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Tabelle der Single-Ended I/O Standards Spezifikationen für Intel MAX 10
Single-Ended I/O Standards Specifications for Intel MAX 10 Devices Table 20. Single-Ended I/O Standards Specifications I/O Standard, VCCIO (V) Min/Typ/Max, VIL (V) Min/Max, VIH (V) Min/Max, VOL (V) Min/Max, VOH (V) Min/Max, IOL (mA), IOH (mA) 3.3 V LVTTL
in „MAX10 SC nur mit 3.3V Versorgt differentieller HSTL 1.8V Input?“ · FPGA, VHDL & Co. · · Screenshots
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Blockschaltbild der IOE-Struktur in bidirektionaler Konfiguration
Figure 2. IOE Structure in Bidirectional Configuration io_clk[5..0] Column or Row Interconnect OE clkout oe_out aclr/prn Chip-Wide Reset data_in1 data_in0 sclr/preset Input Register OE Register Output Register Input Pin to Input Register Delay or Input Pin to Logic Array Delay Input Register OE Register Output Register Input Register Output Pin Delay Current Strength Control Open-Drain Out Slew Rate Control VCCIO Optional PCI Clamp VCCIO Programmable Pull-Up Resistor Bus Hold clkin oe_in
in „MAX10 IO Standards“ · FPGA, VHDL & Co. · · Diagramme
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Blockschaltbild IOE Struktur in bidirektionaler Konfiguration
IOE Structure in Bidirectional Configuration io_clk[5..0] Column or Row Interconnect OE clkout oe_out aclr/prn Chip-Wide Reset Output Register Output Pin Delay Output Register Output Pin to Input Register Delay or Input Pin to Logic Array Delay Input Register clkout aclr/prn ENA ACLR/PRN Input Register data_in1 data_in0 Input Pin to Input Register Delay or Input Pin to Logic Array Delay Output Strength Control Open Drain Slew Rate Control VCCIO Optional PCI Clamp VCCIO Programmable Pull-Up Resistor Bus Hold
in „I/O Constraints Intel“ · FPGA, VHDL & Co. · · Diagramme
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Debounce_Test_max10.vhd
library ieee; use ieee.std_logic_1164.all; use ieee.numeric_std.all; entity Debounce_Test_max10 is port ( -- -- CLOCK -- i_clk_25 : in std_logic; -- -- UART -- i_uart_rx : in std_logic; -- o_uart_tx : out std_logic; -- -- ADC -- o_adc_cnv : out std_logic; -- o_adc_sck : out std_logic; -- o_adc_mosi
in „Ein wirklich blöder Fehler, den ich nicht sehe“ · FPGA, VHDL & Co. ·
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Informationsblatt zum u-blox MAX-F10 GNSS Modul
MAX-F10 module L 1/L5 dual-band GNSS receiver for meter-level accuracy in urban environments ublox P Standard Professional Automotive LEXI-R422 module
in „EmbeddedWorld 2024 – Funkmodule im Fokus“ · Mikrocontroller und Digitale Elektronik · · Fotos
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Coherent PowerMax PS10Q Sensor oder Anschlussmodul
Serial # 0147G02 Item # 0012-4600 Model PS10Q Made in USA COHERENT PowerMax®
in „KONTRON Uvikon Spectrophotometer, Spiricon beamanalyzer“ · Markt · · Fotos
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LTspice Schaltplan und Simulationsergebnis
LTspice XVII - MicroMax - LTspice XVII.asc V+ U1 D1 V1 V1 1N4148 Vo PULSE(0 10 100m 500m 500m 1 4) .tran 1 V+ U2 D2 V2 V2 1N4148 Vo 2 10k V(o(t)) 10V 9V 7V 5V 3V 1V 0V 0s 0.1s 0.2s 0.3s 0.4s 0.5s 0.6s 0.7s 0.8s 0.9s
in „0-10V Steuerung mit 2 Quellen“ · Analoge Elektronik und Schaltungstechnik · · Screenshots
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10.04.MODBUSMasterMAX485_Anemometer.ino
/TX2 // instantiate ModbusMaster object ModbusMaster modbus; void preTransmission() { digitalWrite(MAX485_RE_NEG, HIGH); //Switch to transmit data } void postTransmission() { digitalWrite(MAX485_RE_NEG, LOW); //Switch to receive data } void setup() { pinMode(MAX485_RE_NEG, OUTPUT); // Init in receive
in „NODEMCU ESP32 Anemometer RS485 MAX485“ · Mikrocontroller und Digitale Elektronik ·
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Datei
STM32_Init.c
Purpose Output push-pull (max speed 50MHz) // <7=>General Purpose Output open-drain (max speed 50MHz) // <9=>Alternate Function push-pull (max speed 10MHz) // <13=>Alternate Function open-drain (max speed 10MHz) // <10=>Alternate
in „Frage zu ST-Mikrocontrollern mit eMios“ · Mikrocontroller und Digitale Elektronik ·
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Datei
STM32_Init.c
Purpose Output push-pull (max speed 50MHz) // <7=>General Purpose Output open-drain (max speed 50MHz) // <9=>Alternate Function push-pull (max speed 10MHz) // <13=>Alternate Function open-drain (max speed 10MHz) // <10=>Alternate
in „ARM STM32 Eingänge werden nicht erkannt“ · Mikrocontroller und Digitale Elektronik ·
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Datei
STM32_Init.c
Purpose Output push-pull (max speed 50MHz) // <7=>General Purpose Output open-drain (max speed 50MHz) // <9=>Alternate Function push-pull (max speed 10MHz) // <13=>Alternate Function open-drain (max speed 10MHz) // <10=>Alternate
in „ARM STM32 Eingänge werden nicht erkannt“ · Mikrocontroller und Digitale Elektronik ·
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MAX4249-MAX4257.pdf
10 Gain Margin GM dB MAX4249/MAX4255/MAX4256/MAX4257, 12.5 AV = 10V/V MAX4250–MAX4254, A = VV/V 74 Phase Margin ΦM MAX4249/MAX4255/MAX4256/MAX4257, Degrees A = 10V/V 68 V MAX4250–MAX4254 6.7 To 0.01%,V
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MAX220-MAX249.pdf
2 MAX242 0.5 10 TLL (Shutdown) μs tPHLS , Figure 2 MAX242 2.5 10 Receiver-Output Enable Time tER MAX242, Figure 3 125 500 ns Receiver-Output Disable Time tDR MAX242, Figure 3 160 500 ns MAX222/MAX242, 0.1μF
in „16 Wide SO Gehäuseform SMD-IC“ · Mikrocontroller und Digitale Elektronik ·
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MAX63xx.pdf
VOUT MAX6325 +25°C 2.499 2.500 2.501 V MAX6325C_A C 0.5 1.0 Output Voltage Temperature TCVOUT MAX6325E_A E 0.75 1.5 ppm/°C Coefficient (Note 1) MAX6325MJA M 1.0 2.5 +25°C 10 18 C 30 8V ≤ IN ≤ 10V E 35 ∆VOUT
in „Oszi und DMM selber kalibrieren“ · Analoge Elektronik und Schaltungstechnik ·
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001123728-da-01-en-IC_SPREF_SERIE_5V_MAX6350EPA__DIP_8_MAX.pdf
VOUT MAX6325 +25°C 2.499 2.500 2.501 V MAX6325C_A C 0.5 1.0 Output Voltage Temperature TCVOUT MAX6325E_A E 0.75 1.5 ppm/°C Coefficient (Note 1) MAX6325MJA M 1.0 2.5 +25°C 10 18 C 30 8V ≤ IN ≤ 10V E 35 ∆VOUT
in „Frage zur Spannungsreferenz“ · Mikrocontroller und Digitale Elektronik ·
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MAX5494-MAX5499.pdf
_ -120 A 400ns/div 0.01 0.1 1 10 100 1000 FREQUENCY (kHz) M THD+N vs. FREQUENCY THD+N vs. FREQUENCY (MAX5495/MAX5499) (MAX5494/MAX5498) 10 10 c CW_ = 10pF t C W_ = 10pF 4 CODE = 01111 01111 5 CODE = 01111 01111 X A 1 M 1 M ) % 0.1 (
in „Digitalpoteniometer für Audio-Anwendung“ · Mikrocontroller und Digitale Elektronik ·
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max232.pdf
0.1 No — 200 Open-line detection simplifies cabling MAX244 +5 8/10 4 1.0 No — 120 High slew rate MAX245 +5 8/10 0 — Yes ✔ 120 High slew rate, int. caps, two shutdown modes MAX246 +5 8/10 0 — Yes ✔ 120 High slew rate, int. caps, three shutdown modes MAX247
in „Trackball dsub9w auf PS2m Belegung?“ · PC Hard- und Software ·
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MAX232.pdf
No — 200 Open-line detection simplifies cabling MAX244 +5 8/10 4 1.0 No — 120 High slew rate MAX245 +5 8/10 0 — Yes 120 High slew rate, int. caps, two shutdown modes MAX246 +5 8/10 0 — Yes 120 High slew rate, int. caps, three shutdown modes MAX247 +5
in „MAX232 Reichelt“ · Mikrocontroller und Digitale Elektronik ·
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MAX220-MAX249.pdf
0.1 No — 200 Open-line detection simplifies cabling MAX244 +5 8/10 4 1.0 No — 120 High slew rate MAX245 +5 8/10 0 — Yes ✔ 120 High slew rate, int. caps, two shutdown modes MAX246 +5 8/10 0 — Yes ✔ 120 High slew rate, int. caps, three shutdown modes MAX247
in „avr prog und device- auswahl“ · Mikrocontroller und Digitale Elektronik ·
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max232cpe.pdf
0.1 No — 200 Open-line detection simplifies cabling MAX244 +5 8/10 4 1.0 No — 120 High slew rate MAX245 +5 8/10 0 — Yes ✔ 120 High slew rate, int. caps, two shutdown modes MAX246 +5 8/10 0 — Yes ✔ 120 High slew rate, int. caps, three shutdown modes MAX247
in „UART Problem mit Baudrate“ · Mikrocontroller und Digitale Elektronik ·
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453523_1.pdf
0.1 No — 200 Open-line detection simplifies cabling MAX244 +5 8/10 4 1.0 No — 120 High slew rate MAX245 +5 8/10 0 — Yes ✔ 120 High slew rate, int. caps, two shutdown modes MAX246 +5 8/10 0 — Yes ✔ 120 High slew rate, int. caps, three shutdown modes MAX247
in „Bitte um Überprüfung“ · Mikrocontroller und Digitale Elektronik ·
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MAX232.pdf
0.1 No — 200 Open-line detection simplifies cabling MAX244 +5 8/10 4 1.0 No — 120 High slew rate MAX245 +5 8/10 0 — Yes ✔ 120 High slew rate, int. caps, two shutdown modes MAX246 +5 8/10 0 — Yes ✔ 120 High slew rate, int. caps, three shutdown modes MAX247
in „Problem mit RS232“ · Mikrocontroller und Digitale Elektronik ·
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MAX232.pdf
0.1 No — 200 Open-line detection simplifies cabling MAX244 +5 8/10 4 1.0 No — 120 High slew rate MAX245 +5 8/10 0 — Yes ✔ 120 High slew rate, int. caps, two shutdown modes MAX246 +5 8/10 0 — Yes ✔ 120 High slew rate, int. caps, three shutdown modes MAX247
in „Welche Bedeutung....“ · Mikrocontroller und Digitale Elektronik ·
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MAX9812-MAX9813L.pdf
vs. FREQUENCY 10 4 10,000 o t 1 0 MAX9813 1 X VIN1= 100mVRMS A M -10 M z ) -20 √1000 d -30 V K ( A -40 I S IN1 TO OUT WITH O S -50 S R IN2 SELECTED I 100 C -60 B -70 -80 -90 10 -100 10 100 1k 10k 100k 10 100 1k 10k 100k
in „Richtiger Anschluss einer Elektretkapsel“ · Analoge Elektronik und Schaltungstechnik ·
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Cosel_LEB100F-512.pdf
mVp-p] -10-C *4 160max 180max 160max 180max 160max 180max 160max 360max 160max 360max 0to+50C 50max 120max 50max 240max 50max 240max 50max 300max 50max 300max TEMPERATUREREGULATION[-10to+C0 60max 150max 60max 290max
in „Schaltnetzteil Cosel LEB100F-512 Fehlersuche“ · Analoge Elektronik und Schaltungstechnik ·
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MAX4465-MAX4469.pdf
100 G V X 95 1.2 115 4 90 1.1 4 85 6 80 110 1.0 0 0.5 1.0 1.5 2.0 2.5 3.0 3.5 4.0 4.5 5.0 -40 -15 10 35 60 85 -40 -15 10 35 60 85 9 V (V) TEMPERATURE ( C° TEMPERATURE ( C° OUT MAX4465/MAX4467/MAX4469 MAX4466/MAX4468 MAX4465/MAX4467/MAX4469 TOTAL HARMONIC DISTORTION PLUS NOISE TOTAL HARMONIC DISTORTION
in „Funktioniert denn kein Mikrofon-Vorverstärker?!?“ · Analoge Elektronik und Schaltungstechnik ·
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MAX4194-MAX4197.pdf
amplifier is also offered in 93µA Supply Current 4 8µA Shutdown Current 1 three fixed-gain versions: the MAX4195 (G = +1V/V), the 9 MAX4196 (G = +10V/V), and the MAX4197 (G = (MAX4195/MAX4196/MAX4197) +100V/V). The fixed-gain instrumentation amplifiers fea- High Common-Mode Rejection: 115dB (G = +10V/V) 4
in „ADC nicht sauber sinus auf oszi“ · Mikrocontroller und Digitale Elektronik ·
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ug_m10_config.pdf
MAX 10 FPGA Configuration User Guide UG-M10CONFIG 2017.07.20 Subscribe Send Feedback Contents Contents 1 MAX ® 10 FPGA Configuration Overview.............................................................
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MAX312-MAX314.pdf
COM2 COM1 2 15 COM2 NC1 3 14 NC2 NO1 3 14 NO2 NO1 3 14 NC2 V- 4 13 V+ V- 4 13 V+ V- 4 13 V+ GND 5 MAX312 12 VL GND 5 MAX313 12 VL GND 5 MAX314 12 VL NC4 6 11 NC3 NO4 6 11 NO3 NO4 6 11 NC3 COM4 7 10 COM3 COM4 7 10 COM3 COM4 7 10 COM3 8 9 IN4 IN3 IN4 8 9 IN3 IN4 8 9 IN3 DIP/SO/TSSOP DIP/SO/TSSOP DIP/SO
in „Frage zum Datenblatt max313 analogschalter“ · Analoge Elektronik und Schaltungstechnik ·
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max1481-max1486.pdf
error-free data transmission MAX1485EUB -40°C to +85°C 10 µMAX 4 up to 250kbps. The MAX1484/MAX1486 driver slew MAX1486CUB 0°C to +70°C 10 µMAX 8 12Mbps.re not limited, allowing them to transmit up to MAX1486EUB -40°C to +85°C 10 µMAX
in „MODBUS Protokoll MSP430“ · Mikrocontroller und Digitale Elektronik ·
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MAX4210-MAX4211.pdf
0.16 1.10 V V RS+Full-Scale Voltage MAX421_A/B/C, VSENSE = 10mV to 25 V (Note 4) 100mV V RS+Input Voltage Range VRS+ MAX421_A/B/C, VSENSE = 10mV to 4 28 V (Note 5) 100mV Current into IOUT = 10µA 1.5 VSENSE = Current
in „Überstromschalter für Fensterheber“ · Mikrocontroller und Digitale Elektronik ·
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max232.pdf
noted. Typical values 1 are at A= +25°C.) 2 PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS X DC CHARACTERISTICS A MAX202E/203E 8 15 MAX205E–208E 11 20 M V Supply Current I No load, T = +25°C MAX211E/213E 14 20 mA – CC CC A E MAX232E 5 10 2 MAX241E 7 15 0 MAX205E/206E 1 10 Shutdown Supply Current T = +25°C, Figure 1 MAX211E/241E 1 10 µA 2 A X MAX213E 15 50 A LOGIC Input Pull-Up Current T_IN = 0V (MAX205E–208E/211E/213E/241E) 15 200 µA M Input Leakage Current T_IN = 0V toCC (MAX202E/203E/232E) ±10 µA Input Threshold
in „ATMega8L an USB per max232“ · Mikrocontroller und Digitale Elektronik ·
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MAX232.pdf
noted. Typical values 1 are at A= +25°C.) 2 PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS X DC CHARACTERISTICS A MAX202E/203E 8 15 MAX205E–208E 11 20 M V Supply Current I No load, T = +25°C MAX211E/213E 14 20 mA – CC CC A E MAX232E 5 10 2 MAX241E 7 15 0 MAX205E/206E 1 10 Shutdown Supply Current T = +25°C, Figure 1 MAX211E/241E 1 10 µA 2 A X MAX213E 15 50 A LOGIC Input Pull-Up Current T_IN = 0V (MAX205E–208E/211E/213E/241E) 15 200 µA M Input Leakage Current T_IN = 0V toCC (MAX202E/203E/232E) ±10 µA Input Threshold
in „Mikrocontrollerboard: Funktioniert das?“ · Mikrocontroller und Digitale Elektronik ·
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MAX232_MAX.pdf
noted. Typical values 1 are at A= +25°C.) 2 PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS X DC CHARACTERISTICS A MAX202E/203E 8 15 MAX205E–208E 11 20 M V Supply Current I No load, T = +25°C MAX211E/213E 14 20 mA – CC CC A E MAX232E 5 10 2 MAX241E 7 15 0 MAX205E/206E 1 10 Shutdown Supply Current T = +25°C, Figure 1 MAX211E/241E 1 10 µA 2 A X MAX213E 15 50 A LOGIC Input Pull-Up Current T_IN = 0V (MAX205E–208E/211E/213E/241E) 15 200 µA M Input Leakage Current T_IN = 0V toCC (MAX202E/203E/232E) ±10 µA Input Threshold
in „AVR an Handy C35“ · Mikrocontroller und Digitale Elektronik ·
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MAX202E-MAX241E.pdf
noted. Typical values 1 are at A= +25°C.) 2 PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS X DC CHARACTERISTICS A MAX202E/203E 8 15 M MAX205E–208E 11 20 – VCC Supply Current ICC No load, A = +25°C MAX211E/213E 14 20 mA E MAX232E 5 10 MAX241E 7 15 2 0 MAX205E/206E 1 10 2 Shutdown Supply
in „Touch-screen“ · Mikrocontroller und Digitale Elektronik ·
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MAX7393-MAX7394.pdf
following the part number is found 1 CC CLOCK OSC1 µC in the Selector Guide. +Denotes lead-free package. MAX7393 Note: The MAX7394 is available in factory-set frequencies from CLKIN OSC2 922kHz to 48MHz. The MAX7393 is available in factory-set I.C.GND frequencies from 922kHz to 20MHz. There are 10 standard
in „Suche Halbleiter-Oszillator 13,56 MHz“ · HF, Funk und Felder ·
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max5056.pdf
MAX5054AATA (CMOS INPUT) MAX5054AATA (CMOS INPUT) VDD = 4.5V,LC = 10,000pF VDD = 15V, L = 10,000pF 0 -6 -6 0 2 4 6 8 10 12 14 16 -50 -25 0 25 50 75 100 125 -50 -25 0 25 50 75 100 125 LOGIC-INPUT VOLTAGE
in „Dual Mosfet Treiber“ · Analoge Elektronik und Schaltungstechnik ·
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MAX4238-MAX4239.pdf
stable with a gain-band- ♦ Low Noise: 1.5µV P-P from DC to 10Hz A width product of 1MHz, while the decompensated X MAX4239 is stable with A V ≥ 10V/V and a GBWP of ♦ 150dB A VOL , 140dB PSRR, 140dB CMRR 6.5MHz. The MAX4238/MAX4239 are available in 8-pin ♦ High
in „Meßverstärker für 1/f-Rauschen 0.1 - 10 Hz“ · Analoge Elektronik und Schaltungstechnik ·
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MAX603-MAX604.pdf
MAX60_E 10 µA MAX60_M 20 MAX60_C 2 Minimum Load Current OUT MIN V IN= 11.5V, SET = OUT MAX60_E 6 µA MAX60_M 20 Foldback Current Limit VOUT < 0.8V 350 (Note 4) LIM V > 0.8V and V - V > 0.7V 1200 mA OUT IN
in „Logikanalzyer mit FT232BL“ · Mikrocontroller und Digitale Elektronik ·
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ICL7660.pdf
-(V+) V+ C 1 8 1 2 MAX1044 7 BYPASS 2 7 0 10µF ICL7660 10µF MAX1044 4 3 6 * 10µF 3 6 COSC 4 VOUT= -(V+) 4 5 4 5 I 10µF C *REQUIRED FOR V+ < 3.5V L 7 Figure 5. Basic Negative Voltage Converter Figure 6. Negative Voltage Converter
in „neg. Spannung mit Z-Diode erzeugen“ · Analoge Elektronik und Schaltungstechnik ·
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ICL7660-MAX1044.pdf
-(V+) V+ C 1 8 1 2 MAX1044 7 BYPASS 2 7 0 10µF ICL7660 10µF MAX1044 4 3 6 * 10µF 3 6 COSC 4 VOUT= -(V+) 4 5 4 5 I 10µF C *REQUIRED FOR V+ < 3.5V L 7 Figure 5. Basic Negative Voltage Converter Figure 6. Negative Voltage Converter
in „OP Spannung 1,82V bei Min.“ · Mikrocontroller und Digitale Elektronik ·
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LM_4040.pdf
1 mA ≤ IR≤ 15 mA 2.5 mV FOR FNXref 6.0 8.0 8.0 mV (max) NS4914*) 8.0 10.0 10.0 mV (max) Z R Reverse Dynamic R = 1 mA, f = 120 Hz 0.3 Ω Impedance AC = 0.1 R 0.9 1.1 1.1 Ω(max) e N Wideband Noise R = 100 µA 35 µVrms 10 Hz ≤ f ≤ 10 kHz ∆V Reverse Breakdown
in „4,096V Referenzspannung“ · Mikrocontroller und Digitale Elektronik ·
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x_amd_phenom_10h_2010_Power_and_Thermal_Data_Sheet_.pdf
22 N/A 77.0 W S0.C0.P2 VID_VDD Min 9 N/A 1.050 V VID_VDD Max 9 N/A 1.325 V IDD Max 3,10 N/A 51.2 A CPU COF 6 N/A 800 MHz TDP 22 N/A 53.8 W S0.C0.P3 VID_VDD Min 9 N/A 1.000 V VID_VDD Max 9 N/A 1.225 V IDD Max 3,10 N/A 31.9 A Core Power (Pre-Flush) 20 N/A 15.7
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MAX1270-MAX1271B.pdf
_B ±10 Channel-to-Channel Offset Error Unipolar ±0.1 Matching Bipolar ±0.3 LSB Unipolar MAX127_A ±7 MAX127_B ±10 Gain Error (Note 2) LSB Bipolar MAX127_A ±7 MAX127_B ±10 Unipolar, external reference ±3 Gain
in „Max1270 Eingang auf mind. 0,8V ?“ · Mikrocontroller und Digitale Elektronik ·
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INTERFACE_20.pdf
aufnahme Stromaufnahme ESD- Datenrate spannung (V) Tx/Rx duplex (mA) im Shutdown (µA) Schutz (bps) MAX3093E 4,75 bis 5,25 0/4 — 2,4 1 Ja 10M MAX3094E 3,0 bis 3,6 0/4 — 2,4 1 Ja 10M MAX3095 4,75 bis 5,25 0/4 — 2,4 1 Ja 10M MAX3096 3,0 bis 3,6 0/4 — 2,4 1 Ja 10M MAX3097E 3,0 bis 5,5 0/3 — 3,1 — Ja 32M
in „galvanische Trennung RS232“ · Mikrocontroller und Digitale Elektronik ·
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MAX196-MAX198.pdf
2) MAX196A/MAX198A ±7 Bipolar MAX196B/MAX198B ±10 Gain Temperature Coefficient Unipolar 3 ppm/°C (Note 2) Bipolar 5 DYNAMIC SPECIFICATIONS (10kHz sine-wave input, ±10Vp-p (MAX196) or ±4.096Vp-p (MAX198)SAMPLE
in „12 bit AD- und DA-Wandler (parallel) gesucht“ · Mikrocontroller und Digitale Elektronik ·
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MAX639-MAX653.pdf
L = 100µH 3 100 L = 470µH 3 100 L = 470µH 3 V+= 9V A M V+ = 9V M M 90 90 90 ) ) ) ( ( ( C 80 C 80 MAX639, V+ = 6V C 80 I MAX639 I MAX653, V+ = 4V3V I MAX639 I MAX640 I I 70 MAX640 E 70 MAX653 E 70 E MAX653 60 60 60 50 50 50 10µ 100µ 1m 10m 100m 1 10µ 100µ 1m 10m 100m 10µ 100µ 1m 10m 100m OUTPUT CURRENT
in „Spannung am Ausgang eines Converters anlegen“ · Mikrocontroller und Digitale Elektronik ·
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battery_mm_3474_e.pdf
1 Max.15 10 10 Latch MM3474C05VBE 4.25 4.15 2.8 3 150 0.25 1 0.1 1 Max.15 10 10 Non Latch MM3474D01VBE 3.85 3.65 2.3 2.5 150 1 1 0.1 1 Max.15 10 10 Non Latch MM3474D03VBE 3.8 3.6 2 2.5 150 0.6 1 0.1 1 Max.15 10 10 Non Latch MM3474E01VBE 4.25 4.15 2.8 3 150 1 1 0.1 1 Max.15 10 10 Non Latch MM3474E02VBE 4.2 4.1 2.8 3 150 1 1 0.1 1 Max.15 10 10 Non Latch MM3474E03VBE 4.175 4.1 2.8 3 150 0.5 1 0.1 1 Max.15 10 10
in „Defekte BMS-Platine Rasenmäher-Roboter - Ursachenforschung“ · Platinen ·
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MAX127-MAX128B.pdf
1.25 X MAX127 0 10 1 Unipolar, 0 5 2 Table 3 0 V 8 MAX128 REF 0 V REF/2 Input Voltage Range VIN -10 10 V MAX127 Bipolar, -5 5 Table 3 -VREF VREF MAX128 -V /2 V /2 REF REF MAX127 0 to 10V range -10 720 Unipolar 0 to 5V range -10 360 MAX128 -10 0.1 10 Input Current IIN ±10V range -1200 720 µA MAX127 ±5V range -600 360 Bipolar MAX128 ±VREF range -1200 10 ±VREF/2 range -600 10 Unipolar 21 Input Resistance ∆V IN kΩ ∆IN Bipolar 16
in „Probleme mit Max127 (i2c adc) und m644p (gcc)“ · Mikrocontroller und Digitale Elektronik ·
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0900766b80f702e6.pdf
1.25 X MAX127 0 10 1 Unipolar, 0 5 2 Table 3 0 V 8 MAX128 REF 0 V REF/2 Input Voltage Range VIN -10 10 V MAX127 Bipolar, -5 5 Table 3 -VREF VREF MAX128 -V /2 V /2 REF REF MAX127 0 to 10V range -10 720 Unipolar 0 to 5V range -10 360 MAX128 -10 0.1 10 Input Current IIN ±10V range -1200 720 µA MAX127 ±5V range -600 360 Bipolar MAX128 ±VREF range -1200 10 ±VREF/2 range -600 10 Unipolar 21 Input Resistance ∆V IN kΩ ∆IN Bipolar 16
in „MAX127BCAI Bipolar nur in diff mode?“ · Mikrocontroller und Digitale Elektronik ·