μA⇔10mA , tr=tf=5μs Output Current: IOUT [mA] Output Voltage: VOUT [V] 6 XC6504x421xR Time (200μs/div) (12) (11) CE Rising Response Time 0.0 -2.0 -4.0 CE Input Voltage IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA Output Voltage -6.0 4.0 2.5 2.0 2.0 1.5 1.0 0.5 -8.0 0.0 Time (100μs/div) 20/27 3.0 CE Input Voltage: VCE [V] 2.0 VCE=0V→VIN , tr=5μs Output Voltage: VOUT [V] CE Input Voltage: VCE [V] 4.0 XC6504x181xR VCE=0V→VIN , tr=5μs CE Input Voltage 0.0 -2.0 -4.0 -6.0 3.0 2.5 2.0 Output Voltage IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA -8.0 1.5 1.0 0.5 0.0 Time (100μs/div) Output Voltage: VOUT [V] XC6504x121xR XC6504 Series ■TYPICAL PERFORMANCE CHARACTERISTICS (Continued) Unless otherwise stated, Ta=25℃, VCE=VIN, IOUT=1mA, CIN=CL=open, VIN is below. VOUT(T)<2.5V : VIN=3.5V VOUT(T)≧2.5V : VIN=VOUT(T)+1.0V (12) (11) CE Rising Response Time XC6504x421xR VCE=0V→VIN , tr=5μs 6.0 6.0 6.0 5.0 4.0 VCE=0V→VIN , tr=5μs 4.0 Output Voltage 0.0 -2.0 3.0 2.0 IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA -4.0 1.0 -6.0 0.0 CE Input Voltage: VCE [V] 2.0 Output Voltage: VOUT [V] CE Input Voltage: VCE [V] CE Input Voltage 4.0 6.0 CE Input Voltage 5.0 2.0 4.0 Output Voltage 0.0 3.0 -2.0 2.0 IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA -4.0 -6.0 Time (100μs/div) 1.0 Output Voltage: VOUT [V] XC6504x281xR 0.0 Time (100μs/div) (13) (12) Power Supply Rejection Ratio XC6504x121xR VIN=3.5V+0.5VP-PAC 100 IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA 90 80 70 60 50 40 30 20 10 VIN=3.5V+0.5VP-PAC 100 Power Supply Rejection Ratio: PSRR [dB] Power Supply Rejection Ratio: PSRR [dB] XC6504x121xR 0 90 without CL 80 CL=0.1μF(ceramic) 70 CL=1.0μF(ceramic) 60 50 40 30 20 10 0 10 100 1k 10k 100k Frequency: f [Hz] 1M 10 100 XC6504x181xR 80 70 60 50 40 30 20 10 0 VIN=3.5V+0.5VP-PAC 100 Power Supply Rejection Ratio: PSRR [dB] Power Supply Rejection Ratio: PSRR [dB] IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA 90 1M XC6504x181xR VIN=3.5V+0.5VP-PAC 100 1k 10k 100k Frequency: f [Hz] 90 without CL 80 CL=0.1μF(ceramic) 70 CL=1.0μF(ceramic) 60 50 40 30 20 10 0 10 100 1k 10k 100k Frequency: f [Hz] 1M 10 100 1k 10k 100k Frequency: f [Hz] 1M 21/27 XC6504 Series ■TYPICAL PERFORMANCE CHARACTERISTICS (Continued) Unless otherwise stated, Ta=25℃, VCE=VIN, IOUT=1mA, CIN=CL=open, VIN is below. VOUT(T)<2.5V : VIN=3.5V VOUT(T)≧2.5V : VIN=VOUT(T)+1.0V (13) (12) Power Supply Rejection Ratio XC6504x281xR VIN=3.8V+0.5VP-PAC 100 90 IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA 80 70 60 50 40 30 20 10 VIN=3.8V+0.5VP-PAC 100 Power Supply Rejection Ratio: PSRR [dB] Power Supply Rejection Ratio: PSRR [dB] XC6504x281xR 0 90 without CL 80 CL=0.1μF(ceramic) 70 CL=1.0μF(ceramic) 60 50 40 30 20 10 0 10 100 1k 10k 100k Frequency: f [Hz] 1M 10 100 XC6504x421xR 80 70 60 50 40 30 20 10 0 90 without CL 80 CL=0.1μF(ceramic) 70 CL=1.0μF(ceramic) 60 50 40 30 20 10 0 10 22/27 VIN=5.2V+0.5VP-PAC 100 Power Supply Rejection Ratio: PSRR [dB] Power Supply Rejection Ratio: PSRR [dB] IOUT=1μA IOUT=1mA IOUT=10mA IOUT=100mA 90 1M XC6504x421xR VIN=5.2V+0.5VP-PAC 100 1k 10k 100k Frequency: f [Hz] 100 1k 10k 100k Frequency: f [Hz] 1M 10 100 1k 10k 100k Frequency: f [Hz] 1M XC6504 Series ■PACKAGING INFORMATION For the latest package information go to, www.torexsemi.com/technical-support/packages PACKAGE OUTLINE / LAND PATTERN THERMAL CHARACTERISTICS SOT-25 SOT-25 PKG SOT-25 Power Dissipation SSOT-24 SSOT-24 PKG SSOT-24 Power Dissipation USPN-4B02 USPN-4B02 PKG USPN-4B02 Power Dissipation USPQ-4B04 USPQ-4B04 PKG USPQ-4B04 Power Dissipation 23/27 XC6504 Series ■MARKING RULE SOT-25 (Under-dot) 5 ③ ④ 1 ⑤ ④ ⑤ ② 2 1 2 ① ② ③ ① 4 4 3 3 Magnified * SOT-25 with the under-dot marking is used. ① represents products series MARK PRODUCT SERIES 9 XC6504A*****-G ② represents output voltage range MARK OUTPUT VOLTAGE OUTPUT VOLTAGE 1.1V~3.9V 4.0V~5.0V A B PRODUCT SERIES XC6504A*****-G ③ represents output voltage MARK OUTPUT VOLTAGE (V) MARK OUTPUT VOLTAGE (V) 0 - 4.00 F 2.50 - 1 1.10 4.10 H 2.60 - 2 1.20 4.20 K 2.70 - 3 1.30 4.30 L 2.80 - 4 1.40 4.40 M 2.90 - 5 1.50 4.50 N 3.00 - 6 1.60 4.60 P 3.10 - 7 1.70 4.70 R 3.20 - 8 1.80 4.80 S 3.30 - 9 1.90 4.90 T 3.40 - A 2.00 5.00 U 3.50 - B 2.10 - V 3.60 - C 2.20 - X 3.70 - D 2.30 - Y 3.80 - E 2.40 - Z 3.90 - ④,⑤ represents production lot number 01~09, 0A~0Z, 11~9Z, A1~A9, AA~AZ, B1~ZZ in order. (G, I, J, O, Q, W excluded) *No character inversion used. 24/27 XC6504 Series ■MARKING RULE (Continued) ●USPQ-4B04 ●SSOT-24 (With the orientation bar at the bottom) 3 ② ④ ① ③ 4 1 4 2 3 ① ② ③ ④ 1 2 * SSOT-24 with the orientation bar at the bottom is used. ① represents output voltage range MARK OUTPUT VOLTAGE OUTPUT VOLTAGE 1.1V~3.9V 4.0V~5.0V P R PRODUCT SERIES XC6504A*****-G ② represents output voltage MARK OUTPUT VOLTAGE (V) MARK OUTPUT VOLTAGE (V) 0 - 4.00 F 2.50 - 1 1.10 4.10 H 2.60 - 2 1.20 4.20 K 2.70 - 3 1.30 4.30 L 2.80 - 4 1.40 4.40 M 2.90 - 5 1.50 4.50 N 3.00 - 6 1.60 4.60 P 3.10 - 7 1.70 4.70 R 3.20 - 8 1.80 4.80 S 3.30 - 9 1.90 4.90 T 3.40 - A 2.00 5.00 U 3.50 - B 2.10 - V 3.60 - C 2.20 - X 3.70 - D 2.30 - Y 3.80 - E 2.40 - Z 3.90 - ③,④ represents production lot number 01~09, 0A~0Z, 11~9Z, A1~A9, AA~AZ, B1~ZZ in order. (G, I, J, O, Q, W excluded) *No character inversion used. 25/27 XC6504 Series ■MARKING RULE (Continued) USPN-4B02 4 3 ① ② ③ 1 2 ① represents output voltage range MARK OUTPUT VOLTAGE OUTPUT VOLTAGE 1.1V~3.9V 4.0V~5.0V A B PRODUCT SERIES XC6504A*****-G ② represents output voltage MARK OUTPUT VOLTAGE (V) MARK OUTPUT VOLTAGE (V) 0 - 4.00 F 2.50 - 1 1.10 4.10 H 2.60 - 2 1.20 4.20 K 2.70 - 3 1.30 4.30 L 2.80 - 4 1.40 4.40 M 2.90 - 5 1.50 4.50 N 3.00 - 6 1.60 4.60 P 3.10 - 7 1.70 4.70 R 3.20 - 8 1.80 4.80 S 3.30 - 9 1.90 4.90 T 3.40 - A 2.00 5.00 U 3.50 - B 2.10 - V 3.60 - C 2.20 - X 3.70 - D 2.30 - Y 3.80 - E 2.40 - Z 3.90 - ③ represents production lot number 0~9, A~Z in order. (G, I, J, O, Q, W excluded) *No character inversion used. 26/27 XC6504 Series 1. The product and product specifications contained herein are subject to change without notice to improve performance characteristics. Consult us, or our representatives before use, to confirm that the information in this datasheet is up to date. 2. The information in this datasheet is intended to illustrate the operation and characteristics of our products. We neither make warranties or representations with respect to the accuracy or completeness of the information contained in this datasheet nor grant any license to any intellectual property rights of ours or any third party concerning with the information in this datasheet. 3. Applicable export control laws and regulations should be complied and the procedures required by such laws and regulations should also be followed, when the product or any information contained in this datasheet is exported. 4. The product is neither intended nor warranted for use in equipment of systems which require extremely high levels of quality and/or reliability and/or a malfunction or failure which may cause loss of human life, bodily injury, serious property damage including but not limited to devices or equipment used in 1) nuclear facilities, 2) aerospace industry, 3) medical facilities, 4) automobile industry and other transportation industry and 5) safety devices and safety equipment to control combustions and explosions. Do not use the product for the above use unless agreed by us in writing in advance. 5. Although we make continuous efforts to improve the quality and reliability of our products; nevertheless Semiconductors are likely to fail with a certain probability. So in order to prevent personal injury and/or property damage resulting from such failure, customers are required to incorporate adequate safety measures in their designs, such as system fail safes, redundancy and fire prevention features. 6. Our products are not designed to be Radiation-resistant. 7. Please use the product listed in this datasheet within the specified ranges. 8. We assume no responsibility for damage or loss due to abnormal use. 9. All rights reserved. No part of this datasheet may be copied or reproduced unless agreed by Torex Semiconductor Ltd in writing in advance. TOREX SEMICONDUCTOR LTD. 27/27
XC6504A501MR-G
物料型号:XC6504系列 器件简介:XC6504系列是一款高精度CMOS电压调节器,具有0.6μA的超低功耗特性。即使在轻负载下输出电流仅为1μA,也能提供高准确度的输出,非常适合输出电流较小的应用场景。该IC采用超小型封装USPN-4B02 (0.75 x 0.95mm),无需电容器即可稳定运行,有助于节省板空间。IC内部包括参考电压源、误差放大器、驱动晶体管、过流保护电路和相位补偿电路。

引脚分配:XC6504系列有多种封装类型,包括USPN-4B02、USPQ-4B04、SSOT-24和SOT-25。每种封装的引脚分配略有不同,但通常包括VOUT(输出)、VSS(地)、CE(开/关控制)和VIN(电源输入)。

参数特性:XC6504系列的主要特性包括超低的供电电流(0.6μA)、输入电压范围(1.4V至6.0V)、输出电压范围(1.1V至5.0V,以0.1V为增量)、输出准确度(VOUT小于2.0V时±0.02V,2.0V及以上时±1%)、温度稳定性(±50ppm/℃)、最大输出电流(150mA)、低至3.3Ω的低电阻以及过流保护功能。

功能详解:XC6504系列具有多种功能,包括内部固定的输出电压、无需外部电容器的稳定运行、过流保护、自动放电功能以及通过CE引脚的开/关控制。

应用信息:XC6504系列适用于移动设备/终端、无线局域网模块(无线、摄像头等)。

封装信息:XC6504系列提供多种封装选项,包括USPN-4B02、USPQ-4B04、SSOT-24和SOT-25,以适应不同的应用需求。
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