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PDF
chy100_family_datasheet.pdf
continuously stays above V schemes like optocoupler and secondary reference regulator TL431 as DAT(REF) depicted in Figure 5. (typ. 0.325 V) and below V SEL(REF)yp. 2 V) for at least 1.25 seconds CHY100 will enter Quick Charge 2.0 operation mode. If the voltage at D + drops any time below 0.325 V CHY100
in „Handy mit "Falscher" Spannungshohe laden.“ · Analoge Elektronik und Schaltungstechnik ·
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ad7706.pdf
30 mV, or go more negative than GND – 30 mV for specified performance, input DD 11voltages of GND – 200 mV can be accommodated, but with increased leakage at high temperature. VREF= REF IN(+) – REF IN(–). 12These logic output levels apply to the MCLK OUT only when it is loaded with one CMOS load. 13Sample
in „ADC7706 - Kommunikationsproblem“ · Mikrocontroller und Digitale Elektronik ·
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PDF
1809271221_Texas-Instruments-DAC5571IDBVR_C24061.pdf
2kΩ to VDD. Output Loaded with 2kΩ and 200pF to GND VDD (1V/div) V (1V/div) OUT VOUT (1V/div) Time 1μ s/div) 1m Time (20µs/div) Figure 17. Figure 18. EXITING POWER DOWN CODE CHANGE GLITCH (80HLoaded) Loaded with 2kΩ CLK (5V/div) and 200pF to
in „Hilfe bei der Berechnung (Voltage Divider)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
linkswitch-hp_family_datasheet-844868.pdf
LinkSwitch-HP eSIP-7C (E Package) 2 C A 0.403 (10.24) 0.081 (2.06) 0.264 (6.70) 0.397 (10.08) 0.077 (1.96) Ref. B Detail A 2 0.325 (8.25) 0.290 (7.37) 0.320 (8.13) Ref. 0.198 (5.04) Ref. 0.519 (13.18) Ref. Pin #1 0.207 (5.26) I.D. 0.140 (3.56) 0.016 (0.41) 0.187 (4.75) 0.120 (3.05) Ref. 0.070 (1.78) Ref. 0.047
in „Fujitsu B27T-7 TFT Monitor Netzteil defekt Bauteil 715G6503-P01-001-0010“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Baldor_VS1MX_VFD_Manual.pdf
. 2) Digital In 2 (Term. 3) Digital In 3 (Term. 4) Analog In 1 (Term. 6) Open Stop Open KeypadSpeedRef Open KeypadSpeed Ref Open Forward 0, 1, 5, 8-12 Closed Run Closed Remote Up* Closed Remote Down* Closed Reverse 2 Open Stop Open KeypadSpeedRef Open KeypadSpeedRef Open KeypadSpeedRef Closed Run Closed
in „Frequenzumformer“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
L200.pdf
1993 1/12 L200 CONNECTION DIAGRAMS AND ORDER CODES (top views) Type Pentawatt∪ TO-3 L200 L200 T L200 C L200 CH L200 CT L200 CV BLOCK DIAGRAM APPLICATION CIRCUITS Figure 1. Programmable Voltage Regulator Figure 2.ProgrammableCurrent
in „L200 Beschaltung“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
u-blox-ATCommands_Manual__UBX-13002752_.pdf
final block), range 0-7 mapped to 0 -1500 msec (3 bits); refer to 3GPP TS 04.60[41]: • 0: 500 ms • 1: 1000 ms • 2: 1500 ms • 3: 0 ms • 4: 80 ms • 5: 120 ms • 6: 160 ms • 7: 200 ms <Acc_Burst_type> Number ACCESS_BURST_TYPE, range 0-1 (mapped to 8-bit format,11-
in „GSM-Modul (SIM908) nur analoge Ausgänge für Anruf?“ · HF, Funk und Felder ·
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PDF
ZXLD1366.pdf
current sense threshold voltage Measured on I SENSE pin with VSENSE respect to IN VADJ = 1.25V; 195 200 205 mV (Defines LED current setting accuracy) V = 18V IN V SENSEHYS Sense threshold hysteresis ±15 % ISENSE ISENSE pin input current VSENSE = V IN.2 4 10 µA Measured on ADJ pin with pin V REF Internal
in „Spannungsteiler zwischen Arduino und KSQ“ · Mikrocontroller und Digitale Elektronik ·
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PDF
2097320.pdf
current sense threshold voltage Measured on I SENSE pin with VSENSE respect to IN VADJ = 1.25V; 195 200 205 mV (Defines LED current setting accuracy) V = 18V IN V SENSEHYS Sense threshold hysteresis ±15 % ISENSE ISENSE pin input current VSENSE = V IN.2 4 10 µA Measured on ADJ pin with pin V REF Internal
in „ZXLD1366 Beschaltung ADJ Pin“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
panasonic_fc_series.pdf
6.3 7 200 0.450 1000 0.45 2.5 5.0 2.5 EEAFC0J121( ) 200 2000 150 5 15 235 0.500 1000 0.50 2.0 5.0 2.5 EEUFC0J151( )✽✽✽ 200 2000 220 6.3 11.2 290 0.350 1000 0.50 2.5 5.0 2.5 EEUFC0J221( ) 200 2000 270 6.3 11.2
in „TFT Monitor Elkos“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
K4B4G1646Q-Samsung.pdf
b,16 AC160 tIS(base) 365 - 290 - 205 - 185 - ps b,16,27 Command and Address setup time to CK, CK refer- AC135 enced to V IHAC) / VILAC) levels 1.5V tIS(base) 200 - 125 - 65 - 45 - ps b,16 AC175 tIS(base) AC150 350 - 275 - 190 - 170 - ps b,16,27 1.35V tIH(base) DC90 285 - 210 - 150 - 130 - ps b,16 Command and Address hold time from CK, CK refer- enced to V IHDC) / VILDC) levels 1.5V tIH(base) DC100 275 200 140 120 - ps b,16 Control & Address Input pulse width for each input tIPW 900 - 780 - 620 - 560 - ps 28 Calibration Timing Power-up and
in „Orange Pi - 15$ Quadcore SBC“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADNS2051.pdf
between 10% and 90%) ILED tr 40 ns With HLMP-ED80-XXXXX LED (the rise time is between 10% and 90%) tf 200 ns With HLMP-ED80-XXXXX LED (the fall time is between 10% and 90%) Serial Port Transaction Timer tSPTT 0.7 0.9 1.0 s Serial port will reset if current transaction is not complete within t . (Refer to
in „Maussensor ADNS 2051 Bild auslesen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ads8331.pdf
= VBD = 5.0V t V = 4.096V 6 V = 4.096V e REF REF u 80 ) 5 C A n ( 4 o 60 I - 3 e o 40 VA = VBD = 2.7V VA = VBD = 2.7V P V = 2.500V 2 VREF= 2.500V e REF e 20 1 D 0 0 0 50 100 150 200 250 300 350 400 450 -50 -25 0 25 50 75 100 Sampling Rate (kHz
in „Versorgungsspannung ADC“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
tl431.pdf
∆VKA = 10 V – ref –1.4 –2.7 ref to the change in cathode voltage 3 KA = 10 mA mV DVKA ∆VKA = 36 V – 10 V –1 –2 ref Reference current 3 KA = 10 mA, R1 = 10 kΩ, R2 = ∞ 2 4 µA Deviation of reference current KA = 10 mA,
in „Referenzspannungsprobleme“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ss.pdf
resistors Pt100-Pt1000 5 Pt2 7 1 0 0 0 2 or 3 thermistors, 1kW-25kW, 5 Ther2 8 1 0 0 1 Resistive bridge, ref. is, +/- 200mV 3 Ub2 9 bridge 1 0 1 0 Resistive bridge, refbridge+/- 12.5mV 3 Ub1 10 1 0 1 1 Resistive bridge, rebridge+/- 200mV 3 Ib2 11 1 1 0 0 Resistive bridge, ref. i, +/- 12.5mV 3 Ib1 12 bridge
in „Temperaturmessung mit PT100 und UTI03“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DSUTI.pdf
resistors Pt100-Pt1000 5 Pt2 7 1 0 0 0 2 or 3 thermistors, 1kW-25kW, 5 Ther2 8 1 0 0 1 Resistive bridge, ref. is, +/- 200mV 3 Ub2 9 bridge 1 0 1 0 Resistive bridge, refbridge+/- 12.5mV 3 Ub1 10 1 0 1 1 Resistive bridge, rebridge+/- 200mV 3 Ib2 11 1 1 0 0 Resistive bridge, ref. i, +/- 12.5mV 3 Ib1 12 bridge
in „PT1000 mit UTI messen Berechnung der Auflösung bzw. max. Tempbereich“ · Mikrocontroller und Digitale Elektronik ·
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PDF
PCN_DN43A_20000630.pdf
CPU 935214710112 T C 1 30-6-00 30-6-00 None-noted Non- Manufacturable. Consult Marketing. PCF2042U/200V01ZD PRE-PAID MEMORY CARD ICS 935232150025 T M 1 30-6-00 30-6-00 PCF2042U/200V01YE Refer to ACPCN BLI 99-04 (5 to 6 inch wafer diameter change) Conslt Mrkg. PCF2042U/200V02ZD PRE-PAID MEMORY CARD ICS
in „Mosfet Identifikation“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ads1220.pdf
Characteristics (continued) At T A 25°C, AVDD = 3.3 V, AVSS = 0 V, and PGA enabled using external V ref= 2.5 V (unless otherwise noted). 600 120 500 100 400 80 A A ( ( D300 D 60 V V I ID 200 40 Gain = 64, 128 Turbo Mode 100 Gain = 1 to 16 20 Normal Mode PGA Disabled Duty-Cycle Mode 0 0 2.5 3.0 3.5 4.0
in „ADS1220 Temperatur SPI“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LT1082.pdf
Input Current VFB V REF 350 750 nA 1100 nA gm Error Amplifier IC= 25 A 3000 4400 6000 mho Transconductance 2400 7000 mho Error Amplifier Source or VC= 1.5V 150 200 400 A Sink Current 120 400 A Error Amplifier Clamp Hi Clamp
in „Boost Converter 2MHz 50V“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TL431.pdf
, TL432A, TL432B . . . PK (SOT-89) PACKAGE (TOP VIEW) (TOP VIEW) CATHODE REF E E O ANODE O ANODE N N A A REF CATHODE TL432, TL432A, TL432B . . . DBV (SOT-23-5) PACKAGE TL431, TL431A, TL431B . . . DBV (SOT-23-5) PACKAGE (TOP VIEW) (TOP VIEW) 1 NC 1 ANODE NC 5 REF 5 ANODE 2 NC
in „Überspannungsschutz (Crowbar) für XPORT (3.3V)“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
KAPITEL6.pdf
und ungerade Oberwellen und Intermodulationsprodukte hin untersucht. CF 7.25 MHz Start 7.15 MHz Span 200 KHz Stop 7.35 MHz Ref. Level -5 dBm ATT 10 dB RBW 300 Hz VBW 1 KHz SWP 100 msec Vert. Skalierung 10 dB/Div Anzeigemodus Logarithmisch Menüpunkt -- Marker -- Kapitel 6 Seite 20 Bild 6.XX Eingangssignal
in „Praxis Buch für Spektrumanalyser Anwendungen“ · HF, Funk und Felder ·
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PDF
3999fa-1.pdf
REF/BYP R8 R3 10k 0.01µF 52.3k 66.5k LT3999 R4 D3 39k L2 –VOUT 39µH SHDN OUT –12V RDC SWB IN COUT2 R6 200mA RT C2 ILIM 10µF 10k D4 10µF 25V ILIM/SS 50V LT3090 RBIAS D1-D4: CENTRAL SEMI. CMSH1-200HE SET
in „Halbbruecke Fragen“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
ST__L200.pdf
2000 1/12 L200 CONNECTION DIAGRAMS AND ORDER CODES (top views) Type Pentawatt∪ TO-3 L200 L200 T L200 C L200 CH L200 CT L200 CV BLOCK DIAGRAM APPLICATION CIRCUITS Figure 1. Programmable Voltage Regulator Figure 2.ProgrammableCurrent
in „liegender einstellbarer Spannungsregler“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Dsuti.pdf
resistors Pt100-Pt1000 5 Pt2 7 1 0 0 0 2 or 3 thermistors, 1kΩ-25kΩ, 5 Ther2 8 1 0 0 1 Resistive bridge, ref.bridge/- 200mV 3 Ub2 9 1 0 1 0 Resistive bridge, ref.bridge/- 12.5mV 3 Ub1 10 1 0 1 1 Resistive bridge, refbridge/- 200mV 3 Ib2 11 1 1 0 0 Resistive bridge, refbridge/- 12.5mV 3 Ib1 12 1 1 0 1 Res.
in „Periodenmessung mit AVR“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TLC2551.pdf
–MARCH 2000 TYPICAL CHARACTERISTICS SINAD ENOB vs vs FREQUENCY FREQUENCY 75 12 V = REF = 5.5 V V DD = REF = 5.5 V DD 400 KSPS 400 KSPS 73 11.5 B 71 i – B D – 11 A O I N S 69 E 10.5 67 10 65 0 20 40 60 80 100 120 140 160 180 200 0 20 40 60 80 100 120 140 160 180 200 f – Input Frequency – KHz f – Input Frequency – KHz Figure 18 Figure 19 THD vs FREQUENCY –65 V DD = REF = 5.5 V 400 KSPS –70 B –75 d – H T –80 –85 –90 0 20 40 60 80 100 120 140 160 180 200 f – Input Frequency – KHz Figure 20 16 POST OFFICE BOX 6553DALLAS, TEXAS 75265 TLC2551, TLC2552, TLC2555 5 V, LOW
in „Verständnisfrage zu AD-Wandler“ · Mikrocontroller und Digitale Elektronik ·
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PDF
DS_K4B4G1646D-BC_I_P_Rev102.pdf
Symbol Parameter Unit NOTE Min. Max. Min. Max. V (DC100) V + 100 V V + 100 V IH.CA DC input logic high REF DD REF DD mV 1,5 V (DC100) V V - 100 V V - 100 IL.CA DC input logic low SS REF SS REF mV 1,6 VIH.CA(AC175) AC input logic high V REF + 175 Note 2 - - mV 1,2,7 VIL.CA(AC175) AC input logic low Note 2
in „DDR3 RAM Datenleitung beliebig anschliessen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
NVT2001_NVT2002.pdf
direction. If both outputs are open-drain, no direction control is needed. The reference supply voltage (V ref(A)is connected to the processor core power supply voltage. When VREFB is connected through a 200 k resistor to a 3.3 V to 5.5 V V pu(D) power supply, and V ref(A)s set between 1.0 V and (V pu(D) 1
in „Brauche Hilfe beim Verstehen eines Datenblatts“ · Mikrocontroller und Digitale Elektronik ·
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PDF
MT6252_Design_Notice.pdf
Application Circuit VCHG Detection Resistor circuit If support VCHG up to 30V, please change CAP to R200 330(1%) VCDT 1uF/50V C200 R216 1u (0805 Y5V 16V) Shunt regulator for charger block 40mil 39K(1%) R210 7.5k CHR_LDO 6 5 4 Current passed HV Isolation MOSFET Component U200 C C E D203 PT236T30E2 GATDRV
in „Amparos GPS Tacker - Pollin Schnäppchen“ · Mikrocontroller und Digitale Elektronik ·
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PDF
x_amd_phenom_10h_2010_Power_and_Thermal_Data_Sheet_.pdf
A N/A 15.2 A CPU COF 6 2300 MHz 2100 MHz TDP 3 95.0W 95.0 W 95.0 W 95.0 W S0.C0.P0 VID_VDD Min 9 1.200 V 1.200 V 1.200V 1.200 V VID_VDD Max 9 1.250 V 1.250 V 1.250V 1.250 V IDD Max 3,10 73.4 A 60.3 A 73.3 A 59.6 A CPU COF 6 1150 MHz 1050 MHz TDP 3 72.2W 54.6 W 74.2 W 55.6 W S0.C0.P1 VID_VDD Min 9 1.200
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PDF
Netzteil_36V.pdf
187.2W 186W 187.2W 184.8W 187.2W 186.3W RIPPLE & NOISE (max.)Note.2150mVp-p 150mVp-p 150mVp-p 150mVp-p 200mVp-p 200mVp-p 200mVp-p 200mVp-p 200mVp-p VOLTAGEADJ. RANGE Note.510.8 ~ 13.5V13.5 ~ 17V 17 ~ 22V 22 ~ 27V 27 ~ 33V 33 ~ 40V 38 ~ 46V 43 ~ 53V 49 ~ 58V Can be adjusted by intepotentiometerAtype only
in „Netzteil funktioniert nicht richtig mit meinem Aufbau“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ina128.pdf
shows an optional circuit for trimming the output offset voltage. The voltage 47kΩ 47kΩ applied to Ref terminal is summed with the output. The op amp buffer provides low impedance at the Ref terminal to preserve good common-mode rejection. VIN Thermocouple V+ INA128 RG INA128 VO 100µA V+ Ref 1/2 REF200 IN 10kΩ 100Ω OPA177 10kΩ ±10mV Adjustment Range 100Ω INA128 100µA 1/2 REF200 Center−tap provides bias current return. V− Figure 3. Providing an Input Common-Mode Figure 2. Optional Trimming of Output Offset Current Path Voltage INPUT COMMON-MODE RANGE INPUT BIAS CURRENT RETURN
in „Probleme Spannungsmessung mit INA 128“ · Mikrocontroller und Digitale Elektronik ·
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PDF
OP_INA2126PA.pdf
THE GAIN R INA126 V V+ G ✻ O Gain is set by connecting an external resistor, R , as shown: + G VIN Ref 100µA 1/2 REF200 80kΩ (1) G = 5+ R G 100Ω OPA237 10kΩ Commonly used gains and R resistGr values are shown in ±10mV Figure 1. Adjustment Range The80kΩterminequation1comesfromtheinternalmetalfilm 100Ω
in „OPV Signal von µV Bereich verstärken“ · Mikrocontroller und Digitale Elektronik ·
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PDF
Infineon-AN-1035-ApplicationNotes-v29_01-EN.pdf
similar problems. (height M in Figure 18). The correct device height Stencils in the range of 0.125mm-0.200mm (0.005- must be used in placement programs. To determine 0.008"), with suitable reductions, give the best results. the height of a device, refer to the product data sheet. Post-reflow evaluations
in „Datenblatt zu DirectFet Mosfet gesucht“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
Modbus_RTU___Kommunikationshandbuch_fuer_EATON_DC1.pdf
DI1 DI2 DI3/AI2 DI4/AI1 (Terminal 2) (Terminal 3) (Terminal 4) (Terminal 6) 0 START DIR Select AI1 REF/f-Fix1 AI1 REF 1 FWD Select AI1 REF/f-Fix Select f-Fix Bit0 AI1 REF 2 FWD Select f-Fix Bit0 Select f-Fix Bit1 Select f-Fix/f-max 3 FWD Select AI1 REF/f-Fix1 EXTFLT AI1 REF 4 FWD Select AI1 REF/AI2 REF AI2 REF AI1 REF 51) FWD REV Select AI1 REF/f-Fix1 AI1 REF 1) 6 START DIR EXTFLT AI1 REF 71) FWD REV EXTFLT AI1 REF 8 START DIR Select f-Fix Bit0 Select f-Fix Bit1 9 FWD REV Select f-Fix Bit0 Select f-Fix Bit1
in „ich bitte um Mitt-Hilfe in Sachen RS485; Modbus; Frquenzumrichter; qModMaster“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ADS1251_24Bit_8SOIC.pdf
20 –20 –40 –40 –60 –60 B –80 B –80 ( ( i –100 i –100 G –120 a –120 G –140 –140 –160 –160 –180 –180 –200 –200 0 1 2 3 4 5 6 7 8 9 10 0 50 100 150 200 250 300 Frequency (Hz) Frequency (Hz) FIGURE 4. Normalized Digital Filter Response. FIGURE 5. Digital Filter Response (50Hz). DIGITAL FILTER RESPONSE DIGITAL
in „ADC_Auslesen mit Delay“ · Mikrocontroller und Digitale Elektronik ·
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PDF
ads122c04.pdf
2018 Typical Characteristics (continued) at TA= 25°C, AVDD = 3.3 V, and AVSS = 0 V using internal V REF = 2.048 V (unless otherwise noted) 20 300 Gain = 1 Gain = 128 250 16 s ) c V e ( r200 g12 c l O o o150 t 8 r s b O m100 N 4 50 0 -50 -25 0 25 50 75 100 125 0 3 2 1 0 1 2 3 4 5 Temperature (qC) 0 0 0
in „ads122C04 ADC 24Bit“ · Mikrocontroller und Digitale Elektronik ·
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PDF
xtr115.pdf
REVISED NOVEMBER 2003 4-20mA CURRENT LOOP TRANSMITTERS FEATURES APPLICATIONS LOW QUIESCENT CURRENT: 200 µ A 2-WIRE, 4-20mA CURRENT LOOP 5V REGULATOR FOR EXTERNAL CIRCUITS TRANSMITTER V REF FOR SENSOR EXCITATION: SMART TRANSMITTER XTR115: 2.5V INDUSTRIAL PROCESS CONTROL XTR116: 4.096V TEST SYSTEMS LOW
in „HIH 4000 an XTR115 0.4 V - 4.20mA“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM393.pdf
Typical applications Figure 6. Basic comparator Figure 7. Driving TTL V = 5V 5V CC 15kΩ 10kW +V +V (ref) (ref) 1/2 1/2 & LM193 VO LM193 -V -V (ref) (ref) & Figure 8. Low frequency op-amp Figure 9. Driving CMOS 5V (eo= 0V forIe= 0V) 5V 15kW 1/2 LM193 2N 2222 100k W ~ eI 0.m F +V (ref) 1/2 & LM193 100kW
in „Spannungsregler mit Strombegrenzung - geht das so?“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
uP1542-DS-F00A0.pdf
OCP). VREF with 1.0% Accuracy: uP1542S/U: 0.6V V The uP1542 adopts constant frequency, voltage mode REF control scheme, featuring easy-to-use, low external uP1542T/Q/V: 0.8V V REF component count, and fast transient response. Fixed Stand Alone Mode Operation 300kHz operation provides an optimal level
in „Ersatz Mosfet für ein Defektes Nas System“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
MAX534.pdf
SYSTEM GND positive output is the lower endpoint. Power Sequencing OUTC OUTB The voltage applied to REF should not exceed V DD at OUTD OUTA any time. If proper power sequencing is not possible, connect an external Schottky diode between REF and AGND REF VDD to ensure compliance with the absolute maximum
in „D/A Wandler und der reference pin...“ · Mikrocontroller und Digitale Elektronik ·
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PDF
C462925.pdf
) TJ= 25°C V 500 A VQ= 0 V m T = 125°C ( E J T 600 G 400 E T R L U V 300 C400 P T = 25°C T O J P R 200 T , O D , 200 V 100 IQ 0 0 0 100 200 300 400 0 10 20 30 40 50 IQ, OUTPUT CURRENT (mA) VI, INPUT VOLTAGE (V) Figure 16. Dropout Voltage vs. Figure 17. Maximum Output Current vs. Output Current Input
in „Verpolungsschutz“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
apr18650m1a.pdf
temperature and SOC Temp(°C) %SOC 0% 10% 20% 30% 40% 50% 60% 70% 80% 90% 100% 85 0 0 0 0 0 0 0 0 0 0 0 65 200 200 200 200 200 200 200 200 200 200 0 30 200 200 200 200 200 200 200 200 200 200 0 25 200 200 200 200 200 200 200 200 200 200 0 200 200 200 200 200 200 200 200 200 200 0 15 10 200 185 173 161 158 158
in „Dimensionsionierung von Lötfahnen an Hochstrom-Rundzellen“ · Mechanik, Gehäuse, Werkzeug ·
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Datei
main.c
zum Akku-Spannung-Messen (Kanal, Referenzspannung, Prescaler, ... einstellen) cli(); ADMUX = (0<<REFS1) | (0<<REFS0) | (0<<ADLAR) | (1<<REFS2) | (1<<MUX3) | (1<<MUX2) | (0<<MUX1) | (0<<MUX0); // RefVoltage = Vcc (#°17-3); InputChannel (ADC-Input) = Bandgap-Referenz (#°17-4); ADCSRA |= (0<<ADEN) | (0
in „Tiefentladungsschutz mit Attiny und P-Kanal Fet“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM3914.pdf
8 12 17 k Accuracy (Note 3) 0.5 2 % VOLTAGE REFERENCE Output Voltage 0.1 mA ≤ IL(REF)≤ 4 mA, += = 1.2 1.28 1.34 V V V LED 5V Line Regulation 3V ≤ V ≤ 18V 0.01 0.03 %/V Load Regulation 0.1 mA ≤ IL(REF)≤ 4 mA, 0.4 2 % V += V LED= 5V Output Voltage Change with 0˚C ≤ TA≤ +70˚C, IL(REF)=
in „Frage zu LM3914“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM3914.pdf
8 12 17 k Accuracy (Note 3) 0.5 2 % VOLTAGE REFERENCE Output Voltage 0.1 mA ≤ IL(REF)≤ 4 mA, += = 1.2 1.28 1.34 V V V LED 5V Line Regulation 3V ≤ V ≤ 18V 0.01 0.03 %/V Load Regulation 0.1 mA ≤ IL(REF)≤ 4 mA, 0.4 2 % V += V LED= 5V Output Voltage Change with 0˚C ≤ TA≤ +70˚C, IL(REF)=
in „Drehzahlerfassung und Ausgabe“ · Mikrocontroller und Digitale Elektronik ·
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PDF
LM3914.pdf
8 12 17 k Accuracy (Note 3) 0.5 2 % VOLTAGE REFERENCE Output Voltage 0.1 mA ≤ IL(REF)≤ 4 mA, += = 1.2 1.28 1.34 V V V LED 5V Line Regulation 3V ≤ V ≤ 18V 0.01 0.03 %/V Load Regulation 0.1 mA ≤ IL(REF)≤ 4 mA, 0.4 2 % V += V LED= 5V Output Voltage Change with 0˚C ≤ TA≤ +70˚C, IL(REF)=
in „LM 3914 Kaskade“ · Analoge Elektronik und Schaltungstechnik ·
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PDF
LM3914.pdf
8 12 17 k Accuracy (Note 3) 0.5 2 % VOLTAGE REFERENCE Output Voltage 0.1 mA ≤ IL(REF)≤ 4 mA, += = 1.2 1.28 1.34 V V V LED 5V Line Regulation 3V ≤ V ≤ 18V 0.01 0.03 %/V Load Regulation 0.1 mA ≤ IL(REF)≤ 4 mA, 0.4 2 % V += V LED= 5V Output Voltage Change with 0˚C ≤ TA≤ +70˚C, IL(REF)=
in „LM3914 Display-Driver“ · Mikrocontroller und Digitale Elektronik ·
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PDF
TL7705_PoR.pdf
T i o 32 e r s 2 s a s D – 28 – 1.6 RESET tr t t 24 RESET tf 1.2 20 0.8 0 25 50 75 100 125 150 175 200 0 25 50 75 100 125 150 175 200 C L Load Capacitance – pF CL– Load Capacitance – pF Figure 4 Figure 5 † For proper operation, both RESET and RESET should be terminated with resistors of similar value
in „Externer Baustein für BOD“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L6374FP_01.pdf
2.0 V 9, 10 External Bias VS = 12 to 35V -0.2 5.0 V Vil Input Low Level VREF Externally Biased -7 V REF V -0.2 Pin VREFFloating -7 0.8 V V ih Input High Level V Externally Biased V 35 V REF REF +0.2 Pin VREF Floating 2 35 V Vi Input Voltage (Operative Range) -7 35 V Ibias Input Bias Current 0 < Vi< VS
in „Treiberbaustein“ · Mikrocontroller und Digitale Elektronik ·
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PDF
L6374FP_01.pdf
2.0 V 9, 10 External Bias VS = 12 to 35V -0.2 5.0 V Vil Input Low Level VREF Externally Biased -7 V REF V -0.2 Pin VREFFloating -7 0.8 V V ih Input High Level V Externally Biased V 35 V REF REF +0.2 Pin VREF Floating 2 35 V Vi Input Voltage (Operative Range) -7 35 V Ibias Input Bias Current 0 < Vi< VS
in „Push Pull Ausgangsstufe“ · Analoge Elektronik und Schaltungstechnik ·