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Part Manufacturer Description Datasheet Download Buy Part
LTC1778EGN#TR Linear Technology LTC1778 - Wide Operating Range, No RSENSE Step-Down Controller; Package: SSOP; Pins: 16; Temperature Range: -40°C to 85°C
LTC1778EGN-1 Linear Technology LTC1778 - Wide Operating Range, No RSENSE Step-Down Controller; Package: SSOP; Pins: 16; Temperature Range: -40°C to 85°C
LTC1778EGN-1#TR Linear Technology LTC1778 - Wide Operating Range, No RSENSE Step-Down Controller; Package: SSOP; Pins: 16; Temperature Range: -40°C to 85°C
LTC1778IGN Linear Technology LTC1778 - Wide Operating Range, No RSENSE Step-Down Controller; Package: SSOP; Pins: 16; Temperature Range: -40°C to 85°C
LTC1778EGN#PBF Linear Technology LTC1778 - Wide Operating Range, No RSENSE Step-Down Controller; Package: SSOP; Pins: 16; Temperature Range: -40°C to 85°C
LTC1778EGN-1#PBF Linear Technology LTC1778 - Wide Operating Range, No RSENSE Step-Down Controller; Package: SSOP; Pins: 16; Temperature Range: -40°C to 85°C

tea 1778 Datasheets Context Search

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74AC138

Abstract: No abstract text available
Text: SGS-THOMSON Vf ™ets@(iL[ieirffl@9G[ te ® This Material Copyrighted By Its Respective Manufacturer 74AC138 , @(iL[ieirffl@9G[ te ® 3/9 This Material Copyrighted By Its Respective Manufacturer 74AC138 DC , @(iL[ieirffl@9G[ te ® This Material Copyrighted By Its Respective Manufacturer This Material , 20 0.787 E 8.5 0.335 e 2.54 0.100 e3 17.78 0.700 F 7.1 0.280 I 5.1 0.201 , I_II_II_II_II_II_I u P001C r=T SGS-THOMSON Vf ™ets@(iL[ieirffl@9G[ te ® 7/9 This Material Copyrighted By Its


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PDF 74AC138 P001C P013H 74AC138
sc1009

Abstract: 74ACT257 74ACT257B 74ACT257M ACT257
Text: not be used to estimate propagation delays 2/10 r=T SGS-THOMSON Vf ™ets@(iL[ieirffl@9G[ te ® This , r=T SGS-THOMSON Vf ™ets@(iL[ieirffl@9G[ te ® 3/10 This Material Copyrighted By Its Respective , @9G[ te ® This Material Copyrighted By Its Respective Manufacturer This Material Copyrighted By Its , 0.020 b1 0.25 0.010 D 20 0.787 E 8.5 0.335 e 2.54 0.100 e3 17.78 0.700 F , il il in 16 U I_II_II_II_II_II_I u P001C 8/10 r=T SGS-THOMSON Vf ™ets@(iL[ieirffl@9G[ teÂ


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PDF 74ACT257 ACT257 P001C 74ACT2 P013H sc1009 74ACT257 74ACT257B 74ACT257M
74AC257

Abstract: 74AC257B
Text: delays 2/10 r=T SGS-THOMSON Vf ™ets@(iL[ieirffl@9G[ te ® This Material Copyrighted By Its Respective , @(iL[ieirffl@9G[ te ® 3/10 This Material Copyrighted By Its Respective Manufacturer 74AC257 DC , @9G[ te ® This Material Copyrighted By Its Respective Manufacturer This Material Copyrighted By Its , e3 17.78 0.700 F 7.1 0.280 I 5.1 0.201 L 3.3 0.130 Z 1.27 0.050 TTTTJ1 KMMM , ™ets@(iL[ieirffl@9G[ te ® This Material Copyrighted By Its Respective Manufacturer 74AC257 SOI 6


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PDF 74AC257 AC257 P001C P013H 74AC257 74AC257B
74ACT138

Abstract: 74ACT138B
Text: estimate propagation delays 2/8 r=T SGS-THOMSON Vf ™ets@(iL[ieirffl@9G[ te ® This Material Copyrighted , [ieirffl@9G[ te ® 3/8 This Material Copyrighted By Its Respective Manufacturer 74ACT138 DC , ) 4/8 r=T SGS-THOMSON Vf ™ets@(iL[ieirffl@9G[ te ® This Material Copyrighted By Its Respective , 2.54 0.100 e3 17.78 0.700 F 7.1 0.280 I 5.1 0.201 L 3.3 0.130 Z 1.27 0.050 , Vf ™ets@(iL[ieirffl@9G[ te ® This Material Copyrighted By Its Respective Manufacturer 74ACT138


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PDF ACT138 ACT138 P001C 74ACT138 P013H 74ACT138 74ACT138B
tea 1778

Abstract: No abstract text available
Text: Figure tor seit-retaining post tea tu re (See chart below) 1 905 x3 Section X-X 1.27 Pitch -if- I 254 73 , . A B C 0.2iim 0.76pm 0.2pm 0.76pm 30 17.78 23.8 25.6 174216-1 6-174216-1 175711-1 6-175711-1 40 24.13


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PDF UL94V-0 76/xm tea 1778
tea 1778

Abstract: L9931
Text: ït Î'ïM ÜS» TEA 1330 ELECTRICAL CHARACTERISTICS (conti nued) Symbol SCA-R S/N Parameter , (V ) 4/7 SGS-THOMSON [îilSÎFÎâil ¿[¿fe ït Î'ïM iSs TEA 1330 APPLICATION SUGGESTION (see , 8.5 2.54 17.78 7.1 5.1 3.3 1.27 0.030 TYP. MAX. 0.065 0.020 0.010 0.787 0.335 0.100 0.700 0.280 0.201 0.130 0.050 TEA 1330 Information furnished is believed to be accurate and reliable


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PDF TEA1330 TEA1330 16-pin tea 1778 L9931
2245-F

Abstract: No abstract text available
Text: 48.26 2.000 66.04 2.700 15.24 .700 33.02 1.400 50.8 2.100 68.58 2.800 17.78 , Headers For m a tea bility o ption s, se e m atrix on p a g e s 4 a n d 5. For m ating half v isu als , 15.24 .700 33.02 1.400 50.8 2.100 68.58 2.800 17.78 .800 35.56 1.500 53.34 , m a tea bility o ption s, see m atrix on p a g e s 4 a n d 5. For m ating half v isu als, se e p a g , 33.02 1.400 50.8 2.100 68.58 2.800 17.78 .800 35.56 1.500 53.34 2.200 71.12


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PDF TA-100 TA-156 CST-100 SL-156 MTA-100 UL94V-0 2245-F
2003 - tea2025b

Abstract: 2025B TEA2025B - STEREO AUDIO AMPLIFIER - STMicroelectronics tea2025 TEA2025B CIRCUIT APPLICATION TEA 2025B equivalent 6V H bridge tea2025b amplifiers sub 9v TEA2025D tea2025b amplifiers sub
Text: Most amplifiers similar to TEA 2025B need external resistors between DC outputs and ground in order to , 1 and to connect to ground the pin 7. The TEA 2025B solution allows to save components because , D 20 0.787 E 8.5 0.335 e 2.54 0.100 e3 17.78 0.700 F 7.1


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PDF TEA2025B TEA2025D TEA2025B/D tea2025b 2025B TEA2025B - STEREO AUDIO AMPLIFIER - STMicroelectronics tea2025 TEA2025B CIRCUIT APPLICATION TEA 2025B equivalent 6V H bridge tea2025b amplifiers sub 9v TEA2025D tea2025b amplifiers sub
1994 - TEA 2025B equivalent

Abstract: 2025B TEA2025B TEA 2025B TEA2025D tea2025b amplifiers sub 9v 9V bridge capacitors poliester tea2025b amplifiers sub tea2025
Text: amplifiers similar to TEA 2025B need external resistors between DC outputs and ground in order to optimize the pop on/off performance and crossover distortion. Figure 9 The TEA 2025B solution allows to , 0.346 e 2.54 0.100 e3 17.78 0.700 F 7.10 0.280 I 5.10 0.201 L Z


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PDF TEA2025B TEA2025D TEA2025B/D TEA 2025B equivalent 2025B TEA2025B TEA 2025B TEA2025D tea2025b amplifiers sub 9v 9V bridge capacitors poliester tea2025b amplifiers sub tea2025
1994 - 2025B

Abstract: TEA2025B tea2025b amplifiers sub tea 1778 TEA2025B CIRCUIT APPLICATION SO20 TEA2025D tea2025b amplifiers sub 9v
Text: similar to TEA 2025B need external resistors between DC outputs and ground in order to optimize the pop , to ground the pin 7. The TEA 2025B solution allows to save components because of such resistors , 17.78 0.700 F 7.10 0.280 I 5.10 0.201 L Z 8/9 3.30 0.130 1.27


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PDF TEA2025B TEA2025D TEA2025B/D 2025B TEA2025B tea2025b amplifiers sub tea 1778 TEA2025B CIRCUIT APPLICATION SO20 TEA2025D tea2025b amplifiers sub 9v
2025B

Abstract: TEA2025B TEA2025B CIRCUIT APPLICATION tea2025b amplifiers sub 9v tea2025 tea 2025b D94AU120 TEA 2025B equivalent tea2025b amplifiers sub TEA2025D
Text: TEA 2025B need external resistors between DC outputs and ground in order to optimize the pop on/off performance and crossover distortion. Figure 9 The TEA 2025B solution allows to save components because , 0.346 e 2.54 0.100 e3 17.78 0.700 F 7.10 0.280 I 5.10 0.201 L Z


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PDF TEA2025B TEA2025D TEA2025B/D 2025B TEA2025B TEA2025B CIRCUIT APPLICATION tea2025b amplifiers sub 9v tea2025 tea 2025b D94AU120 TEA 2025B equivalent tea2025b amplifiers sub TEA2025D
stepper motor em 463

Abstract: tea 1778 3718S
Text: IN G NUM BER :TE A 3718S P TEA 3718SP (M u ltiw a tt-1 5 ) TEA 3718SFP (S O -20) TEA3718DP , PULSE TIME SENSE i* l à .? Y . TEA 3718S ALARM ' S . arti 02»pF^ 5&K B20PF j , 0.167 0.182 0.075 0.075 0.144 0.179 0.200 0.689 0.421 0.874 0.870 1.27 17.78 1 0.55 0.75 1.52 18.03 , 11111111111B MAX. 0.020 1.40 0.50 0.033 0.020 0.50 20.0 8.80 2.54 17.78 7.10 5.10 3.30 1.27 0.130 0.050 0.346


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PDF TEA3718 TEA3718S TEA3718Sare stepper motor em 463 tea 1778 3718S
1994 - 2037A

Abstract: LV14 TEA2037A TEA2117
Text: 13 12 7 3 8 15 1k TEA 2037A 15k 470k 22nF 6 11 10 47nF 470k , 3 7 8 15 1k TEA 2037A 15k 470k 22nF 6 11 10 47nF 470k 9 , 2 7 3 10k ? Sync Line Flyback 8 15 15k Frame Yoke 11mH. 7 TEA 2037A , 20 0.015 8.8 2.54 17.78 0.020 0.787 0.346 0.100 0.700 7.1 5.1 3.3 0.280 0.201


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PDF TEA2037A 15kHz 100kHz 120Hz TEA2037Ais TEA2117 2037A LV14 TEA2037A TEA2117
TEA 2025B

Abstract: TEA2025B 2025B
Text: RL a.22ur,C2 IN.2 » - \y 7 6 TEA 2825B 3 2 mb ¿ ¡ S . 15 J* U F 5 C1 T ^ r C7 , to TEA 2025B need exter nal resistors between DC outputs and ground in order to optimize the pop on , ground the pin 7. The TEA 2025B solution allows to save compo nents because of such resistors (800 ohm , b b1 D E e e3 F I L Z 3.30 1.27 8.80 2.54 17.78 7.10 5.10 0.130 0.050 0.38 0.51 0.85 0.50 0.50 20.0


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PDF TEA2025B TEA2025D TEA2025B TEA2025D TEA2025B/Dis TEA 2025B 2025B
R X24 50W

Abstract: RJ103
Text: 1.500 1.700 1.900 2.200 2.400 2.700 3.200 3.400 / / / / / / / / / / / / / 17.78 22.86 25.40 30.48 35.56 , QUICKIE P.C.B. CONNECTOR DOUBLE SCALLOP SIZE DWG scale . t ·» « . * te««A · « tteti M .SMYK 8


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PDF T10159 0000t R X24 50W RJ103
1995 - LH521028U-25

Abstract: LH521028
Text: Hold from Address Change 3 5 5 5 ns tLH Output Hold from Latch High 4 tEA , ADDRESS VALID ADDRESS tRCS tRCH W tEA E tEHZ tSA SL, SH tSHZ tGA G tGLZ , before E goes LOW. Data Out is not specified to be valid until tEA , tSA and tGA, but may become active as early as tELZ, tSLZ or tGLZ. tASL ADDRESS tAHL VALID ADDRESS tLHM ALE tLEA tEA , ] 18.67 [0.735] 20.57 [0.810] 19.56 [0.770] 18.8 [0.740] 17.78 [0.700] 19.69 [0.775] 18.67


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PDF LH521028 18-Bits) 52PLCC PLCC52-P-750) 52-pin, 750-mil LH521028U-25 LH521028
1995 - LH521028

Abstract: LH521028A 521028-1D
Text: 10 2 4 21 17 3 2,3 2 4 18 15 tEA 2 20 3 ns ns ns tSLZ S , Cycle No. 1 ADDRESS VALID ADDRESS tRCS tRCH W tEA E tEHZ tSA SL, SH tSHZ tGA , are valid before E goes LOW. Data Out is not specified to be valid until tEA , tSA and tGA, but may , tLEA tEA E tRCH tRCS W tSA SL, SH tEHZ tRC tGA G tGLZ tGHZ tSLZ tELZ DQ , ] 20.57 [0.810] 19.56 [0.770] 18.8 [0.740] 17.78 [0.700] 19.69 [0.775] 18.67 [0.735] 20.57


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PDF LH521028A 52PLCC-A 52-Pin 52-pin, PLCC52-P-750) LH521028AU-15 521028AM LH521028 LH521028A 521028-1D
LH521028

Abstract: LH521028A
Text: tLH Output Hold from Latch High 4.5 4.5 4.5 4.5 4.5 ns tEA E Low to Valid , Figure 4. Read Cycle No. 1 ADDRESS VALID ADDRESS tRCS tRCH W tEA E tEHZ tSA SL , when addresses are valid before E goes LOW. Data Out is not specified to be valid until tEA , tSA and , tLHM ALE tLEA tEA E tRCH tRCS W tSA SL, SH tEHZ tRC tGA G tGLZ tGHZ , ] 20.57 [0.810] 19.56 [0.770] 18.8 [0.740] 17.78 [0.700] 19.69 [0.775] 18.67 [0.735] 20.57


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PDF LH521028A 52PLCC-A 52-Pin 52-pin, PLCC52-P-750) LH521028AU-15 521028AM LH521028 LH521028A
2010 - TEA2025B

Abstract: TEA 2025B equivalent tea20256 TEA2025 TEA2025B applications 2025B tea2025b amplifiers sub 9v TEA2025D013TR Small Outline SO-12 tea2025 application
Text: similar to TEA 2025B need external resistors between DC outputs and ground in order to optimize the pop on/off performance and crossover distortion. Figure 13. The TEA 2025B solution allows to save , 8.5 0.335 e 2.54 0.100 e3 17.78 0.700 F 7.1 0.280 I 5.1 0.201


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PDF TEA2025 PowerDIP16 TEA2025B TEA2025D TEA2025D013TR TEA2025B/D TEA2025B TEA 2025B equivalent tea20256 TEA2025 TEA2025B applications 2025B tea2025b amplifiers sub 9v TEA2025D013TR Small Outline SO-12 tea2025 application
2010 - TEA2025

Abstract: No abstract text available
Text: FL = 80 Hz. 2ΠC OUT ⋅ R L 3.5 Pop Noise Most amplifiers similar to TEA 2025B need external , distortion. Figure 13. The TEA 2025B solution allows to save components because of such resistors (800 , 0.100 e3 17.78 0.700 F 7.1 0.280 I 5.1 0.201 L 3.3 0.130 DIP16 Z


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PDF TEA2025 TEA2025B/D PowerDIP16 TEA2025
SCR C60

Abstract: C62U C62F C62A C60U C60F C60A 2N2025 2N2024 2N2023
Text: "1000 u 0. S u. 250 I JUNC TION TEÂ , 2.413 S, .058 .070 1.473 1.778 T .463 .498 11.760 12.649 C62 OUTLINE notes 1. Complete stud threads


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PDF 2N2023-2N2030) SCR C60 C62U C62F C62A C60U C60F C60A 2N2025 2N2024 2N2023
2011 - Not Available

Abstract: No abstract text available
Text: 12N ■KL73 1J T TE 15N ■KL73 1J T TE 18N ■KL73 1J T TE⠀ˆ22N ■KL73 1J T TE 27N ■KL73 1J T TE⠀ˆ33N ■KL73 1J T TE 39N ■KL73 1J T TE 47N ■KL73 1J T TE⠀ˆ56N ■KL73 1J T TE⠀ˆ68N ■KL73 2A T TE⠀ˆ1N0 C KL73 2A T TE 1N2 C KL73 2A T TE⠀ˆ1N5 C KL73 2A T TE 1N8 C KL73 2A T TE 2N2 C KL73 2A T TE⠀ˆ2N7 C KL73 2A T TE⠀ˆ3N3 C KL73 2A T TE 3N9 C KL73 2A T TE⠀ˆ4N7 C KL73 2A T TE⠀ˆ5N6 ■KL73 2A T TE⠀ˆ6N8 ■KL73 2A T TE 8N2 ■KL73 2A T TE


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PDF HP4291B D-25578
1995 - temic triac dip 16

Abstract: TEA Series ignition with triac P06V telefunken 1024 ZERO VOLTAGE SWITCH ozone generator circuit triac control IC 3 kw triac Triac cross reference
Text: TELEFUNKEN Semiconductors TEA 1024 / TEA 1124 Zero voltage switch Triac control for domestic equipments Description Zero voltage switch TEA 1024 offers not only the control of a triac in zero , loop power control Preliminary Information 1 TEA 1024 / TEA 1124 Power supply and its , maximum state of the 4 stage (5 stage - TEA 1124) D/A converter, current sink overtake the maximum , TELEFUNKEN Semiconductors TEA 1024 / TEA 1124 Figure 3 Ramp diagram without external circuit Figure


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PDF D-74025 temic triac dip 16 TEA Series ignition with triac P06V telefunken 1024 ZERO VOLTAGE SWITCH ozone generator circuit triac control IC 3 kw triac Triac cross reference
Not Available

Abstract: No abstract text available
Text: CONVERSION TABLE AMP 4 8 0 5 REV 31M A R 2000 25.40 17.78 1 1 .43 10.54 6.35 3.96 3.56 3.1 8 1 , . Cl ARK INCHES tea 95.1 0 9 1.14 87.1 7 83.21 79.25 75.29 71 . 3 2 67.36 63.40 59.44


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PDF 02AUG05 L03-2
1996 - 74xx373

Abstract: 74F02 74F373 74F377 MC68040 MCF5102 P22V10C SV4A
Text: neither TA nor TEA are asserted. Data Transfer: A single data movement over the A/D pins. Burst , , and only externally visible exceptional circumstances ( TEA , TBI, or RSTI) can cause it to transfer , a signal that asserts when TS asserts, and negates when TA (or TEA ) asserts: tHold = !rsti "force inactive during reset & ( ts & bg "assert with TS # tHold & !ta & ! tea "retain until TA (or TEA , equations use assertion and negation -bclk pin 2; "`040 BCLK ! tea pin 3; "`040 TEAx !ta pin 4


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PDF MCF5102 MC68040 74xx373 74F02 74F373 74F377 P22V10C SV4A
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