LP2987/LP2988 Micropower, 200 mA Ultra Low-Dropout Voltage Regulator with Programmable Power-On Reset Delay
February 2002
LP2987/LP2988 Micropower, 200 mA Ultra Low-Dropout Voltage Regulator with Programmable Power-On Reset Delay; Low Noise Version Available (LP2988)
General Description
The LP2987/8 are fixed-output 200 mA precision LDO voltage regulators with power-ON reset delay which can be implemented using a single external capacitor. The LP2988 is specifically designed for noise-critical applications. A single external capacitor connected to the Bypass pin reduces regulator output noise. Using an optimized VIP™ (Vertically Integrated PNP) process, these regulators deliver superior performance: Dropout Voltage: 180 mV @ 200 mA load, and 1 mV @ 1 mA load (typical). Ground Pin Current: 1 mA @ 200 mA load, and 200 µA @ 10 mA load (typical). Sleep Mode: The LP2987/8 draws less than 2 µA quiescent current when shutdown pin is held low. Error Flag/Reset: The error flag goes low when the output drops approximately 5% below nominal. This pin also provides a power-ON reset signal if a capacitor is connected to the DELAY pin. Precision Output: Standard product versions of the LP2987 and LP2988 are available with output voltages of 5.0V, 3.8V, 3.3V, 3.2V, 3.0V, or 2.8V, with guaranteed accuracy of 0.5% (“A” grade) and 1% (standard grade) at room temperature.
Features
n n n n n n n n n n n n Ultra low dropout voltage Power-ON reset delay requires only one component Bypass pin for reduced output noise (LP2988) Guaranteed continuous output current 200 mA Guaranteed peak output current > 250 mA SO-8 and mini SO-8 surface mount packages < 2 µA quiescent current when shutdown Low ground pin current at all loads 0.5% output voltage accuracy (“A” grade) Wide supply voltage range (16V max) Overtemperature/overcurrent protection −40˚C to +125˚C junction temperature range
Applications
n Cellular Phone n Palmtop/Laptop Computer n Camcorder, Personal Stereo, Camera
Block Diagrams
10001701
10001702
VIP™ is a trademark of National Semiconductor Corporation.
© 2002 National Semiconductor Corporation
DS100017
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LP2987/LP2988
Connection Diagram (LP2987)
Surface Mount Packages: 8-Lead LLP Surface Mount Package
10001703
Top View SO-8/Mini SO-8 Package See NS Package Drawing Number M08A/MUA08A For ordering information, refer to Table 1in this document.
10001757
Top View See NS Package Drawing Number LDC08A
Ordering Information (LP2987)
TABLE 1. Package Marking and Ordering Information Output Voltage 5 5 5 5 3.8 3.8 3.8 3.8 3.3 3.3 3.3 3.3 3.2 3.2 3.2 3.2 3.0 Grade A A STD STD A A STD STD A A STD STD A A STD STD A Order Information LP2987AIMMX-5.0 LP2987AIMM-5.0 LP2987IMMX-5.0 LP2987IMM-5.0 LP2987AIMMX-3.8 LP2987AIMM-3.8 LP2987IMMX-3.8 LP2987IMM-3.8 LP2987AIMMX-3.3 LP2987AIMM-3.3 LP2987IMMX-3.3 LP2987IMM-3.3 LP2987AIMMX-3.2 LP2987AIMM-3.2 LP2987IMMX-3.2 LP2987IMM-3.2 LP2987AIMMX-3.0 Package Marking L44A L44A L44B L44B L96A L96A L96B L96B L43A L43A L43B L43B L66A L66A L66B L66B L42A Supplied as: 3500 Units on Tape and Reel 1000 Units on Tape and Reel 3500 Units on Tape and Reel 1000 Units on Tape and Reel 3500 Units on Tape and Reel 1000 Units on Tape and Reel 3500 Units on Tape and Reel 1000 Units on Tape and Reel 3500 Units on Tape and Reel 1000 Units on Tape and Reel 3500 Units on Tape and Reel 1000 Units on Tape and Reel 3500 Units on Tape and Reel 1000 Units on Tape and Reel 3500 Units on Tape and Reel 1000 Units on Tape and Reel 3500 Units on Tape and Reel
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LP2987/LP2988
Ordering Information (LP2987)
Output Voltage 3.0 3.0 3.0 2.8 2.8 2.8 2.8 5 5 5 5 3.8 3.8 3.8 3.8 3.3 3.3 3.3 3.3 3.2 3.2 3.2 3.2 3.0 3.0 Grade A STD STD A A STD STD A A STD STD A A STD STD A A STD STD A A STD STD A A
(Continued)
TABLE 1. Package Marking and Ordering Information (Continued) Order Information LP2987AIMM-3.0 LP2987IMMX-3.0 LP2987IMM-3.0 LP2987AIMMX-2.8 LP2987AIMM-2.8 LP2987IMMX-2.8 LP2987IMM-2.8 LP2987AIMX-5.0 LP2987AIM-5.0 LP2987IMX-5.0 LP2987IM-5.0 LP2987AIMX-3.8 LP2987AIM-3.8 LP2987IMX-3.8 LP2987IM-3.8 LP2987AIMX-3.3 LP2987AIM-3.3 LP2987IMX-3.3 LP2987IM-3.3 LP2987AIMX-3.2 LP2987AIM-3.2 LP2987IMX-3.2 LP2987AIM-3.2 LP2987IMX-3.0 LP2987AIM-3.0 Package Marking L42A L42B L42B L89A L89A L89B L89B 2987AIM5.0 2987AIM5.0 2987IM5.0 2987IM5.0 2987AIM3.8 2987AIM3.8 2987IM3.8 2987IM3.8 2987AIM3.3 2987AIM3.3 2987IM3.3 2987IM3.3 2987AIM3.2 2987AIM3.2 2987IM3.2 2987IM3.2 2987AIM3.0 2987AIM3.0 Supplied as: 1000 Units on Tape and Reel 3500 Units on Tape and Reel 1000 Units on Tape and Reel 3500 Units on Tape and Reel 1000 Units on Tape and Reel 3500 Units on Tape and Reel 1000 Units on Tape and Reel 2500 Units on Tape and Reel Shipped in Anti-Static Rails 2500 Units on Tape and Reel Shipped in Anti-Static Rails 2500 Units on Tape and Reel Shipped in Anti-Static Rails 2500 Units on Tape and Reel Shipped in Anti-Static Rails 2500 Units on Tape and Reel Shipped in Anti-Static Rails 2500 Units on Tape and Reel Shipped in Anti-Static Rails 2500 Units on Tape and Reel Shipped in Anti-Static Rails 2500 Units on Tape and Reel Shipped in Anti-Static Rails 2500 Units on Tape and Reel Shipped in Anti-Static Rails
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LP2987/LP2988
Ordering Information (LP2987)
Output Voltage 3.0 3.0 2.8 2.8 2.8 2.8 8-Lead LLP 5 5 5 5 3.3 3.3 3.3 3.3 3.0 3.0 3.0 3.0 A A STD STD A A STD STD A A STD STD Grade STD STD A A STD STD
(Continued)
TABLE 1. Package Marking and Ordering Information (Continued) Order Information LP2987IMX-3.0 LP2987IM-3.0 LP2987AIMX-2.8 LP2987AIM-2.8 LP2987IMX-2.8 LP2987AIM-2.8 Package Marking 2987IM3.0 2987IM3.0 2987AIM2.8 2987AIM2.8 2987IM2.8 2987AIM2.8 Supplied as: 2500 Units on Tape and Reel Shipped in Anti-Static Rails 2500 Units on Tape and Reel Shipped in Anti-Static Rails 2500 Units on Tape and Reel Shipped in Anti-Static Rails 1000 Units on Tape and Reel 4500 Units on Tape and Reel 1000 Units on Tape and Reel 4500 Units on Tape and Reel 1000 Units on Tape and Reel 4500 Units on Tape and Reel 1000 Units on Tape and Reel 4500 Units on Tape and Reel 1000 Units on Tape and Reel 4500 Units on Tape and Reel 1000 Units on Tape and Reel 4500 Units on Tape and Reel
LP2987AILD-5 LP2987AILDX-5 LP2987ILD-5 LP2987ILDX-5 LP2987AILD-3.3 LP2987AILDX-3.3 LP2987ILD-3.3 LP2987ILDX-3.3 LP2987AILD-3.0 LP2987AILDX-3.0 LP2987ILD-3.0 LP2987ILDX-3.0
L009A L009A L009AB L009AB L008A L008A L008AB L008AB L007A L007A L007AB L007AB
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LP2987/LP2988
Connection Diagram (LP2988)
Surface Mount Packages: 8-Lead LLP Surface Mount Package
10001703
Top View SO-8/Mini SO-8 Package See NS Package Drawing Number M08A/MUA08A For ordering information, refer to Table 1in this document.
10001758
Top View See NS Package Drawing Number LDC08A
Ordering Information (LP2988)
TABLE 2. Package Marking and Ordering Information Output Voltage 5.7 5.7 5.7 5.7 5.0 5.0 5.0 5.0 3.8 3.8 3.8 3.8 3.3 3.3 3.3 3.3 3.2 3.2 Grade A A STD STD A A STD STD A A STD STD A A STD STD A A Order Information LP2988AIMMX-5.7 LP2988AIMM-5.7 LP2988IMMX-5.7 LP2988IMM-5.7 LP2988AIMMX-5.0 LP2988AIMM-5.0 LP2988IMMX-5.0 LP2988IMM-5.0 LP2988AIMMX-3.8 LP2988AIMM-3.8 LP2988IMMX-3.8 LP2988IMM-3.8 LP2988AIMMX-3.3 LP2988AIMM-3.3 LP2988IMMX-3.3 LP2988IMM-3.3 LP2988AIMMX-3.2 LP2988AIMM-3.2 Package Marking LF2A LF2A LF2B LF2B L51A L51A L51B L51B L0AA L0AA L0AB L0AB L50A L50A L50B L50B L67A L67A Supplied as: 3500 Units on Tape and Reel 1000 Units on Tape and Reel 3500 Units on Tape and Reel 1000 Units on Tape and Reel 3500 Units on Tape and Reel 1000 Units on Tape and Reel 3500 Units on Tape and Reel 1000 Units on Tape and Reel 3500 Units on Tape and Reel 1000 Units on Tape and Reel 3500 Units on Tape and Reel 1000 Units on Tape and Reel 3500 Units on Tape and Reel 1000 Units on Tape and Reel 3500 Units on Tape and Reel 1000 Units on Tape and Reel 3500 Units on Tape and Reel 1000 Units on Tape and Reel
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LP2987/LP2988
Ordering Information (LP2988)
Output Voltage 3.2 3.2 3.0 3.0 3.0 3.0 2.8 2.8 2.8 2.8 2.7 2.7 2.7 2.7 2.5 2.5 2.5 2.5 5.0 5.0 5.0 5.0 3.8 3.8 3.8 Grade STD STD A A STD STD A A STD STD A A STD STD A A STD STD A A STD STD A A STD
(Continued)
TABLE 2. Package Marking and Ordering Information (Continued) Order Information LP2988IMMX-3.2 LP2988IMM-3.2 LP2988AIMMX-3.0 LP2988AIMM-3.0 LP2988IMMX-3.0 LP2988IMM-3.0 LP2988AIMMX-2.8 LP2988AIMM-2.8 LP2988IMMX-2.8 LP2988IMM-2.8 LP2988AIMMX-2.7 LP2988AIMM-2.7 LP2988IMMX-2.7 LP2988IMM-2.7 LP2988AIMMX-2.5 LP2988AIMM-2.5 LP2988IMMX-2.5 LP2988IMM-2.5 LP2988AIMX-5.0 LP2988AIM-5.0 LP2988IMX-5.0 LP2988IM-5.0 LP2988AIMX-3.8 LP2988AIM-3.8 LP2988IMX-3.8 Package Marking L67B L67B L49A L49A L49B L49B L0IA L0IA L0IB L0IB LCVA LCVA LCVB LCVB L99A L99A L99B L99B 2988AIM5.0 2988AIM5.0 2988IM5.0 2988IM5.0 2988AIM3.8 2988AIM3.8 2988IM3.8 Supplied as: 3500 Units on Tape and Reel 1000 Units on Tape and Reel 3500 Units on Tape and Reel 1000 Units on Tape and Reel 3500 Units on Tape and Reel 1000 Units on Tape and Reel 3500 Units on Tape and Reel 1000 Units on Tape and Reel 3500 Units on Tape and Reel 1000 Units on Tape and Reel 3500 Units on Tape and Reel 1000 Units on Tape and Reel 3500 Units on Tape and Reel 1000 Units on Tape and Reel 3500 Units on Tape and Reel 1000 Units on Tape and Reel 3500 Units on Tape and Reel 1000 Units on Tape and Reel 2500 Units on Tape and Reel Shipped in Anti-Static Rails 2500 Units on Tape and Reel Shipped in Anti-Static Rails 2500 Units on Tape and Reel Shipped in Anti-Static Rails 2500 Units on Tape and Reel
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LP2987/LP2988
Ordering Information (LP2988)
Output Voltage 3.8 3.3 3.3 3.3 3.3 3.2 3.2 3.2 3.2 3.0 3.0 3.0 3.0 2.8 2.8 2.8 2.8 2.7 2.7 2.7 2.7 2.5 2.5 2.5 2.5 Grade STD A A STD STD A A STD STD A A STD STD A A STD STD A A STD STD A A STD STD
(Continued)
TABLE 2. Package Marking and Ordering Information (Continued) Order Information LP2988IM-3.8 LP2988AIMX-3.3 LP2988AIM-3.3 LP2988IMX-3.3 LP2988IM-3.3 LP2988AIMX-3.2 LP2988AIM-3.2 LP2988IMX-3.2 LP2988IM-3.2 LP2988AIMX-3.0 LP2988AIM-3.0 LP2988IMX-3.0 LP2988IM-3.0 LP2988AIMX-2.8 LP2988AIM-2.8 LP2988IMX-2.8 LP2988IM-2.8 LP2988AIMX-2.7 LP2988AIM-2.7 LP2988IMX-2.7 LP2988IM-2.7 LP2988AIMX-2.5 LP2988AIM-2.5 LP2988IMX-2.5 LP2988IM-2.5 Package Marking 2988IM3.8 2988AIM3.3 2988AIM3.3 2988IM3.3 2988IM3.3 2988AIM3.2 2988AIM3.2 2988IM3.2 2988IM3.2 2988AIM3.0 2988AIM3.0 2988IM3.0 2988IM3.0 2988AIM2.8 2988AIM2.8 2988IM2.8 2988IM2.8 2988AIM2.7 2988AIM2.7 2988IM2.7 2988IM2.7 2988AIM2.5 2988AIM2.5 2988IM2.5 2988IM2.5 Supplied as: Shipped in Anti-Static Rails 2500 Units on Tape and Reel Shipped in Anti-Static Rails 2.5k Units on Tape and Reel Shipped in Anti-Static Rails 2500 Units on Tape and Reel Shipped in Anti-Static Rails 2500 Units on Tape and Reel Shipped in Anti-Static Rails 2500 Units on Tape and Reel Shipped in Anti-Static Rails 2500 Units on Tape and Reel Shipped in Anti-Static Rails 2500 Units on Tape and Reel Shipped in Anti-Static Rails 2500 Units on Tape and Reel Shipped in Anti-Static Rails 2500 Units on Tape and Reel Shipped in Anti-Static Rails 2500 Units on Tape and Reel Shipped in Anti-Static Rails 2500 Units on Tape and Reel Shipped in Anti-Static Rails 2500 Units on Tape and Reel Shipped in Anti-Static Rails
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LP2987/LP2988
Ordering Information (LP2988)
Output Voltage 8-Lead LLP 5 5 5 5 3.3 3.3 3.3 3.3 3.0 3.0 3.0 3.0 2.5 2.5 2.5 2.5 A A STD STD A A STD STD A A STD STD A A STD STD Grade
(Continued)
TABLE 2. Package Marking and Ordering Information (Continued) Order Information LP2988AILD-5 LP2988AILDX-5 LP2988ILD-5 LP2988ILDX-5 LP2988AILD-3.3 LP2988AILDX-3.3 LP2988ILD-3.3 LP2988ILDX-3.3 LP2988AILD-3.0 LP2988AILDX-3.0 LP2988ILD-3.0 LP2988ILDX-3.0 LP2988AILD-2.5 LP2988AILDX-2.5 LP2988ILD-2.5 LP2988ILDX-2.5 Package Marking L01DA L01DA L01DAB L01DAB L01CA L01CA L01CAB L01CAB L01BA L01BA L01BAB L01BAB L01AA L01AA L01AAB L01AAB Supplied as: 1000 Units on Tape and Reel 4500 Units on Tape and Reel 1000 Units on Tape and Reel 4500 Units on Tape and Reel 1000 Units on Tape and Reel 4500 Units on Tape and Reel 1000 Units on Tape and Reel 4500 Units on Tape and Reel 1000 Units on Tape and Reel 4500 Units on Tape and Reel 1000 Units on Tape and Reel 4500 Units on Tape and Reel 1000 Units on Tape and Reel 4500 Units on Tape and Reel 1000 Units on Tape and Reel 4500 Units on Tape and Reel
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LP2987/LP2988
Absolute Maximum Ratings
(Note 1)
If Military/Aerospace specified devices are required, please contact the National Semiconductor Sales Office/ Distributors for availability and specifications. Storage Temperature Range Operating Junction Temperature Range Lead Temperature (Soldering, 5 seconds) ESD Rating (Note 2) Power Dissipation (Note 3) Input Supply Voltage (Survival) −65˚C to +150˚C −40˚C to +125˚C 260˚C 2 kV Internally Limited −0.3V to +16V
Input Supply Voltage (Operating) Shutdown Pin Sense Pin Output Voltage (Survival) (Note 4) IOUT (Survival) Input-Output Voltage (Survival) (Note 5)
2.1V to +16V −0.3V to +16V −0.3V to +6V −0.3V to +16V Short Circuit Protected −0.3V to +16V
Electrical Characteristics
Limits in standard typeface are for TJ = 25˚C, and limits in boldface type apply over the full operating temperature range. Unless otherwise specified: VIN = VO(NOM) + 1V, IL = 1 mA, COUT = 4.7 µF, CIN = 2.2 µF, VS/D = 2V. Symbol ∆VO Parameter Output Voltage Tolerance Output Voltage Line Regulation VIN–VO Dropout Voltage (Note 7) Conditions Typical LM2987/8AI-X.X (Note 6) Min −0.5 0.1 mA < IL < 200 mA VO(NOM) + 1V ≤ VIN ≤ 16V IL = 100 µA IL = 75 mA IL = 200 mA IGND Ground Pin Current IL = 100 µA IL = 75 mA IL = 200 mA VS/D < 0.3V IO(PK) IO(MAX) en Peak Output Current Short Circuit Current LP2987 Output Noise Voltage (RMS) LP2988 Output Noise Voltage (RMS) VOUT ≥ VO(NOM) − 5% RL = 0 (Steady State) (Note 10) BW = 300 Hz to 50 kHz, VOUT = 3.3V COUT = 10 µF BW = 300 Hz to 50 kHz, VOUT = 3.3V COUT = 10 µF CBYPASS = .01 µF f = 1 kHz, COUT = 10 µF CBYP = 0 (LP2988) −0.8 −1.8 0.007 Max 0.5 0.8 1.8 0.014 0.032 2.0 3.5 120 170 230 350 120 150 800 1400 2.1 3.7 1.5 250 250 mA LM2987/8I-X.X (Note 6) Min −1.0 −1.6 −2.8 Max 1.0 1.6 2.8 0.014 0.032 2.0 3.5 120 170 230 350 120 150 800 1400 2.1 3.7 1.5 mA µA µA mV %/V %VNOM Units
1 90 180 100 500 1 0.05 400 400
100 µV(RMS) 20
Ripple Rejection
65
dB
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LP2987/LP2988
Electrical Characteristics
(Continued)
Limits in standard typeface are for TJ = 25˚C, and limits in boldface type apply over the full operating temperature range. Unless otherwise specified: VIN = VO(NOM) + 1V, IL = 1 mA, COUT = 4.7 µF, CIN = 2.2 µF, VS/D = 2V. Symbol Parameter Output Voltage Temperature Coefficient IDELAY Delay Pin Current Source S/D Input Voltage (Note 8) S/D Input Current VH = O/P ON VL = O/P OFF VS/D = 0 VS/D = 5V ERROR COMPARATOR IOH VOL VTHR (MAX) VTHR (MIN) HYST Output “HIGH” Leakage Output “LOW” Voltage Upper Threshold Voltage Lower Threshold Voltage Hysteresis VOH = 16V VIN = VO(NOM) − 0.5V, IO(COMP) = 300 µA 0.01 150 −4.6 −6.6 2.0 −5.5 −7.7 −8.9 −13.0 1 2 220 350 −3.5 −2.5 −4.9 −3.3 −5.5 −7.7 −8.9 −13.0 1 2 220 350 −3.5 −2.5 −4.9 −3.3 %VOUT µA mV Conditions (Note 9) 20 2.2 1.6 1.4 1.6 0.18 −1 15 2.8 3.0 1.6 1.4 1.6 0.18 −1 15 2.8 3.0 ppm/˚C µA Typical LM2987/8AI-X.X (Note 6) Min Max LM2987/8I-X.X (Note 6) Min Max Units
SHUTDOWN INPUT VS/D IS/D 1.4 0.55 0 5 V µA
Note 1: Absolute Maximum Ratings indicate limits beyond which damage to the component may occur. Electrical specifications do not apply when operating the device outside of its rated operating conditions. Note 2: The ESD rating of the Bypass pin is 500V (LP2988 only.) Note 3: The maximum allowable power dissipation is a function of the maximum junction temperature, TJ(MAX), the junction-to-ambient thermal resistance, θJ−A, and the ambient temperature, TA. The maximum allowable power dissipation at any ambient temperature is calculated using:
The value of θJ−A for the SO-8 (M) package is 160˚C/W, and the mini SO-8 (MM) package is 200˚C/W. The value θJ−A for the LLP (LD) package is specifically dependent on PCB trace area, trace material, and the number of layers and thermal vias. For improved thermal resistance and power dissipation for the LLP package, refer to Application Note AN-1187. Exceeding the maximum allowable power dissipation will cause excessive die temperature, and the regulator will go into thermal shutdown. Note 4: If used in a dual-supply system where the regulator load is returned to a negative supply, the LM2987/8 output must be diode-clamped to ground. Note 5: The output PNP structure contains a diode between the VIN and VOUT terminals that is normally reverse-biased. Forcing the output above the input will turn on this diode and may induce a latch-up mode which can damage the part (see Application Hints). Note 6: Limits are 100% production tested at 25˚C. Limits over the operating temperature range are guaranteed through correlation using Statistical Quality Control (SQC) methods. The limits are used to calculate National’s Average Outgoing Quality Level (AOQL). Note 7: Dropout voltage is defined as the input to output differential at which the output voltage drops 100 mV below the value measured with a 1V differential. Note 8: To prevent mis-operation, the Shutdown input must be driven by a signal that swings above VH and below VL with a slew rate not less than 40 mV/µs (see Application Hints). Note 9: Temperature coefficient is defined as the maximum (worst-case) change divided by the total temperature range. Note 10: See Typical Performance Characteristics curves.
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LP2987/LP2988
Typical Performance Characteristics
VOUT vs Temperature
Unless otherwise specified: TA = 25˚C, COUT = 4.7 µF, CIN = 2.2 µF, S/D is tied to VIN, VIN = VO(NOM) + 1V, IL = 1 mA. Dropout Voltage vs Temperature
10001717
10001718
Dropout Voltage vs Load Current
Dropout Characteristics
10001719
10001720
Ground Pin Current vs Temperature and Load
Ground Pin Current vs Load Current
10001721
10001722
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LP2987/LP2988
Typical Performance Characteristics
Input Current vs VIN
Unless otherwise specified: TA = 25˚C, COUT = 4.7 µF, CIN = 2.2 µF, S/D is tied to VIN, VIN = VO(NOM) + 1V, IL = 1 mA. (Continued) Input Current vs VIN
10001723
10001724
Load Transient Response
Load Transient Response
10001725
10001726
Line Transient Response
Line Transient Response
10001727
10001728
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LP2987/LP2988
Typical Performance Characteristics
Turn-On Waveform
Unless otherwise specified: TA = 25˚C, COUT = 4.7 µF, CIN = 2.2 µF, S/D is tied to VIN, VIN = VO(NOM) + 1V, IL = 1 mA. (Continued) Turn-On Waveform
10001730 10001729
Short Circuit Current
Short Circuit Current
10001731
10001732
Short Circuit Current vs Output Voltage
Instantaneous Short Circuit Current vs Temperature
10001733
10001734
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LP2987/LP2988
Typical Performance Characteristics
Unless otherwise specified: TA = 25˚C, COUT = 4.7 µF, CIN = 2.2 µF, S/D is tied to VIN, VIN = VO(NOM) + 1V, IL = 1 mA. (Continued) Shutdown Pin Current vs Shutdown Pin Voltage
DC Load Regulation
10001735
10001736
Shutdown Voltage vs Temperature
Input to Output Leakage vs Temperature
10001737
10001738
Delay Pin Current vs VIN
Delay Pin Current vs Delay Pin Voltage
10001745
10001748
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LP2987/LP2988
Typical Performance Characteristics
Delay Sink Current vs Temperature
Unless otherwise specified: TA = 25˚C, COUT = 4.7 µF, CIN = 2.2 µF, S/D is tied to VIN, VIN = VO(NOM) + 1V, IL = 1 mA. (Continued)
Delay Sink Current vs Temperature
10001747
10001746
Output Impedance vs Frequency
Output Impedance vs Frequency
10001740
10001741
Ripple Rejection (LP2987)
Ripple Rejection (LP2988)
10001742 10001751
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LP2987/LP2988
Typical Performance Characteristics
Unless otherwise specified: TA = 25˚C, COUT = 4.7 µF, CIN = 2.2 µF, S/D is tied to VIN, VIN = VO(NOM) + 1V, IL = 1 mA. (Continued)
Output Noise Density (LP2987)
Output Noise Voltage (LP2988)
10001739
10001744
Output Noise Density (LP2988)
Output Noise Density (LP2988)
10001752
10001753
Turn-On Time (LP2988)
Turn-On Time (LP2988)
10001754
10001755
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LP2987/LP2988
Typical Performance Characteristics
Turn-On Time (LP2988)
Unless otherwise specified: TA = 25˚C, COUT = 4.7 µF, CIN = 2.2 µF, S/D is tied to VIN, VIN = VO(NOM) + 1V, IL = 1 mA. (Continued)
10001756
Basic Application Circuits
10001705
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LP2987/LP2988
Basic Application Circuits
(Continued)
10001706
*Capacitance value shown is minimum required to assure stability, but may be increased without limit. Larger output capacitor provides improved dynamic response. **Shutdown must be actively terminated (see Application Hints). Tie to INPUT (pin 4) if not used.
Application Hints
LLP Package Devices The LP2987/LP2988 is offered in the 8 lead LLP surface mount package to allow for increased power dissipation compared to the SO-8 and Mini SO-8. For details on thermal performance as well as mounting and soldering specifications, refer to Application Note AN-1187. EXTERNAL CAPACITORS As with any low-dropout regulator, external capacitors are required to assure stability. These capacitors must be correctly selected for proper performance. INPUT CAPACITOR: An input capacitor (≥ 2.2 µF) is required between the LP2987/8 input and ground (amount of capacitance may be increased without limit). This capacitor must be located a distance of not more than 0.5” from the input pin and returned to a clean analog ground. Any good quality ceramic or tantalum may be used for this capacitor. OUTPUT CAPACITOR: The output capacitor must meet the requirement for minimum amount of capacitance and also have an appropriate E.S.R. (equivalent series resistance) value. Curves are provided which show the allowable ESR range as a function of load current for 3V and 5V outputs. ESR Curves For 5V Output
10001707
ESR Curves For 3V Output
10001708
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LP2987/LP2988
Application Hints
(Continued)
POWER-ON RESET DELAY A power-on reset function can be easily implemented using the LP2987/8 by adding a single external capacitor to the Delay pin. The Error output provides the power-on reset signal when input power is applied to the regulator. The reset signal stays low for a pre-set time period after power is applied to the regulator, and then goes high (see Timing Diagram below).
IMPORTANT: The output capacitor must maintain its ESR in the stable region over the full operating temperature range of the application to assure stability. The minimum required amount of output capacitance is 4.7 µF. Output capacitor size can be increased without limit. It is important to remember that capacitor tolerance and variation with temperature must be taken into consideration when selecting an output capacitor so that the minimum required amount of output capacitance is provided over the full operating temperature range. A good Tantalum capacitor will show very little variation with temperature, but a ceramic may not be as good (see next section). The output capacitor should be located not more than 0.5” from the output pin and returned to a clean analog ground. CAPACITOR CHARACTERISTICS TANTALUM: A solid tantalum capacitor is the best choice for the output capacitor on the LM2987/8. Available from many sources, their typical ESR is very close to the ideal value required on the output of many LDO regulators. Tantalums also have good temperature stability: a 4.7 µF was tested and showed only a 10% decline in capacitance as the temperature was decreased from +125˚C to −40˚C. The ESR increased only about 2:1 over the same range of temperature. However, it should be noted that the increasing ESR at lower temperatures present in all tantalums can cause oscillations when marginal quality capacitors are used (where the ESR of the capacitor is near the upper limit of the stability range at room temperature). CERAMIC: The ESR of ceramic capacitor can be low enough to cause an LDO regulator to oscillate: a 2.2 µF ceramic was measured and found to have an ESR of 15 mΩ. If a ceramic capacitor is to be used on the LP2987/8 output, a 1Ω resistor should be placed in series with the capacitor to provide a minimum ESR for the regulator. A disadvantage of ceramic capacitors is that their capacitance varies a lot with temperature: Large ceramic capacitors are typically manufactured with the Z5U temperature characteristic, which results in the capacitance dropping by 50% as the temperature goes from 25˚C to 80˚C. This means you have to buy a capacitor with twice the minimum COUT to assure stable operation up to 80˚C. ALUMINUM: The large physical size of aluminum electrolytics makes them unsuitable for most applications. Their ESR characteristics are also not well suited to the requirements of LDO regulators. The ESR of a typical aluminum electrolytic is higher than a tantalum, and it also varies greatly with temperature. A typical aluminum electrolytic can exhibit an ESR increase of 50X when going from 20˚C to −40˚C. Also, some aluminum electrolytics can not be used below −25˚C because the electrolyte will freeze.
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Timing Diagram for Power-Up The external capacitor cDLY sets the delay time (TDELAY). The value of capacitor required for a given time delay may be calculated using the formula: CDLY = TDELAY/(5.59 X 105) To simplify design, a plot is provided below which shows values of CDLY versus delay time.
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Plot of CDLY vs TDELAY
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LP2987/LP2988
Application Hints
(Continued)
Aluminum electrolytics can not be used, but good-quality tantalum, ceremic, mica, or film types will work. SHUTDOWN INPUT OPERATION The LP2987/8 is shut off by driving the Shutdown input low, and turned on by pulling it high. If this feature is not to be used, the Shutdown input should be tied to VIN to keep the regulator output on at all times. To assure proper operation, the signal source used to drive the Shutdown input must be able to swing above and below the specified turn-on/turn-off voltage thresholds listed as VH and VL, respectively (see Electrical Characteristics). It is also important that the turn-on (and turn-off) voltage signals applied to the Shutdown input have a slew rate which is not less than 40 mV/µs.
DETAILS OF ERR/RESET CIRCUIT OPERATION: (Refer to LP2987/8 Equivalent Circuit).
CAUTION: the regulator output state can not be guaranteed if a slow-moving AC (or DC) signal is applied that is in the range between VH and VL.
REVERSE INPUT-OUTPUT VOLTAGE The PNP power transistor used as the pass element in the LP2987/8 has an inherent diode connected between the regulator output and input. During normal operation (where the input voltage is higher than the output) this diode is reverse-biased. However, if the output is pulled above the input, this diode will turn ON and current will flow into the regulator output. In such cases, a parasitic SCR can latch which will allow a high current to flow into VIN (and out the ground pin), which can damage the part. In any application where the output may be pulled above the input, an external Schottky diode must be connected from VIN to VOUT (cathode on VIN, anode on VOUT), to limit the reverse voltage across the LP2987/8 to 0.3V (see Absolute Maximum Ratings). BYPASS CAPACITOR (LP2988) The capacitor connected to the Bypass pin must have very low leakage. The current flowing out of the Bypass pin comes from the Bandgap reference, which is used to set the output voltage. Since the Bandgap circuit has only a few microamps flowing in it, loading effects due to leakage current will cause a change in the regulated output voltage. Curves are provided which show the effect of loading the Bypass pin on the regulated output voltage. Care must be taken to ensure that the capacitor selected for bypass will not have significant leakage current over the operating temperature range of the application. A high quality ceramic capacitor which uses either NPO or COG type dielectiric material will typically have very low leakage. Small surface-mount polypropolene or polycarbonate film capacitors also have extremely low leakage, but are slightly larger in size than ceramics.
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LP2987/8 Equivalent Circuit The output of comparator U2 is the ERR/RESET flag. Since it is an open-collector output, it requires the use of a pull-up resistor (RP). The 1.23V reference is tied to the inverting input of U2, which means that its output is controlled by the voltage applied to the non-inverting input. The output of U1 (also an open-collector) will force the non-inverting input of U2 to go low whenever the LP2987/8 regulated output drops about 5% below nominal. U1’s inverting input is also held at 1.23V. The other input samples the regulated output through a resistive divider (RA and RB). When the regulated output is at nominal voltage, the voltage at the divider tap point will be 1.23V. If this voltage drops about 60 mV below 1.23V, the output of U1 will go low forcing the output of U2 low (which is the ERROR state). Power-ON reset delay occurs when a capacitor (shown as CDLY) is connected to the Delay pin. At turn-ON, this capacitor is initially fully discharged (which means the voltage at the Delay pin is 0V). The output of U1 keeps CDLY fully discharged (by sinking the 2.2 µA from the current source) until the regulator output voltage comes up to within about 5% of nominal. At this point, U1’s output stops sinking current and the 2.2 µA starts charging up CDLY. When the voltage across CDLY reaches 1.23V, the output of U2 will go high (note that D1 limits the maximum voltage to about 2V). SELECTING CDLY: The maximum recommended value for this capacitor is 1 µF. The capacitor must not have excessively high leakage current, since it is being charged from a 2.2 µA current source.
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LP2987/LP2988
Application Hints
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LP2987/LP2988
Physical Dimensions
unless otherwise noted
inches (millimeters)
Mini SO-8 Package Type MM NS Package Number MUA08A
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LP2987/LP2988
Physical Dimensions
inches (millimeters) unless otherwise noted (Continued)
SO-8 Package Type M NS Package Number M08A
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LP2987/LP2988 Micropower, 200 mA Ultra Low-Dropout Voltage Regulator with Programmable Power-On Reset Delay
Physical Dimensions
inches (millimeters) unless otherwise noted (Continued)
8-Lead LLP Surface Mount Package NS Package Number LDC08A
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