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Integrated Circuits (ICs)

Difference between 74LS04 and other Similar IC Chips

IntroductionA circuit or device that changes the phase of a signal by 180°, as required for feeding a push-pull amplifier stage without using a coupling transformer, or for changing the polarity of a pulse; a triode is commonly used as a phase inverter. Also known as inverter. The following is an introduction to 74LS04 and other similar IC chips.CatalogIntroductionI 74LS04 VS. 74LS141.1 Brief Introduction1.2 Difference between 74LS04 and 74LS14II 74LS04 VS. 74LS08III 74LS04 VS. 74HC04IV 74LS04 VS. 54LS04FAQOrdering & QuantityI 74LS04 VS. 74LS141.1 Brief IntroductionBoth 74LS04 and 74LS14 are not gates of the 74 series. 74LS04 is a Hex Inverter. 74LS14 is a Hex Schmidt trigger.The 74LS04 gate circuit has a threshold voltage. When the input voltage rises from the low level to the threshold voltage, or decreases from the high level to the threshold voltage, the condition of the circuit will change.74LS14 is a Schmidt trigger. It is a special gate circuit, which is not compatible with the simple gate circuit. Schmidt trigger has two threshold voltages (positive threshold voltage and negative threshold voltage).1.2 Difference between 74LS04 and 74LS14◾Output: The output of 74LS04 and 74LS14 are the same. If the same manufacturer, the output parameters are the same.◾Input: The difference between the two is that the input is not the same. 74LS04 input is TTL level, while 74LS14 input is Schmidt input (with hysteresis characteristics). Because the input is different, the application of the two chips is also different. 74LS04 is mostly used for "non" control of general data on the board, while 74LS14 is generally used for signal shaping or signal buffering of critical signals. In most cases, 74LS14 can replace 74LS04.II 74LS04 VS. 74LS08The 74LS08 device contains 4 independent 2-input AND gates. The logic function expression of 74LS08 is: Y = A·B or Y = /(A + B), positive logic. 74LS08 is commonly used in digital circuit systems. 74LS0474LS08VCC (Min) (V)4.754.75VCC (Max) (V)5.255.25Logic levelTTLTTLPin/Package14PDIP, 14SO, 14SOIC, 14SSOP  PDIP14, SOIC14, SOP14, SSOP14III 74LS04 VS. 74HC0474HC04 is a hex inverter of CMOS circuit, and the working voltage is 2V-6V. Both 74LS04 and 74HC04 are inverters, but LS stands for low-power Schottky and HC is high-speed COMS. LS is slightly faster than HC. LS adopts TTL level. HC is CMOS level. 74HC04 is easy to understand. Input low level, output high level. Input high level, output low level.74LS04 contains six independent gates each of which performs the logic INVERT function. The output signals of the six inverters are opposite to the input signals. The inverter can reverse the phase of the input signal by 180 degrees. This circuit is used in analog circuits, such as audio amplifier, clock oscillator, etc.IV 74LS04 VS. 54LS0454LS04 contains six independent inverters. It is characterized for operation over the full military temperature range of -55℃ to 125℃. 74LS0454LS04Technology FamilyLSLSVCC (Min) (V)4.754.5VCC (Max) (V)5.255.5Bits (#)66Voltage (Nom) (V)55F @ Nom Voltage (Max) (Mhz)3535ICC @ Nom Voltage (Max) (mA)0.033  0.033  tpd @ Nom Voltage (Max) (ns)22  22  IOL (Max) (mA)88IOH (Max) (mA)-0.4  -0.4  Schmitt TriggerNoNoRatingCatalogMilitary  Operating Temperature Range (C)0 to 70-55 to 125Pin/Package14PDIP, 14SO, 14SOIC, 14SSOP  14CDIP, 14CFP, 20LCCC  FAQWhat is 74LS04?74LS04 is a member of 74XXYY IC series. The 74-series are digital logic integrated circuits. 74LS04 IC has six NOT gates. These NOT gates perform Inverting function. Hence name HEX INVERTING GATES.What is the function of ic 74ls04?74LS04 Hex NOT Gate IC. 74LS04 is a 2 input quadruple 8-bit NOT gate IC. Inverter in logic converters is an electronics device whose basic functions are to invert the incoming logic weather it is HIGH or LOW. They are also known as NOT gates.What is a hex inverter?A hex inverter is a type of an integrated circuit that contains six inverters. Many sophisticated digital devices use inverters, including multiplexers, decoders, and state machines.  An inverter circuit's main function is to output the voltage representing the opposite level to its input.Why is NOT gate called an inverter?A NOT gate, often called an inverter, is a nice digital logic gate to start with because it has only a single input with simple behavior. A NOT gate performs logical negation on its input. In other words, if the input is true, then the output will be false.
kynix On 2022-01-27   18511
Integrated Circuits (ICs)

74LS04 HEX INVERTER

Description74LS04 contains six independent gates each of which performs the logic INVERT function. The output signals of the six inverters are opposite to the input signals. The inverter can reverse the phase of the input signal by 180 degrees. This circuit is used in analog circuits, such as audio amplifier, clock oscillator, etc. Inverter is often used in electronic circuit design.74LS04 - HEX Inverter - Truth Table & ExampleCatalogDescriptionCAD ModelsFeaturesApplicationPinoutCircuit DiagramPackageParametersElectrical CharacteristicsProduct ComplianceComponent DatasheetProduct ManufacturerFAQOrdering & QuantityCAD Models74LS04 FootprintFeaturesSupply voltage range: +4.75V to +5.25VMaximum supply voltage: +7VMaximum current allowed to draw through each gate output: 8mATotally lead freeTTL outputsMaximum Rise Time: 15nsMaximum Fall Time: 15nsOperating temperature:0°C  to 70 °CApplication▪ In different logic circuit▪ In different servers▪ In different storage module to store data▪ In different digital reluctances circuits and instruments▪ In different networking systemsPinoutPin NumberDescriptionINPUT OF INVERTING GATES11A-INPUT of GATE 132A-INPUT of GATE 253A-INPUT of GATE 394A-INPUT of GATE 4115A-INPUT of GATE 5136A-INPUT of GATE 6SHARED TERMINALS7GND-Should be connected to ground14VCC-Should be connected to positive volatgeOUTPUT OF INVERTING GATES21Y-OUTPUT of GATE 142Y-OUTPUT of GATE 263Y-OUTPUT of GATE 384Y-OUTPUT of GATE 4105Y-OUTPUT of GATE 5126Y-OUTPUT of GATE 6Circuit DiagramPackageParametersTechnology FamilyLSVCC (Min) (V)4.75VCC (Max) (V)5.25Channels (#)6IOL (Max) (mA)8IOH (Max) (mA)-0.4ICC (Max) (uA)33Input typeBipolarOutput typePush-PullFeaturesHigh speed (tpd 10-50ns), Input clamp diodeData rate (Mbps)70Electrical Characteristics  Product ComplianceECCNEAR99USHTS8542390001Component DatasheetDatasheet74LS04 DatasheetProduct ManufacturerTexas Instruments Inc. (TI)  is an American technology company that designs and manufactures semiconductors and various integrated circuits, which it sells to electronics designers and manufacturers globally. Its headquarters are in Dallas, Texas, United States. TI is one of the top ten semiconductor companies worldwide, based on sales volume. Texas Instruments's focus is on developing analog chips and embedded processors, which accounts for more than 80% of their revenue. TI also produces TI digital light processing (DLP) technology and education technology products including calculators, microcontrollers and multi-core processors. To date, TI has more than 43,000 patents worldwide.FAQWhat is 74LS04?74LS04 is a member of 74XXYY IC series. The 74-series are digital logic integrated circuits. 74LS04 IC has six NOT gates. These NOT gates perform Inverting function. Hence name HEX INVERTING GATES.What is the function of ic 74ls04?74LS04 Hex NOT Gate IC. 74LS04 is a 2 input quadruple 8-bit NOT gate IC. Inverter in logic converters is an electronics device whose basic functions are to invert the incoming logic weather it is HIGH or LOW. They are also known as NOT gates.What is a hex inverter?A hex inverter is a type of an integrated circuit that contains six inverters. Many sophisticated digital devices use inverters, including multiplexers, decoders, and state machines.  An inverter circuit's main function is to output the voltage representing the opposite level to its input.Why is NOT gate called an inverter?A NOT gate, often called an inverter, is a nice digital logic gate to start with because it has only a single input with simple behavior. A NOT gate performs logical negation on its input. In other words, if the input is true, then the output will be false.What are the 7 basic logic gates?There are seven basic logic gates: AND, OR, XOR, NOT, NAND, NOR, and XNOR. The AND gate is so named because, if 0 is called "false" and 1 is called "true," the gate acts in the same way as the logical "and" operator. The following illustration and table show the circuit symbol and logic combinations for an AND gate.
kynix On 2022-01-27   9472
Integrated Circuits (ICs)

LSK170 High Input Impedance, Ultra-Low Noise, Single N-Channel JFET Datasheet PDF Download

CatalogDescriptionLSK170 Top ViewFeaturesBenefitsApplicationsAbsolute Maximum RatingsElectrical CharacteristicsTypical CharacteristicsOrdering InformationPackage DimensionsLSK170 DatasheetLSK170 FAQ DescriptionThe LSK170 is specifically designed for low noise, high input impedance applications within the audio, instrumentation, medical and sensors markets. The narrow ranges of IDSS grades with the LSK170 promote ease of design.  particularly in low voltage applications. The LSK170 is ideal for portable battery operated applications, and features high BVDSS for maximum linear headroom in high transient program content amplifiers. The series has a uniquely linear VGS transfer function for a stability that is highly desirable, particularly for audio front-end preamplifiers. The device is available in a surface mount SOT-23 package, throughhole TO-92 package and SOT-89 package, The surface mount version of the LSK170 Series creates new opportunities for engineers seeking to design lower noise circuits in compact embeddable applications where shielding and space are critical. The LSK170 series is a pin for pin replacement of the Toshiba 2SK170 and improved functional replacement for the Interfet IF1320, IF1330, IF1331, and IF4500. Contact the factory for tighter noise and other specification selections. LSK170 Top ViewLSK170 TO-92 3L TOP VIEW  LSK170 SOT-23 3L TOP VIEW  LSK170 SOT-89 3L TOP VIEW FeaturesULTRA LOW NOISE (f =1khz):en = 0.9nV/√HzHigh Breakdown Voltage:BVGSS = 40V minHigh Gain: Gfs= 22mS (typ)High Input Impedance:20GΩ typLow Capacitance: 22pF maxImproved Second SourceReplacement for 2SK170For Equivalent Monolithic-Dual,See the LSK389 Series BenefitsDirect Pin-For-Pin Replacementof Toshiba's 2SK170Optimized to Provide Low Noiseat Both High and Low Frequencies With a Narrow Range of IDSS and Low CapacitanceLow Noise to Capacitance Ratioand Narrow Range of Low Value IDSS Provide Solutions for Low Noise Applications Which Cannot Tolerate High Values of Capacitance or Wide Ranges of IDSS ApplicationsAudio Amplifiers andPreampsDiscrete Low-NoiseOperational AmplifiersGuitar PickupsEffects PedalsMicrophonesAudio MixerConsolesAcoustic SensorsSonobouysHydrophonesChemical and RadiationDetectorsInstrumentation AmplifiersAccelerometersCT Scanners Input StagesOscilloscope Input StagesElectrometers andVibrations Detectors Absolute Maximum Ratings@ 25 °C (unless otherwise stated)Maximum TemperaturesStorage Temperature-55 to +150°CJunction Operating Temperature-55 to +135°CMaximum Power DissipationContinuous Power Dissipation @ +25°C400mWMaximum CurrentsGate Forward CurrentIG(F) = 10mAMaximum VoltagesGate to SourceVGSS = 40VGate to DrainVGDS = 40V Electrical Characteristics @ 25°C (unless otherwise stated)SYMBOLCHARACTERISTICMINTYPMAXUNITSCONDITIONSBVGSSGate to Source Breakdown Voltage-40.0  VVDS = 0V, ID = -100µAVGS(OFF)Gate to Source Pinch-off Voltage-0.2 -2.0VVDS = 10V, ID = 1nAVGSGate to Source Operating Voltage 0.5 VVDS = 10V, ID = 1mA  IDSS2     Drain to Source Saturation Current   LSK170A2.6 6.5  mA     VDS = 10V, VGS = 0   LSK170B6.0 12.0LSK170C10.0 20.0LSK170D18.0 30.0IGGate Operating Current  -0.5nAVDG = 10V, ID = 1mAIGSSGate to Source Leakage Current  -1.0nAVGs = -10V, VDs = 0VGfsFull Conduction Transconductance14.022.0 mSVDS = 10V, VGS = 0, f = 1kHzGfsTypical Conduction Transconductance6.010.0 mSVDS = 15V, ID = 1mAenNoise Voltage 0.91.9nV/√HzVDS = 10V, ID = 2mA, f = 1kHz, NBW = 1HzenNoise Voltage 1.44.0nV/√HzVDS = 10V, ID = 2mA, f = 10Hz, NBW = 1HzCISSCommon Source Input Capacitance 20.0 pFVDS = 15V, ID = 100µA, f = 1MHz,CRSSCommon Source Reverse Transfer Cap. 5.0 pFVDS = 15V, ID = 100µA, f = 1MHz, Typical CharacteristicsLSK170 Operating Current  LSK170 Output Conductance  LSK170 Output Characteristics  LSK170 Operating Characteristics  LSK170 Common Source Transconductance vs. Drain Current  LSK170 Drain Current Transconductance vs. Gate-Source Cutoff Voltage  LSK170 Equivalent Input Noise Voltage vs. Frequency Ordering InformationSTANDARD PART CALL-OUTCUSTOM PART CALL-OUTCUSTOM PARTS INCLUDE SEL + 4 DIGIT NUMERIC CODE)LSK170A TO-92 3L RoHSLSK170A TO-92 3L RoHS SELXXXXLSK170B TO-92 3L RoHSLSK170B TO-92 3L RoHS SELXXXXLSK170C TO-92 3L RoHSLSK170C TO-92 3L RoHS SELXXXXLSK170D TO-92 3L RoHSLSK170D TO-92 3L RoHS SELXXXXLSK170A SOT-23 3L RoHSLSK170A SOT-23 3L RoHS SELXXXXLSK170B SOT-23 3L RoHSLSK170B SOT-23 3L RoHS SELXXXXLSK170C SOT-23 3L RoHSLSK170C SOT-23 3L RoHS SELXXXXLSK170D SOT-23 3L RoHSLSK170D SOT-23 3L RoHS SELXXXXLSK170A SOT-89 3L RoHSLSK170A SOT-89 3L RoHS SELXXXXLSK170B SOT-89 3L RoHSLSK170B SOT-89 3L RoHS SELXXXXLSK170C SOT-89 3L RoHSLSK170C SOT-89 3L RoHS SELXXXXLSK170D SOT-89 3L RoHSLSK170D SOT-89 3L RoHS SELXXXX Package DimensionsLSK170 Package Dimensions TO-92 3 Lead  LSK170 Package Dimensions SOT-23 3 Lead  LSK170 Package Dimensions SOT-89 3 Lead Notes1.Absolute maximum ratings are limiting values above which serviceability may be impaired.2.Pulse Test: PW ≤ 300µs, Duty Cycle ≤ 3%3.All characteristics MIN/TYP/MAX numbers are absolute values. Negative values indicate electrical polarity only.4.When ordering include the full Linear Systems part number and package type. Linear Systems creates custom parts on a case by case basis.5.All standard parts are RoHS compliant. Contact the factory for availability of non-RoHS parts.6.Information furnished by Linear Integrated Systems is believed to be accurate and reliable. However, no responsibility is assumed for its use; nor for any infringement ofpatents or other rights of third parties which may result from its use. No license is granted by implication or otherwise under any patent or patent rights of Linear IntegratedSystems.7.Voltage specifications are not tested 100%, but guaranteed by lot sampling. Contact the factory if 100% test is required. LSK170 DatasheetYou can download the datasheet from the link given below:LSK170 Datasheet LSK170 FAQWhat is JFET input?The JFET-input and CMOS amplifiers' inputs are connected with the gates of the input differential pair transistors, which causes very small bias currents in the range of few picoamperes. Current-sensing applications measure the voltage drop caused by current flowing through a shunt resistor. What is RD JFET?The drain circuit contains the load resistor, Rd. The output voltage, Vout is developed across this load resistance. When the JFET is switched fully “ON” a voltage drop equal to Rs*Id is developed across this resistor raising the potential of the source terminal above 0v or ground level. Which amplifier has highest input impedance?Although the input impedance of most op amps is quite large, the actual input impedance of the circuit depends on the configuration. The noninverting op amp has the highest input impedance, that of the op amp itself. Why does a JFET has high input impedance?Since the Gate junction is reverse biased and because there is no minority carrier contribution to the flow through the device, the input impedance is extremely high. The control element for the JFET comes from depletion of charge carriers from the n-channel. Which JFET configuration has the lowest input impedance?Common gateCommon gate: This transistor configuration provides a low input impedance while offering a high output impedance. Although the voltage is high, the current gain is low and the overall power gain is also low when compared to the other FET circuit configurations available. What is N-channel JFET?A N-Channel JFET is a JFET whose channel is composed of primarily electrons as the charge carrier. This means that when the transistor is turned on, it is primarily the movement of electrons which constitutes the current flow. A N-Channel JFET is composed of a gate, a source and a drain terminal. 
kynix On 2022-01-27   1693
Integrated Circuits (ICs)

AD8605 Operational Amplifiers: Datasheet, Pinout, Circuit [FAQ]

Product Overview ADI features their AD8605 (single), AD8606 (dual), and AD8608 (quad) rail-to-rail input and output (RRIO) operational amplifiers. These op amps use DigiTrim® technology for precision trimming. The AD8605, AD8606, and AD8608 have low offset voltage (80 mA), low input voltage (2.7 V to 5.5 V), current noise (8 nV/√Hz), and wide bandwidth 10 MHz. They come in a variety of packages including SOT-23, WLCSP, TSSOP, and MSOP, and they have a wide operational temperature range from -40°C to +125°C. The AD8605, AD8606, and AD8608 are perfect for handheld, battery, and audio applications.   This blog will introduce AD8605 systematically from its features, pinout to its specifications, applications, also including AD8605 datasheet and so much more.   Catalog Product Overview AD8605 Features AD8605 Pinout AD8605 Applications AD8605 Circuit Diagram AD8605 Package AD8605 Specification AD8605 Manufacturer AD8605 Datasheet Using Warnings AD8605 FAQ   AD8605 Features Channels: 1, 2, and 4Rail-to-rail amplifierGain bandwidth product: 10 MHzVoltage supply: 2.7 V to 5.5 VVoltage input offset: 80 µACurrent output channel: 80 mACurrent supply: 1 mATemperature operating range: -40°C to +125°CPackage/case: SOT-23-5, WLCSP. MSOP. and TSSOP    AD8605 Pinout The following figure is the diagram of AD8605 pinout.   AD8605 Pinout   AD8605 Applications Photodiode amplificationBattery-powered instrumentationMultipole filtersSensorsBarcode scannersAudio   AD8605 Circuit Diagram The low offset voltage and input current of the AD8605 make it an excellent choice for photodiode applications. In addition, the low voltage and current noise make the amplifier ideal for application circuits with high sensitivity.   For the circuit shown in the following figure, the output error voltage is approximately 100 µV at room temperature, increasing to about 1 mV at 85°C.   Equivalent Circuit for Photodiode Preamp   The low distortion and wide dynamic range of the AD860x make it a great choice for audio and PDA applications, including microphone amplification and line output buffering.   The following figure shows a typical application circuit for headphone/ line-out amplification.   Single-Supply Headphone/Speaker Amplifier   AD8605 Package The following diagram shows the AD8605 package.   AD8605 Package   AD8605 Specification Manufacturer:Analog Devices IncAmplifier Type:OPERATIONAL AMPLIFIERAverage Bias Current-Max (IIB):0.00025 µABias Current-Max (IIB) @25C:0.000001 µAInput Offset Voltage-Max:750 µVOperating Temperature-Max:125 °COperating Temperature-Min: -40 °CSupply Voltage Limit-Max:6 VSupply Voltage-Nom (Vsup):5 VSupply Current-Max:1.5 mA   AD8605 Manufacturer Analog Devices (NASDAQ: ADI) is a world leader in the design, manufacture, and marketing of a broad portfolio of high performance analog, mixed-signal, and digital signal processing (DSP) integrated circuits (ICs) used in virtually all types of electronic equipment.   AD8605 Datasheet You can download AD8605 datasheet from the link given below: AD8605 Datasheet   Using Warnings Note: Please check their parameters and pin configuration before replacing them in your circuit.   AD8605 FAQ What is the RRIO? Rail-to-rail input and output.   What technology does ADI use for precision trimming? DigiTrim® technology.   What is the wide bandwidth of the AD8605? 10 MHz.   What does rail to rail mean in op amp? “Rail-to-rail” implies that the signal swings all the way to supply voltage levels on both the positive and negative rails. If an op amp can drive RRO, it means you have a good dynamic range in which to work on the signal. A related term, head room, is a measure of how close the signal comes to the rails.   How do operational amplifiers work? An operational amplifier is an integrated circuit that can amplify weak electric signals. An operational amplifier has two input pins and one output pin. Its basic role is to amplify and output the voltage difference between the two input pins.
Kynix On 2022-01-27   308
Integrated Circuits (ICs)

TIP127 PNP Transistor: Pinout, Datasheet, Equivalent [Video&FAQ]

Product OverviewThe TIP127 is a PNP type Darlington pair transistor. It is manufactured for universal drive amplifications and less velocity swapping submissions. It is existing in TO-220 kind of cascading. Its corresponding NPN transistor is the TIP122. Mini Amplifier Circuit- Powerful 100 Watt DC 12v (tip 122 & tip127) CatalogProduct OverviewTIP127 PinoutsTIP127 FeaturesTIP127 ApplicationsTIP127 Equivalent circuitTIP127 CAD ModelsComplementary NPN transistorReplacement and Equivalent for TIP127TIP127 ParameterWhere We Can Use it & How to UseHow to Safely Long Run in a CircuitTIP127 VS TIP127GTIP127 ManufacturerTIP127 DatasheetUsing WarningsTIP127 FAQ TIP127 PinoutsThese are the main pinout TIP3055 which are well-defined beneath.Pin#Type                    ParametersPin#1EmitterCurrent creates out by the emitter, it is characteristically linked to ground.Pin#2BaseIt accomplishes the biasing of the transistor and works to turn ON or OFF the transistor.Pin#3CollectorCurrent movements in over collector, classically linked to load Let’s see a diagram of the pinout. TIP127 Pinouts TIP127 FeaturesThese are some important of TIP127. It is a PNP transistor.The voltage at (C-E) terminals is a minus hundred (-100) volts.The voltage it uses at (C-E) is minus (100) volts.The voltage at emitter and base is minus five (-5) volts Emitter-Base Voltage:It uses current at collector is minus five (-5) amperes.The power dissipation at the collector terminal is sixty-five (65) watts.Its is Gain thousand (1000).Its Working and Storing Intersection Temperature Range is from minus sixty-five to plus one fifty Celsius(-65 to +150 °C).It offered in TO-220 casing. TIP127 ApplicationsThese are some important applications of TIP127 which are described below with detail description.It is used to run higher current devices such as loads which work on up to the five amperes.It works as the switch which consumes intermediate power during its working.It used in such circuits where higher amplification is required.It also used to in motors circuits to control their speeds.It also used in Inverter circuits and other rectifier circuits. TIP127 Equivalent circuitFollowing is a diagram of  TIP127 Equivalent circuit. TIP127 Equivalent circuit TIP127 CAD ModelsFollowings are TIP127 Symbol, Footprint, and 3D Model. TIP127 Symbol TIP127 Footprint TIP127 3D Model Complementary NPN transistorThe TIP122 is a complementary NPN transistor for the TIP127. Replacement and Equivalent for TIP127You can replace the TIP127 with the 2N6042, 2N6042G, 2SB1020, 2SB1020A, 2SB1227, 2SB1228, 2SB1252, 2SB1252-P, 2SB1252-Q, 2SB1626, 2SB1626-O, 2SB1626-P, 2SB1626-Y, 2SB601, 2SB601-K, 2SB601-L, 2SB601-M, 2SB673, 2SB885, 2SB886, BDT62B, BDT62C, BDT64B, BDT64C, BDW47, BDW47G, BDW48, MJF127, MJF127G, MJF6668, MJF6668G, TIP107, TIP107G, TIP127G, TIP137, TIP137G, TIP147T or TTB1020B. TIP127 ParameterTYPEDESCRIPTIONMfronsemiPackageTubePart StatusObsoleteTransistor TypePNP - DarlingtonCurrent - Collector (Ic) (Max)5 AVoltage - Collector Emitter Breakdown (Max)100 VVce Saturation (Max) @ Ib, Ic4V @ 20mA, 5ACurrent - Collector Cutoff (Max)500µADC Current Gain (hFE) (Min) @ Ic, Vce1000 @ 3A, 3VPower - Max2 WOperating Temperature-65°C ~ 150°C (TJ)Mounting TypeThrough HolePackage / CaseTO-220-3Supplier Device PackageTO-220Base Product NumberTIP127 Where We Can Use it & How to UseTIP127 transistor can be used in wide variety of application. The pair of transistor connected in side as darlington increases the transistor gain and performance, whether it is used as a switch or amplifier in both situation the darlington pair provides more sensitivity to a small signal. If you want to use it as a switch then it can be operated in full saturation mode by providing only 120mA to its base. With 5A output current you can drive a verity of devices and components in your electronic applications. Beside the above uses it can also be used as a separate audio amplifier to amplify and drive a speaker directly for a small audio coming from any devices or it can also be used in audio amplifier stages. It can also be used as an audio preamplifier or amplification of any signal. How to Safely Long Run in a CircuitTo get long term performance with TIP127 it is recommended to not operate load of more than 5A through this transistor. Do not drive load of more than -100V through this transistor. Use a suitable base resistor with the transistor. Always check pinout before placing in the circuit. Do not store or use in temperature below -65 centigrade and above +150 centigrade. TIP127 VS TIP127G TIP127TIP127GPart Life Cycle CodeTransferredActiveIhs ManufacturerSAMSUNG SEMICONDUCTOR INCON SEMICONDUCTORPart Package CodeSFMTO-220ABPackage DescriptionFLANGE MOUNT, R-PSFM-T3FLANGE MOUNT, R-PSFM-T3Pin Count33Reach Compliance Codeunknownnot_compliantECCN CodeEAR99EAR99Collector Current-Max (IC)5 A5 ACollector-Emitter Voltage-Max120 V100 VConfigurationDARLINGTONDARLINGTON WITH BUILT-IN DIODE AND RESISTORDC Current Gain-Min (hFE)10001000JEDEC-95 CodeTO-220ABTO-220ABJESD-30 CodeR-PSFM-T3R-PSFM-T3Number of Elements11Number of Terminals33Operating Temperature-Max150°C150°CPackage Body MaterialPLASTIC/EPOXYPLASTIC/EPOXYPackage ShapeRECTANGULARRECTANGULARPackage StyleFLANGE MOUNTFLANGE MOUNTPolarity/Channel TypePNPPNPPower Dissipation-Max (Abs)65 W65 WQualification StatusNot QualifiedNot QualifiedSurface MountNONOTerminal FormTHROUGH-HOLETHROUGH-HOLETerminal PositionSINGLESINGLETransistor ApplicationSWITCHINGAMPLIFIERTransistor Element MaterialSILICONSILICONBase Number Matches521 TIP127 ManufacturerSTMicroelectronics is the result of the 1987 marriage between famed semiconductor companies SGS Microelettronica of Italy and Thomson-CSF Semiconductor of France. On the process side ST is leading the way with advanced FD-SOI (Fully Depleted Silicon-on-Insulator) technology. TIP127 Datasheet TIP127 Datasheet Using WarningsNote: Please check their parameters and pin configuration before replacing them in your circuit. TIP127 FAQ① What is the difference between tip127 and tip122?TIP122FP TIP127FP ® COMPLEMENTARY SILICON POWER DARLINGTON TRANSISTORS STMicroelectronics PREFERRED SALESTYPES FULLY INSULATED PACKAGE (U.L. COMPLIANT) FOR EASY MOUNTING DESCRIPTION The TIP122FP is a silicon Epitaxial-Base NPN power transistor in monolithic Darlington configuration mounted in Jedec TO-220FP fully 3 2 molded isolated package. ② What kind of transistor is the UTC tip127?UTC TIP127 PNP EPITAXIAL PLANAR TRANSISTOR PNP EPITAXIAL TRANSISTOR DESCRIPTION The UTC TIP127 is a PNP epitaxial transistor, designed for use in general purpose amplifier low-speed switching applications. ③ What is the operating junction temperature of tip127?TIP127 Datasheet, Equivalent, Cross Reference Search. Transistor Catalog Max. Operating Junction Temperature (Tj): 150 °C
kynix On 2022-01-26   8540
Integrated Circuits (ICs)

INA128HD Instrumentation Amplifier: Pinout, Datasheet, Equivalent

INA128HD is a kind of High Temperature Precision Low Power Instrumentation Amplifiers.CatalogProduct OverviewINA128HD Device InfoINA128HD Simplified SchematicINA128HD CAD ModelsINA128HD Pin ConfigurationINA128HD Functional Block DiagramINA128HD FeaturesINA128HD Layout ExampleINA128HD Package DimensionsINA128HD Product AttributesINA128HD ApplicationsComponent DatasheetAlternate PartsUsing WarningsINA128HD ManufacturerProduct OverviewINA128HD belongs to INA128-HT Series Low Power Instrumentation Amplifiers. The INA128-HT are low-power, general-purpose instrumentation amplifiers offering excellent accuracy. The versatile three-operational-amplifier design and small size make them ideal for a wide range of applications. Current-feedback input circuitry provides wide bandwidth even at high gain. A single external resistor sets any gain from 1 to 10000. The INA128-HT provides an industry-standard gain equation.The INA128-HT are laser trimmed for very low offset voltage (25µV Typ) and high common-mode rejection (93 dB at G ≥ 100). These devices operate with power supplies as low as ±2.25 V, and quiescent current of 2 mA, typically. Internal input protection can withstand up to ±40 V without damage.The INA12x instrumentation amplifier is a type of differential amplifier that has been outfitted with input protection circuit and input buffer amplifiers, which eliminate the need for input impedance matching and make the amplifier particularly suitable for use in measurement and test equipment. Additional characteristics of the INA12x include a very low DC offset, low drift, low noise, very high open-loop gain, very high common-mode rejection ratio, and very high input impedances. The INA12x is used where great accuracy and stability of the circuit both short and long term are required.INA128HD Device InfoPart NumberPackageBody Size (NOM)INA128-HTSOIC (8)4.90 mm × 3.91 mmCFP (8)6.90 mm × 5.65 mmINA128HD Simplified SchematicINA128HD Simplified SchematicINA128HD CAD ModelsINA128HD CAD ModelsINA128HD Pin ConfigurationINA128HD Amplifier PackagesPin FunctionsPINI/ODESCRIPTIONNAMENO.Ref5IOutput voltage referenceRG1, 8OGain resistor connectionV+7PowerPositive power supply voltage from 2.25V to 18VV–4PowerNegative power supply voltage from –2.25V to –18VV+IN3INon-inverting input voltageV–IN2IInverting input voltageVO6OOutput voltageINA128HD Functional Block DiagramINA128HD Functional Block DiagramINA128HD Features• Low Offset Voltage: 25 uV Typical• Low Input Bias Current: 50 nA Typical(1)• High CMR: 95 dB Typical(1)• Inputs Protected to ±40 V• Wide Supply Range: ±2.25 V to ±18 V• Low Quiescent Current: 2 mA Typical(1)INA128HD Layout ExampleINA128HD Layout ExampleINA128HD Package DimensionsHKJ (R-CDFP-F8) HKQ (R-CDFP-G8)INA128HD Product AttributesSpecificationsValuesManufacturerTexas InstrumentsSeries-PackagingBulkPart StatusActiveAmplifier TypeInstrumentationNumber of Circuits1Output Type-Slew Rate4V/µs-3db Bandwidth1.3MHzCurrent - Input Bias2nAVoltage - Input Offset25µVCurrent - Supply700µACurrent - Output / Channel15mAVoltage - Supply, Single/Dual (±)±2.25V ~ 18VOperating Temperature-55°C ~ 175°CMounting TypeSurface MountPackage / Case8-SOIC (0.154", 3.90mm Width)Supplier Device Package8-SOICPart FamilyINA128-HTROHSCompliantPB FreeNoPCB changed8Lead ShapeGull-wingINA128HD Applications• Bridge Amplifiers• Thermocouple Amplifiers• RTD Sensor Amplifiers• Medical Instrumentation• Data Acquisition• Supports Extreme Temperature Applications:  Controlled Baseline  One Assembly/Test Site  One Fabrication Site  Available in Extreme Temperature Ranges (–55°C to 210°C)(2)  Extended Product Life Cycle  Extended Product-Change Notification  Product TraceabilityINA128HD Basic ConnectionsComponent DatasheetINA128HD PDFAlternate PartsINA826AIDR, AD621BR, AD8228BRZ, AD621BRZUsing WarningsPlease check their parameters and pin configuration before replacing them in your circuit.INA128HD ManufacturerTexas Instruments Incorporated designs and manufactures analog technologies, digital signal processing (DSP) and microcontroller (MCU) semiconductors. TI is a leader in semiconductor solutions for analog and digital embedded and applications processing. A global semiconductor company, TI innovates through design, sales and manufacturing operations in more than 30 countries.
kynix On 2022-01-26   1791

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