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AMIS30660CANH2G Datasheet(PDF) 6 Page - ON Semiconductor |
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AMIS30660CANH2G Datasheet(HTML) 6 Page - ON Semiconductor |
6 / 10 page AMIS−30660 http://onsemi.com 6 Table 6. DC AND TIMING CHARACTERISTICS (VCC = 4.75 V to 5.25 V; Tjunc = −40°C to +150°C; RLT = 60 W unless specified otherwise.) Symbol Unit Max Typ Min Conditions Parameter BUS LINES (Pins CANH and CANL) Vi(dif)(th) Differential receiver threshold voltage −5 V < VCANL < +10 V; −5 V < VCANH < +10 V; See Figure 4 0.5 0.7 0.9 V Vihcm(dif) (th) Differential receiver threshold voltage for high common−mode −35 V < VCANL < +35 V; −35 V < VCANH < +35V; See Figure 4 0.25 0.7 1.05 V Vi(dif) (hys) Differential receiver input voltage hyster- esis −5 V < VCANL < +10 V; −5 V < VCANH < +10 V; See Figure 4 50 70 100 mV Ri(cm)(CANH) Common−mode input resistance at pin CANH 15 25 37 KW Ri(cm) (CANL) Common−mode input resistance at pin CANL 15 25 37 KW Ri(cm)(m) Matching between pin CANH and pin CANL common−mode input resistance VCANH = VCANL −3 0 +3 % Ri(dif) Differential input resistance 25 50 75 KW Ci(CANH) Input capacitance at pin CANH VTxD = VCC; not tested 7.5 20 pF Ci(CANL) Input capacitance at pin CANL VTxD = VCC; not tested 7.5 20 pF Ci(dif) Differential input capacitance VTxD = VCC; not tested 3.75 10 pF ILI(CANH) Input leakage current at pin CANH VCC = 0 V; VCANH = 5V 10 170 250 mA ILI(CANL) Input leakage current at pin CANL VCC = 0 V; VCANL = 5V 10 170 250 mA VCM−peak Common−mode peak during transition from dom → rec or rec → dom See Figures 7 and 8 −500 500 mV VCM−step Difference in common−mode between dominant and recessive state See Figures 7 and 8 −150 150 mV POWER−ON−RESET (POR) PORL POR level CANH, CANL, Vref in tri− state below POR level 2.2 3.5 4.5 V THERMAL SHUTDOWN Tj(sd) Shutdown junction temperature 150 160 180 °C TIMING CHARACTERISTICS (see Figures 5 and 6) td(TxD−BUSon) Delay TxD to bus active Vs = 0 V 40 85 130 ns td(TxD−BUSoff) Delay TxD to bus inactive Vs = 0 V 30 60 105 ns td(BUSon−RxD) Delay bus active to RxD Vs = 0 V 25 55 105 ns td(BUSoff−RxD) Delay bus inactive to RxD Vs = 0 V 65 100 135 ns tpd(rec−dom) Propagation delay TxD to RxD from recessive to dominant Vs = 0 V 70 245 ns td(dom−rec) Propagation delay TxD to RxD from dominant to recessive Vs = 0 V 100 245 ns tdom(TxD) TxD dominant time for time out VTxD = 0 V 250 450 750 ms |
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