ISL41387IRZ Intersil, ISL41387IRZ Datasheet - Page 5

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ISL41387IRZ

Manufacturer Part Number
ISL41387IRZ
Description
IC TXRX DUAL PROTOCAL ESD 40-QFN
Manufacturer
Intersil
Type
Transceiverr
Datasheet

Specifications of ISL41387IRZ

Number Of Drivers/receivers
2/2
Protocol
RS422, RS485
Voltage - Supply
4.5 V ~ 5.5 V
Mounting Type
Surface Mount
Package / Case
40-VFQFN, 40-VFQFPN
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

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Pin Descriptions
/
485/232
SLEW
RXEN
RXEN
GND
DEN
V
SPB
C1+
C2+
PIN
C1-
C2-
ON
NC
D
R
R
V
D
V+
V-
CC
A
B
Y
Z
L
Y
Z
A
B
BOTH
BOTH
BOTH
BOTH
BOTH
BOTH
BOTH
BOTH
BOTH
RS-232 Receiver input with ±15kV ESD protection. A low on A forces R
RS-485 Inverting receiver input with ±15kV ESD protection.
RS-232 Receiver input with ±15kV ESD protection. A low on B forces R
RS-485 Noninverting receiver input with ±15kV ESD protection.
RS-232 Driver input. A low on D
RS-485 Driver input. A low on D
RS-232 Driver input. A low on D
RS-485 Slew rate control. With the SLEW pin high, the drivers run at the maximum slew rate (20Mbps). With the SLEW pin low, the
RS-485 Speed control. Works in conjunction with the SLEW pin to select the 20Mbps, 460kbps or 115kbps RS-485 data rate.
RS-232 Receiver output.
RS-485 Receiver output: If B > A by at least -40mV, R
RS-232 Receiver output.
RS-485 Not used. Output is high impedance, and unaffected by RXEN and RXEN.
RS-232 Driver output with ±15kV ESD protection.
RS-485 Inverting driver output with ±15kV ESD protection.
RS-232 Driver output with ±15kV ESD protection.
RS-485 Noninverting driver output with ±15kV ESD protection.
RS-232 External capacitor (voltage doubler) is connected to this lead. Not needed in RS-485 Mode.
RS-232 External capacitor (voltage doubler) is connected to this lead. Not needed in RS-485 Mode.
RS-232 External capacitor (voltage inverter) is connected to this lead. Not needed in RS-485 Mode.
RS-232 External capacitor (voltage inverter) is connected to this lead. Not needed in RS-485 Mode.
RS-232 Internally generated positive RS-232 transmitter supply (+5.5V). C3 not needed in RS-485 Mode.
RS-232 Internally generated negative RS-232 transmitter supply (-5.5V). C4 not needed in RS-485 Mode.
MODE
Interface Mode Select input. High for RS-485 Mode and low for RS-232 Mode.
Driver output enable. The driver outputs, Y and Z, are enabled by bringing DEN high. They are high impedance when DEN
is low.
Ground connection.
No Connection.
In RS-232 mode only, ON high enables the charge pumps. ON low, with DEN and RXEN low (and RXEN high if QFN), turns
off the charge pumps (in RS-232 mode), and in either mode places the device in low power shutdown. In both modes, when
ON is low, and DEN is high, and RXEN is high or RXEN is low, loopback is enabled.
Receiver output enable. Rx is enabled when RXEN is high; Rx is high impedance when RXEN is low and, if using the QFN
package, RXEN is high. When using the QFN and the active high Rx enable function, RXEN should be high or floating.
Active low receiver output enable. Rx is enabled when RXEN is low; Rx is high impedance when RXEN is high and RXEN
is low. (i.e., to use active low Rx enable function, tie RXEN to GND). For single signal Tx/Rx direction control, connect RXEN
to DEN. Internally pulled high. (QFN only)
System power supply input (5V).
Logic-Level Supply. All TTL/CMOS inputs and outputs are powered by this supply. (QFN only)
drivers run at a reduced slew rate (460kbps). On the QFN version, works in conjunction with SPB to select one of three
RS-485 data rates. Internally pulled high in RS-485 mode.
Internally pulled high. (QFN only)
unconnected (floating) or shorted together (i.e., full fail-safe).
5
Y
Y
Z
forces output Y high and output Z low. Similarly, a high on D
forces output Z high. Similarly, a high on D
forces output Y high. Similarly, a high on D
ISL81387, ISL41387
A
is high; If B < A by -200mV or more, R
FUNCTION
A
B
high; a high on A forces R
high; a high on B forces R
Z
Y
forces output Z low.
forces output Y low.
Y
A
forces output Y low and output Z high.
is low; R
A
B
low.
low.
A
= High if A and B are
November 21, 2007
FN6201.3

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