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FIN1019MX Datasheet(Hoja de datos) 2 Page - Fairchild Semiconductor

No. de Pieza. FIN1019MX
Descripción  3.3V LVDS High Speed Differential Driver/Receiver
Descarga  14 Pages
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Fabricante  FAIRCHILD [Fairchild Semiconductor]
Página de inicio  http://www.fairchildsemi.com
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2
Absolute Maximum Ratings(Note 1)
Recommended Operating
Conditions
Note 1: The “Absolute Maximum Ratings”: are those values beyond which
damage to the device may occur. The databook specifications should be
met, without exception, to ensure that the system design is reliable over its
power supply, temperature and output/input loading variables. Fairchild
does not recommend operation of circuits outside databook specification.
DC Electrical Characteristics
Over supply voltage and operating temperature ranges, unless otherwise specified
Supply Voltage (VCC)
−0.5V to +4.6V
LVTTL DC Input Voltage (DIN, DE, RE)
−0.5V to +6V
LVDS DC Input Voltage (RIN+, RIN−)
−0.5V to 4.7V
LVTTL DC Output Voltage (ROUT)
−0.5V to +6V
LVDS DC Output Voltage (DOUT+, DOUT−)
−0.5V to 4.7V
LVDS Driver Short Circuit Current (IOSD)
Continuous
LVTTL DC Output Current (IO)
16 mA
Storage Temperature Range (TSTG)
−65°C to +150°C
Max Junction Temperature (TJ)150°C
Lead Temperature (TL)
(Soldering, 10 seconds)
260
°C
ESD (Human Body Model)
≥ 6500V
ESD (Machine Model)
≥ 300V
Supply Voltage (VCC)
3.0V to 3.6V
Input Voltage (VIN)
0 to VCC
Magnitude of Differential Voltage
(|VID|)
100 mV to VCC
Common-Mode Input Voltage (VIC)
0.05V to 2.35V
Operating Temperature (TA)
−40°C to +85°C
Symbol
Parameter
Test Conditions
Min
Typ
Max
Units
(Note 2)
LVDS Differential Driver Characteristics
VOD
Output Differential Voltage
250
350
450
mV
∆V
OD
VOD Magnitude Change from
25
mV
Differential LOW-to-HIGH
RL = 100Ω, See Figure 1
VOS
Offset Voltage
1.125
1.25
1.375
V
∆V
OS
Offset Magnitude Change from
25
mV
Differential LOW-to-HIGH
IOZD
Disabled Output Leakage Current
VOUT = VCC or GND, DE = 0V
±20
µA
IOFF
Power Off Output Current
VCC = 0V, VOUT = 0V or 3.6V
±20
µA
IOS
Short Circuit Output Current
VOUT = 0V, DE = VCC
−8
mA
VOD = 0V, DE = VCC
±8
LVTTL Driver Characteristics
VOH
Output HIGH Voltage
IOH = −100 µA, RE = 0V,
VCC −0.2
V
See Figure 6 and Table 1
IOH = −8 mA, RE = 0V, VID = 400 mV
2.4
VID = 400 mV, VIC = 1.2V, see Figure 6
VOL
Output LOW Voltage
IOL = 100 µA, RE = 0V, VID = −400 mV
0.2
V
See Figure 6 and Table 1
IOL = −8 mA, RE = 0V, VID = −400 mV
0.5
VID = −400 mV, VIC = 1.2V, see Figure 6
IOZ
Disabled Output Leakage Current
VOUT = VCC or GND, RE = VCC
±20
µA
LVDS Receiver Characteristics
VTH
Differential Input Threshold HIGH
See Figure 6 and Table 1
100
mV
VTL
Differential Input Threshold LOW
See Figure 6 and Table 1
−100
mV
IIN
Input Current
VIN = 0V or VCC
±20
µA
II(OFF)
Power-OFF Input Current
VCC = 0V, VIN = 0V or 3.6V
±20
µA
LVTTL Driver and Control Signals Characteristics
VIH
Input HIGH Voltage
2.0
VCC
V
VIL
Input LOW Voltage
GND
0.8
V
IIN
Input Current
VIN = 0V or VCC
±20
µA
II(OFF)
Power-OFF Input Current
VCC = 0V, VIN = 0V or 3.6V
±20
µA
VIK
Input Clamp Voltage
IIK = −18 mA
−1.5
V




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