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  • 1 - Ver.2.0 http://www.njr.com/ NJM8190/NJM8191 Single Channel Low power Comparator ■FEATURES(V+=5V, V-=0V, Ta=25°C) ■GENERAL DESCRIPTION ■PIN CONFIGURATION Parts Number NJM8190F NJM8190F3 NJM8191F NJM8191F3 NJM8191KG1 Package Outline SOT-23-5 SC-88A SOT-23-5 SC-88A DFN6-G1(*) Pin Function (*)Connect to exposed pad to V- ■EQUIVALENT CIRCUIT
  • Guaranteed Temperature -4 0! t o +125!
  • Input Offset Voltage 3m V m a x .
  • Supply Current 0 . 5 m A m a x .
  • Operating Voltage + 2 V t o + 3 6 V o r ±1 V t o ±1 8 V
  • I n t e g r a t e d E M I filter
  • Low-level Output Voltage 80mV typ.(Isink = 4mA)
  • Response Time 1 . 3 µ s t y p .
  • O pen Collector Output
  • G N D s e n c i n g
  • I n t e rnal ESD protection H u m a n B o d y Model ±2000V typ.
  • Package N J M8190 S O T-2 3-5, S C-88A N J M8191 S O T-2 3-5, S C-88A, DFN6-G1(ESON6-G1) The NJM8190/NJM8191 are single comparators designed specifically to operate wide range of supply voltage and temperature. These comparators featured low input offset voltage of 3mV max. low supply current of 0.5mA max. DC characteristics are also 100% tested and guaranteed from -40 to 125!. The NJM8190/NJM8191 are available in DFN6-G1(1616) of small size Package, significantly reducing the required portable application's board area. V+OUTPUT +INPUT-INPUT (Top View) OUTPUT+INPUT -INPUT (Top View) OUTPUT N.C. V+ V- -INPUT +INPUT (Top View) Exposed Pad on Underside
  • 2 - Ver.2.0 http://www.njr.com/ NJM8190/NJM8191 ■PRODUCT NAME INFORMATION ■ORDERING INFORMATION PART NUMBER PACKAGE OUTLINE RoHS HALOGEN- FREE TERMINAL FINISH MARKING WEIGHT (mg) MOQ (pcs) NJM8190F SOT-23-5 yes yes Sn2Bi A5V 15 3,000 NJM8190F3 SC-88A yes yes Sn2Bi 2A 7.5 3,000 NJM8191F SOT-23-5 yes yes Sn2Bi A5U 15 3,000 NJM8191F3 SC-88A yes yes Sn2Bi 29 7.5 3,000 NJM8191KG1 DFN6-G1 yes yes Sn2Bi 8191 3.5 3,000 ■ABSOLUTE MAXIMUM RATINGS PARAMETER SYMBOL RATINGS UNIT Supply Voltage V+- V- 36 V Differential Input Voltage VID ±36 V Input Voltage (1) VIN V- - 0.3 to V- + 36 V Output Terminal Input Voltage (2) Vo V- - 0.3 to V- + 36 V Short-Circuit Output Current to V-(3) Infinite Power Dissipation(Ta=25!) SOT-23-5(4) SC-88A(4) DFN6-G1(ESON6-G1)(5) PD (2-layer / 4-layer) mW Junction Temperature Tjmax +150 °C Storage Temperature Range Tstg - 55 to +150 °C (1) Input voltage is the voltage should be allowed to apply to the input terminal independent of the magnitude of V+. (2) Output voltage is the voltage should be allowed to apply to the output terminal independent of the magnitude of V+. (3) Short-circuits from the output to V+ can cause excessive heating and potential destruction. (4) Short-circuit can cause excessive heating and destructive dissipation. Values are typical. (5) Mounted on glass epoxy board. (76.2×114.3×1.6mm:based on EIA/JDEC standard, 2Layers FR4) (6) Mounted on glass epoxy board. (101.5×114.5×1.6mm: based on EIA/JEDEC standard, 2Layers FR-4, with Exposed Pad) Mounted on glass epoxy board. (101.5×114.5×1.6mm: based on EIA/JEDEC standard, 4Layers FR-4, with Exposed Pad) *For 4Layers: Applying 99.5×99.5mm inner Cu area and a thermal via hole to a board based on JEDEC standard JESD51-5 NJM8191 F ( T E 1 ) P a r t N u mber Package Taping Form F:SOT-23-5 F3:SC-88A KG1:DFN6-G1(ESON6-G1)
  • 3 - Ver.2.0 http://www.njr.com/ NJM8190/NJM8191 ■THERMAL CHARACTERISTICS PARAMETER SYMBOL VALUE UNIT Junction-to-ambient thermal resistance SOT-23-5(7) SC-88A(7) DFN6-G1(ESON6-G1) (8) θja (2-layer / 4-layer) °C /W Junction-to-Top of package characterization parameter SOT-23-5(7) SC-88A(7) DFN6-G1(ESON6-G1) (8) ψjt (2-layer/ 4-layer) °C /W (7) Mounted on glass epoxy board. (76.2×114.3×1.6mm:based on EIA/JDEC standard, 2Layers FR4) (8) Mounted on glass epoxy board. (101.5×114.5×1.6mm: based on EIA/JEDEC standard, 2Layers FR-4, with Exposed Pad) Mounted on glass epoxy board. (101.5×114.5×1.6mm: based on EIA/JEDEC standard, 4Layers FR-4, with Exposed Pad) *For 4Layers: Applying 99.5×99.5mm inner Cu area and a thermal via hole to a board based on JEDEC standard JESD51-5 ■POWER DISSIPATION vs. AMBIENT TEMPERATURE ■RECOMMENDED OPERATING CONDITIONS PARAMETER SYMBOL RATINGS UNIT Supply Voltage V+- V- 2 to 36 V Operating Ambient Temperature Topr - 40 to +125 °C 100 200 300 400 500 600 700 0 25 50 75 100 125 150 Power Dissipation PD [mW] Ambient Temperature Ta [ºC] Power Dissipation vs. Temperature 2-Layer SOT-23-5 SC-88A DFN6-G1(ESON6-G1) 200 400 600 800 1000 1200 1400 0 25 50 75 100 125 150 Power Dissipation PD [mW] Ambient Temperature Ta [ºC] Power Dissipation vs. Temperature 4-Layer SOT-23-5 SC-88A DFN6-G1(ESON6-G1)
  • 4 - Ver.2.0 http://www.njr.com/ NJM8190/NJM8191 ■ELECTRICAL CHARACTERISTICS (Unless otherwise specified, V+=5V, V-=0V, RL=OPEN, Ta=25!) (1) VO = 1.4V, RS=0Ω, 5V < V+ < 30V, 0 < VICM <( V+ - 1.5V.) (2) The direction of the input current is out of the IC due to the PNP input stage. (3) Positive excursions of input voltage may exceed the power supply level. As long as the other voltage remains within the common-mode range, the comparator will provide a proper output state. The low input voltage must not be less than -0.3V (or 0.3V below the negative power supply, if used). (4) The response time specified is for a 100mV input step with 5mV overdrive. PARAMETER SYMBOL TEST CONDITION MIN TYP. MAX. UNIT Input Offset Voltage(1) VIO Ta=25! ÿ 0.5 3 mV Ta=-40! to 125! ÿ ÿ 4 mV Input Offset Current IIO Ta=25! ÿ 0.5 50 nA Ta=-40! to 125! ÿ ÿ 150 Input Bias Current (2) IB Ta=25! ÿ 20 250 Ta=-40! to 125! ÿ ÿ 400 Common Mode Input Voltage VICM V+=30V, Ta=25! 0 ÿ V+-1.5 V V+=30V, Ta=-40 to 125! 0 ÿ V+-2.0 Open-Loop Voltage Gain AV V+=15V0RLÿ 15k©, Vo=1V to 11V 50 200 - V/mV Supply Current ISUPPLY Ta=25! ÿ 0.3 0.5 mA Ta=-40 to 125! ÿ ÿ 0.9 V+=30V,Ta=25! ÿ 0.4 1.2 V+=30V,Ta=-40 to 125! ÿ ÿ 1.5 Differential Input Voltage Range(3) VID ÿ ÿ V+ V Low-level Output Voltage VOL VIN+=0V,VIN-=1V,ISINK=4mA, Ta=25! ÿ 80 400 mV VIN+=0V,VIN-=1V,ISINK=4mA, Ta=-40 to 125! ÿ ÿ 700 Output Sink Current ISINK VIN+=0V,VIN-=1V, Vo=1.5V 6 16 ÿ mA Output Leakage Current ILEAK V+=Vo=30V, VIN+=1V,VIN-=0V, Ta=25! ÿ 0.1 ÿ nA V+=Vo=30V, VIN+=1V,VIN-=0V, Ta=-40 to 125! ÿ ÿ 1 µA Response Time(4) tre RL=5.1k© to V+ ÿ 1.3 ÿ µs Large Signal Response Time tRL RL=5.1k© to V+ Vref=1.4V,TTL input ÿ 250 ÿ ns
  • 5 - Ver.2.0 http://www.njr.com/ NJM8190/NJM8191 ■TYPICAL CHARACTERISTICS 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 0 5 10 15 20 25 30 35 40 Supply Current [mA] Supply Voltage V+ [V] Supply Current vs. Supply Voltage V-=0V, VCOM=0V, VO=OPEN Ta=-40ºC Ta=25ºC Ta=125ºC -100 -80 -60 -40 -20 100 -75 -50 -25 0 25 50 75 100 125 150 Input Bias Current [nA] Temperature [ºC] Input Bias Current vs. Temperature V-=0V, VCOM=0V V+=5V V+=30V V+=2V 0 5 10 15 20 25 30 35 40 Input Offset Voltage [mV] Supply Voltage V+ [V] Input Offset Voltage vs. Supply Voltage V- =0V, VCOM=0V, VO=1.4V, RL=15kΩ Ta=25ºC Ta=-40ºC Ta=125ºC -75 -50 -25 0 25 50 75 100 125 150 Input Offset Voltage [mV] Temperature [ºC] Input Offset Voltage vs. Temperature V- =0V, VCOM=0V, VO=1.4V, RL=15kΩ V+=5V V+=30V V+=2V -5 0 5 10 15 20 25 30 Input Offset Voltage [mV] Common-Mode Input Voltage [V] Input Offset Voltage vs. Common-Mode Input Voltage V+=30V, V- =0V, VO=1.4V, RL=15kΩ Ta=25ºCTa=-40ºC Ta=125ºC 100 120 140 160 -75 -50 -25 0 25 50 75 100 125 150 Open-Loop Voltage Gain [dB] Temperature [ºC] Large signal voltage gain vs. Temperature V+=15V, V- =0V, VCOM=1.4V, RL=15kΩ
  • 6 - Ver.2.0 http://www.njr.com/ NJM8190/NJM8191 ■TYPICAL CHARACTERISTICS 100 150 200 250 300 0 5 10 15 20 25 30 35 40 Low-level Output Voltage [mV] Supply Voltage V+ [V] Low-level Output Voltage vs. Supply Voltage V-=0V, Ta=25ºC ISINK=4mA ISINK=10mA ISINK=6mA ISINK=2mA 0.001 0.01 0.1 0.1 1 10 100 Low-level Output Voltage [V] Output Sink Current [mA] Low-level Output Voltage vs. Output Sink Current V+=5V, V- =0V, VIN+=0V, VIN-=1V Ta=25ºC Ta=-40ºC Ta=125ºC 0.1 0.2 0.3 0.4 0.5 0.6 0.7 0.8 0.9 -75 -50 -25 0 25 50 75 100 125 150 Response Time [μs] Temperature [ºC] Response Time vs. Temperature V+=5V, V- =0V, Ov=100mV, RL=5.1kΩ Rise Fall 100 200 300 400 500 600 -75 -50 -25 0 25 50 75 100 125 150 Output Signal Rising/Falling Time [ns] Ambient Temperature [ºC] Output Signal Rising/Falling Time vs. Temperature V+=5V, V- =0V, ov=100mV, RL=5.1kΩ Rise Fall
  • 7 - Ver.2.0 http://www.njr.com/ NJM8190/NJM8191 ■TYPICAL CHARACTERISTICS -1 0 1 2 3 OutputVoltage [V] Input Voltage [V] 0.25μs/div Response Time V+=5V, V- =0V, RL=5.1kΩ, VREF=1.4V, Ta=25ºC Output Input CL=0pF CL=47pF CL=100pF -1 0 1 2 3 OutputVoltage [V] Input Voltage [V] 0.25μs/div Response Time V+=5V, V- =0V, RL=5.1kΩ, VREF=1.4V, Ta=25ºC Input CL=0pF CL=47pF CL=100pF Output -0.1 0.0 0.1 -1 0 1 2 3 Output Voltage [V] Input Voltage [V] 0.25μs / div Response Time V+ = 5V, V− = 0V, RL = 5.1kΩ, VREF = 0V, CL = 0pF, Ta = 25°C Overdrive = 100mVOverdrive = 20mV Overdrive = 5mV Input Output -0.1 0.0 0.1 -1 0 1 2 3 Output Voltage [V] Input Voltage [V] 0.25μs / div Response Time V+ = 5V, V− = 0V, RL = 5.1kΩ, VREF = 0V, CL = 0pF, Ta = 25°C Overdrive = 100mV Overdrive = 20mV Overdrive = 5mV Input Output
  • 8 - Ver.2.0 http://www.njr.com/ NJM8190/NJM8191 ■TYPICAL TEST CIRCUIT
  • Supply Current (ISUPPLY) 0ûV+=5V,Vÿ 0ûV+= 3 0 V , Vÿ = 0 V , T a = 2 5!,-40 to 125!
  • Output Leakage Current (ILEAK) ●Low-level Output Voltage (VOL) 0ûV+=30V,Vÿ =0V, VIN+=1V,VIN-=0V,Ta=25!,-40 to 125! 0ûV+= 5 V , Vÿ = 0 V , VI N+=0 V , VI N-=1 V , IS I N K= 4 m A , T a = 2 5!,-40 to 125!
  • R e sponse Time(tre) 0û0ûV+=5V,Vÿ =0V,RL=5.1k© Input Wave Form (RiseMeasurement) 100mV Over Drive Input Wave Form (FallMeasurement) 100mV Over Drive A VID A VID V ISINK RL VIN
  • 9 - Ver.2.0 http://www.njr.com/ NJM8190/NJM8191 ■APPLICATION NOTE EMIRR(EMI Rejection Ratio) Definition EMIRR is a parameter indicating the EMI robustness of an comparator. The definition of EMIRR is given by the following a formula (1). We can grasp the tolerance of the RF signal by measuring an RF signal and offset voltage shift quantity. VRF_PEAK ÿRF Signal Amplitude [ VP ] ”VIO ÿInput offset voltage shift quantity [ V ] Offset voltage shift is small so that a value of EMIRR is big. And it understands that the tolerance for the RF signal is high. In addition, about the input offset voltage shift with the RF signal, there is the thinking that influence applied to the input terminal is dominant. Therefore, generally the EMIRR becomes value that applied an RF signal to +INPUT terminal. *For details, refer to " Application Note for EMI Immunity" in our HP: http://www.njr.com/ 0û0û0û(1) EMIRR=20∙log ቆ VRF_PEAK |∆VIO| ቇ 100 10M 100M 1G 10G EMIRR [dB] Frequency [Hz] EMIRR vs. Frequency V+=5V, V-=0V, VREF=1.4V, VIN=100mVpp
  • 10 - Ver.2.0 http://www.njr.com/ NJM8190/NJM8191 % PACKAGE DIMENSIONS 1 2 3 0ÿ^15° 1.9±0.2 2.9±0.2 0.6max 0.95±0.1 1.6 +0.2 -0.1 0.4±0.1 0.1 0.1 +0.1 -0.03 0.6 0.2 % EXAMPLE OF SOLDER PADS DIMENSIONS 0.7 1.0 0.95 0.95 2.4 SOT-23-5 Unit: mm
  • 11 - Ver.2.0 http://www.njr.com/ NJM8190/NJM8191 % PACKAGE DIMENSIONS (0.245) 1 2 3 0ÿ^10° 1.25±0.1 2.1±0.2 2.0±0.2 0.23 0.13 0.65±0.07 1.3±0.2 0.9±0.1 0.05±0.05 0.2 0.95 0.1 +0.1 -0.03 -0.05 +0.1 +0.05 -0.15 +0.2 -0.1 % EXAMPLE OF SOLDER PADS DIMENSIONS SC-88A Unit: mm 0.65 0.65 1.9 0.8 0.3 DFN6-G1(ESON6-G1) Unit: mm
  • 12 - Ver.2.0 http://www.njr.com/ NJM8190/NJM8191 % PACKAGE DIMENSIONS % EXAMPLE OF SOLDER PADS DIMENSIONS 1.60±0.05 1.60±0.05

0.10 SAM

0.10MS B 0.075 S 0.397±0.030 0.01-0.008 +0.01 S 0.05 S 3-R0.2 B C0.2 1.20 A +0.06 -0.04 0.68+0.06 -0.04 0.21+0.06 -0.04 0.5 0.5 0.26+0.06 -0.04 Æ0.05 ABSM 0.310.62 0.28 1.28 1.14 1.8

  • 13 - Ver.2.0 http://www.njr.com/ NJM8190/NJM8191 % PACKING SPEC TAPING DIMENSIONS A B P2 P0 ÆD0 EF W T T2ÆD1 Feeddirection SYMBOL A B E F T W DIMENSION 3.3±0.1 3.2±0.1 1.55 1.05 1.75±0.1 3.5±0.05 4.0±0.1 4.0±0.1 2.0±0.05 0.25±0.05 1.82 1.5±0.1 8.0±0.3 5.5 REMARKS BOTTOMDIMENSION BOTTOMDIMENSION THICKNESS0.1MAX REEL DIMENSIONS A E C D B W SYMBOL A B C D E W DIMENSION Æ180±1 Æ60±1 Æ13±0.2 Æ21±0.8 2±0.5 9±0.5 1.2±0.2 TAPING STATE morethan20pitch Emptytape Deviceattachingtape reelmorethan1round Coveringtape Sealingwithcoveringtape Drawingdirection 3000pcs/reel morethan20pitch Emptytape PACKING STATE Label Putareelintoabox Label SOT-23-5 Unit: mm Insertdirection (TE1)
  • 14 - Ver.2.0 http://www.njr.com/ NJM8190/NJM8191 % PACKING SPEC TAPING DIMENSIONS SYMBOL A B E F T W DIMENSION 2.3±0.1 2.5±0.1 1.55±0.05 1.05±0.05 1.75±0.1 3.5±0.05 4.0±0.1 4.0±0.1 2.0±0.05 0.25±0.05 1.3±0.1 8.0±0.2 5.5 REMARKS BOTTOMDIMENSION BOTTOMDIMENSION THICKNESS0.1max REEL DIMENSIONS A E C D B W SYMBOL A B C D E W DIMENSION Æ180±1 Æ60±1 Æ13±0.2 Æ21±0.8 2±0.5 9±0.5 1.2±0.2 TAPING STATE morethan20pitch Emptytape Deviceattachingtape reelmorethan1round Coveringtape Sealingwithcoveringtape Drawingdirection 3000pcs/reel morethan20pitch Emptytape PACKING STATE Label Putareelintoabox Label SC-88A Unit: mm Feeddirection A B P2 P0 ÆD0 ÆD1 EF W T Insertdirection (TE1)
  • 15 - Ver.2.0 http://www.njr.com/ NJM8190/NJM8191 % PACKING SPEC TAPING DIMENSIONS Feeddirection A B P2 P0 ÆD0 EF W T T2ÆD1 SYMBOL A B E F T W DIMENSION 1.85±0.05 1.85±0.05 1.5 0.5±0.1 1.75±0.1 3.5±0.05 4.0±0.1 4.0±0.1 2.0±0.05 0.25±0.05 0.65±0.05 8.0±0.2 5.5 REMARKS BOTTOMDIMENSION BOTTOMDIMENSION THICKNESS0.1max +0.1 REEL DIMENSIONS A E C D B W SYMBOL A B C D E W DIMENSION Æ180 Æ60 Æ13±0.2 Æ21±0.8 2±0.5 1.2 -1.5 +0.3 TAPING STATE morethan40pitch 3000pcs/reel Emptytape morethan25pitch Coveringtape reelmorethan1round Sealingwithcoveringtape Feeddirection Devices Emptytape PACKING STATE Label Putareelintoabox Label DFN6-G1(ESON6-G1) Unit: mm Insertdirection (TE3)
  • 16 - Ver.2.0 http://www.njr.com/ NJM8190/NJM8191 aÿTemperature ramping rate : 1 to 4!/s bÿPre-heating temperature t i m e : 150 to 180! : 60 to 120s cÿTemperature ramp rate : 1 to 4!/s dÿ220! or higher time : Shorter than 60s eÿ230! or higher time : Shorter than 40s fÿPeak temperature : Lower than 260! gÿTemperature ramping rate : 1 to 6!/s *The temperature indicates at the surface of mold package. ■RECOMMENDED MOUNTING METHOD *Recommended reflow soldering procedure ■REVISION HISTORY Date Revision Changes 17.APR.2017 Ver.1.0 Initial Version a b c e g 150! 260! Room Temp. f 180! 230! 220! d
  • 17 - Ver.2.0 http://www.njr.com/ NJM8190/NJM8191 [ CAUTION ] 1. New JRC strives to produce reliable and high quality semiconductors. New JRC's semiconductors are intended for specific applications and require proper maintenance and handling. To enhance the performance and service of New J RC's semiconductors, the devices, machinery or equipment into which they are integrated should undergo preventative maintenance and inspection at regularly scheduled intervals. Failure to properly maintain equipment and machinery incorporating these products can result in catastrophic system failures 2. The specifications on this datasheet are only given for information without any guarantee as regards either mistakes or omissions. The application circuits in this datasheet are described only to show representative usages of the product and not intended for the guarantee or permission of any right including the industrial rights. All other trademarks mentioned herein are property of their respective companies. 3. T o ensure the highest levels of reliability, New JRC products must always be properly handled. The introduction of external contaminants (e.g. dust, oil or cosmetics) can result in failures of semiconductor products. 4. Ne w J R C offers a variety of semiconductor products intended for particular applications. It is important that you select the proper component for your intended application. You may contact New JRC's Sale's Office if you are uncertain about the products listed in this catalog. 5. S p e c i a l c a r e i s required in designing devices, machinery or equipment which demand high levels of reliability. This is particularly important when designing critical components or systems whose failure can foreseeably result in situations that could adversely affect health or safety. In designing such critical devices, equipment or machinery, careful consideration should be given to amongst other things, their safety design, fail-safe design, back-up and redundancy systems, and diffusion design. 6. The products listed in the catalog may not be appropriate for use in certain equipment where reliability is critical or where the products may be subjected to extreme conditions. You should consult our sales office before using the products in any of the following types of equipment. A e r o space Equipment Equipment Used in the Deep sea P o w e r Generator Control Equipment (Nuclear, Steam, Hydraulic) L i f e M a i n tenance Medical Equipment F i r e A l a r m/Intruder Detector Vehicle Control Equipment (airplane, railroad, ship, etc.) V a r ious Safety devices 7. Ne w J R C ' s p roducts have been designed and tested to function within controlled environmental conditions. Do not use products under conditions that deviate from methods or applications specified in this catalog. Failure to employ New JRC products in the proper applications can lead to deterioration, destruction or failure of the products. New JRC shall not be responsible for any bodily injury, fires or accident, property damage or any consequential damages resulting from misuse or misapplication of its products. Products are sold without warranty of any kind, either express or implied, including but not limited to any implied warranty of merchantability or fitness for a particular purpose. 8. W a r n ing for handling Gallium and Arsenic(GaAs) Products (Applying to GaAs MMIC, Photo Reflector). This Products uses Gallium(Ga) and Arsenic(As) which are specified as poisonous chemicals by law. For the prevention of a hazard, do not burn, destroy, or process chemically to make them as gas or power. When the product is disposed, please follow the related regulation and do not mix this with general i ndustrial waste or household waste. 9. The product specifications and descriptions listed in this catalog are subject to change at any time, without notice.