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CYStech Electronics Corp. Low Current Positive Voltage Regulator Spec. No. : C516M3 Issued Date : 2003.04.02 Revised Date : .. Page No. : 1/4 PL78L06XM3 SOT-89 Description The PL78L06XM3 series of surface mount regulators are easy-to-use devices suitable for multitude of applications that require a regulated supply of up to 100mA. These regulators feature internal current limiting and thermal shutdown, making them remarkably rugged. No external components are required with the PL78L06XM3 devices in many applications. These devices offer a substantial performance advantage over the traditional zener diode resistor combination, as output impedance and quiescent current are substantially reduced. Features: * Wide Range Of Available, Fixed Output Voltages * Internal Short-Circuit Current Limiting * Internal Thermal Overload Protection * No External Components Required Absolute Maximum Ratings (Ta=25C) * Input Voltage ....................................................................................................................... 30 V * Total Power Dissipation .................................................................................... Internally limited * Operating Temperature Range .......................................................................... 0 C to +125 C * Maximum Junction Temperature ..................................................................................... 125 C * Storage Temperature Range .......................................................................... -55 C to +150 C * Lead Temperature (Soldering 10S) ................................................................................. 260 C Typical Application Vin 3 Schematic Diagram Vout Vin PL78L06 1 5K 2 5.7K 100 100 1.5K 1.9K Vout 5pF 3.41K 13K 2.23K 7.8K C1 C2 576 A common ground is required between the input and the output voltages. The input voltage must remain typically 2.0V above the output voltage even during the low point on the input ripple voltage. Note : C1 and C2 are required if regulator is located far from power supply filter and load, or oscillation may induced on the loop. 3.89K 2.84K GND PL78L06M3 CYStek Product Specification CYStech Electronics Corp. Electrical Characteristics Vin=12V, Io=40mA, 0C Tj125C PD750mW, unless otherwise specified Symbol Characteristic Output Voltage (Tj=25C) Output Voltage (8VVin20V, 1mAIo40mA) Output Voltage (8VVin30V, 1mAIo70mA) Line Regulation (Tj=25C, 8VVin20V) Line Regulation (Tj=25C, 9VVin20V) Load Regulation (Tj=25C, 1mAIo100mA) Load Regulation (Tj=25C, 1mAIo40mA) Quiescent Current (Tj=25C) Quiescent Current Change (Tj=25C, 8VVin20V) Quiescent Current Change (Tj=25C, 1mAIo40mA) Ripple Rejection (9VVin19V, f=120Hz) Dropout Voltage (Tj=25C) Output Noise Voltage (Tj=25C, 10Hzf100KHz) Short Circuit Current Limit (Tj=25C, Vin=35V) Peak Output Current (Tj=25C) Average Temperature Coefficient of Outpt Voltage, Io=5mA Characteristic Output Voltage (Tj=25C) Output Voltage (8VVin20V, 1mAIo40mA) Output Voltage (8VVin30V, 1mAIo70mA) Line Regulation (Tj=25C, 8VVin20V) Line Regulation (Tj=25C, 9VVin20V) Load Regulation (Tj=25C, 1mAIo100mA) Load Regulation (Tj=25C, 1mAIo40mA) Quiescent Current (Tj=25C) Quiescent Current Change (Tj=25C, 8VVin20V) Quiescent Current Change (Tj=25C, 1mAIo40mA) Ripple Rejection (9VVin19V, f=120Hz) Dropout Voltage (Tj=25C) Output Noise Voltage (Tj=25C, 10Hzf100KHz) Short Circuit Current Limit (Tj=25C, Vin=35V) Peak Output Current (Tj=25C) Average Temperature Coefficient of Outpt Voltage, Io=5mA Spec. No. : C516M3 Issued Date : 2003.04.02 Revised Date : .. Page No. : 2/4 PL78L06A Min 5.82 5.76 5.76 40 Typ 6 6 6 55 45 10 5 2 1.7 50 140 140 -0.5 Max 6.18 6.24 6.24 150 100 70 35 5.5 1.5 0.1 100 - Units Vo V Regline Regload IB IB RR VI-Vo VN Isc Imax TCVo Symbol mV mV mA mA dB V uV mA mA mV/C Units PL78L06B Min 5.7 5.68 5.68 40 Typ 6 6 6 55 45 10 5 2 1.7 50 140 140 -0.5 Max 6.3 6.36 6.36 175 125 100 50 6 1.6 0.1 120 - Vo V Regline Regload IB IB RR VI-Vo VN Isc Imax TCVo mV mV mA mA dB V uV mA mA mV/C PL78L06M3 CYStek Product Specification CYStech Electronics Corp. Characteristic Curves Dropout Characteristics Spec. No. : C516M3 Issued Date : 2003.04.02 Revised Date : .. Page No. : 3/4 Maximum Average Power Dissipation 6 5 4 3 2 Io=100mA 10000 Output Voltage(V) Io=1mA Io=40mA Power Dissipation (mW) 1000 1 0 1 2 3 4 5 6 7 8 9 10 100 25 50 75 100 125 150 Input Voltage(V) Quiescent Current 4 3.5 Quiescent Current(mA) Quiescent Current(mA) 3 2.5 2 1.5 1 0.5 0 0 5 10 15 20 25 Input Voltage(V) 30 35 2.6 0 3.2 3.4 Ambient Temperature (C) Quiescent Current 3 2.8 50 100 Ambient Temperature(C) 150 PL78L06M3 CYStek Product Specification CYStech Electronics Corp. SOT-89 Dimension Marking: A Spec. No. : C516M3 Issued Date : 2003.04.02 Revised Date : .. Page No. : 4/4 1 2 C 3 H 78L06 78L05 B D Style: Pin 1. Vout 2. GND 3. Vin E F G I 3-Lead SOT-89 Plastic Surface Mounted Package CYStek Package Code: M3 *: Typical DIM A B C D E Inches Min. Max. 0.1732 0.1811 0.1594 0.1673 0.0591 0.0663 0.0945 0.1024 0.01417 0.0201 Millimeters Min. Max. 4.40 4.60 4.05 4.25 1.50 1.70 2.40 2.60 0.36 0.51 DIM F G H I Inches Min. Max. 0.0583 0.0598 0.1165 0.1197 0.0551 0.0630 0.0138 0.0161 Millimeters Min. Max. 1.48 1.527 2.96 3.04 1.40 1.60 0.35 0.41 Notes: 1.Controlling dimension: millimeters. 2.Maximum lead thickness includes lead finish thickness, and minimum lead thickness is the minimum thickness of base material. 3.If there is any question with packing specification or packing method, please contact your local CYStek sales office. Material: * Lead: 42 Alloy ; solder plating * Mold Compound: Epoxy resin family, flammability solid burning class: UL94V-0 Important Notice: * All rights are reserved. Reproduction in whole or in part is prohibited without the prior written approval of CYStek. * CYStek reserves the right to make changes to its products without notice. * CYStek semiconductor products are not warranted to be suitable for use in Life-Support Applications, or systems. * CYStek assumes no liability for any consequence of customer product design, infringement of patents, or application assistance. 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