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ATA6560 датащи(PDF) 13 Page - Microchip Technology

номер детали ATA6560
подробное описание детали  High-Speed CAN Transceiver with Standby Mode CAN FD Ready
PDF  28 Pages
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производитель  MICROCHIP [Microchip Technology]
домашняя страница  http://www.microchip.com
Logo MICROCHIP - Microchip Technology

ATA6560 датащи(HTML) 13 Page - Microchip Technology

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 2018 Microchip Technology Inc.
DS20005991A-page 13
ATA6560/1
Propagation Delay from TXD
to RXD
tPD(TXD-RXD)
40
210
ns
Normal mode, Rising
edge at pin TXD
40
200
ns
Normal mode, Falling
edge at pin TXD
tPD(TXD-RXD)
300
ns
Normal mode, Rising
edge at pin TXD
RL = 120Ω,
CL = 200 pF (Note 3)
300
ns
Normal mode, Falling
edge at pin TXD
RL = 120Ω, CL = 200pF
(Note 3)
TXD Dominant Time-Out Time
tto(dom)TXD
0.8
3
ms
VTXD = 0V, Normal
mode
Bus Wake-Up Time-Out Time
tto_bus
0.8
3
ms
Standby mode
Minimum Dominant/Recessive
Bus Wake-Up Time
twake
0.75
3
5
µs
Standby mode
Delay Time for Standby Mode
to Normal Mode Transition
tdel(stby-norm)
47
µs
Falling edge at pin
STBY
NSIL = HIGH
Delay Time for Normal Mode to
Standby Mode Transition
tdel(norm-stby)
5
µs
Rising edge at pin
STBY
NSIL = HIGH (Note 3)
Delay Time for Normal Mode to
Silent Mode Transition
tdel(norm-sil)
10
µs
Falling edge at pin
NSIL
STBY = LOW (Note 3)
Delay Time for Silent Mode to
Normal Mode Transition
tdel(sil-norm)
10
µs
Rising edge at pin NSIL
STBY = LOW (Note 3)
Delay Time for Silent Mode to
Standby Mode Transition
tdel(sil-stby)
5
µs
Rising edge at pin
STBY
NSIL = LOW (Note 3)
Delay Time for Standby Mode
to Silent Mode Transition
tdel(stby-sil)
47
µs
Rising edge at pin
STBY
NSIL = LOW (Note 3)
Debouncing Time for Reces-
sive Clamping State Detection
tRC_det
—90—
ns
V(CANH-CANL) > 900 mV
RXD = HIGH (Note 3)
Transceiver Timing for higher Bit Rates, Pins CANH, CANL, TXD, and RXD, see Figure 2-1 and Figure 2-3
Recessive Bit Time on Pin
RXD
tBit(RXD)
400
550
ns
Normal mode,
tBit(TXD) = 500 ns
(Note 3)
120
220
ns
Normal mode,
tBit(TXD) = 200 ns
ATA6560/1 ELECTRICAL CHARACTERISTICS (CONTINUED)
Electrical Specifications: TvJ = –40°C to +150°C; VVCC = 4.5V to 5.5V; VVIO = 2.8V to 5.5V; RL =60, CL = 100 pF,
unless otherwise; all voltages are defined in relation to ground; positive currents flow into the IC.
Parameters
Sym.
Min.
Typ.
Max.
Units
Conditions
Note 1: This parameter is 100% correlation tested.
2: This parameter is ensured by characterization on samples.
3: This parameter is ensured by design.



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