UPC271 RENESAS | Alldatasheet

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  • Manufacturer or author: Renesas Electronics Corporation
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Technical content

R03DS0151EJ0100 Rev.1.00 Page 1 of 8 2019.10.1 Datasheet μPC271, 311 High Performance Comparator

DESCRIPTION

The µPC271 and µPC311 are high-pe rformance general-purpose comp arators that have the same input characteristics as general-purpose operational amplifiers and can directly drive standard logic circuits such as TTL, CMOS, and HNIL. Its power supply voltage range is flexible whereby it exhibits excellent characteristics not only in a 5 V single power supply but also in ± 15 V power supply which is equivalent to an operational amplifier. These products are equipped with a strobe terminal and input of fset adjustment terminals, thus they can be widely applied to various voltage comparison circuits. Depending on the operating ambient temperature, the µPC271 is suitable for communication application while the µPC311 is suitable for general-purpose usage.

FEATURES

 Input Offset Voltage ±2 mV (TYP.)  Input Bias Current 100 nA (TYP.)  Pulse Response Time 200 ns (TYP.)  Equipped with a Strobe Terminal, ideal for interfacing with logic circuits.  Two output circuit formats are possible. (open collector, emitter follower)  Large output current capacity to directly drive the LEDs and lamps.

ORDERING INFORMATION

μPC271G2-A 8-pin plastic SOP ( 5.72 mm ( 225 mil )) μPC311G2-A 8-pin plastic SOP ( 5.72 mm ( 225 mil)) EQUIVALENT CIRCUIT PIN CONFIGURATION (T op View) 1GND V + II 2IN V - OUT7

3 BALANCE/

µPC271G2, μPC311G2 Q20 1.3k R14 Q18 Q19 R17 5.4k R18 GND R23 600 R22 200 R21 OUT 800 800 R10 Q14 3.7k IN II 5.0k R20 3.0k R12 R19 300 BALANCE BALANCE/ STROBE 3.7k 300 300 1.3k 1.3k 100 780 340 R11 R15 Q2Q1 Q7Q6 Q10Q9 Q11 Q12 Q13 Q15 Q16 Q17 Q22 Q21 Q23 Q24 V - V + D3D1 1.3k 800 250 R13 900 R16 R03DS0151EJ0100 Rev.1.00 2019.10.1

UPC271, 311 R03DS0151EJ0100 Rev.1.00 Page 2 of 8 2019.10.1 ABSOLUTE MAXIMUM RATING (TA = 25 C) PARAMETER SYMBOL μPC271G2 μPC311G2 UNIT Power Supply Voltage Note1 V + - V - -0.3 to +36 V Differential Input Voltage V ID ± 3 0 V Input Voltage Note2 V I V - -0.3 to V + +0.3 V Output to Negative Supply Voltage Note3 V O – V - -0.3 to +40 V Ground to Negative Supply Voltage Note3 V GND – V - -0.3 to +30 V Total Power Dissipation Note4 P T 440 mW Output Short Circuit Duration Note5 1 0 s Operating Ambient Temperature T A -40 to +85 -20 to +80 C Storage Temperature T stg -55 to +125 C [Note] 1. Note that reverse con nections of the power supply may damage the ICs. 2. The input terminal must be app lied within the input voltage range to avoid deterioration or damaging the device characteristic. Do not exceed the ratings including during transient state such as ON/OFF, etc. The Comparator input voltage must operate within the electrical characteristics range of input common-mode voltage. 3. The output terminal and GND terminal must be apply within t he output voltage range to avoid deteriorating or damaging the device characteristic. The GND terminal must be less than V+. Do not exceed the ratings including during transient state such as ON/OFF, etc. 4. This is the value at T A ≤ +25 C. De-rate value at -4.4 mW/C when TA > 25 C. 5. Pay attention to output te rminal current and GND terminal c urrent. Please use the total loss and the de-rating value from Note 4. RECOMMENDED OPERATING CONDITIONS PARAMETER SYMBOL MIN. TYP. MAX. UNIT Power Supply Voltage (Dual Supply) V ± ± 4 ± 1 6 V Power Supply Voltage (V - = GND) V + +5 +32 V ELECTRICAL CHARACTERISTICS (V ± = ±15 V, TA = 25 C) PARAMETER SYMBOL MIN. TYP. M AX. UNIT TEST CONDITION Input Offset Voltage Note6 V IO ± 2 . 0 ± 7 . 5 m V V + - V - = 5 V to 30 V, RS ≤ 50 kΩ Input Offset Current Note6 I IO ± 6 . 0 ± 5 0 n A V + - V - = 5 V to 30 V Input Bias Current I B 100 250 nA V + - V - = 5 V to 30 V Voltage Gain A V 200000 R L = 1.0 kΩ Pulse Response Time 200 ns Input step 100 mV, Overdrive 5 mV Output Saturation Voltage V OL 0.75 1.5 V V I ≤ -10 mV, IO = 50 mA Strobe Operating Current 3.0 mA Output Leakage Current I O LEAK 0.2 50 nA V I ≥ 10 mV, VO = 35 V Positive Supply Current I + 5.1 7.5 mA I O = 0 A Negative Supply Current I - 4.1 5.0 mA I O = 0 A Input Offset Voltage Note6 V IO ± 1 0 m V V + - V - = 5 V to 30 V, RS ≤ 50 kΩ, TA = 0 to +70 C Input Offset Current Note6 I IO ± 7 0 n A V + - V - = 5 V to 30 V, TA = 0 to +70C Input Bias Current I B 300 nA V + - V - = 5 V to 30 V, TA = 0 to +70C Common Mode Input Voltage Range VICM +13.0 -14.5 +13.8 -14.7 V Output Saturation Voltage V OL 0.23 0.4 V V + ≥ 4.5 V, V - = 0 V, VI ≤ -10 mV, IO = 8 mA [Note] 6. The difference of the input voltage and the input bia s current when the load curr ent is 1 mA and the output is inverted.

UPC271, 311 R03DS0151EJ0100 Rev.1.00 Page 3 of 8 2019.10.1 CIRCUIT CONNECTION EXAMPLE (1)

  • BALANCE terminal, BALANCE/STROBE terminal Note Use either pin 5 and pin 6 open (no offset adjustment), t he offset adjustment circuit, the strobe circuit (pin 5 open) or the common mode slew rate increase method as shown in above figures. In other cases, malfunction, characteristic deterioration or damage may occur. CIRCUIT CONNECTION EXAMPLE (2) APPLICATION CIRCUIT EX AMPLE
  • Output terminal, GND terminal 2 + - 7 V + 5 6 3 kΩ 3 kΩ オフセット調整 ストローブ 2 + - 76 1 kΩ TTL, CMOS 2 + - 7 V + コモン・モード・スルーレート増加法 BLANCE/STROBE 端子をロウに すると、出力はハイとなります。 ストローブ動作電流は 3 ~ 5 mA の 間で設定してください。 2 + V + VO RL コレクタ出力 2 + - 1 RL VO VI (-) VI (+) V + エミッタ出力 エミッタ出力ですので、 VI (+) > VI (-) でVO はロウとなります。  スレッシュホールド電圧 VTH (High) ≒VREF + R1 RL + R2 + R1 (VRL -V REF) VTH (Low) ≒ VREF - R1 R1 + R2 (VREF -V OL) (VRL >V REF > VOL) OUTPUT RL V + INPUT VRL VREF R1 V - GND Offset Adjustment Common Mode Slew Rate Increase Method Output goes high when BALANCE/STROBE terminal is low. Set the strobe operating current between 3 to 5mA Strobe Open Collector Output Comparator with Hysteresis Emitter Follower Output When VI (+) > VI (-), VO is low because emitter follower output. Threshold Voltage

UPC271, 311 R03DS0151EJ0100 Rev.1.00 Page 4 of 8 2019.10.1 TYPICAL PERFORMANCE CHARACTERISTICS (TA = 25 C, TYP.) (Reference Value) μPC271G2, 311G2 227 C/W 100 200 300 400 500 600 0 2 04 06 08 0 1 0 0 Total Power Dissipation PT [mW] Operating Ambient Temperature TA [C] PT vs. TA (Absolute Maximum Rating) 5,6-8 pin short 100 -50 0 50 100 150 Input Bias Current IB [nA] Operating Ambient Temperature TA [C] IB vs. TA V ± = ±15 V 5,6-8 pin short -20 -10 -50 0 50 100 150 Input Offset Current IIO [nA] Operating Ambient Temperature TA [C] IIO vs. TA V ± = ±15 V TYP. MAX. 100 10k 100k 1M 10M Equivalent Input Offset Voltage VOS [mV] Input Resistance RS [Ω] VOS vs. RS VOS = VIO + RS ・ IIO 5,6-8 pin short 100 125 150 175 200 225 -16 -12 -8 -4 0 4 8 12 16 Input Bias Current IB [nA] Differential Input Voltage VID [V] IB vs. VID V ± = ±15 V -0.2 0.2 0.4 0.6 0.8 -1.5 -1.0 -0.5 -50 0 50 100 150 Common Mode Input Voltage Range [V] VICM - VICM Operating Ambient Temperature TA [C] VICM vs. TA V + +0.2 V - -0.2 電源電圧基準Referred to supply voltage

UPC271, 311 R03DS0151EJ0100 Rev.1.00 Page 5 of 8 2019.10.1 Output Voltage VO [V] Differential Input Voltage VID [mV] VO vs. VID Emitter follower output RL = 600 Ω V + = 30 V Open collector output R L = 1 kΩ VRL = 40 V Overdrive 20 mV 5 mV 2mV 20 mV 5 mV Overdrive 2 mV Input Voltage VI [mV] Output Voltage VO [V] Time t [μs] Pulse Response Characteristics I 100 -10 -20 0 0.2 0.4 0.6 V ± = ±15 V V + V - VO VI 500 Ω +5 V Overdrive 20 mV 5 mV 2 mV Overdrive 20 mV 5 mV 2 mV Input Voltage VI [mV] Output Voltage VO [V] Time t [μs] Pulse Response Characteristics II -10 -100 V ± = ±15 V V + V - VO VI 500 Ω +5 V 0 0.2 0.4 0.6 Overdrive 20 mV 5 mV 2 mV Overdrive 20 mV 5 mV 2 mV -15 -10 0 0.5 1 1.5 2 2.5 3 3.5 4 Input Voltage VI [mV] Output Voltage VO [V] Time t [μs] Pulse Response Characteristics III -10 -100 V ± = ±15 V V + V - VO VI 2 kΩ 0 1 2 3 4 Overdrive 20 mV 5 mV 2 mV 20 mV 5 mV Overdrive 2 mV -15 -10 00 . 511 . 522 . 533 . 54 Input Voltage VI [mV] Output Voltage VO [V] Time t [μs] Pulse Response Characteristics IV 100 -10 -20 V ± = ±15 V V + V - VO VI 2 kΩ 0 1 2 3 4 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0 1 02 03 04 05 0 Output Saturation Voltage VOL [V] Output Current IO [mA] VOL vs. IO

UPC271, 311 R03DS0151EJ0100 Rev.1.00 Page 6 of 8 2019.10.1 100 120 140 160 0 5 10 15 Output Current IO [mA] Output Voltage VO [V] IO vs. VO 0± 5 ± 1 0 ± 1 5 Power Supply Current I± [mA] Power Supply Voltage V± [V] I ± vs. V ± I + I - -50 0 50 100 150 Power Supply Current I± [mA] Operating Ambient Temperature TA [C] I ± vs. TA V ± = ±15 V -50 0 50 100 150 Leakage Current [A] Operating Ambient Temperature TA [C] Leakage Current Characteristics V ± = ±15 V Output leakage current VO = 40 V Input leakage current V I = 15 V 10-7 10-8 10-9 10-10 10-11

UPC271, 311 R03DS0151EJ0100 Rev.1.00 Page 7 of 8 2019.10.1 USE WITH PRECAUTIONS  Power Supply (Dual Power Supply / Single Power Supply) The comparator operates when a predetermine voltage is applied between V + - V - . Therefore, while it operates from a single power supply (V - = GND), it is not possible to operate the input near GND. So please be careful of the common-mode input voltage range.  Ratings of input pin voltage When the voltage of input pin exceeds the absolute maximum rating, the parasitic diode within the IC may conduct, causing characteristics degradation or damage. Therefo re, please use the input pin within the power supply voltage range. In addition, if it exceeds the power supply voltage, it is recommended to make a clamping circuit using a diode with low forward voltage (e.g.: Schottky diode) as protection.  Range of common-mode input voltage When the power supply voltage does not meet the condition of el ectrical characteristics, the range of common-mode input voltage is as follows. VICM (TYP.) : V - +0.3 to V + -1.2 [V] (TA = 25 C) During designing, do include some margin by considering charact eristics variation and temperature characteristics, etc.  Handling of ICs When stress is added to the ICs due to warpage or bending of a board, the characteristic may fluctuate due to piezoelectric (piezo) effect. Therefore, please pay attention to warpage or bending of a board.

UPC271, 311 R03DS0151EJ0100 Rev.1.00 Page 8 of 8 2019.10.1 PACKAGE DRAWINGS 8-PIN PLASTIC SOP P-SOP8-0225-1.27 PRSP0008DL-A S8GM-50-225B 0.08 ITEM A5 . 2 +0.17 -0.20 B C D0 . 4 2 +0.08 -0.07 E F G1 . 4 9 H I J K0 . 1 7 +0.08 -0.07 L M N P3 ° +7° -3° 1.1 ±0.2 0.6 ±0.2 0.12 0.10 MILLIMETERS 6.5 ±0.3 4.4 ±0.15

0.78 MAX

1.27 (T.P) 0.1 ±0.1 1.59 ±0.21 Unit: mm NOTE Each lead centerline is located within 0.12 mm of its true position (T.P.) at maximum material condition. detail of lead end

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Tel: +1-905-237-2004 Renesas Electronics Europe GmbH Arcadiastrasse 10, 40472 Düsseldorf, Germany Renesas Electronics (China) Co., Ltd. Room 101-T01, Floor 1, Building 7, Yard No. 7, 8th Street, Shangdi, Haidian District, Beijing 100085, China Tel: +86-10-8235-1155, Fax: +86-10-8235-7679 Renesas Electronics (Shanghai) Co., Ltd. Unit 301, Tower A, Central Towers, 555 Langao Road, Putuo District, Shanghai 200333, China Tel: +86-21-2226-0888, Fax: +86-21-2226-0999 Renesas Electronics Hong Kong Limited Unit 1601-1611, 16/F., Tower 2, Grand Century Place, 193 Prince Edward Road West, Mongkok, Kowloon, Hong Kong Tel: +852-2265-6688, Fax: +852 2886-9022 Renesas Electronics Taiwan Co., Ltd. 13F, No. 363, Fu Shing North Road, Taipei 10543, Taiwan Tel: +886-2-8175-9600, Fax: +886 2-8175-9670 Renesas Electronics Singapore Pte. Ltd.

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Tel: +65-6213-0200, Fax: +65-6213-0300 Renesas Electronics Malaysia Sdn.Bhd. Unit No 3A-1 Level 3A Tower 8 UOA Business Park, No 1 Jalan Pengaturcara U1/51A, Seksyen U1, 40150 Shah Alam, Selangor, Malaysia Renesas Electronics India Pvt. Ltd. No.777C, 100 Feet Road, HAL 2nd Stage, Indiranagar, Bangalore 560 038, India Tel: +91-80-67208700 Renesas Electronics Korea Co., Ltd. 17F, KAMCO Yangjae Tower, 262, Gangnam-daero, Gangnam-gu, Seoul, 06265 Korea Refer to "http://www.renesas.com/" for the latest and detailed information. (Rev.4.0-1 November 2017)