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SN65HVD1040-HT Datasheet, PDF (17/26 Pages) Texas Instruments – LOW-POWER CAN TRANSCEIVER WITH BUS WAKE-UP
SN65HVD1040-HT
www.ti.com
SLLSEA6D – DECEMBER 2011 – REVISED AUGUST 2012
TYPICAL CHARACTERISTICS
RECESSIVE-TO-DOMINANT LOOP TIME
vs
FREE-AIR TEMPERATURE (across VCC)
150 S at 0 V,
RL = 60 W,
145 CL = 100 pF,
Air Flow at 7 cf/m,
TXD Input is a 125 kHz,
50% Duty Cycle Pulse
140
VCC = 4.75 V
135
130
VCC = 5 V
125
VCC = 5.25 V
120
−40
0
25
70
125
TA − Free-Air Temperature − °C
Figure 15.
SUPPLY CURRENT (RMS)
vs
SIGNALING RATE
50
TA = 255C,
45 VCC = 5 V,
S at 0 V,
40 RL = 60 W,
RXD = 15 pF
35
30
25
20
15
10
5
0
200
400 500 600 800
Signaling Rate − kbps
Figure 17.
1000
DOMINANT-TO-RECESSIVE LOOP TIME
vs
FREE-AIR TEMPERATURE (across VCC)
170
S at 0 V,
RL = 60 W,
165 CL = 100 pF,
Air Flow at 7 cf/m,
TXD Input is a 125 kHz,
160 50% Duty Cycle Pulse
VCC = 5.25 V
155
VCC = 5 V
150
145
VCC = 4.75 V
140
−40
0
25
70
125
TA − Free-Air Temperature − °C
Figure 16.
DRIVER LOW-LEVEL OUTPUT VOLTAGE
vs
LOW-LEVEL OUTPUT CURRENT
90
80
70
60
50
40
30
20
TA = 255C,
10
VCC = 5 V,
S at 0 V,
0
TXD Input is a 125 kHz
1% Duty Cycle Pulse
−10
0
1
2
3
4
5
VOCANL − Low-Level Output Voltage − V
Figure 18.
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