Example: marketing

SOT - 89 - Tromil.pl

- pins3 - pinsSOT - 89 SOT - 2234 - pins5 - - pinsEugene TurutaActiActiActiActiActivvvvveeeeeSMD componentsSMD componentsSMD componentsSMD componentsSMD componentsmarmarmarmarmarking codesking codesking codesking codesking codesdatabookIntroductionSMD-codes for semiconductor components in 2-pins casesSMD-codes for semiconductor components in 3-pins casesSMD-codes for semiconductor components in SOT-89 casesSMD-codes for semiconductor components in SOT-223 casesSMD-codes for semiconductor components in BGA and LPP casesSMD-codes for semiconductor components in 4-pins casesSMD-codes for semiconductor components in 5-pins casesSMD-codes for semiconductor components in 6 and more pins casesConventional cases drawings.

Introduction Surface mount devices (SMDs) are used in a growing number of commercial and industrial products. SMDs have improved performance over through-hole components due to their smaller size, shorter internal leads, and

Tags:

  Sot 89 tromil, Tromil

Information

Domain:

Source:

Link to this page:

Please notify us if you found a problem with this document:

Other abuse

Advertisement

Transcription of SOT - 89 - Tromil.pl

1 - pins3 - pinsSOT - 89 SOT - 2234 - pins5 - - pinsEugene TurutaActiActiActiActiActivvvvveeeeeSMD componentsSMD componentsSMD componentsSMD componentsSMD componentsmarmarmarmarmarking codesking codesking codesking codesking codesdatabookIntroductionSMD-codes for semiconductor components in 2-pins casesSMD-codes for semiconductor components in 3-pins casesSMD-codes for semiconductor components in SOT-89 casesSMD-codes for semiconductor components in SOT-223 casesSMD-codes for semiconductor components in BGA and LPP casesSMD-codes for semiconductor components in 4-pins casesSMD-codes for semiconductor components in 5-pins casesSMD-codes for semiconductor components in 6 and more pins casesConventional cases drawings.

2 Cases pin assignments. PinoutsSMD-codes marking styleSample schematics diagramsLogos, contact and web-adresses of the manufacturersChisinau, 2008 editionIntroductionSurface mount devices (SMDs) are used in a growing number of commercial and industrial products. SMDshave improved performance over through-hole components due to their smaller size, shorter internal leads, andsmaller board layouts. These factors reduce the circuit s parasitic inductance and capacitance. SMDs can also bemore cost effective than traditional through-hole components due to the smaller board size, fewer board layers,and fewer holes. Today more than 50% of active semiconductor components are the same time, SMD devices are, by their very nature, too small to carry conventional semiconductor typenumbers.

3 Therefore, a somewhat arbitrary coding system has grown up, where the device package carries a simpleone, two or more character or graphic ID code. Thus it is necessary to take into account that the colour and (or)placing of alphanumeric or graphic symbols are also the manufacturers type number of an SMD device from the package code can be a difficult , each device code is not necessarily is possible for various manufacturers to place different devices in the same case with the same example, with a 6H SMD-code in a SOT-23 case might be either a npn-transistor BC818 (CDIL) or a capacitance-diode FMMV2104 (Zetex) or a n-channel JFET transistor MMBF5486 (Motorla) or a pnp-digital transistor MUN2131(Motorola) or a pnp-digital transistor UN2117 (Matsushita)

4 Or a CMOS-integrated circuit- voltage detector with resetoutput R3131N36EA (Ricoh). Even the same manufacturer may use the same code for different identify a particular SMD device, is necessary to identify the manufacturer, package style and note the IDcode printed on the identification of the manufacturer is possible only if on the case are printed the manufacturer s logos, but itnot always happens. Besides, sometimes it is possible to determine the manufacturer with indirect tags. Many recentMotorola devices have a small superscript letter after the device code, such as SAC (this smaller letter is merely amonth of manufacture code). Siemens and Infineon devices usually have a lower case 's' (ATs, LOs).

5 Philipsdevices usually have a lower case 'p' (AHp, Z1p, pB0) or '-' (D-Q, Z-S) for the devices made in Hong Kong and 't'(ZtS, tT9, Y7t) for the devices made in Malaysia. In section 5 are submitted the logos of the SMD devices package style is another problem for the identification of SMD devices. The different manufacturers candesignate identical cases according to the various standards (or according to the internal firm system). Besides thevarious cases can have an identical kind (form) and differ only by sizes, but this distinction of sizes so it is notenough, that can be is measured only by special measuring devices. The conformity of the cases name of differentmanufacturers is submitted in the bottom table:In the following tables sections the SMD semiconductor components - irrelevant as to whether it is dealing withtransistors, diodes, integrated circuits etc.

6 Are plased in separate tables according to numbers of terminals and (or)type of cases and are listed in strict alpha-numeric order by 1 Column 1 ( SMD-Code )..(blue)Color of SMD + blueColor of cathode bandColumn 2 ( Type )The type designations correspond to those of the re-spective manufacturer 3 ( Device )Short definition of the semiconductor abbreviations:C-DiodeCapacitance diode (varactor, varicap)CMOS-ICCMOS integrated circuitCMOS-LogicCMOS logic integrated circuitComp-ICVolatge comparator integrated circuitCPEC ircuit protector elementDigi-ICDigital integrated circuitGaAs-DiodeGallium-Arsenide diodeGaAs-N-FETG allium-Arsenide n-channel FETtransistorH-ICHall effect integrated circuitLin/Dig-ICLinear/digital combination integratedcircuitLin-ICLinear integrated *With integrated gate protection diodeMOS-FET-dMetal oxide FET, depletion typeMOS-FET-eMetal oxide FET.

7 Enhancement typen-FETn-channel field-effect transistorn/p-FETn and p-channel field-effect transistorsp-FETp-channel field-effect transistorOp-ICOperational amplifier integrated circuitSA-DiodeSurge absorbtion diodeSi-DiodeSilicon diodeSi-npnSilicon npn transistorSi-npn-DarlSilicon npn Darlington transistorSi-npn-DigiSilicon npn digital transistorSiGe-npnSilicon/Geramanium npn transistorSi-pnpSilicon pnp transistorSi-pnp-DarlSilicon pnp Darlington transistorSi-pnp-DigiSilicon pnp digital transistorSi-StabSilicon stabistorTherm-SThermal sensor Integrated CircuitThy-SPDT hyristor-surge protector deviceTTL-LogicTransistor-Transistor Logic integratedcircuitTVST ransient voltage supressorVR-ICVoltage regulator integrated circuitVref-ICVoltage reference integrated circuitZ-DiodeZenner diodeZ-Diode/TVS Zenner diode - transient voltagesupressorColumn 4 ( Short description )Short data or description of function of each , adjustableAFAudio FrequencyAGCA utomatic Gain ControlALCA utomatic Level ControlAMAmplitude Modulation (AM range)AmpAmplifierAntAntennaAttAttenuato rAvalAvalansheBTLB ridge Tied LoadsBuffBufferCATVB road band cable amplifierCellCellularContrControlledConv ConverterCordlCordlessDetDetectorDiffDif ferentialDr, Modulation (FM range)

8 GaAsGallium arsenideGPGeneral Purpose ApplicationsHFHigh FrequencyHi-spHigh-speedHVHigh drop voltageLEDL ight-emitting diodeLLSL ogic Level ShifterLNLow NoiseLogLLogic Level (Uth > 0, )Lo-satLow collector-emitter saturation voltageMixMixerMRManual ResetODOOpen Drain OutputOVPOver Voltage protectionOscOscillatorOutOutputPAPower AmplifierPowPowerPPOPush-Pull OutputPWMP ulse-width Frequency MOSFETTunTunerU-SpeedUltra-speedUHFRF applications (>250 MHz)VarVariableVCOV oltage controlled oscillatorVDetVolatge DetectorVHFRF applications ( )VidVideo output stagesV-MOSVRV oltage RegulatorWBWide BandColumn 5 ( Case )Manufacturers cases 6 ( Pin. )Related drawing number (figure) and pin assignment(section 2).

9 All drawings are situated also in the 7 ( Sch. )Sample schematic connection for some ICs. All drawingsare situated in the section 8 ( St. ) Style (upercase placement presentation) of the SMD-code drawing. All drawings are situated in the section 9 ( Mnf. )The names of the manufacturers are abbreviated to savespace. The complete name, logos, contact and web-adresses of each manufacurer is listed alphabetically onsection - pins2-pins SMD semiconductor componentsSMD-codes for 2-pins cases semiconductor components6 SMDcodeTypeFunctionShort - pins<ZTCMM3Z75 VBZ-diode75V 2%, Izt=5mA, Zzt=240 , 200mWSOD-323F6d1aTac=ZTCMM3Z56 VBZ-diode56V 2%, Izt=5mA, Zzt=188 , 200mWSOD-323F6d1aTac>ZTCMM3Z68 VBZ-diode68V 2%, Izt=5mA, Zzt=226 , 200mWSOD-323F6d1aTac0 HVC300AC-diodeVHF-Tuning, 32V, ( )UFP6d1bHit0 HVE300AC-diodeVHF-Tuning, 39, ,4pF(2V)SOD-1235d1aHit0 HVU300AC-diodeVHF-Tuning, 32V, 2, ,5pF( , 1 MHz)

10 SOD-3235d1aRen0 , Izt=5mA, Zzt=100 , , 5mA, Zzt=100 , 200mWSOD-3235d1aOns, , 5mA, Zzt=100 , 100mWSOD-5236d1aOns, , 5mA, Zzt=100 , 200mWSOD-3225d1aCtc01MM3Z2V7(T1) , 5mA, Zzt=100 , 200mWSOD-3235d1aSec01MM5Z2V7(T1) , 5mA, Zzt=100 , , 5mA, Zzt=100 , 200mWSOD-3225d1aCtc01C100 PHBZG01-C100Z-diode100V 5%, 1,5 WDO-214AC1d1aPhi01C10 PHBZG01-C10Z-diode10V 5%, 1,5 WDO-214AC1d1aPhi01C110 PHBZG01-C110Z-diode110V 5%, 1,5 WDO-214AC1d1aPhi01C11 PHBZG01-C11Z-diode11V 5%, 1,5 WDO-214AC1d1aPhi01C120 PHBZG01-C120Z-diode120V 5%, 1,5 WDO-214AC1d1aPhi01C12 PHBZG01-C12Z-diode12V 5%, 1,5 WDO-214AC1d1aPhi01C130 PHBZG01-C130Z-diode130V 5%, 1,5 WDO-214AC1d1aPhi01C13 PHBZG01-C13Z-diode13V 5%, 1,5 WDO-214AC1d1aPhi01C150 PHBZG01-C150Z-diode150V 5%, 1,5 WDO-214AC1d1aPhi01C15 PHBZG01-C15Z-diode15V 5%, 1,5 WDO-214AC1d1aPhi01C160 PHBZG01-C160Z-diode160V 5%, 1,5 WDO-214AC1d1aPhi01C16 PHBZG01-C16Z-diode16V 5%, 1.


Related search queries