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PDF XR3087XID-F Data sheet ( Hoja de datos )

Número de pieza XR3087XID-F
Descripción HIGH OUTPUT 18V TOLERANT RS-485/RS-422 +5V TRANSCEIVERS
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XR3080-88X
HIGH OUTPUT 18V TOLERANT RS-485/RS-422 +5V TRANSCEIVERS
JULY 2015
REV. 1.0.2
GENERAL DESCRIPTION
FEATURES
The XR3080-88X family of high performance RS-485/
422 devices are designed for improved performance in
noisy industrial environments and increased tolerance
to system faults.
The analog bus pins can withstand direct shorts up to
±18V, and are protected against ESD events up to
±15kV. The Profibus compliant differential output deliv-
ers 40% higher SNR than standard RS-485/422
devices, affording additional noise margin or extended
cable lengths.
The receivers include full fail-safe circuitry, guarantee-
ing a logic-high receiver output when the receiver
inputs are open, shorted, or undriven. The receiver
input impedance is at minimum 96k(1/8 unit load),
allowing up to 256 devices on the bus while preserving
the full signal margin.
The drivers are protected by short circuit detection as
well as thermal shutdown, and maintain high imped-
ance in shutdown or when powered off. The XR3080-
85X drivers are slew limited for reduced EMI and error-
free communication over long or unterminated data
cables.
The devices with DE and RE pins include hot swap cir-
cuitry to prevent false transitions on the bus during
powerup or live insertion, and can enter a 1nA low cur-
rent shutdown mode for extreme power savings.
40% Higher SNR (Signal-to-Noise Ratio)
compared to other RS-485 devices (2.1V vs. 1.5V)
±18V Fault Tolerance on Analog Bus pins
2.1V Driver Output (Profibus Compliant)
Robust ESD (ElectroStatic Discharge) Protection:
±15kV IEC 61000-4-2 Air Gap Discharge
± 8kV IEC 61000-4-2 Contact Discharge
±15kV Human Body Model
± 4kV Human Body Model on non-bus pins
+4.5V to +5.5V Operation (5V ± 10%)
300µA Idle Current, 1nA Shutdown Current
Enhanced Receiver Fail-Safe Protection for Open,
Shorted, or Terminated but Idle Data Lines
Hot-Swap Glitch Protection on DE and RE Pins
Driver Short Circuit Current Limit and Thermal
Shutdown for Overload Protection
1/8th Unit Load Allows up to 256 Devices on Bus
Operating Temperature Range:
Industrial -40°C to 85°C
Extended -40°C to 125°C
Industry Standard 8 and 14 NSOIC Packages
The transceivers draw less than 600µA from a +5.0V
supply, and typically only 300µA when idling with the
receivers active.
RO 1 R 8 VCC
RE 2
7 B/Z
DE 3
6 A/Y
DI 4 D 5 GND
TYPICAL APPLICATIONS
Motor Control
Security Systems
Building and Process Automation
Remote Utility Meter Reading
Energy Monitoring and Control
Long or Unterminated Transmission Lines
Profibus DP Fieldbus Networks
Exar Corporation 48720 Kato Road, Fremont CA, 94538 (510) 668-7000 FAX (510) 668-7017 www.exar.com

1 page




XR3087XID-F pdf
XR3080-88X
REV. 1.0.2
HIGH OUTPUT 18V TOLERANT RS-485/RS-422 +5V TRANSCEIVERS
Unless otherwise noted: VCC = +5.0V ±10%, TA = TMIN to TMAX. Typical values are at VCC = 5.0V, TA = +25°C.
SYMBOL
PARAMETERS
MIN. TYP. MAX. UNITS
CONDITIONS
RECEIVER DC CHARACTERISTICS
VTH
Receiver Differential Threshold
Voltage (VA - VB)
-200 -125 -50 mV -7V VCM +12V
VOH
Receiver Input Hysteresis
25 mV VCM = 0V
VOH
Receiver Output High Voltage (RO) VCC-1.5
V IOUT = -4mA
VOL Receiver Output Low Voltage (RO)
0.4 V IOUT = 4mA
IOZR
High-Z Receiver Output Current
±1 µA 0V VOUT VCC
RIN Receiver Input Resistance
96
k-7V VCM +12V
IOSC
Receiver Output Short-Circuit
Current
±95 mA 0V VRO VCC
SUPPLY CURRENT
ICC Supply Current
ISHDN
Supply Current in Shutdown Mode
425 600
330 600
300 600
0.001 1
0.001 3
µA No Load, RE = 0V, DE = VCC
DI = 0V
µA No Load, RE = VCC, DE = VCC
DI = 0V
µA
No Load, RE = 0V, DE = 0V
Receiver A and B inputs open
µA
RE = VCC, DE = 0V,
Temperature grade I
µA
RE = VCC, DE = 0V
Temperature grade E
ESD PROTECTION
ESD Protection for A, B, Y, and Z
ESD Protection for all other pins
±15 kV Human Body Model
±15 kV IEC 61000-4-2 Airgap
±8 kV IEC 61000-4-2 Contact
±4 kV Human Body Model
5

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XR3087XID-F arduino
REV. 1.0.2
TEST FIGURES
XR3080-88X
HIGH OUTPUT 18V TOLERANT RS-485/RS-422 +5V TRANSCEIVERS
FIGURE 3. DIFFERENTIAL DRIVER OUTPUT VOLTAGE
DI = 0V or VCC
D
VOD
DE = VCC
Z
RL
2
VCM
RL
2
Y
FIGURE 4. DIFFERENTIAL DRIVER OUTPUT VOLTAGE OVER COMMON MODE
DI = 0V or VCC
D
DE = VCC
Z
375Ω
VOD 60Ω
VCM
375Ω
Y
FIGURE 5. DRIVER OUTPUT SHORT CIRCUIT CURRENT
DI = 0V or VCC
D
DE = 0V or VCC
Z
IOSD
-7V to +12V V
Y
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