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Datei
report_par.txt
+------+------+--------------+------| | fpga_0_DIP_Switches_4Bit_ | I | LVCMOS33 | NR | 3.30 | IPAD108 | N17 | None L | fpga_0_RS232_DCE_TX_pin | O | LVCMOS33 | | 3.30 | PAD107 | M14 | None L | fpga_0_DIP_Switches_4Bit_ | I | LVCMOS33 | NR | 3.30 | IPAD103 | L14 | None L | fpga_0_DIP_Switches_4Bit_ |
in „Place and Route partially locked IO bus“ · FPGA, VHDL & Co. ·
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PDF
AN040_Sqrt.pdf
Inc. TB040 ANALYSIS TABLE 1: PERFORMANCE Following the flow of this algorithm, there are only nine Max Time Cycles 40MHz 10MHz 4MHz loops for an 8-bit number. And summing all the mathe- matics involved, there is only one multiplication and 16-bit 149 14.9us 59.6us 149us one conditional test for each
in „Netzspannung auf LCD mit PIC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN040_Sqrt.pdf
Inc. TB040 ANALYSIS TABLE 1: PERFORMANCE Following the flow of this algorithm, there are only nine Max Time Cycles 40MHz 10MHz 4MHz loops for an 8-bit number. And summing all the mathe- matics involved, there is only one multiplication and 16-bit 149 14.9us 59.6us 149us one conditional test for each
in „Schneller sqrt()-Ersatz ohne FPU“ · Mikrocontroller und Digitale Elektronik ·
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Datei
Petra-M10_Einblick_offen.html
font-size:16px}a.irc_pt{color:rgba(255, 255, 255, .87);display:block;font-size:20px;line-height:30px;max-height:60px;overflow:hidden;text-decoration:none;text-overflow:ellipsis;white-space:normal;word-wrap:break-word}a.irc_pt:hover{text-decoration:underline}.irc_hol{box-sizing:border-box;display:block;
in „Lampentaster gesucht“ · Markt ·
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PDF
MachXO2FamilyDataSheet.pdf
Family Data Sheet sysIO Single-Ended DC Electrical Characteristics 1, 2 Input/Output V IL VIH V OL Max. V OH Min. IOL Max. 4 OH Max. 4 Standard Min. (V)3 Max. (V) Min. (V) Max. (V) (V) (V) (mA) (mA) 4 –4 8 –8 LVCMOS 3.3 0.4 V CCIO– 0.4 12 –12 LVTTL -0.3 0.8 2.0 3.6 16 –16 24 –24 0.2 V CCIO– 0.2 0.1 –
in „Statemachine springt in falsche "states" warum?“ · FPGA, VHDL & Co. ·
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PDF
via_datasheet.pdf
will decrease to 0 after a time period set in Bank0 Index0Dh. Setting Fan output (DC / PWM) Tolerance Max. Fan Output Min. Fan Output Tar. - Tol. Tar. + Tol. Temperature Figure 6.9 -36- W83627EHF/EF, W83627EHG/EG Current Temp. > Target Temp. + Tol. Fan output (DC / PWM) Tolerance Max. Fan Output Step Fan Initial Output Value Speed-up Slope Min. Fan Output (Max. Fan output – Initial output) = Step = Integer Tar 1 Tar 3 Temperature Tar Tar 2 Tar 5 Tar 4 Figure 6.10 Current Temp. < Target Temp. - Tol. Fan output (DC / PWM) Tolerance Max. Fan Output Fan Initial
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PDF
HD66740.pdf
values displayed on LCD • High-speed clock-synchronized serial interface (serial transfer rate: 5 MHz max.) • I2C bus interface Preliminary: The specifications of this device are subject to change without notice. Please contact your nearest Hitachi’s Sales Dept. regarding specifications. HD66740 • High-speed
in „Display Siemens ME 45, HD-66740“ · Mikrocontroller und Digitale Elektronik ·
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PDF
an920-d.pdf
, t on(max), is set by selecting + 0.37 ) 1 a value for CT. + 14.6 ms C T 4.0 10 −5 ton Since ton(max) ) t off+ 20 ms + 4.0 10 − 5(5.4 10− 6) ton(max) + 20 ms * 14.6 ms + 216 pF + 5.4 ms Use a standard 220 pF
in „MC34063 als Step Up arbeitet nicht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN920-D_MC34063_Theory_and_Applications_.pdf
of t /(t+ t ) does not exceed on on off t ▯ t the maximum of 6/7 or 0.857. This maximum is off▯ on(max) off defined by the 6:1 ratio of charge–to–discharge ton▯ 1 toff current of timing capacitor T (refer to Figure 3). 20 ▯ 10 –6 4. The maximum on–time, t , is set by selecting ▯ on(max) 0.37 ▯ 1 a value for T . ▯ 14.6 ▯s C T 4.0 ▯ 10 –5 on Since ton(max) ▯ t off▯ 20 ▯s ▯ 4.0 ▯ 10 –5 (5.4 ▯ 10–6 ) ton(max) ▯ 20 ▯s ▯ 14.6 ▯s ▯ 216 pF ▯ 5.4 ▯s Use a standard 220 pF capacitor. Vin= 24 V + 47 R2 R1 Rsc 36 k 12 k 2.7 CT 220 pF 9 10 11 12 13 14 15 16 GND
in „Schaltregler MC34063 - Wie berechnet man CT?!“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN920-D.PDF
of t /(t+ t ) does not exceed on on off t ▯ t the maximum of 6/7 or 0.857. This maximum is off▯ on(max) off defined by the 6:1 ratio of charge–to–discharge ton▯ 1 toff current of timing capacitor T (refer to Figure 3). 20 ▯ 10 –6 4. The maximum on–time, t , is set by selecting ▯ on(max) 0.37 ▯ 1 a value for T . ▯ 14.6 ▯s C T 4.0 ▯ 10 –5 on Since ton(max) ▯ t off▯ 20 ▯s ▯ 4.0 ▯ 10 –5 (5.4 ▯ 10–6 ) ton(max) ▯ 20 ▯s ▯ 14.6 ▯s ▯ 216 pF ▯ 5.4 ▯s Use a standard 220 pF capacitor. Vin= 24 V + 47 R2 R1 Rsc 36 k 12 k 2.7 CT 220 pF 9 10 11 12 13 14 15 16 GND
in „Frage zu Schaltregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MC34063_AN920-D.PDF
of t /(t+ t ) does not exceed on on off t ▯ t the maximum of 6/7 or 0.857. This maximum is off▯ on(max) off defined by the 6:1 ratio of charge–to–discharge ton▯ 1 toff current of timing capacitor T (refer to Figure 3). 20 ▯ 10 –6 4. The maximum on–time, t , is set by selecting ▯ on(max) 0.37 ▯ 1 a value for T . ▯ 14.6 ▯s C T 4.0 ▯ 10 –5 on Since ton(max) ▯ t off▯ 20 ▯s ▯ 4.0 ▯ 10 –5 (5.4 ▯ 10–6 ) ton(max) ▯ 20 ▯s ▯ 14.6 ▯s ▯ 216 pF ▯ 5.4 ▯s Use a standard 220 pF capacitor. Vin= 24 V + 47 R2 R1 Rsc 36 k 12 k 2.7 CT 220 pF 9 10 11 12 13 14 15 16 GND
in „Spule für Schaltnetzteil“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN920-D.pdf
, t on(max), is set by selecting + 0.37 ) 1 a value for CT. + 14.6 ms C T 4.0 10 −5 ton Since ton(max) ) t off+ 20 ms + 4.0 10 − 5(5.4 10− 6) ton(max) + 20 ms * 14.6 ms + 216 pF + 5.4 ms Use a standard 220 pF
in „Spannungsregelung mit Step-Up/Down Regler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AN920-D_MC34063_Theory_and_Applications_.pdf
of t /(t+ t ) does not exceed on on off t ▯ t the maximum of 6/7 or 0.857. This maximum is off▯ on(max) off defined by the 6:1 ratio of charge–to–discharge ton▯ 1 toff current of timing capacitor T (refer to Figure 3). 20 ▯ 10 –6 4. The maximum on–time, t , is set by selecting ▯ on(max) 0.37 ▯ 1 a value for T . ▯ 14.6 ▯s C T 4.0 ▯ 10 –5 on Since ton(max) ▯ t off▯ 20 ▯s ▯ 4.0 ▯ 10 –5 (5.4 ▯ 10–6 ) ton(max) ▯ 20 ▯s ▯ 14.6 ▯s ▯ 216 pF ▯ 5.4 ▯s Use a standard 220 pF capacitor. Vin= 24 V + 47 R2 R1 Rsc 36 k 12 k 2.7 CT 220 pF 9 10 11 12 13 14 15 16 GND
in „MC34063 Strombegrenzung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
AN920-D.PDF
of t(t + t ) does not exceed on on off t ) t the maximum of 6/7 or 0.857. This maximum is off+ on(max) off defined by the 6:1 ratio of charge−to−discharge ton) 1 off current of timing capacitor T (refer to Figure 3). 20 10−6 4. The maximum on−time, t on(max), is set by selecting + 0.37 ) 1 a value for T . + 14.6 ms C T 4.0 10 −5 ton Since ton(max) ) t off+ 20 ms + 4.0 10 −5 (5.4 10−6 ) ton(max) + 20 ms * 14.6 ms + 216 pF + 5.4 ms Use a standard 220 pF capacitor. Vin= 24 V + 47 R2 R1 Rsc 36 k 12 k 2.7 CT 220 pF 9 10 11 12 13 14 15 16 GND V CC
in „Suche Buck-Boost für LiIon-Spannung auf 3,3V“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
UCC25600_AppNote.pdf
ELECTRICAL PERFORMANCE Table 1 Performance Specifications Symbol Parameter Notes & Conditions Min Nom Max Units INPUT CHARACTERSTICS V I Input Voltage 85 265 VRMS f Line Frequency 48 65 Hz I Input Current 4 ARMS p.f. Power Factor 0.95 OUTPUT CHARACTERSTICS PFC Stage: Vo Output Voltage 390 VDC (HVDC) LLC
in „Resonanzkoverter: Tank dimensionieren“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
RTC4553AP.pdf
- 2 MQ - 132 - 04 RTC - 4553 4. Absolute maximum ratings GND=0 V Item Symbol Condition (pin) Min. Max. Unit Power supply voltage VDD VDD−GND −0.3 +6.0 Input voltage V IN S , SCK , WR , CS0 , CS1 −0.3 VDD+0.3 V Output voltage VOUT SOUT, TP OUT −0.3 VDD+0.3 Storage temperature TSTG Stored bare product
in „Atmega8, RTC, Uhrzeit und Datum“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RTC4553AP.pdf
- 2 MQ - 132 - 04 RTC - 4553 4. Absolute maximum ratings GND=0 V Item Symbol Condition (pin) Min. Max. Unit Power supply voltage VDD VDD−GND −0.3 +6.0 Input voltage V IN S , SCK , WR , CS0 , CS1 −0.3 VDD+0.3 V Output voltage VOUT SOUT, TP OUT −0.3 VDD+0.3 Storage temperature TSTG Stored bare product
in „Atmega8, RTC, Uhrzeit und Datum“ · Mikrocontroller und Digitale Elektronik ·
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PDF
RTC4553AP.pdf
- 2 MQ - 132 - 04 RTC - 4553 4. Absolute maximum ratings GND=0 V Item Symbol Condition (pin) Min. Max. Unit Power supply voltage VDD VDD−GND −0.3 +6.0 Input voltage V IN S , SCK , WR , CS0 , CS1 −0.3 VDD+0.3 V Output voltage VOUT SOUT, TP OUT −0.3 VDD+0.3 Storage temperature TSTG Stored bare product
in „Eine RTC R4553A am Arduino“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PS-ITG-3200-00-01.4.pdf
sets the logic levels of its I C interface. The VLOGIC voltage may be anywhere from 1.71V min to VDD max. 1.4 Applications Motion-enabled game controllers Motion-based portable gaming Motion-based 3D mice and 3D remote controls “No Touch” UI Health and sports monitoring 5 of 39 Document Number: PS-ITG-
in „STK600 / Atmega 2560 per TWI mit ITG-3200 verbinden“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Kap4.pdf
widerstand bei der minimalen Quarzbelastung (P minbzw. Imin, danach bei der maximalen Quarzbelastung P max(max) (üblicherweise der Nennbelastung) und abschließend wieder bei der minimalen Belastung vor. Wesentliches Prüfkriterium ist die zulässige maximale relative Änderung γ des Resonanzwiderstandes. Hierzu
in „Bitte um Identifizierung Quartz“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
REN_ca3130-a_DST_20170525.pdf
= 15V, V- = 0V, Unless Otherwise Specified CA3130 CA3130A TEST PARAMETER SYMBOL CONDITIONS MIN TYP MAX MIN TYP MAX UNITS Input Offset Voltage |IO| VS= 7.5V - 8 15 - 2 5 mV Input Offset Voltage VIOT - 10 - - 10 - V/ C Temperature Drift Input Offset Current |I | V = 7.5V - 0.5 30 - 0.5 20 pA IO S
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PDF
Mabuchi_Motors_Complete.pdf
0.070 6530 0.17 0.23 2.3 0.15 0.76 7.8 0.39 UNIT:MILLIMETERS DIRECTION OF ROTATION 25.5 4.9 18.9 0.2 MAX. 9.5 0.2 MAX. 1.1 1.0 (+) . . ø E . R . . ø 6 1 1 3 . 1 ø (–) 0.5 REF. 4.0 REF. 0 2 WEIGHT: 9.5g (APPROX) SU-020RA-1665 1.5V SU-020SA-1665 1.5V h I N h I N 75 3 30,000 75 3 15,000 50 2 20,000 50 2 10,000
in „12 V Motor aus der Al-ko Mover Einheit M20 Ams1“ · Fahrzeugelektronik ·
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PDF
STM8S105.pdf
ME Table 57: 32-lead shrink plastic DIP (400 ml) package mechanical data (1) Dim. mm inches Min Typ Max Min Typ Max A 3.556 3.759 5.080 0.1400 0.1480 0.2000 112/127 DocID14771 Rev 10 STM8S105xx Package information (1) Dim. mm inches Min Typ Max Min Typ Max A1 0.508 0.0200 A2 3.048 3.556 4.572 0.1200 0.1400
in „Handbuch STM8S Discovery“ · Mikrocontroller und Digitale Elektronik ·
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PDF
tle2082.pdf
8.0 mW/°C 640 mW 344 mW 200 mW recommended operating conditions C SUFFIX I SUFFIX M SUFFIX UNIT MIN MAX MIN MAX MIN MAX Supply voltageCC± ±2.25 ±19 ±2.25 ±19 ±2.25 ±19 V V CC± = ±5 V –0.9 5 –0.8 5 –0.8 5 Common-mode input voltageICV V = ±15 V –10.9 15 –10.8 15 –10.8 15 V CC± Operating free-air temperaAure
in „Bauteil gesucht: unbekannter TI-Baustein“ · Mikrocontroller und Digitale Elektronik ·
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PDF
datasheet.pdf
Output Voltage RLS 4 M7 V = 451 VDC R LS 4 M7 DC OV DC R OVP Sense Output Voltage VR OVP Input Input DC MAX @ 100 VDC = 76% Voltage DC MAX @ 100 VDC = 76% Voltage DC @ 375 VDC = 41% DC @ 375 VDC = 41% MAX D V MAX D V Reset 10 k7 CONTROL CONTROL Q C C R ROVP >3k7 S S - - PI-4756-121007 PI-4719-120307 Figure
in „Verzweifelt: Wie Widerstände und Kapazitäten eines Sperrwandler IC´s auslegen?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
S29WS064J.pdf
Guide Synchronous/Burst Asynchronous SpeedOption 66MHz 80MHz SpeedOption 66MHz 80 MHz (Note) (Note) Max Latency, ns (IACC) 56 71 Max Access Time, ns (ACC ) 55 55 Max Burst Access Time, ns (BACC) 11.2 9.1 Max CE# Access, ns (tCE 55 55 Max OE# Access, ns (t ) 11.2 9.1 Max OE# Access, ns (t ) 11.2 9.1 OE
in „PHILIPS VP5500 VoIP Telefon bei Pollin“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ST_70-780_Service_Manual.pdf
D81020 110 65 BR105 63 127 BR171 161 54 BR235 15 44 C41022 13 36 C60026 228 65 D81501 269 20 BR106 154 108 BR172 189 235 BR236 29 55 C41032 15 29 C60027 215 65 BR107 123 14 BR173 200 133 BR237 155 111 C43002 29 222 C60036 346 34 EU-AV01 39 244 BR108 117 14 BR174 186 233 BR32339 95 180 C43007 35 222 C60037
in „PAL-Röhren TV auf NTSC umbauen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
AM335x_Sitara_Prozessor.pdf
PRU-ICSS MDIO_CLK Timing Table 7-106. PRU-ICSS MDIO Switching Characteristics – MDIO_DATA (see Figure 7-108) NO. MIN TYP MAX UNIT 1 d(MDC-MDIO) Delay time, MDC high to MDIO valid 10 390 ns 1 MDIO_CLK (Output) MDIO_DATA (Output) Figure 7-108. PRU-ICSS MDIO_DATA Timing – Output Mode 7.14.3.2 PRU-ICSS MII_RT
in „BeagleboneBlack: Sensor über I2C“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ATM16_doc2466.pdf
to eight bits. In phase correct PWM mode the counter is incremented until the counter value matches MAX. When the counter reaches MAX, it changes the count direction. The TCNT0 value will be equal to MAX for one timer clock cycle. The timing diagram for the phase correct PWM mode is shown on Figure 33
in „ISP - Pinbelegung“ · Mikrocontroller und Digitale Elektronik ·
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PDF
lm3421.pdf
2008–REVISED MAY 2013 www.ti.com Boost ’iL-PP ICIN-RMS = 12 (73) Buck-boost DMAX CIN-RMS = ILED x 1-D MAX (74) 9. NFET The NFET voltage rating should be at least 15% higher than the maximum NFET drain-to-source voltage (V T- MAX): Buck VT-MAX = VIN-MAX (75) Boost VT MAX = VO (76) Buck-boost V = V +V T-MAX IN-MAX O (77) The current rating should be at least 10% higher than the maximum average NFET current (I T-MAX): Buck IT-MAX = DMAX x LED (78) Boost and Buck-boost D MAX T-MAX = x ILED 1 - D MAX (79) Approximate
in „Spule Dimensonierung Schaltnetzteil“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
bq24725.pdf
at T = 25°C, with respect to GND (unless otherwise noted) VCC J A PARAMETER TEST CONDITIONS MIN TYP MAX UNIT CHARGE CURRENT REGULATION V Charge Current Regulation Differential V = V - V 0 81.28 mV IREG_CHG_RNG Voltage Range IREG_CHG SRP SRN 3973 4096 4219 mA ChargeCurrent() = 0x1000H –3% 3% 1946 2048
in „[V] 3St TI LiIon Lade/ Batterie-Management Chips: BQ24725RG und BQ24072RG“ · Markt ·
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PDF
Ateme16.pdf
to eight bits. In phase correct PWM mode the counter is incremented until the counter value matches MAX. When the counter reaches MAX, it changes the count direction. The TCNT0 value will be equal to MAX for one timer clock cycle. The timing diagram for the phase correct PWM mode is shown on Figure 33
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Ateme16.pdf
to eight bits. In phase correct PWM mode the counter is incremented until the counter value matches MAX. When the counter reaches MAX, it changes the count direction. The TCNT0 value will be equal to MAX for one timer clock cycle. The timing diagram for the phase correct PWM mode is shown on Figure 33
in „Atmega16 und spi bus“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Spannungsregler_LP2980-adj_50mA_LDO.pdf
/OFF OUT TJ Normal operation V IN> VOUT(nom) VDO and VIN > VIN(min) VON/OFF> VON/OFF(HI) OUT < OUT(max) TJ< TSD(shutdown) Dropout operation VIN(min) VIN< VOUT(nom)+ VDO VON/OFF> VON/OFF(HI) OUT < OUT(max) TJ< TSD(shutdown) Disabled V ON/OFF< VON/ (any true condition VIN< VUVLO Not applicable TJ> TSD(
in „Geregelte negative Spannung mit LM2664 und LP2980 - geht das überhaupt?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ca3140-a.pdf
at V = 15V, T = 25 C, Unless Otherwise Specified SUPPLY A CA3140 CA3140A PARAMETER SYMBOL MIN TYP MAX MIN TYP MAX UNITS Input Offset Voltage |VIO - 5 15 - 2 5 mV Input Offset Current |IIO - 0.5 30 - 0.5 20 pA Input Current I - 10 50 - 10 40 pA FN957 Rev.10.00 Page 3 of 24 Jul 11, 2005 CA3140, CA3140A
in „OpAmp Ausgang schwingt mit 50Hz (oder 100)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tiny13_doc2535.pdf
BOTTOM. There are two cases that give a transition without Compare Match. OCR0A changes its value from MAX, like in Figure 32. When the OCR0A value is MAX the OCn pin value is the same as the result of a down-counting Compare Match. To ensure symmetry around BOTTOM the OCn value at MAX must correspond to
in „Atmel AVRs: SRAM so unwichtig?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
es51966.pdf
10sec) Electrical Characteristics TA=25°C, DGND=AGND=0V Symbol Parameter Test Condition Min. Typ. Max. Unit V+ Positive Power Supply 2.3 2.5 2.7 V V- Negative Power Supply -2.3 -2.5 -2.7 V I(V+) Operation Normal power on (V+ to V-) - 1.0 1.7 mA Supply Current I(GND) Supply Current of DGND ∆V between
in „Multimeter UT71A - defekte Kapazitätsmessung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
048_Relaisschaltungen_fuer_Bastler.pdf
110 1250 3 4 111 110 1250 6 5 IV 110 1250 8 7 V 1900 5000 9 10 4.2. Flachrelais 48 Technische Daten max. Spulenbelastung 5 W max. Spannung der Kontaktfedern gegeneinander 100 V bzw. 200V Anspreehzeit 8 bis 60 ms Abfallzeit 8 bis 250 ms 4.3. Mittleres Rundrelais Technische Daten max. Spulenbelastung f,
in „Bistabilen Zustand mit einem Taster (12v dc)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
vhdl.pdf
moglich. Syntax [|label : ] next [|loop labeli] [ when |conditioni]; Beispiel L1: for I in 1 to ITER_MAX loop außere Schleife SUM := 0; L2: while SUM < SUM_MAX loop innere Schleife ... next L1 when SUM < 0; Sprung, neue Iteration ... end loop L2; ... end loop L1; Sprungziel Exit Sprung aus einer Schleife
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PDF
vhdl.pdf
moglich. Syntax “hlabel : ˆ next “hloop labeliˆ “ when hconditioniˆ; Beispiel L1: for I in 1 to ITER_MAX loop außere Schleife SUM := 0; L2: while SUM < SUM_MAX loop innere Schleife ... next L1 when SUM < 0; Sprung, neue Iteration ... end loop L2; ... end loop L1; Sprungziel Exit Sprung aus einer Schleife
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PDF
x31ba001.f10.3__S1D13706_Spec_Rev_10.3_.pdf
DragonBall Interface with DTACK Timing MC68EZ328 MC68VZ328 Symbol Parameter 2.0V 3.3V 2.0V 3.3V Unit Min Max Min Max Min Max Min Max CLKO Bus Clock frequency 16 16 20 33 MHz T Bus Clock period 1/f 1/f 1/f 1/f ns CLKO CLKO CLKO CLKO CLKO t1 Clock pulse width high 28.1 28.1 22.5 13.5 ns t2 Clock pulse width
in „TFT-Display Controller an STM32 über FSMC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
16F648a_40044F.pdf
register It should also be taken in account that under worst case conditions (VDD = Min., Temperature = Max., max. ;into W, sets bank to original WDT prescaler) it may take several seconds before a ;state WDT time out occurs. MOVWF STATUS ;move W into STATUS ;register SWAPF W_TEMP,F ;swap W_TEMP SWAPF W_TEMP
in „16f627A schaltet RA5 u RA6 nicht“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ibm_thinkpad_t42_apollo_rev0.49_sch.pdf
RADEON M9_CSP (5/7) 64. BATTERY INPUT 4 22. RADEON M9_CSP(6/7)(7/7) 65. BATTERY MONITOR 4 23. DC/DC MAX PWR CTRL 66. POWER SEQUENCE 24. LCD CONNECTOR 67. DC-DC VCC3M/VCC5M(MAX1631) 25. ICH4-M(1/3) 68. DC-DC VCCCPUCORE (ADP3205) 26. ICH4-M(2/3) 69. DC-DC VCC1R2M/VCCCPUIO(MAX1845) 3 27. ICH4-M(3/3) 70. DC-DC VCC2R5A/VCC1R25B(MAX1845) 3 28. HDD I/F CONNECTOR 71. DC-DC VCC1R8M/VCCVIDEOCORE(MAX1844) 29. CLEAN SHEET BAY 72. VCC1R5M/A/B/AUX 30. USB POWER 73. TSURUMAI 31. AUDIO AD1981A 74. GIGABIT ETHER LOAD SW 32. AUDIO MISC 75.
in „Lenovo T42 Ladeelektronik spielt verrückt“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1306-Revision_1.1__Charge_Pump__1_.pdf
352.83 154 SEG28 1693.5 356 234 SEG107 -2069.5 356 75 VDD 1485.885 -352.83 155 SEG29 1646.5 356 235 SEG108 -2116.5 356 76 VDD 1553.185 -352.83 156 SEG30 1599.5 356 236 SEG109 -2163.5 356 77 VDD 1613.185 -352.83 157 SEG31 1552.5 356 237 SEG110 -2210.5 356 78 IREF 1684.585 -352.83 158 SEG32 1505.5 356 238
in „5V an den Datenleitungen?“ · Mikrocontroller und Digitale Elektronik ·
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PDF
SSD1306.pdf
352.83 154 SEG28 1693.5 356 234 SEG107 -2069.5 356 75 VDD 1485.885 -352.83 155 SEG29 1646.5 356 235 SEG108 -2116.5 356 76 VDD 1553.185 -352.83 156 SEG30 1599.5 356 236 SEG109 -2163.5 356 77 VDD 1613.185 -352.83 157 SEG31 1552.5 356 237 SEG110 -2210.5 356 78 IREF 1684.585 -352.83 158 SEG32 1505.5 356 238
in „OLED Grafik Anzeige“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Infineon_TLE9263QX.pdf
Voltage Regulator 2 V CC2, max -0.3 – 28 V VCC2= 40V for P_4.1.4 Load Dump, max. 400 ms; Voltage Regulator 3 V CC3REF,max-0.3 – 28 V VCC3REF= 40V for P_4.1.5 (VCC3REF) Load Dump, max. 400 ms; Voltage Regulator 3 (VCC3B)V -0.3 – V V V = 40V for P_4.1.25 CC3B,max S CC3B + 10 Load Dump, max. 400 ms; Voltage Regulator 3 V CC3SH,max VS – VS V – P_4.1.26 (VCC3SH) - 0.30 + 0.30 Wake Inputs WK1..3 V -0.3 – 40 V – P_4.1.6 WK, max Fail Pin FO1 V FO1, max -0.3 – 40 V
in „SBC für CAN/LIN bei einem 24V Bordnetz“ · Mikrocontroller und Digitale Elektronik ·
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PDF
teilpaket_2_exemplarische_quantitative_langfristanalyse_2030.pdf
GK + SK > 0 RD+ RD+ RD− RD− Markt-KW: SKRD+ = SK RD−= SK „Worst Case“: GRD+,min= 48,25 & GK RD−,max= 217,6 GKRD−,maxGKRD+,min 217,6 −48,25 € SK > 2 = 2 = 84,7 ≈ 85MWh € PSW: SKPSW = GK RD−,max= 217,6 MWh Langfristanalyse 20301.09.2083 Strafkosten (II) Kombination von kalkulatorischen Preisen und
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MS-17631_2.0.pdf
▯ } I ( ▯ 2 › 2 LED Driver IC ▯ D O ▯ î C ▯ +12V_FAN LED Forward Voltage E 2 2 1 1 SDICS ▯ +15V R_Max 2.4V x 4 pcs = 9.6V L L L L SDI_CLKL ) For EMI ▯ 3 3 3 2 2 2 1 1 1 G_Max 3.3V x 4 pcs = 13.2V C227 C100p50N0402 LED1_G L L L L L L L L L Pin Definerd 6 5 4 3 2 1 O ▯ C567 C100p50N04N2 LED1_R B_Max 3.3V
in „In Circuit Programmierer für 8-pin 150mil SOIC PM25LD512“ · Mikrocontroller und Digitale Elektronik ·
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DS_BT81X.pdf
Feature Pb Free Solder Process Non-Pb Free Solder Process Average Ramp Up Rate (T to T ) 3°C / second Max. 3°C / Second Max. s p Preheat - Temperature Min (T sin.) 100°C 150°C - Temperature Max (T sax.) 150°C 200°C - Time (tsMin to s Max) 60 to 120 seconds 60 to 120 seconds Time Maintained Above Critical
in „STM32F407 DISCOVERY mit EVE3 50GTPC von MatrixOrbital“ · Mikrocontroller und Digitale Elektronik ·
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HX8352-A.pdf
1.0μF VGH Connect to Capacitor (Max 21V): VGH ---(+)----| |--- (-)----- VSSA 1.0μF VCL Connect to Capacitor (Max 5V): VCL ---(-)----| |--- (+)----- VSSA 1.0μF C22A,C22B Connect to Capacitor (Max 7V): C22A ---(+)----| |--- (-)-----C22B