ITS 612N1 Infineon Technologies, ITS 612N1 Datasheet
ITS 612N1
Specifications of ITS 612N1
Related parts for ITS 612N1
ITS 612N1 Summary of contents
Page 1
... Logic ESD 5 ST PROFET ) 1 With external current limit (e.g. resistor R connection, reverse load current limited by connected load. Infineon Technologies AG Product Summary Overvoltage protection V Operating voltage Operating temperature T On-state resistance Load current (ISO) Current limitation protection Standard technology. Providing embedded protective functions. ...
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... setup without the DUT connected to the generator per ISO 7637-1 and DIN 40839 Load dump Infineon Technologies AG Function Output 1, protected high-side power output of channel 1 Logic ground Input 1, activates channel 1 in case of logical high signal Positive power supply voltage, the tab is shorted to this pin ...
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... Turn-off time =-40...+150° Slew rate 30 OUT L Slew rate off OUT L Infineon Technologies AG Symbol each channel Symbol R each channel: R Symbol each channel R T =25 ° =150 °C: j each channel: I L(ISO) both channels parallel: I ...
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... At supply voltage increase See also V in table of protection functions and circuit diagram page 8. ON(CL Add > 0, add Infineon Technologies AG Symbol each channel T =-40...+150° bb(on) T =-40...+150° bb(under) T =-40...+25° bb(u rst) T =+150° ...
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... Note that the power dissipation is higher compared to normal operating conditions due to the voltage drop across the intrinsic drain-source diode. The temperature protection is not active during reverse current operation! Input and Status currents have to be limited (see max. ratings page 2 and circuit page 8). Infineon Technologies AG Symbol each channel I L(SCp) =-40° ...
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... Zener limit voltage T =-40...+150° low voltage T =-40...+25° +150° ground resistor R is used, add the voltage drop across this resistor. GND Infineon Technologies AG Symbol each channel =-40..+150° IN(T+) T =-40..+150° IN(T ...
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... GND Input circuit (ESD protection ESD-ZD I GND ESD zener diodes are not to be used as voltage clamp at DC conditions. Operation in this mode may result in a drift of the zener voltage (increase V). Infineon Technologies AG IN1 Channel Channel 2 ...
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... 150 GND Open-load detection OFF-state diagnostic condition: V OFF I L(OL) Open load Logic detection unit Signal GND Infineon Technologies AG GND disconnect + OUT PROFET Any kind of load. In case of Input=high is V Due to V GND GND disconnect with GND pull GND ...
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... with an approximate solution for R · · OUT(CL · L Infineon Technologies AG Maximum allowable load inductance for a single switch off [mH] 1 1000 D 7 100 Load OUT ...
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... Typ. transient thermal impedance chip case Z = f(t ), one Channel active thJC p Z [K/W] thJC 10 1 0.1 0.01 1E-5 1E-4 1E-3 1E-2 Transient thermal impedance chip case Z = f(t ), both Channel active thJC p Z [K/W] thJC 10 1 0.1 0.01 1E-5 1E-4 1E-3 1E-2 Infineon Technologies AG D= 0.5 0.2 0.1 0.05 0.02 0.01 0 1E-1 1E0 1E1 t p [s] D= 0.5 0.2 0.1 0.05 0.02 0.01 0 1E-1 1E0 1E1 t p [s] 10 PROFET ® ITS612N1 2006-Mar-28 ...
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... V OUT1 V OUT2 ST open drain Figure 2a: Switching a lamp OUT I L Infineon Technologies AG Both channels are symmetric and consequently the diagrams are valid for each channel as well as for permuted channels Figure 2b: Switching an inductive load OUT Figure 3a: Short circuit shut down by overtempertature, reset by cooling ...
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... IN2 channel 2: normal operation V OUT1 I L1 channel 1: open load t d(ST OL3 depends on external circuitry because of high d(ST,OL3) impedance *) typ L Infineon Technologies AG Figure 6a: Undervoltage OUT ST open drain t Figure 6b: Undervoltage restart of charge pump bb(under) t d(ST OL3) charge pump starts at V ...
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... Figure 7a: Overvoltage bb(over) ON(CL OUT ST Infineon Technologies AG V bb(o rst PROFET ® ITS612N1 2006-Mar-28 ...
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... For information on the types in question please contact your nearest Infineon Technologies Office. Ordering code Infineon Technologies Components may only be used in life- support devices or systems with the express written SP000221234 approval of Infineon Technologies failure of such components can reasonably be expected to cause the failure of that life-support device or system affect the safety or effectiveness of that device or system ...