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Vishay-Intertech-VS-E5PH6006L-N3_C2984102.pdf
NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 VS-E5PH6006L-N3 www.vishay.com Vishay Semiconductors 1000 C 180 ) ( p r 170 ( t c r 160 a e i m a e 150 a T DC C 100 a 140 n P t e 130 c l u S 120 Square wave (D = 0.50) - e
in „Netzteil schützen / Diode / Rückstrom“ · Analoge Elektronik und Schaltungstechnik ·
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NEW_MAP.txt
99, 98, 110, 97, 115, 100, 103, 102, 104, 106, 113, 119, 101, 116, 114, 122, 117, 49, 50, 51, 53, 52, 54, 55, 107, 105, 111, 0, 0, 108, 8}, // shifted {56, 57, 48, 13, 80, 44, 0, 0, 0, 0, 46, 32, 77, 0, 0, 89, 88, 86, 67, 66, 78, 65, 83, 68, 71, 70, 72, 74, 81, 87, 69, 84, 82, 90, 85, 49, 50, 51, 53, 52, 54, 55, 75, 73, 79, 0, 0, 76, 8}, // green alt {56, 57, 48, 13, 61, 39, 0, 0, 0, 0, 63, 32, 58, 0, 0, 60, 62, 45, 126, 42, 59, 0, 0, 0, 0, 0, 123, 125, 33, 34, 128, 37, 36, 38, 47, 49, 50, 51, 53, 52
in „Chatpad PIC16F883“ · Mikrocontroller und Digitale Elektronik ·
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MCP73831.pdf
, all limiDD= [REG(typ.) + 0.3V] to AV, T = -40°C to +85°C. Typical values are at +25°C, V[V (typ.) + 1.0V] DD REG Parameters Sym. Min. Typ. Max. Units Conditions Preconditioning Current Regulation (Trickle Charge Constant-Current Mode) Precondition
in „Akku Ladetechnik“ · Mikrocontroller und Digitale Elektronik ·
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STM32H7-Disco_full.PDF
Vbias P35.6nF 2 1P81SyncH PI88 2 GND 1P81FSW Comp GND PI1 P P3 PU6Ilim PI89 OC C3 R38 R39 GND 1P81SS FB PI52PI5 PR02PR0 PI21.0uF P7.5k P360R P1 P1 P1 17 Gnd 2 2 2 R41 R42 C36 P81Gnd_Therm P3 150nF 820R P51k P20k P222nF L7987 C37 GND P +14.8V_bat +14.8V 2 2 2 P3820pF R43 SW1
in „STM32H7-Disco erster Test“ · Mikrocontroller und Digitale Elektronik ·
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B-1220.pdf
Sourcecode des Controller-Programms wird demnächst auf der Website www.funkamateur.de ver- öffentlicht 52 Controller-Software 53 Stückliste Bauteil Wert Beutel Bauteil Wert Beutel C1 100n BK C51 10n BK C2 1n BK C52 1n BK C3 100n BK C53 1n BK C4 1n BK C54 1µ BK C5 1n BK C55 100n BK C6 1n BK C56 100n BK C7
in „JR 78 von DF5FC Schaltbild gesucht“ · HF, Funk und Felder ·
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Burr-Brown-ADS1230.pdf
ADS1230 www.ti.com SBAS366A–OCTOBER 2006–REVISED JULY 2007 ELECTRICAL CHARACTERISTICS All specifications atAT = –40°C to +85°C, AVDD = DVDD = REFP = +5V, REFN = AGND, and Gain = 64, unless otherwise noted. ADS1230 PARAMETER CONDITIONS MIN TYP MAX UNIT Analog Inputs Full-Scale Input Voltage (AINP – AINN) ±0.5V
in „Konzept für eine Waage gesucht“ · Mikrocontroller und Digitale Elektronik ·
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Datenblatt_WCDMA-GSM-EDGE-Transceiver_MMM7210.pdf
u C p . N m I 1 1 23 pCxTccV 3 A 9 f eRcaDxT D r M R 441 2 P F P V 8 u 5 N C . F paCdCcdAcoA C D p 6 0 1xTccV 3 A 761 1 3 C 7 431 5 3 C F or eZxTa mdc W C C 1 89 N 0 2xTccV 5 49 F C PYB_FER 2 1 p 0 u m I
in „GSM-Modul (SIM908) nur analoge Ausgänge für Anruf?“ · HF, Funk und Felder ·
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IS2100EV1.61.pdf
-400.00 B 49 D7 -5196.44 -400.00 B 130 V18 2083.43 -400.00 C 50 D6 -5096.44 -400.00 B 131 V18 2163.43 -400.00 C 51 D5 -4996.44 -400.00 B 132 V18 2243.43 -400.00 C 52 D4 -4896.44 -400.00 B 133 V18 2323.43 -400.00 C 53 D3 -4796.44 -400.00 B 134 V18 2403.43 -400.00
in „LCD-Modul OPTREX 351570AG“ · Mikrocontroller und Digitale Elektronik ·
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MN25664M-01.pdf
700 cd/m Typ. G64 Colour of Illumination Blue-Green (Filter for colours) Operating Temperature -40°C to +85°C Anode cdefbahgcdef cdebahgcdef DTENA Storage Temperature -50°C to +85°C Operating Humidity (non condensing) 5 to 95% @ 25°C 1. The power on rise time should be less than 50ms. Shift Reit 319
in „Noritake VFD Display“ · Mikrocontroller und Digitale Elektronik ·
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SSD2119.pdf
136 VCI -2670 -286 37 C2N -8610 -286 87 AVSS -5610 -286 137 VCI -2610 -286 38 C2N -8550 -286 88 AVSS -5550 -286 138 VCI -2550 -286 39 C2N -8490 -286 89 VCIM -5490 -286 139 VCI -2490 -286 40 90 140 C2N -8430 -286 VCIM -5430
in „Display Module CFAF320240F-TS Ansteuerung --- ATMEGA 128 ---- STK600“ · Mikrocontroller und Digitale Elektronik ·
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LP2950-D.PDF
11) V mVrms n CL= 1.0 mF − 126 − CL= 100 mF − 56 − LP2951A/LP2951AC Only Reference Voltage (T = 25°C) V V A ref LP2951C/LP2951C−XX/NCV2951C* 1.210 1.235 1.260 LP2951AC/LP2951AC−XX/NCV2951AC* 1.220 1.235 1.250 Reference Voltage AT = −40 to +125°C) V ref V LP2951C/LP2951C−XX/NCV2951C* 1.200 − 1.270 LP2951AC/LP2951AC−XX/NCV2951AC* 1.200 − 1.260 Reference Voltage AT = −40 to +125°C) V ref V O = 100 mA to 100 mA,in = 23 to 30 V LP2951C/LP2951C−XX/NCV2951C* 1.185 − 1.285 LP2951AC/LP2951AC−XX/NCV2951AC* 1.190 − 1.270 Feedback Pin Bias Current FB − 15 40 nA Error Comparator
in „Wie lange hält ein LM1117-5.0 ?“ · Analoge Elektronik und Schaltungstechnik ·
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LP2950_LP2951.pdf
11) V mVrms n CL= 1.0 mF − 126 − CL= 100 mF − 56 − LP2951A/LP2951AC Only Reference Voltage (T = 25°C) V V A ref LP2951C/LP2951C−XX/NCV2951C* 1.210 1.235 1.260 LP2951AC/LP2951AC−XX/NCV2951AC* 1.220 1.235 1.250 Reference Voltage AT = −40 to +125°C) V ref V LP2951C/LP2951C−XX/NCV2951C* 1.200 − 1.270 LP2951AC/LP2951AC−XX/NCV2951AC* 1.200 − 1.260 Reference Voltage AT = −40 to +125°C) V ref V O = 100 mA to 100 mA,in = 23 to 30 V LP2951C/LP2951C−XX/NCV2951C* 1.185 − 1.285 LP2951AC/LP2951AC−XX/NCV2951AC* 1.190 − 1.270 Feedback Pin Bias Current FB − 15 40 nA Error Comparator
in „Warum funktioniert mein Brückengleichrichter nicht?“ · Fahrzeugelektronik ·
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Atmel_AT45DB081D.pdf
Ground.............................-0.6V to V CC reliability. Table 18-2. DC and AC Operating Range AT45DB081D (2.5V Version) AT45DB081D Operating Temperature (Case) Ind. -40°C to 85°C -40°C to 85°C V Power Supply 2.5V to 3.6V 2.7V to 3.6V CC Note: 1. After power is applied andCC is at the minimum specified
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DS_S6B1713_R42.pdf
the value selected by instruction, "Set Reference Voltage Register", within the range REFovoltage at Ta = 25°C is shown in table 14-1. Rb V0 = ( 1 + ) x V EV [V] ------ (Eq. 1) Ra (63 - α) VEV = ( 1 - ) x V REF [V] ------ (Eq. 2) 300 Table 14-1. VREFVoltage at Ta = 25 °C TEMPS Temp. coefficient
in „Frage zu static indicator glcd“ · Mikrocontroller und Digitale Elektronik ·
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FL350QVR00-A0T.pdf
Functional Block Diagram l e TFT LCD n U a L P B 320 x RGB x240 h u o T H X8238-A FPC interface 0 0 0 T C C L L D D ~ ~ ~ S C D Y N T A C D 1 1 2 2 L L R G B R S S H V DO E V G X Y X Y 5 FL350QVR00_A0T Ver X2 Issued Date:2007/8/22 Doc. No.:E-R08-028 3. Mechanical Specification 3.1 Mechanical Dimension 6
in „Übersicht über preisgünstige elektronische Geräte für reverse-engineering“ · Mikrocontroller und Digitale Elektronik ·
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PDF
FL350QVR00-A0T.pdf
Functional Block Diagram l e TFT LCD n U a L P B 320 x RGB x240 h u o T H X8238-A FPC interface 0 0 0 T C C L L D D ~ ~ ~ S C D Y N T A C D 1 1 2 2 L L R G B R S S H V DO E V G X Y X Y 5 FL350QVR00_A0T Ver X2 Issued Date:2007/8/22 Doc. No.:E-R08-028 3. Mechanical Specification 3.1 Mechanical Dimension 6
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Datei
convert_macro.asm
_c=_c+1 .endif .if _p<=@1 b _p,_c .set _p=_p+1 .set _c=_c+1 .endif .if _p<=@1 b _p,_c .set _p=_p+1 .set _c=_c+1 .endif .if _p<=@1 b _p,_c .set _p=_p+1 .set _c=_c+1 .endif .if _p<=@1 b _p,_c .set _p=_p+1 .set _c=_c+1 .endif .if _p<=@1 b _p,_c .set _p=_p+1 .set _c=_c+1 .endif .if _p<=@1 b _p,_c .set _p=_p+1 .set _c=_c+1 .endif .if _p<=@1 b _p,_c .set _p=_p+1 .set _c=_c+1 .endif .if _p<=@1 b _p,_c .set _p=_p+1
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STM103.pdf
with the range definedPLL_OUT 5.3.9 Memory characteristics Flash memory The characteristics are given at A =– 40 to 105 °C unless otherwise specified. Table 28. Flash memory characteristics (1) (1) Symbol Parameter Conditions Min Typ Max Unit tprog 16-bit programming time A –40 to +105 °C 40 52.5 70
in „STM32 2 Versorgungsspannungen?“ · Mikrocontroller und Digitale Elektronik ·
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SED1520.pdf
SEG22 4295 159 84 DB5 3696 6884 17 SEG55 159 3075 51 SEG21 4641 482 85 DB6 3497 6884 18 SEG54 159 2876 52 SEG20 4641 681 86 DB7 3297 6884 19 SEG53 159 2676 53 SEG19 4641 881 87 VDD 3098 6884 20 SEG52 159 2477 54 SEG18 4641 1080 88 RES 2898 6884 21 SEG51 159 2277 55 SEG17 4641 1280 89 FR 2699 6884 22 SEG50
in „suche Text- LCD“ · Mikrocontroller und Digitale Elektronik ·
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TLC_555specs_TI.pdf
electrical characteristics at specified free-air temperature, V = 2 V for TLC555C, V = 3 V for DD DD TLC555I TEST TLC555C TLC555I PARAMETER TA † UNIT CONDITIONS MIN TYP MAX MIN TYP MAX 25°C 0.95 1.33 1.65 1.6 2.4 VIT Threshold voltage
in „TL555i was ist das“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
TM56M152A-tenxtechnology.pdf
event pending flag, set by H/W at INT2 pin’s falling INT2IF 0C.2 R - edge W 0 write 0: clear this flag; write 1: no action R - INT1 (PA1) interrupt event pending flag, set by H/W at INT1 pin’s INT1IF 0C.1 falling/rising edge W 0 write 0: clear this flag; write 1: no action INT0 (PA3) interrupt event pending flag, set by H/W at INT0 pin’s INT0IF 0C.0 R - falling/rising edge W 0 write 0: clear this flag; write 1: no action INTIE1 (0Dh) Function related to: Interrupt Enable All port pin change wakeup interrupt enable PCIE 0D.6
in „MCU identifikation/Datenblatt - MC9989A0ZQ“ · Mikrocontroller und Digitale Elektronik ·
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Datei
stk500_at90s1200_mega8535.asm
support for multiple new devices ;* V2.1 98.10.26 (mlund) New date marking. ;* Removed support for AT90S1200C. ;* Added support for AT90S4433A. ;* V2.0 98.01.06 (mlund) ATmega103 support ;* V1.7 97.11.06 (mlund) Universial command (':') implemented. ;* Releases all pins when not in ;* programming mode
in „STK500 defekter Prozessor“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Resources_an5457-rf-matching-network-design-guide-for-stm32wl-series-stmicroelectronics.pdf
H 4 6 n Equivalent = 0 4 C 1 = C2= 2.52 pF circuit 2 C L COUT= 144 pF C4= 68 pF L 3= 9.2 nH L 1= 4.45 nH L2= 3.4 nH Ω F 7 RFO_HP F n . or RFO_LP 3 . 1 . C 3 C’ 3 = 5 5 U 1 C O C R C3new value For example, if C3 = 0.8 pF and C'
in „STM32WLE5CCU6 LoRa-Antennenendesign review“ · HF, Funk und Felder ·
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PDF
AN5457.pdf
H 4 6 n Equivalent = 0 4 C 1 = C2= 2.52 pF circuit 2 C L COUT= 144 pF C4= 68 pF L 3= 9.2 nH L 1= 4.45 nH L2= 3.4 nH Ω F 7 RFO_HP F n . or RFO_LP 3 . 1 . C 3 C’ 3 = 5 5 U 1 C O C R C3new value For example, if C3 = 0.8 pF and C'
in „868MHz Impedanzmatching - Fragen zum Matching-vorgehen“ · HF, Funk und Felder ·
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DPI_Manual-1.pdf
the system. The Alert# signal will remain LO until it gets cleared. Red – Internal fault 3.1.3 I C Clock Speed Settings The default value of the I C clock speed is set at 100kHz. It can also be programmed to 400kHz. See 4.2.7 for details on how the clock speed can be changed. 3.2 Installing the DPI
in „Problem mit 1800W Gleichrichter“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Cambridge_Technology_MicroMax_Series_670_Single_Axis_Board_Level_Mirror_Positioning_System.pdf
nnisi H 05 I h IC4 I rR40n ""^ _ ^i ^^ I irn-g —'^ J6 + iL2Lh LmJ -" fRTOl ^ 1 mn i nrwi R42 w U6 R52 nam i«o U15 C 3 ^ R6S R66 ^S n LQIJ *8 R24 ] iM TP7 670 "5^ V * W9, J3 REVB = ^ UH2J I R30 I + C13 * ]» 32B U16 J88 ,LQ4J U9 [B D Ul n a me R81 TP^ rRTnren i RSS \ \ tzi in S •A eT-^ rx^^xn nn x j nu
in „3D Scanner von 3D Digital Corp - zu irgendwas zu gebrauchen?“ · Mikrocontroller und Digitale Elektronik ·
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LM809.pdf
4.06 A LM8xx: 4.00 V TA= –40°C to 85°C 3.89 4.10 TA= 85°C to 105°C 3.80 4.20 TA= 25°C 3.04 3.08 3.11 V Reset Threshold (2) LM8xx: 3.08 V T = –40°C to 85°C 3.00 3.15 V TH A TA= 85°C to 105°C 2.92 3.23 TA= 25°C 2.89 2.93 2.96 LM8xx:
in „3.3V uC LDO mit UVLO, Batterie/Solarbetrieb“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
BASIC.LST
C9 4E 54 .BYTE 'I'+80H,"NT" 0252 02FB C1 42 53 .BYTE 'A'+80H,"BS" 0253 02FE D5 53 52 .BYTE 'U'+80H,"SR" 0254 0301 C6 52 45 .BYTE 'F'+80H,"RE" 0255 0304 C9 4E 50 .BYTE 'I'+80H,"NP" 0256 0307 D0 4F 53 .BYTE
in „Suche verschiedene BASIC Eprom's für Z80 Rechner.“ · Markt ·
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PDF
150418-da-01-en-ADJ_LOW_DROPOUT_POS_VR_5A.pdf
OUT) 25V for LT1084 at –55°C T J –40°C. the input/output differential and the output current. Guaranteed maximum Note 8: Dropout voltage 1.7V maximumfor LT1084 at power dissipation will not be available over the full input
in „spannungsstabilisierung in blitz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
en.DM00112632.pdf
. 535nm LED @ 1 kLux. Measured @ gain 20. 2. Half angle. 40% transmission. 3. Minimum of one count at gain 40 and 400 ms ALS integration time. 4. Test conditions: -10°C to +60°C; analog gains 1 to 20 DocID026171 Rev 7 41/87 86 I C control interface VL6180X 2 4 I C control interface 2 2 The VL6180X is
in „I2C an STM32F100RB konfigurieren“ · Mikrocontroller und Digitale Elektronik ·
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Datenblatt_THS4531.pdf
Referenced to mid-supply unless otherwise noted. HARMONIC DISTORTION HARMONIC DISTORTION vs vs LOAD at 1 MHz V OCM at 1 MHz 0 0 VS= 2.7 V Second Harmonic VS= 2.7 V Second Harmonic −10 G = 1 V/V Third Harmonic −10 G = 1 V/V Third Harmonic c R F 2 k c RF= 2 k B −20 V = 2 V B −20 R = 2 k ( OUT pp ( L o −
in „Symmetrischer Filter, FilterPro, THS4531“ · Analoge Elektronik und Schaltungstechnik ·
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Datei
crc16.c
,0xa5cb,0x95a8,0x8589,0xf56e,0xe54f,0xd52c,0xc50d, 0x34e2,0x24c3,0x14a0,0x0481,0x7466,0x6447,0x5424,0x4405, 0xa7db,0xb7fa,0x8799,0x97b8,0xe75f,0xf77e,0xc71d,0xd73c, 0x26d3,0x36f2,0x0691,0x16b0,0x6657,0x7676,0x4615,0x5634, 0xd94c,0xc96d,0xf90e,0xe92f,0x99c8,0x89e9,0xb98a,0xa9ab, 0x5844,0x4865,0x7806,0x6827,0x18c0,0x08e1,0x3882,0x28a3, 0xcb7d,0xdb5c,0xeb3f,0xfb1e,0x8bf9,0x9bd8,0xabbb,0xbb9a, 0x4a75,0x5a54,0x6a37,0x7a16,0x0af1,0x1ad0,0x2ab3,0x3a92, 0xfd2e
in „Checksumme "reversen"“ · Mikrocontroller und Digitale Elektronik ·
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PDF
bedienhandbuch__auerswald_ets-4016-fax_4016-fax-plus__2002-07-04.pdf
Montage des Gebühren- / Schalt-Moduls GSM-4016 auf Seite 23). 3. 11 Anschluss an einen PC (IBM-PC / AT oder Kompatibler) Das ETS-4016 FAX verfügt über eine potentialfreie serielle Schnittstelle (RS-232-C, V24), über die die Anlage einfach von einem PC (IBM-PC / AT oder kompatiblen) pro- grammiert werden
in „Telefonanlage“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
INN3977CQ.pdf
= 25 °C 102 110 118 Overload Detection J Frequency OVL See Note A kHz 96 125 BYPASS Pin Latching T = 25 °C 6.0 8.9 11.3 J Shutdown Threshold ISD mA Current 5.7 11.9 TJ= 25 °C 75 82 89 Auto-Restart On-Time t
in „Frage zu PowerInc INN3977CQ“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
58L128.pdf
MODE C C C C C b b b b D C b b b b b C C C C N N N D V N N Q Q V D Q Q V D N VQ Q D V Q Q P N V D N N N V D D V D D V D D V D D Q V D * * P P Q Q / b b D b b b b D b b D a a D a a a a D a a/ C Q Q D S Q Q Q
in „4GSPS ADC SRAM Speicher“ · Mikrocontroller und Digitale Elektronik ·
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PDF
74245.PDF
TRANSCEIVER (3-STATE):HC245 NONINVERTING HC640INVERTING, HC643 INVERTING/NON INVERTING . tIG= 10 ns(TYP.) at V= 5V . LOWPOWER DISSIPATIONC ICC= 4 A(MAX.) at A = 25 C . HIGH NOISE IMMUNITY V NIH VINL= 28 % CC (MIN.) . OUTPUT DRIVE CAPABILITY B1R F1R 15 LSTTL LOADS (Plastic Package) (CeramicPackage) . SYMMETRICAL
in „Schema von 74245“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ssd1623.pdf
P 6/44 Rev 0.10 SSD1623 16x Configurations VCI X2 X2 X2 X2 C4P C4N C3AP C3AN C2P C2N C1P C1N VCP4 VCP3 VCP2 VCP1 12x Configurations VCI X2 X3 X2 By pass C3BP C3BN C4P C4N C3AP C3AN C2P C2N VCP4 VCP3 VCP1 8x Configurations VCI X2 X2 X2 By pass C4P C4N C2P C2N VCP4
in „E-Ink Display im Blutzuckermeßgerät“ · Mikrocontroller und Digitale Elektronik ·
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PDF
eeprom.pdf
Temperature ....................... –65°C to +1the device at these or any other conditions above those Voltage on any Pin with indicatedintheoperationalsectionsofthisspecificationis Respect to VSS .................................. –notimplied.Exposuretoabsolutemaximumratingcondi
in „EEPROM mit SRAM ersetzen?“ · Mikrocontroller und Digitale Elektronik ·
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PCF8833_1.pdf
7185.640 −1030.568 C86 120 −5316.344 −1030.568 C48 82 −7081.976 −1030.568 C87 121 −5269.880 −1030.568 C49 83 −7035.512 −1030.568 C88 122 −5223.416 −1030.568 C50 84 −6989.048 −1030.568 C89 123 −5176.952 −1030.568 C51 85 −6942.584 −1030.568 C90 124 −5130.488 −1030.568 C52 86 −6896.120 −1030.568 C91 125 −5084.024 −1030.568 C53 87 −6849.656 −1030.568 C92 126 −5037.560 −1030.568 C54 88 −6803.192 −1030.568 C93 127 −4991.096 −1030.568 C55 89 −
in „Versorgung einer LCD Anzeige und MC“ · Mikrocontroller und Digitale Elektronik ·
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VIK_CSR_REV_C6--190520.pdf
:10s (2) Time of wave soldering at maximum temperature point 260C:10s (3) Time of soldering iron at maximum temperature point 410C:5s Standard Electrical Specifications Item Power Operating Max. Max. Resistance Range TCR Rating Operating
in „SMD Dioden Typ ermitteln“ · Analoge Elektronik und Schaltungstechnik ·
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APT_Communications_Protocol.pdf
:89, 53, 9A, 05: 94000009 ModelNumber:49, 4F, 4E, 30, 30, 31, 20, 00: ION001 Type:2C, 00: 44 – BrushlessDCControllerCard firmwareVersion:02, 01, 39, 00: 3735810 HW Version:01, 00 Hardware version01 ModState
in „Thorlabs Laser-Source mit über FTDI232BM ansteuern“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Aim_TTi_QL_Series_II_Service_Manual_48511-1740.pdf
Layouts 33 Circuit Diagrams 39 1 Specification General specifications apply for the temperature range 5°C to 40°C. Accuracy specifications apply for the temperature range 18°C to 28°C after 1 hour warm-up with no load and calibration at 23°C. Typical specifications are determined by design and are not guaranteed
in „wegen Aim TTi Netzteil Qualität“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
bs1Appnotes.pdf
the potentiometer from the Stamp and hooked it to an ohmmeter. After setting the potentiometer to 33.89k (corresponding to a thermistor at 23 °F or –5 °C), we reconnected it to the Stamp, and wrote down the resulting reading. We did this for each of the calibration values on the back of the thermistor
in „Smartcard-Kode-Schloss mit PIC16F84“ · Mikrocontroller und Digitale Elektronik ·
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PDF
R1610C.PDF
Interrupt Status Register 51 A8 PCS_n Auxiliary Register 40 2E Interrupt Request Register 52 A4 Peripheral Chip Select Register 0 39 2C Interrupt In-service Register 52 A0 Upper Memory Chip Select Register 38 2A Interrupt Priority Mask Register 53 88 (See 7.2) 25 28 Interrupt Mask Register 54
in „Hilfe JTAG für IP Webcam ?“ · Mikrocontroller und Digitale Elektronik ·
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Datei
ser_i2c.asm
;********************************************************** ;* SER_I2C.ASM V1.0 * ;* Konverter von seriell (RS232) nach I2C * ;* Mikrocontroller: AT89C2051, f=11,0592 MHz * ;* Serielle Uebertragung der I2C-Bus-Daten zum Mikro- * ;* controller * ;* Ser. Format: 8N1, 9600
in „24cxx EEPROM über I²C Bus an Atmel 8051“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Probook_450_G1_Service_Manual.pdf
3.5 A - 65 W Operating current 4.74Aor 3.5 A Temperature Operating (not writing to optical disc) 0°C to 35°C 32°F to 95°F Operating (writing to optical disc) 5°C to 35°C 41°F to 95°F Nonoperating -20°C to 60°C -4°Fto 140°F Relativehumidity Operating 10% to 90% Nonoperating 5% to 95% Maximumaltitude
in „HP ProBook 450 G1 Speicher erweitern und höhere Auflösung -> Wie vorgehen“ · PC Hard- und Software ·
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PDF
MAX100.pdf
AData 7 1/2 7 1/2 Cycles mode) 2 mode BData 8 1/2 8 1/2 Note 3: All devices are 100% production tested at +25°C and are guaranteed by design for T = A MIN to TMAX as specified. Note 4: Deviation from best-fit straight line. Seetegral Nonlinearity section. Note 5: See the Signal-to-Noise Ratio and Effective
in „Oszilloskop mit AVR“ · Mikrocontroller und Digitale Elektronik ·
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UBN30-Protocol-Manual.pdf
, 8 Stop 1, 2 Example: W87.1=38400,N,8,1 W87.2 PROTOCOL SWITCHING (COM 2) Format: see W87.1 W89 DA TE/TIME/DA Y Format: W89=YYMMDDHHMMSSd d=day of the week: 1...7->Mon...Sun Example: W89=0501211030005 14 COMMANDS STANDARD Co munication Prot col ENGLISH UBN310 Command D escription UBN3060 UBN30
in „[V] Digitalzähler“ · Markt ·
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document.pdf
A Nominal Speed : 8147 rpm Nominal Torque : 54.86 mNm Nominal Current : 6.18 A Stall Torque : 334.52 mNm Stall Current : 31.57 A Maximum Output Power : 88.44 W Maximum Efficiency : 64% Weight : 249 g Operating Temperature Range : -40 to 80 °C Storage Temperature Range : -40 to 110 °C Performance Data
in „Lager für 18v Motor“ · Offtopic ·
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stc12c5a60s2-english.pdf
3.5 32K 1280 4 1 2 2 N Y 29K Y Y 7 PDIP LQFP/ LQFP48 PLCC STC12C5A40PWM 5.5~3.5 40K 1280 4 1 2 2 N Y 21K Y Y 7 PDIP LQFP/ LQFP48 PLCC STC12C5A48PWM 5.5~3.5 48K 1280 4 1 2 2 N Y 13K Y Y 7 PDIP LQFP/ LQFP48 . PLCC STC12C5A52PWM 5.5~3.5 52K 1280 4 1 2 2 N Y 9K Y Y 7d
in „STC12C5A60S2 (a.k.a 80C51) programieren mit mySmartUSB light“ · Mikrocontroller und Digitale Elektronik ·