between short circuits: >1s. 1 Rev. 2.3 July 07 SGB10N60A Thermal Resistance Parameter Symbol Conditions Max. Value Unit Characteristic IGBT thermal resistance, R thJC 1.35 K/W junction – case Thermal resistance, R thJA 40 junction – ambient Electrical Characteristic, aj T25 °C, unless otherwise specified Value Parameter Symbol Conditions Unit min. Typ. max. Static Characteristic Collector-emitter breakdown voltageV (BR)CES V GE=0V, I C500µA 600 - - V Collector-emitter saturation voltage V = 15V, I =10A CE(sat) GE C T j25°C 1.7 2 2.4 T j150°C - 2.3 2.8
point (max.) Rth JS 11** 11** 11** K/W * Einzelgruppen siehe Seite 5 Individual groups on page 5 **R (max) basiert auf statistischen Werten R (max) is based on statistic values th 2010-06-02 4 Released LR W5AM
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
Noninverting Input3 6 Output 5 4 –VS 4 5 NC A57 1 2 3 Pin Orientation/Package Marking 2 OPA657 www.ti.com SBOS197E ELECTRICAL CHARACTERISTICS: V = ± 5V S R = 453Ω, R = 100Ω, and G = +10, unless otherwise noted. Figure 1 for AC performance. F L OPA657U, N (Standard-Grade) TYP MIN/MAX OVER TEMPERATURE 0°C to –40°
TEMP RANGE PIN-PACKAGE MAX8212CPA 0°C to +70°C 8 Plastic DIP MAX8212CSA 0°C to +70°C 8 SO MAX8212CUA 0°C to +70°C 8 µMAX MAX8212CTY 0°C to +70°C 8 TO-99 MAX8212EPA -40°C to +85°C 8 Plastic DIP MAX8212ESA -40°C to +85°C 8 SO MAX8212EJA
Mode of Operation TOP Update of OCRx at TOV Flag Set on 0 0 0 0 Normal, 8-bit Mode 0xFF Immediate MAX (0xFF) 1 0 0 1 CTC Mode, 8-bit OCR0A Immediate MAX (0xFF) 2 0 1 X Normal, 16-bit Mode 0xFFFF Immediate MAX (0xFFFF) 3 1 0 X Input Capture Mode, 8-bit 0xFF Immediate MAX (0xFF) 4 1 1 X Input Capture
Value Range, Description and Preset Value (Display Level) P00-01 Read Only Analog Input 1 Value (100%=Max Vin). P00-02 Parameters Analog Input 2 Value (100%=Max Vin). P00-03 Speed Reference Input -P-06 to P-06 (Hz if P-04=0, RPM if P-04≥1) P00-04 Digital Input Status P00-05 Reserved P00-06 Reserved P00-
ERN 460 ERN 430 Interface TTL/RS422 TTL/RS422 HTL/Push-pull Operating voltage 4…6 10…30 10…30 VDC Max current 150 150 150 MA Max output frequency 300 300 300 kHz Max speed 12,000 12,000 12,000 rpm Ambient temperature -4…+158 -4…+158 -4…+158 °F Ambient temperature -20…+70 -20…+70 -20…+70 °C Enclosure
J-Link caps 0xb9ff7bbf Info : J-Link hw version 80000 Info : J-Link hw type J-Link Info : J-Link max mem block 9464 Info : J-Link configuration Info : USB-Address: 0xff Info : Kickstart power on JTAG-pin 19: 0xffffffff Info : Vref = 3.267 TCK = 1 TDI = 0 TDO = 1 TMS = 0 SRST = 0 TRST = 0 Info
. Debug: 196 11 command.c:364 register_command_handler(): registering 'ocd_test_image'... Debug: 197 11 command.c:364 register_command_handler(): registering 'ocd_reset_nag'... Debug: 198 499 jlink.c:1469 jlink_usb_open(): usb ep in 81 Debug: 199 499 jlink.c:1469 jlink_usb_open(): usb ep out 02
Temperaturindex nach UL 746 B Heat deflection temperature limit according to DIN 4 1 HDT/A 18 °C ( °F) 197 °C ( 8 , °F) Formbeständigkeitstemperatur nach DIN 53461 HDT/A Sub temperature limit - °C (- 7 °F) - °C (- 7 °F) Untere Grenztemperatur Shell Steel Steel Gehäuse Stahl Stahl Shell plating (standard)
Lead–free assembly t P p -Temperature Min (T ) 150°C s(min) Ramp-up CTto Tal Zone Pre Heat -Temperature Max (T ) 200°C L L P s(max) ) L -Time (min to max) (t ) 60 – 180 secs (s(max) s u Average ramp up rate (LiquidusTemp r Ramp-down 3°C/second max ps(min) (TL) to peak m s T Preheat T S(max)T L Ramp-up Rate 3°C/second max -Temperature (T )L(Liquidus) 217°C 25˚C t 25˚C to Peak Reflow -Time (min to max) (t s 60 – 150 seconds Time (t) +0/-5 PeakTemperature (T ) P 260 °C Time within 5°C of actual peak 20 – 40 seconds Temperature
fällt das NT aus, es lassen sich zwei Probleme beschreiben. a) ist Strombegrenzung scharf auf die max. Stromaufnahme einstellt, so schaltet das NT die Spannung "ab" und es liegen an den Ausgangsklemmen -0,45V an. Das sollte sich mit einem Schaltplan auch einstellen lassen. b) ist die Strombegrenzung
aber mit Deiner Ergänzung "LM324" würde ich es "dicht" an der ELO/Elektronik Netzteilschaltung von 197x "einfaches Labor-NT mit LM324" orientiert einordnen. Dessen Plan hast Du bereits? Wenn nein, melde Dich einfach.
wird im Interrupt gesetzt while(pwm_sync==0); // Zeiger tauschen cli(); tausche_zeiger(); pwm_cnt_max = k; sei(); } // Timer 1 Output COMPARE A Interrupt ISR(TIMER1_COMPA_vect) { static uint8_t pwm_cnt; // ändern auf uint16_t für mehr als 8 Bit Auflösung uint16_t tmp; // ändern uint16_t oder uint32_
be minimized. OSC2 V = 5 V V = 3 V CC CC 500 500 400 400 ) ) H H ( 300 ( 300 C (270) C (270) O O f max. f max. 200 typ. 200 typ. 100 min. 100 min. 50 (91100 150 50 (75) 100 150 R fk ) Rf(k ) 222 HD44780U 13.RCOM is the resistance between the power supply pins (V , V1, V4, V5) and each common signal CC
mit max. 11,87 V nun verwendet werden oder nicht? 2.) wenn nicht, welcher der 2 folgenden Widerstände würdet ihr nehmen, ist das egal? Metallfilmwiderstand http://www.distrelec.de/de/widerstand-47-ohm-vishay-pr03000204709jac00
Max schrieb im Beitrag #4517706: > ging genau > einmal. Ca. eine Stunde. Nun ist erwieder völlig tot. leg den gegrillten Kram tot und führ Die Spannungen, die die Elektronik braucht mit einem eigenen
Schrittweite 24Bit Samplerate 25usec (40KHz) Bild 1: SAW-Wellenform ca. 2031Hz mit Phasen-Jitter (max. 25usec / Div. 100µsec) Bild 2: SAW-Wellenform ca. 2031Hz mit Phasen-Jitter (max. 25usec / Div. 2msec) Bild 3: Saw-Wellenform ca. 2038Hz ohne Phasen-Jitter (Div. 100µsec) Bild 4: Saw-Wellenform
Möglichkeit zum Austausch mit anderen Gleichgesinnten war gleich null. Description The MAXIM MAX260/MAX261/MAX262 CMOS dual second-order universal switched-capacitor active filters allow microprocessor control of precise filter functions. No external components are required for a variety of bandpass
Debug PWR Page 25-26 D Mictor, Trace Jack SofTouch Diff SMA Clocks Page 9 Page 11 Switcher 5.0V@10A max Optional GPIO Linear USER Clock 0.9V@1.4A max Page 10 Page 9 Switcher 3.3V@10A max Glock DVI Generator Linear Codec Page 15 2.5V@3A max Page 9 Conn Page 16 2.5V@3A maxCAUX Linear Flash Video In Page 20 Codec Page 17 Linear MGT PLL 1.2V@3A max Virtex 5 C LXT / SXT / FXT C Linear - MGT AVTT RX ZBT SRAM AC97 1.2V@3A max Page 2-6 Audio Page 20 Page 18 Switcher 1.8V@10A max Platform FLASH IIC Linear - MGT AVCC EEPROM 1.0V@3.0A max Page 8 Page
, V BB= 50 V, VDD = 3.3 V; unless otherwise noted Characteristics Symbol Test Conditions Min. Typ. Max. Unit Supplies Load Supply Voltage Range V 7 – 50 V BB ENABLE = 0 – – 4 mA Load Supply Quiescent Current IBBQ Sleep mode, VBB= 40 V – 1 10 μA Logic Supply Voltage Range V DD 3 – 5.5 V ENABLE = 0 – –
die max. 60mV Spannungsabfall verschmerzen, zum anderen funktionieren die von mir getesteten Strom-Spannungswandler nicht zufriedenstellend. Die Bestimmung des Impedanzverlaufs soll dann mit einem kleinen
http://www.hifi-selbstbau.de/index.php?option=com_content&view=article&id=197 das hier ist sicher günstiger...
to +85 °C unless otherwise specified Parameters Conditions Min Typ Max Units Input Voltage Range 4.0 — 5.25 V Output Voltage Output Current = 1 to 100 mA* 3.0 3.3 3.6 V VBUS Detection Input Threshold 1.0 1.8 4.0 V Bias Current — 110 — µA *Note: The maximum regulator supply
13V, unless otherwise specified J DD Table 2. Power Section Symbol Parameter Test Conditions Min Typ Max Unit BVDS Drain-Source VoltageID= 1mA; V COMP = 0V 620 V I Off-State Drain V = 0V; T = 125°C DSS COMP j Current V DS= 620V 1 mA RDS(on) Static Drain-Source ID= 2A 2.3 2.5 Ω On Resistance ID = 2A; j
CSIP 18 E - 40 ENCHG# 15K_F set BATT_PRS# high level=3.24V for EC CSIN 17 T 7 0402 BATT 16 2 1 A 6 69 MAX1909_IINP_HW 1 2 MAX1909_IINP 8 IINP B P MAX1909_CCV_1 1 2 MAX1909_CCV 13 9 MAX1909_CLS B PR25 PR26 MAX1909_CCI 12 CCV D CLS PR28&PR30_Set input current limit to 106.01W X 0_J 0402 1 PC34 1 0 20K_F MAX1909
onsemi.com 2 NCP4300A TYPICAL ELECTRICAL CHARACTERISTICS (continued) Characteristic Symbol Min Typ Max Unit Op−Amp 2 (Independent op−amp) (V CC = 5.0 V,out= 1.4 V,AT = 25⋅C, unless otherwise noted) Input Offset Voltage V IO mV TA = 25⋅C − 0.5 2.0 TA = 0⋅C to 105⋅C − − 3.0 Input Offset Voltage Temperature
Reset is released and EVR is stable PLL is locked Ready-to-Read start of program Mode Typ. 300 µs Max. 200 µs Typ. 160 µs Figure 7-4 Power-on Reset Note: When V DDP is not powered on, the current over any GPIO pin must not source V higher than 0.3 - 0.5 V. DDP 7.2.1.2 Hardware Reset An external hardware
be minimized. OSC2 V = 5 V V = 3 V CC CC 500 500 400 400 ) ) H H ( 300 ( 300 C (270) C (270) O O f max. f max. 200 typ. 200 typ. 100 min. 100 min. 50 (91100 150 50 (75) 100 150 R fk ) Rf(k ) 222 HD44780U 13.RCOM is the resistance between the power supply pins (V , V1, V4, V5) and each common signal CC
otherwise noted.) A TL431BI / TL431BV TL431AI / NCV431AI TL431AC NCV431BV Characteristic Symbol Min Typ Max Min Typ Max Min Typ Max Unit Reference Input Voltage (Figure 1) V ref V VKA = VrefIK= 10 mA TA= 25°C 2.47 2.495 2.52 2.47 2.495 2.52 2.483 2.495 2.507 TA= T lowto Thigh 2.44 − 2.55 2.453 − 2.537 2.475
braucht's m.E. auch nicht. Ich versuch's aber etwas detailierter: Ich habe ein VDD-Netz 3V3 (3.3 V, max. 1 A). Nun habe ich Schaltungsteile, welche immer unter Spannung sein sollten (FX2), und andere, welche ausgeschaltet werden (FPGA, DDR memory, Spannungsregler für weitere, tiefere Spannungen). Deshalb
Tamb (°C) TEST CONDITION SYMBOL PARAMETER +25 −40 to +85 −40 to +125 UNIT V CC (V) WAVEFORMS min typ max min max min max PHL PLH propagation delay − 52 160 − 200 − 240 ns 2.0 Fig.7 SHCP to 7 Õ − 19 32 − 40 − 48 4.5 − 15 27 − 34 − 41 6.0 PHL PLH propagation delay − 55 175 − 220 − 265 ns 2.0 Fig.8 STCP to
Low leakage current: – 0.2 μA at 25 °C SMA (JEDEC DO-214AC) – 1 μA at 85 °C ■ Operating T : 150 °C j max ■ High power capability at j max – 270 W (10/1000 µs) ■ JEDEC registered package outline Description Complies with the following standards The SMAJ Transil series has been designed to protect sensitive
BOTTOM. There are two cases that give a transition without Compare Match. OCRnx changes its value from MAX, like in Figure 34. When the OCR0A value is MAX the OCn pin value is the same as the result of a down-counting Compare 93 2545B–AVR–01/04 Match. To ensure symmetry around BOTTOM the OCnx value at MAX
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 TCNT2 value will be equal to MAX for one timer clock cycle. The timing diagram for the phase correct PWM mode is shown on Figure 51
#ns m L Rf_CLLL co DA S V 1zzV. Instantaneous change during internal mIH_NMII (Min.) andvVIL_GMII (Max.)T operation. A u3Figure 47: GMII Receive Timing Se R a M 7v MA l DE * TP_GMII_RX_CLK rveU N d TH_GMIITL_GMII_RX_CaK L, 8 RX_CLK *M I OH_GMII (Min.) e TF_GMII_RX_CLK geTRNGMII_RX_CLKMII (Max.) u RXD
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
4/8KB flash embedded fosc=16MHz Variable fosc Symbol Parameter Valid Cycle Unit Remarks Min. Typ. Max Min. Typ. Max T LHLL ALE pulse width RD/WRT 115 2xT - 10 nS T AVLL Address Valid to ALE low RD/WRT 43 T - 20 nS T LLAX Address Hold after ALE low RD/WRT 53 T - 10 nS T LLIV ALE low to Valid Instruction
bits shift register) or in a Shift Clock frequency : dual mode (80-bits shift register x 2) 14 MHz (Max.) (V DD = 5V 10%) 1. Y1 Y160 Single mode 8 MHz (Max.) (V DD = 2.5V - 4.5V) 2. Y160 Y1 Single mode Adopts a data bus system 3. Y1 Y80, Y81 Y160 Dual mode 4-bit/8-bit parallel input modes
DIMENSIONS - IN (MM) INCHES - MM Case C ±0.025 D E Number Inches mm of Leads 0.002 0.05 Code (0.635) Min Max (Max) per Side 0.010 0.25 0.020 0.51 0.45 0.95 1.075 0.50 3 (11.43) (24.13) (27.30) (12.70) 10 0.025 0.64 0.050 1.27 0.40 0.35 0.425 0.44 0.055 1.40 4 (10.16) (8.89) (10.80) (11.18) 4 0.070 1.78 0.100
120ºC/W Power dissipated by the device will be equal to: 1000 sq mm 2500 sq mm 2500 sq mm 120ºC/W IOUT MAX • (VIN MAX– V OUT ) + (GND • VIN 225 sq mm 2500 sq mm 2500 sq mm 125ºC/W 100 sq mm 1000 sq mm 1000 sq mm 131ºC/W where, I OUT MAX = 100mA * Device is mounted on topside. V IN MAX = 7V IGND at (IOUT