5 6 7 8 N N GND V V _ _ _ _ _ _ R10 R11 L A P P S S A A 10k 10k GND 0 1 6 7 2 2 2 2 2 9 8 TDA7439DS13TR TPA3140D2 TDA7439DS13TR D L A T T _ _ R3 G S S O O T T R_IN4 28 SD 1 AMP_SHUTDOWN_TTL A _ _ L U O 10k A I R X X L_IN4 7 FAULT 2 D U U C3 C11 M M 26 BSPL AMP_L_IN 1 C7 3 C23 R_IN3 SPK_L 1n L1 2 220n
Hi >@Spess wo hast du das gelesen? http://www.infineon.com/dgdl/BTS712N1_DS13.pdf?folderId=db3a304314dca389011537739e37155f&fileId=db3a30432239cccd0122e55c9d9d3c59 (AGREEMENT links unten bestätigen) Auf S.7 Input resistance. MfG Spess
sind nett gedacht, bewirken aber nach der gewüschten Woche NICHTS. Diese 0,x µA für eine RTC DS13xx sind für den Time-Keeping-Fall zu sehen: Da läuft die RTC weiter, rückt und rührt sich aber sonst nicht. Auch der µC schläft tief, es fließt nicht viel Strom, aber der Termin nach einer Woche
Pin Input-Source Clamp IN=1mA 6 6.8 8 V VINCL Voltage IN=-1mA -1.0 -0.3 V Zero Input Voltage DrainDS=13V; VIN0V; Tj25°C 30 A DSS Current IN =0V) VDS=25V; VIN0V 75 A ON Symbol Parameter Test Conditions Min Typ Max Unit R Static Drain-source On VIN=5V; D =0.5A;jT = 25°C 250 m DS(on) Resistance VIN5V; ID
sie mit externem Quarz läuft und mit einer 3V Batterie gepuffert wird. Wenn ich zb früher eine DS13xx RTC verwendet habe, dann musste ich zwingend einen 15pf C-Trimmer an den Quarz anschliessen und mit einem Frequenzzähler den Quarz solange justieren, bis die Frequenz am Testpin bei der mittleren
dem 1307 muss man das jedenfalls sagen beim 1337 habe ich auch nichts gefunden aber das die DS13xx so ungenau sind arbeite ich eh nur noch mit DS3231 [c] void DS1307new::stopClock(void) // set the ClockHalt bit high to stop the rtc { Wire.beginTransmission(DS1307_ID); printIIC(0x00
transconductance V = 10 V; I = 7.5 A t ≤ 300 s; 5 9 - S fs δ ≤ 0.01 DM p ID(SC) Drain current1 V DS= 13 V; V IS5 V - 25 - A SWITCHING CHARACTERISTICS T = 25 ˚C. R = 50 . Refer to waveform figures and test circuits. mb I SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT td on Turn-on delay time V DD = 13
transconductance V = 10 V; I = 7.5 A t ≤ 300 s; 5 9 - S fs δ ≤ 0.01 DM p ID(SC) Drain current1 V DS= 13 V; V IS5 V - 25 - A SWITCHING CHARACTERISTICS T = 25 ˚C. R = 50 . Refer to waveform figures and test circuits. mb I SYMBOL PARAMETER CONDITIONS MIN. TYP. MAX. UNIT td on Turn-on delay time V DD = 13
on DS11 LED #NET "GPIO_LED_1" LOC = "C14"; ## 2 on DS12 LED #NET "GPIO_LED_2" LOC = "C4"; ## 2 on DS13 LED #NET "GPIO_LED_3" LOC = "A4"; ## 2 on DS14 LED ### #NET "GPIO_SWITCH_0" LOC = "D14"; ## 1 on SW8 DIP Sw #NET "GPIO_SWITCH_1" LOC = "E12"; ## 2 on SW8 DIP Sw #NET "GPIO_SWITCH_2" LOC = "F12"; ##
2 on DS11 LED NET "GPIO_LED_1" LOC = "C14"; ## 2 on DS12 LED NET "GPIO_LED_2" LOC = "C4"; ## 2 on DS13 LED NET "GPIO_LED_3" LOC = "A4"; ## 2 on DS14 LED ### #NET "GPIO_SWITCH_0" LOC = "D14"; ## 1 on SW8 DIP Sw #NET "GPIO_SWITCH_1" LOC = "E12"; ## 2 on SW8 DIP Sw #NET "GPIO_SWITCH_2" LOC = "F12"; ## 3
I2C_24CXX_SUPPORT is not set # I2C_LM75_SUPPORT is not set # I2C_DS1631_SUPPORT is not set # I2C_DS13X7_SUPPORT is not set # I2C_TSL2550_SUPPORT is not set # I2C_PCA9531_SUPPORT is not set # I2C_PCF8574X_SUPPORT is not set # I2C_MAX7311_SUPPORT is not set # I2C_UDP_SUPPORT is not set # DEBUG_I2C is
points (φ1, φ2), (φ1, φ2L) and (φ2, φ1L) with input resistance of each pin. Data Sheet S15330EJ4V0DS 13 µPD8872 DEFINITIONS OF CHARACTERISTIC ITEMS 1. Saturation voltage : Vsat Output signal voltage at which the response linearity is lost. 2. Saturation exposure : SE Product of intensity of illumination
40 - r s s 20 R 2 e - R 0 -25 0 25 50 75 100 TA - Ambient Temperature - °C Data Sheet D16494EJ2V0DS 13 GA4xxx [GA4A4Z] TYPICAL CHARACTERISTICS (T A = 25°C) COLLECTOR CURRENT vs. COLLECTOR TO EMITTER VOLTAGE vs. COLLECTOR TO EMITTER VOLTAGE COLLECTOR CURRENT 50 - 0.5 A B= 20µ A e - 180 A a t 40 160 A
SID_DS_12 G BW_Low_M2 Mode 2, Low current – 0.1 – 0.2 V to V -0.2 V DDA With trim25 °C, 0.2 V to SID_DS_13 VOS_HI_M1 Mode 1, High current – 5 – V DDA-0.2 V With trim25 °C, 0.2 V to SID_DS_14 VOS_MED_M1 Mode 1, Medium current – 5 – V DDA-0.2 V With trim25 °C, 0.2 V to SID_DS_15 VOS_LOW_M1 Mode 1, Low current
following circuit description. Alarm Sensing LED Indicators. LED indicators (DS2 through DS8 and DS13) are placed on the input voltage side of the Power Supply Supervisor, U9. These indicators provide a quick visual check to see if the expected input voltages to U9 are present if troubleshooting of
Battery Supply Current ISL1208IU8-TK AGS 2.7V to -40 to 8 Ld MSOP • Same Pin Out as ST M41Txx and Maxim DS13xx Devices YWW 5.5V +85 Tape and Reel • Small Package Options ISL1208IU8Z ANW 2.7V to -40 to 8 Ld MSOP (See Note) YWW 5.5V +85 (Pb-free) - 8 Ld MSOP and SOIC Packages ISL1208IU8Z-TK ANW 2.7V to -40 to
Mapping, no error detection/correction. 11 B DataArrayMapping,errordetection/correction enabled. DS [13:12] rw Data Scratch Memory SIST mode access control 00 B Normal Operation, No Mapping, Performance Optimised. 01 Data Array Mapping, no error B detection/correction. 10 B Check Array Mapping, no error