參數(shù)資料
型號: IL41050TE
廠商: NVE Corp/Isolation Products
文件頁數(shù): 7/12頁
文件大?。?/td> 0K
描述: IC TXRX ISOLATED CAN HS 16SOIC
產(chǎn)品目錄繪圖: IL41050 Circuit
特色產(chǎn)品: Isolated High-Speed CAN Transceiver
標準包裝: 50
系列: IsoLoop®
類型: 收發(fā)器
驅動器/接收器數(shù): 1/1
規(guī)程: CAN
電源電壓: 3 V ~ 5.5 V
安裝類型: 表面貼裝
封裝/外殼: 16-SOIC(0.295",7.50mm 寬)
供應商設備封裝: 16-SOIC
包裝: 管件
產(chǎn)品目錄頁面: 2771 (CN2011-ZH PDF)
其它名稱: 390-1131
IL41050
4
NVE Corporation
11409 Valley View Road, Eden Prairie, MN 55344-3617
Phone: (952) 829-9217
Fax: (952) 829-9189
www.IsoLoop.com
NVE Corporation
Specifications
Electrical Specifications are Tmin to Tmax and VDD1, VDD2= 4.75 V to 5.25 V unless otherwise stated.
Parameters
Symbol
Min.
Typ.
Max.
Units
Test Conditions
Power Supply Current
Quiescent supply current (recessive)
IQVDD1
1
0.7
1.75
1.4
3.0
2.0
mA
dr = 0 bps; V
DD
1 = 5 V
dr = 0 bps; V
DD
1 = 3.3 V
Dynamic supply current (dominant)
IVDD1
1.2
0.9
2.0
1.6
3.2
2.2
mA
dr = 1 Mbps, RL= 60Ω;
V
DD
1 = 5 V
dr = 1 Mbps, RL= 60Ω;
V
DD
1 = 3.3 V
Quiescent supply current (recessive)
Dynamic supply current (dominant)
IQVDD2
IVDD2
3.5
26
6.75
52
13
78
mA
0 bps
1 Mbps, RL = 60Ω
Transmitter Data input (TxD)
(1)
High level input voltage ↑
VIH
2.4
5.25
V
DD
1 = 5 V; recessive
High level input voltage ↑
VIH
2.0
3.6
V
DD
1 = 3.3 V; recessive
Low level input voltage ↓
VIL
0.3
0.8
V
Output dominant
TxD input rise and fall time
(2)
tr
1
μs
10% to 90%
High level input current
IIH
10
μA
VTxD = VDD1
Low level input current
IIL
10
μA
VTxD = 0 V
Mode select input (S)
High level input voltage
VIH
2.0
V
DD
2 + 0.3
V
Silent mode
Low level input voltage
VIL
0.3
0.8
V
High-speed mode
High level input current
IIH
20
30
45
μA
VS = 2 V
Low level input current
IIL
15
30
10
μA
VS = 0 V
Receiver Data output (RxD)
High level output current
IOH
2
8.5
20
mA
VRxD = 0.8 VDD1
Low level output current
IOL
2
8.5
20
mA
VRxD = 0.45 V
Failsafe supply voltage
(4)
VDD2
3.6
3.9
V
Reference Voltage output (VREF)
Reference Voltage output
VREF
0.45 VDD2
0.5 VDD2
0.55 VDD2
V
50 μA<I
VREF< +50 μA
Bus lines (CANH and CANL)
Recessive voltage at CANH pin
VO(reces) CANH
2.0
2.5
3.0
V
VTxD = VDD1, no load
Recessive voltage at CANL pin
VO(reces) CANL
2.0
2.5
3.0
V
VTxD = VDD1, no load
Recessive current at CANH pin
IO(reces) CANH
2.0
+2.5
mA
27 V < V
CANH< +32V;
0V < VDD2<5.25V
Recessive current at CANL pin
IO(reces) CANL
2.0
+2.5
mA
27 V < V
CANL < +32V;
0 V <VDD2 < 5.25 V
Dominant voltage at CANH pin
VO(dom) CANH
3.0
3.6
4.25
V
VTxD = 0 V
Dominant voltage at CANL pin
VO(dom) CANL
0.5
1.4
1.75
V
VTxD = 0 V
Differential bus input voltage
(VCANH VCANL)
Vi(dif)(bus)
1.5
2.25
3.0
V
VTxD = 0 V; dominant
42.5
Ω < R
L < 60 Ω
50
0
+50
mV
VTxD = VDD1;
recessive; no load
Short-circuit output current at CANH
IO(sc) CANH
45
70
95
mA
VCANH = 0 V, VTxD = 0
Short-circuit output current at CANL
IO(sc) CANL
45
70
100
mA
VCANL = 36 V, VTxD = 0
Differential receiver threshold voltage
Vi(dif)(th)
0.5
0.7
0.9
V
12 V <V
CANL< +12V;
12 V <V
CANH< +12 V
Differential receiver input voltage
hysteresis
Vi(dif)(hys)
50
70
100
mV
12 V <V
CANL< +12 V;
12 V <V
CANH< +12 V
Common Mode input resistance at
CANH
Ri(CM)(CANH)
15
25
35
k
Ω
Common Mode input resistance at
CANL
Ri(CM)(CANL)
15
25
35
k
Ω
Matching between Common Mode
input resistance at CANH, CANL
Ri(CM)(m)
3
0
+3
%
VCANL = VCANH
Differential input resistance
Ri(diff)
25
50
75
k
Ω
Input capacitance, CANH
Ci(CANH)
7.5
20
pF
VTxD = VDD1
Input capacitance, CANL
Ci(CANL)
7.5
20
pF
VTxD = VDD1
tr
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