The ST75C176 is al low power transceiver for
RS-485 and RS-422 communication. Each part
contains one driver and one rec eiver.
This transceiver draw 300µA (typ.) of supply
current when unlo aded or fully loaded with
disabled drivers.
ST75C176
LOW POWER
RS-485/RS-422 TRANSCEIVER
DIPSOP
It operates from a single 5V s upply.
Driver is short-circuit current limited and is
protected against excessive power diss ipation by
thermal shutdown circuitry that placed the driver
outputs into a high-impedance state. The receiver
input has a fail safe feature that guarantees a
logic-high output if the input is open circuit.
The ST75C176 is designed for bi-directional data
communications on multipoint bus transmission
line (half-duplex applciations).
ORDERING CODES
Type
ST75C176CN0 to 70 °CDIP-850parts per tube /40tube per box
ST75C176BN-40 to 85 °CDIP-850parts per tube / 40tube per box
ST75C176CD0 to 70 °CSO-8 (Tube)100parts per tube / 20tube per box
ST75C176BD-40 to 85 °CSO-8 (Tube)100parts per tube / 20tube per box
ST75C176CDR0 to 70 °CSO-8 (Tape & Reel)2500 parts per reel
ST75C176BDR-40 to 85 °CSO-8 (Tape & Reel)2500 parts per reel
Absolute Maximum Ratings are those values beyond which damage to the device may occur. Functional operation under these condition is
not implied.
Supply Voltage
CC
Control Input Voltage (RE, DE)-0.5 to (VCC+ 0.5)
I
Driver Input Voltage (DI)-0.5 to (VCC+ 0.5)
DI
Driver Output Voltage (A, B)
DO
Receiver Input Voltage (A, B)
RI
Receiver Output Voltage (RO)-0.5 to (VCC+ 0.5)
RO
7V
V
V
± 14V
± 14V
V
2/13
Page 3
ST75C176
DC ELECTRICAL CHARACTERISTICS
(V
=5V± 5%,TA=T
CC
(See Note 1)
SymbolParameterTest ConditionsMin.Typ.Max.Unit
V
V
∆V
V
∆V
V
∆V
V
V
I
I
OSD1
I
OSD2
I
Note 1: All currents into device pins are positive; all cuttents out of device pins are negative; all voltages are referenced to device ground
unless specified.
Note 2: Supply current specification is valid for loaded transmitters when V
Note 3: Applies to peak current. See typical Operating Characteristics.
Differential Driver Output
OD1
(No Load)
Differential Driver Output
OD2
(With Load)
Change in Magnitude of
OD
Driver Differential Output
Voltage for Complementary
Output States
Driver Common-Mode
OC
Output Voltage
Change in Magnitude of
OC
Driver Common-Mode
Output Voltage for
Complementary Output
States
V
Input High VoltageRE, DE, DI2.0V
IH
Input Low VoltageRE, DE, DI0.8V
V
IL
Input CurrentRE, DE, DI± 2µA
I
IN1
Input Current (A, B)VCM= 0V or 5.25VVDE=0V
I
IN2
Receiver Differential
TH
Threshold Voltage
Receiver Input HysteresisVCM=0V70mV
TH
Receiver Output High
OH
Voltage
Receiver Output Low
OL
Voltage
3-State (High Impedance)
OZR
Output Current at Receiver
Receiver Input ResistanceVCM= -7 to 12V12KΩ
R
IN
No Load Supply Current
I
CC
(Note 2)
Driver Short-Circuit Current,
=High
V
O
Driver Short-Circuit Current,
=Low
V
O
Receiver Short-Circuit
OSR
Current
MIN
to T
, unles s otherwise s pec ified. Typical v alues are referred to TA= 25°C)
MAX
5V
RL=27Ω (RS-485) (See Fig. 1)
R
=50Ω (RS-422) (See Fig. 1)
L
=27Ω or 50Ω (See Fig. 1)0.2V
R
L
1.55
5
RL=27Ω or 50Ω (See Fig. 1)3V
=27Ω or 50Ω (See Fig. 1)0.2V
R
L
V
V
IN
IN
= 12V
= -7V
1
-0.8
VCM= -7 to 12V-0.20.2V
IO= -4mAVID= 200mV3.5V
IO=4mAVID= -200mV0.4V
VO= 0.4 to 2.4V± 1µA
VRE=0VorV
VDE=V
VDE=0V
V
= -7 to 12V (Note 3)35250mA
O
V
= -7 to 12V (Note 3)35250mA
O
VO=0VtoV
CC
CC
CC
DE
=0V
400
300
900
500
795mA
V
V
mA
mA
µA
µA
3/13
Page 4
ST75C176
DRIVER SWITCHING CHARACTERISTICS
(V
=5V± 5%,TA=T
CC
(See Note 1)
SymbolParameterTest ConditionsMin.Typ.Max.Unit
t
t
t
t
t
t
t
Note 1: All currents into device pins are positive; all cuttents out of device pins are negative; all voltages are referenced to device ground
unless specified.
Propagation Delay Input to
PLH
Output
t
PHL
t
Output Skew to OutputR
SK
Rise or Fall TimeR
TLH
THL
Output Enable TimeCL= 100pFS2 = Closed
PZH
Output Enable TimeCL= 100pFS1 = Closed
PZL
Output Disable TimeCL= 15pFS1 = Closed
PLZ
Output Disable TimeCL= 15pFS2 = Closed
PHZ
MIN
toT
,unless otherwise specified. Typical values arereferred to TA=25°C)
MAX
R
=54ΩCL1=CL2= 100pF
DIFF
103060ns
(See Fig. 3 and 5)
=54ΩCL1=CL2= 100pF
DIFF
510ns
(See Fig. 3 and 5)
=54ΩCL1=CL2= 100pF
DIFF
31540ns
(See Fig. 3 and 5)
4070ns
(See Fig. 4 and 6)
4070ns
(See Fig. 4 and 6)
4070ns
(See Fig. 4 and 6)
4070ns
(See Fig. 4 and 6)
RECEIVER SWITCHING CHARACTERISTICS
(V
=5V± 5%,TA=T
CC
MIN
to T
, unles s otherwise s pec ified. Typical v alues are referred to TA= 25°C)
MAX
(See Note 1)
SymbolParameterTest ConditionsMin.Typ.Max.Unit
t
t
t
t
t
t
f
Note 1: All currents into device pins are positive; all cuttents out of device pins are negative; all voltages are referenced to device ground
unless specified.
Propagation Delay Input to
PLH
Output
t
PHL
Differential Receiver SkewR
SKD
Output Enable TimeCRL= 15pFS1 = Closed
PZH
Output Enable TimeCRL= 15pFS2 = Closed
PZL
Output Disable TimeCRL= 15pFS1 = Closed
PLZ
Output Disable TimeCRL= 15pFS2 = Closed
PHZ
Maximum Data Rate2.5Mbps
MAX
R
=54ΩCL1=CL2= 100pF
DIFF
(See Fig. 3 and 7)
=54ΩCL1=CL2= 100pF
DIFF
(See Fig. 3 and 7)
(See Fig. 2 and 8)
(See Fig. 2 and 8)
(See Fig. 2 and 8)
(See Fig. 2 and 8)
20130210ns
13ns
2050ns
2050ns
2050ns
2050ns
4/13
Page 5
TEST CIRCUITS AND TYPICAL CHARACTERISTICS
ST75C176
Figure1 : Driver DC Test Load
Figure2 : Receiver Timing Test Load
Figure3 : Drive/Receiver Timing TestCircuit
Figure4 : Driver Timing Test Load
5/13
Page 6
ST75C176
Figure5 : Driver Propagation Delay
Figure6 : Driver Enable and Disable Time
6/13
Page 7
Figure7 : Receiver Propagation Delay
Figure8 : Receiver Enable and Disable Time
ST75C176
7/13
Page 8
ST75C176
Figure9 : Receiver Output Current vs Output
Low Voltage
Figure10 : Receiver Output Current vs Output
High Voltage
Figure12 : D river Output Current vs Output High
Voltage
Figure13 : Supply Current vs Temp eratu re
Figure11 : Driver Output Current vs Out put Low
Voltage
8/13
Figure14 : Receiver High Level Output Voltage
vs Temperature
Page 9
ST75C176
Figure15 : Receiver Low Level Output Voltage
vs Temperature
Figure16 : Differential Driver Output Voltage vs
Temperature
Information furnished is believed to be accurate and reliable. However, STMicroelectronics assumes no responsibility for the
consequences of use o f suc h inf ormat ion n or f or an y infr ingeme nt of paten ts or oth er ri gh ts of third part ies whic h may resul t f rom
its use. No license is granted by implication or otherwise under any patent or patent rights of STMicroelectronics. Specifications
mentioned in this publication are subject to change without notice. This publication supersedes and replaces all information
previously supplied. STMicroelectronics products are not authorized for use as critical components in life support devices or
systems without express written approval of STMicroelectronics.
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