UPC3033 RENESAS | Alldatasheet
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To our customers, Old Company Name in Catalogs and Other Documents On April 1st, 2010, NEC Electronics Corporation merged with Renesas Technology Corporation, and Renesas Electronics Corporation took over all the business of both companies. Therefore, although the old company name remains in this document, it is a valid Renesas Electronics document. We appreciate your understanding. Renesas Electronics website: http://www.renesas.com April 1st, 2010 Renesas Electronics Corporation Issued by: Renesas Electronics Corporation (http://www.renesas.com) Send any inquiries to http://www.renesas.com/inquiry.
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The information in this document is subject to change without notice. Before using this document, please confirm that this is the latest version. Not all products and/or types are available in every country. Please check with an NEC Electronics sales representative for availability and additional information. BIPOLAR ANALOG INTEGRATED CIRCUIT μ PC3033,3005 LOW-SATURATION STABILIZED POWER SUPPLY WITH ON/OFF FUNCTION (OUTPUT CURRENT: 1 A) DATA SHEET Document No. G17372EJ2V0DS00 (2nd edition) Date Published January 2006 NS CP(K) Printed in Japan 2006 The mark <R> shows major revised points. The revised points can be easily searched by copying an "<R>" in the PDF file and specifying it in the "Find what:" field.
DESCRIPTION
The μPC3033 and 3005 are low-saturation type regulators with an output current of 1 A at respective output voltages of 3.3 V and 5 V. These regulators are also provided with an ON/OFF function, which reduces the dissipation when there is no load, making them ideal for systems requiring low power consumption. Since output voltage accuracy is as high as ±1%, it can respond also to the application of which high precision is required.
FEATURES
- ON/OFF pin for output control (active-high)
- Output voltage accuracy: VO = ±1% (when TA = 25°C)
- Output current capacitance: 1 A
- Low dropout voltage: VDIF = 0.6 V MAX. (at IO = 0.5 A)
- On-chip inrush current protection circuit for when input voltage rises (when input voltage is low level)
- On-chip overcurrent and thermal protection circuit
APPLICATIONS
Digital TV, Audio, Air conditioner, etc.
ORDERING INFORMATION
Note Pb-free (This product does not contain Pb in external electrode.) Part Number Package Marking Output Voltage μPC3033H 4-pin plastic SIP (TO-126 ) C3033 3.3 V μPC3033H-AZ Note 4-pin plastic SIP (TO-126 ) C3033 3.3 V μPC3005H 4-pin plastic SIP (TO-126 ) C3005 5 V μPC3005H-AZ Note 4-pin plastic SIP (TO-126 ) C3005 5 V PIN CONFIGURATION (Marking Side) 1: INPUT 2: ON/OFF 3: GND 4: OUTPUT 1234 <R>
Data Sheet G17372EJ2V0DS 2 μ PC3033,3005 BLOCK DIAGRAM GND INPUT OUTPUT ON/OFF ON/OFF circuit Reference voltage Error amp. Drive circuit Saturation protection Over current protection Thermal shut down Start-up circuit
Data Sheet G17372EJ2V0DS 3 μ PC3033,3005 ABSOLUTE MAXIMUM RATINGS (TA = 25°C, unless otherwise specified.) Parameter Symbol Rating Unit Input Voltage VIN −0.3 to +8.0 V ON/OFF Pin Voltage VON/OFF −0.3 to +8.0 V Internal Power Dissipation (TC = 25°C) Note P T 12.5 W Operating Ambient Temperature TA −40 to +85 °C Operating Junction Temperature TJ −40 to +150 °C Storage Temperature Tstg −55 to +150 °C Thermal Resistance (Junction to Ambient) R th(J-A) 110 °C/W Thermal Resistance (Junction to Case) Rth(J-C) 10 °C/W Note Internally limited. When the operating junction temperature rises over 150°C, the internal circuit shuts down the output voltage. Caution Product quality may suffer if the absolute maximum rating is exceeded even momentarily for any parameter. That is, the absolute maximum ratings are rated values at which the product is on the verge of suffering physical damage, and therefore the product must be used under conditions that ensure that the absolute maximum ratings are not exceeded. TYPICAL CONNECTION INPUT CIN PC3033, PC3005 OUTPUT COUT μμ ON/OFF CIN: 0.1 μF or higher. Set this value according to the length of the line between the regulator and INPUT pin. Be sure to connect CIN to prevent parasitic oscillation. Use of a film capacitor or other capacitor with excellent voltage and temperature characteristics is recommended. If using a laminated ceramic capacitor, it is necessary to ensure that CIN is 0.1 μF or higher for the voltage and temperature range to be used. COUT: 10 μF or higher. Be sure to connect COUT to prevent oscillation and improve excessive load regulation. Place CIN and COUT as close as possible to the IC pins (within 1 to 2 cm). Also, use an electrolytic capacitor with low impedance characteristics if considering use at sub-zero temperatures. D1: If the OUTPUT pin has a higher voltage than the INPUT pin, connect a diode. D2: If the OUTPUT pin has a lower voltage than the GND pin, connect a Schottky barrier diode. Caution Ensure that voltage is not applied to the OUTPUT pin externally.
Data Sheet G17372EJ2V0DS 4 μ PC3033,3005 RECOMMENDED OPERATING CONDITIONS Parameter Symbol Corresponding Model MIN. TYP. MAX. Unit μPC3033 4.3 7.5 V Input Voltage VIN μPC3005 6.0 7.5 V ON/OFF Pin Voltage VON/OFF All 0 V IN V Output Current IO All 0 1.0 A Operating Ambient Temperature T A All −40 +85 °C Operating Junction Temperature T J All −40 +125 °C Caution Use of conditions other than the above-listed recommended operating conditions is not a problem as long as the absolute maximum ratings are not exceeded. However, since the use of such conditions diminishes the margin of safety, careful evaluation is required before such conditions are used.
ELECTRICAL CHARACTERISTICS
μPC3033 (TJ = 25°C, VIN = 5 V, VON/OFF = 5 V, IO = 0.5 A, CIN = 0.1 μF, COUT = 10 μF, unless otherwise specified.) Parameter Symbol Conditions MIN. TYP. MAX. Unit VO1 3.267 3.3 3.333 V Output Voltage Line Regulation REGIN 4.3 V ≤ VIN ≤ 6 V 2.0 9.0 mV Load Regulation REGL 5 mA ≤ IO ≤ 1 A 10.0 66.0 mV IBIAS1 I O = 0 A 2.0 4.0 mA Quiescent Current IBIAS2 I O = 0.5 A 15.0 30.0 mA Startup Quiescent Current IBIAS(S) V IN = 3.1 V, IO = 0 A 9.0 25.0 mA Output Noise Voltage Vn 10 Hz ≤ f ≤ 100 kHz 80 μVr.m.s. Ripple Rejection R·R f = 120 Hz, 4.3 V ≤ VIN ≤ 6 V 59 dB Dropout Voltage VDIF I O = 0.5 A 0.4 0.6 V Short Circuit Current IOshort 0.6 A Peak Output Current IOpeak 1.0 1.5 A Temperature Coefficient of Output Voltage ΔVO/ΔT 0°C ≤ TJ ≤ 125°C ⏐0.16⏐ mV/°C ON Voltage VON V IN = 7 V, IO = 0 A 2.0 V OFF Voltage VOFF V IN = 7 V, IO = 0 A 0.8 V ON/OFF Pin Current (ON state) I ON/OFF V ON/OFF = 5 V 85 200 μA Standby Current IBIAS(OFF) V ON/OFF = 0 V 10 μA Remark Values in parentheses have been measured during product design and are provided as reference values. <R> <R> <R> <R> <R>
Data Sheet G17372EJ2V0DS 5 μ PC3033,3005 μPC3005 (TJ = 25°C, VIN = 6 V, VON/OFF = 6 V, IO = 0.5 A, CIN = 0.1 μF, COUT = 10 μF, unless otherwise specified.) Parameter Symbol Conditions MIN. TYP. MAX. Unit VO1 4.95 5.0 5.05 V Output Voltage Line Regulation REGIN 6 V ≤ VIN ≤ 7 V 2.0 9.0 mV Load Regulation REGL 5 mA ≤ IO ≤ 1 A 20.0 66.0 mV IBIAS1 I O = 0 A 2.0 4.0 mA Quiescent Current IBIAS2 I O = 0.5 A 18.0 30.0 mA Startup Quiescent Current IBIAS(S) V IN = 4.8 V, IO = 0 A 9.0 25.0 mA Output Noise Voltage Vn 10 Hz ≤ f ≤ 100 kHz 120 μVr.m.s. Ripple Rejection R·R f = 120 Hz, 6 V ≤ VIN ≤ 7 V 54 dB Dropout Voltage VDIF I O = 0.5 A 0.28 0.6 V Short Circuit Current IOshort 0.6 A Peak Output Current IOpeak 1.0 1.5 A Temperature Coefficient of Output Voltage ΔVO/ΔT 0°C ≤ TJ ≤ 125°C ⏐0.4⏐ mV/°C ON Voltage VON V IN = 7 V, IO = 0 A 2.0 V OFF Voltage VOFF V IN = 7 V, IO = 0 A 0.8 V ON/OFF Pin Current (ON state) I ON/OFF V ON/OFF = 7 V 130 200 μA Standby Current IBIAS(OFF) V ON/OFF = 0 V 10 μA Remark Values in parentheses have been measured during product design and are provided as reference values. <R> <R> <R> <R> <R>
Data Sheet G17372EJ2V0DS 6 μ PC3033,3005 TYPICAL CHARACTERISTICS (TA = 25°C) Pd vs. TA Δ VO vs.TJ P d - Total Power Dissipation - W 0.0 2.5 5.0 7.5 10.0 12.5 15.0 0 25 50 75 100 125 150 With infinite heatsink 10°C/W 110°C/W Without heatsink 1.1 TA - Operating Ambient Temperature - °C Δ VO - Output Voltage Deviation - mV -70 -60 -50 -40 -30 -20 -10 -50 -25 0 25 50 75 100 125 150 μ PC3005 IO = 5 mA μ PC3033 TJ - Operating Junction Temperature - °C VO vs. VIN (μ PC3033) VO vs. VIN (μ PC3005) V O - Output Voltage - V 0.0 1.0 2.0 3.0 4.0 5.0 012345678 IO = 1 A IO = 0.5 A IO = 5 mA TJ = 25°C VIN - Input Voltage - V V O - Output Voltage - V 0.0 1.0 2.0 3.0 4.0 5.0 6.0 012345678 IO = 1 A IO = 0.5 A IO = 5 mA TJ = 25°C VIN - Input Voltage - V I BIAS (IBIAS(s)) vs. VIN (μ PC3033) I BIAS (IBIAS(s)) vs. VIN (μ PC3005) I BIAS - Quiescent Current - mA 012345678 IO = 1 A IO = 0.5 A IO = 5 mA TJ = 25°C VIN - Input Voltage - V I BIAS - Quiescent Current - mA 012345678 IO = 0.5 A IO = 5 mA TJ = 25°C IO = 1 A VIN - Input Voltage - V <R>
Data Sheet G17372EJ2V0DS 7 μ PC3033,3005 VDIF vs. TJ (μ PC3005) IO peak vs. VDIF (μ PC3005) V DIF - Dropout Voltage - V 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 -50 -25 0 25 50 75 100 125 150 IO = 0.5 A TJ - Operating Junction Temperature - °C I O peak - Peak Output Current - A 0.0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 1.8 TJ = 25°C VDIF - Dropout Voltage - V RR vs. f (μ PC3033) RR vs. f (μ PC3005) RR - Ripple Rejection - dB 0 10 100 1000 10000 100000 TJ = 25°C IO = 0.5 A VIN = 4.3 ~ 6.0 V f - Frequency - Hz RR - Ripple Rejection - dB 0 10 100 1000 10000 100000 TJ = 25°C IO = 0.5 A VIN = 6.0 V f - Frequency - Hz VDIF vs. IO (μ PC3005) VO vs. IO (μ PC3005) V DIF - Dropout Voltage - V 0.0 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 1.0 TJ = 25°C IO - Output Current - A V O - Output Voltage - V 0 0.4 0.8 1.2 1.6 VIN = 6.5 V TJ = 25°C IO - Output Current - A
Data Sheet G17372EJ2V0DS 8 μ PC3033,3005 PACKAGE DRAWING (Unit: mm) M 4-PIN PLASTIC SIP (TO-126) ITEM MILLIMETERS A 8.5 MAX. 1.1 MIN. F J K E 0.65± 0.1 G 0.2 D C 9.7± 0.3 3.2± 0.1 V 0.55± 0.1 Y 13.5± 0.7 H 2.0 M 11.5 MAX. N 2.7± 0.2 1.25 MAX. 2.3 MIN. Q 14.5 MAX. U 1.7 MAX. M D Q Y A K J C H E F G N UV φ NOTE Each lead centerline is located within 0.2 mm of its true position (T.P.) at maximum material condition. P4HP-200B-2
Data Sheet G17372EJ2V0DS 9 μ PC3033,3005 RECOMMENDED SOLDERING CONDITIONS The μPC3033,3005 should be soldered and mounted under the following recommended conditions. For soldering methods and conditions other than those recommended below, contact an NEC Electronics sales representative. For technical information, see the following website. Semiconductor Device Mount Manual (http://www.necel.com/pkg/en/mount/index.html) Through-hole devices μPC3033H, μPC3005H: 4-pin plastic SIP (TO-126) Process Conditions Recommend Wave soldering (only to leads) Solder temperature: 260°C or below, Flow time: 10 seconds or less. WS60-00-1 Partial heating method Pin temperature: 300°C or below, Heat time: 3 seconds or less (Per each pin). P300 μPC3033H-AZ, μPC3005H-AZ: 4-pin plastic SIP (TO-126) Note Process Conditions Recommend Wave soldering (only to leads) Solder temperature: 260°C or below, Flow time: 10 seconds or less. WS60-00-1 Partial heating method Pin temperature: 350°C or below, Heat time: 3 seconds or less (Per each pin). P350 Note Pb-free (This product does not contain Pb in external electrode.) Caution For through-hole device, the wave soldering process must be applied only to leads, and make sure that the package body does not get jet soldered. <R> <R> <R> <R>
Data Sheet G17372EJ2V0DS 10 μ PC3033,3005 NOTES ON USE When the μPC3033 or μPC3005 is used with an input voltage that is lower than the value prescribed in the recommended operating conditions, a large quiescent current flows through the device due to saturation at the transistor of the output stage. The specifications of these characteristics are prescribed by the item “Startup Quiescent Current (I BIAS(S))”. These products have a saturation protector, but a current of up to 80 mA MAX. may flow through the device. Thus the power supply on the input side must have sufficient capacity to allow this quiescent current to pass through when the device is started up. REFERENCE DOCUMENTS Document Name Document No. Usage of Three-Terminal Regulators User’s Manual G12702E Semiconductor Device Mount Manual http://www.necel.com/pkg/en/mount/index.html SEMICONDUCTOR SELECTION GUIDE - Products and Packages - X13769X
μ PC3033,3005 The information in this document is current as of January, 2006. The information is subject to change without notice. For actual design-in, refer to the latest publications of NEC Electronics data sheets or data books, etc., for the most up-to-date specifications of NEC Electronics products. Not all products and/or types are available in every country. Please check with an NEC Electronics sales representative for availability and additional information. No part of this document may be copied or reproduced in any form or by any means without the prior written consent of NEC Electronics. NEC Electronics assumes no responsibility for any errors that may appear in this document. NEC Ele ctronics does not assume any liability for infringement of patents, copyrights or other intellectual property rights of third parties by or arising from the use of NEC Electronics products listed in this document or any other liability arising from the use of such products. No license, express, implied or otherwise, is granted under any patents, copyrights or other intellectual property rights of NEC Electronics or others. Descriptions of circuits, software and other related information in this document are provided for illustrative purposes in semiconductor product operation and application examples. The incorporation of these circuits, software and information in the design of a customer's equipment shall be done under the full responsibility of the customer. NEC Electronics as sumes no responsibility for any losses incurred by customers or third parties arising from the use of these circuits, software and information. While NEC Electronics endeavors to enhance the quality, reliability and safety of NEC Electronics products, customers agree and acknowledge that the possibility of defects thereof cannot be eliminated entirely. To minimize risks of damage to property or injury (including death) to persons arising from defects in NEC Electronics products, customers must incorporate sufficient safety measures in their design, such as redundancy, fire-containment and anti-failure features. NEC Electronics products are classified into the following three quality grades: "Standard", "Special" and "Specific". The "Specific" quality grade applies only to NEC Electronics products developed based on a customer- designated "quality assurance program" for a specific application. The recommended applications of an NEC Electronics product depend on its quality grade, as indicated below. Customers must check the quality grade of each NEC Electronics product before using it in a particular application. The quality grade of NEC Electronics products is "Standard" unless otherwise expressly specified in NEC Electronics data sheets or data books, etc. If customers wish to use NEC Electronics products in applications not intended by NEC Electronics, they must contact an NEC Electronics sales representative in advance to determine NEC Electronics' willingness to support a given application. (Note) M8E 02. 11-1 (1) (2) "NEC Electronics" as used in this statement means NEC Electronics Corporation and also includes its majority-owned subsidiaries. "NEC Electronics products" means any product developed or manufactured by or for NEC Electronics (as defined above). Computers, office equipment, communications equipment, test and measurement equipment, audio and visual equipment, home electronic appliances, machine tools, personal electronic equipment and industrial robots. Transportation equipment (automobiles, trains, ships, etc.), traffic control systems, anti-disaster systems, anti-crime systems, safety equipment and medical equipment (not specifically designed for life support). Aircraft, aerospace equipment, submersible repeaters, nuclear reactor control systems, life support systems and medical equipment for life support, etc. "Standard": "Special": "Specific":