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ISL72028SEHF/PROTO датащи(PDF) 5 Page - Renesas Technology Corp

номер детали ISL72028SEHF/PROTO
подробное описание детали  3.3V Radiation Tolerant CAN Transceiver, with Low Power Shutdown, Split Termination Output
PDF  18 Pages
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производитель  RENESAS [Renesas Technology Corp]
домашняя страница  http://www.renesas.com
Logo RENESAS - Renesas Technology Corp

ISL72028SEHF/PROTO датащи(HTML) 5 Page - Renesas Technology Corp

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ISL72028SEH
FN8764 Rev 3.00
Page 5 of 18
August 16, 2016
Output Short-Circuit Current
IOSC
VCANH = -7V, CANL = OPEN, 3.0V ≤ VCC ≤ 3.6V,
Figure 18
Full
-250
-100
-
mA
VCANH = +12V, CANL = OPEN, 3.0V ≤ VCC ≤ 3.6V,
Figure 18
Full
-
0.4
1.0
mA
VCANL = -7V, CANH = OPEN, 3.0V ≤ VCC ≤ 3.6V,
Figure 18
Full
-1.0
-0.4
-
mA
VCANL = +12V, CANH = OPEN, 3.0V ≤ VCC ≤ 3.6V,
Figure 18
Full
-
100
250
mA
Thermal Shutdown Temperature
TSHDN
3.0V < VIN < 3.6V
-
-
163
-
°C
Thermal Shutdown Hysteresis
THYS
3.0V < VIN < 3.6V
-
-
12
-
°C
RECEIVER ELECTRICAL CHARACTERISTICS
Input Threshold Voltage (Rising)
VTHR
RS = 0V, 10k, 50k, (recessive to dominant),
Figures 14 and 15
Full
-
750
900
mV
Input Threshold Voltage (Falling)
VTHF
RS = 0V, 10k, 50k, (dominant to recessive),
Figures 14 and 15
Full
500
650
-
mV
Input Hysteresis
VHYS
(VTHR - VTHF), RS = 0V, 10k, 50k,
Figures 14 and 15
Full
40
90
-
mV
Receiver Output High Voltage
VOH
IO = -4mA
Full
2.4
VCC - 0.2
-
V
Receiver Output Low Voltage
VOL
IO = +4mA
Full
-
0.2
0.4
V
Input Current for CAN Bus
ICAN
CANH or CANL at 12V, D = 3V, other bus pin at 0V,
RS = 0V
Full
-
420
500
µA
CANH or CANL at 12V, D = 3V, VCC = 0V, other bus pin
at 0V, RS = 0V
Full
-
150
250
µA
CANH or CANL at -7V, D = 3V, other bus pin at 0V,
RS = 0V
Full
-400
-300
-
µA
CANH or CANL at -7V, D = 3V, VCC = 0V, other bus pin at
0V, RS = 0V
Full
-150
-85
-
µA
Input Capacitance (CANH or CANL) CIN
Input to GND, D = 3V, RS = 0V
25
-
35
-
pF
Differential Input Capacitance
CIND
Input to input, D = 3V, RS = 0V
25
-
15
-
pF
Input Resistance (CANH or CANL)
RIN
Input to GND, D = 3V, RS = 0V
Full
20
40
50
kΩ
Differential Input Resistance
RIND
Input to input, D = 3V, RS = 0V
Full
40
80
100
kΩ
SUPPLY CURRENT
Supply Current, Low Power
Shutdown Mode
ICC(LPS)
RS = D = VCC, 3.0V ≤ VCC ≤ 3.6V, Note 9
Full
-
20
50
µA
Supply Current, Dominant
ICC(DOM)
D = RS = 0V, no load, 3.0V ≤ VCC ≤ 3.6V
Full
-
5
7
mA
Supply Current, Recessive
ICC(REC)
D = VCC, RS = 0V, no load, 3.0V ≤ VCC ≤ 3.6V
Full
-
2.6
5.0
mA
COLD SPARING BUS CURRENT
CANH Leakage Current
IL(CANH)
VCC = 0.2V, CANH = -7V or 12V, D = VCC, CANL = float,
RS = 0V
Full
-25
-4
25
µA
CANL Leakage Current
IL(CANL)
VCC = 0.2V, CANL = -7V or 12V, D = VCC, CANH = float,
RS = 0V
Full
-25
-4
25
µA
VREF Leakage Current
IL(VREF)
VCC = 0.2V, VREF = -7V or 12V, D = VCC
Full
-25.00
0.01
25.00
µA
DRIVER SWITCHING CHARACTERISTICS
Propagation Delay LOW to HIGH
tPDLH1
RS = 0V, Figure 13
Full
-
75
150
ns
Propagation Delay LOW to HIGH
tPDLH2
RS = 10kΩ, Figure 13
Full
-
520
850
ns
Propagation Delay LOW to HIGH
tPDLH3
RS = 50kΩ, Figure 13
Full
-
850
1400
ns
Propagation Delay HIGH to LOW
tPDHL1
RS = 0V, Figure 13
Full
-
80
155
ns
Electrical Specifications Test Conditions: VCC = 3.0V to 3.6V; Typicals are at TA = +25°C (Note 7); unless otherwise specified (Note 5).
Boldface limits apply across the operating temperature range, -55°C to +125°C or over a total ionizing dose of 75krad(Si) at +25°C with exposure at a
low dose rate of <10mrad(Si)/s. (Continued)
PARAMETER
SYMBOL
TEST CONDITIONS
TEMP
(°C)
MIN
(Note 6)
TYP
(Note 7)
MAX
(Note 6)UNIT



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