MAX3218_V01 [MAXIM]

1μA Supply Current, 1.8V to 4.25V-Powered RS-232 Transceiver with AutoShutdown;
MAX3218_V01
型号: MAX3218_V01
厂家: MAXIM INTEGRATED PRODUCTS    MAXIM INTEGRATED PRODUCTS
描述:

1μA Supply Current, 1.8V to 4.25V-Powered RS-232 Transceiver with AutoShutdown

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EVALUATION KIT AVAILABLE  
Click here for production status of specific part numbers.  
1μA Supply Current, 1.8V to 4.25V-Powered  
RS-232 Transceiver with AutoShutdown  
MAX3218  
General Description  
Features  
The MAX3218 RS-232 transceiver is intended for bat-  
tery-powered EIA/TIA-232E and V.28/V.24 communica-  
tions interfaces that need two drivers and two receivers  
with minimum power consumption from a single low-  
voltage supply. It provides a wide +1.8V to +4.25V  
operating voltage range while maintaining true RS-232  
and EIA/TIA-562 voltage levels. The MAX3218 runs  
from two alkaline, NiCd, or NiMH cells without any form  
of voltage regulator. A guaranteed 120kbps data rate  
provides compatibility with popular software for com-  
municating with personal computers.  
BETTER THAN BIPOLAR!  
o 1µA Supply Current Using AutoShutdown  
o Operates Directly from Two Alkaline,  
NiCd or NiMH Cells  
o +1.8V to +4.25V Single-Supply Voltage Range  
o 120kbps Data Rate Guaranteed  
o Low-Cost Surface-Mount Components  
o Meets EIA/TIA-232E Specifications  
o Three-State Receiver Outputs  
o Flow-Through Pinout  
Supply current is reduced to 1µA with Maxim’s new  
AutoShutdown™ feature. When the MAX3218 does not  
sense a valid signal level on the receiver inputs, the on-  
board power-supply and drivers shut down. This  
occurs if the RS-232 cable is disconnected or if the  
transmitters of the connected peripheral are turned off.  
The system turns on again when a valid level is applied  
to either RS-232 receiver input. As a result, the system  
saves power without changes to the existing software.  
Additionally, the MAX3218 can be forced into or out of  
shutdown, under logic control.  
o On-Board DC-DC Converters  
o 20-Pin SSOP and DIP Packages  
Ordering Information  
PART  
TEMP RANGE  
0ºC to +70ºC  
0ºC to +70ºC  
PIN-PACKAGE  
20 Plastic DIP  
20 SSOP  
MAX3218CPP+  
MAX3218CAP+  
MAX3218EAP+ -40ºC to +85ºC  
While shut down, all receivers can remain active or can  
be disabled under logic control, permitting a system  
incorporating the CMOS MAX3218 to monitor external  
devices while in low-power shutdown. Three-state dri-  
vers are provided on both receiver outputs so that multi-  
ple receivers, generally of different interface standards,  
can be on the same bus. The MAX3218 is available in  
20-pin DIP and SSOP packages.  
20 SSOP  
+Denotes a lead(Pb)-free/RoHS-compliant package.  
Pin Configuration  
TOP VIEW  
+
Applications  
LX  
GND  
V+  
1
2
20  
19  
18  
17  
16  
15  
14  
13  
12  
11  
Battery-Powered Equipment  
Subnotebook Computers  
PDAs  
INVALID  
C1+  
FORCEON  
FORCEOFF  
3
GND  
C1-  
4
Hand-Held Equipment  
Peripherals  
GND  
5
MAX3218  
V
V-  
CC  
6
Cellular Phones  
T1IN  
T2IN  
T1OUT  
T2OUT  
R1IN  
R2IN  
7
8
R1OUT  
R2OUT  
9
10  
DIP/SSOP  
AutoShutdown is a trademark of Maxim Integrated Products.  
19-0380; Rev 2; 5/18  
1μA Supply Current, 1.8V to 4.25V-Powered  
RS-232 Transceiver with AutoShutdown  
MAX3218  
Absolute Maximum Ratings  
Supply Voltages  
Short-Circuit Duration, R_OUT, T_OUT to GND ....... Continuous  
V
....................................................................-0.3V to +4.6V  
Continuous Power Dissipation (T = +70°C)  
CC  
A
V+.......................................................... (V  
- 0.3V) to +7.5V  
Plastic DIP (derate 11.11mW/°C above +70°C) ..........889mW  
SSOP (derate 8.00mW/°C above +70°C) ..................640mW  
Operating Temperature Ranges  
CC  
V- .......................................................................+0.3V to -7.4V  
to V-..........................................................................+12V  
V
CC  
LX ................................................................-0.3V to (1V + V+)  
Input Voltages  
T_IN, FORCEON, FORCEOFF ............................ -0.3V to +7V  
R_IN ................................................................................. 25V  
Output Voltages  
MAX3218C_ P................................................... 0°C to +70°C  
MAX3218E_ P................................................. -40°C to +85°C  
Storage Temperature Range ........................... -65°C to +150°C  
Lead Temperature (soldering, 10sec) ........................... +300°C  
T_OUT............................................................................. 15V)  
R_OUT....................................................-0.3V to (V  
+ 0.3V)  
CC  
Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional  
operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to  
absolute maximum rating conditions for extended periods may affect device reliability.  
Electrical Characteristics  
(Circuit of Figure 1, V = 1.8V to 4.25V, C1 = 0.47µF, C2 = C3 = C4 = 1µF, L1 = 15µH, T = T  
to T  
, unless otherwise noted.  
MAX  
CC  
A
MIN  
Typical values are at V = 3.0V, T = +25°C.)  
CC  
A
PARAMETER  
CONDITIONS  
MIN  
TYP  
MAX  
UNITS  
DC CHARACTERISTICS  
Operating Voltage Range  
1.8  
4.25  
10  
V
V
= 3.0V, T = +25°C, all R_IN open,  
A
CC  
Supply Current, AutoShutdown™  
1.0  
1.0  
2.0  
µA  
µA  
mA  
FORCEON = GND, FORCEOFF = V  
CC  
Supply Current, Shutdown  
FORCEOFF = GND, T = +25°C, V  
= 3.0V  
10  
CC  
A
Supply Current,  
AutoShutdown™ Disabled  
FORCEON = FORCEOFF = V  
= 3.0V, no load  
3.0  
CC  
LOGIC INPUTS AND RECEIVER OUTPUTS  
Input Logic Threshold Low  
Input Logic Threshold High  
Input Leakage Current  
Output Voltage Low  
T_IN, FORCEON, FORCEOFF  
T_IN, FORCEON, FORCEOFF  
T_IN, FORCEON = FORCEOFF = 0V or V  
0.33 x V  
V
V
CC  
0.67 x V  
CC  
0.001  
1
µA  
V
CC  
R_OUT, I  
R_OUT, I  
= 1.0mA  
= -0.4mA  
0.4  
OUT  
OUT  
Output Voltage High  
V
CC  
- 0.25  
V
- 0.08  
CC  
V
R_OUT, 0V R_OUT V  
,
CC  
Output Leakage Current  
0.05  
10  
µA  
FORCEON = FORCEOFF = 0V  
AUTOSHUTDOWN (FORCEON = GND, FORCEOFF = V  
)
CC  
Positive threshold  
Negative threshold  
2.8  
Receiver Input Thresholds,  
Figure 4a  
V
V
Transmitters Enabled  
-2.8  
-0.3  
Receiver Input Thresholds  
Transmitters Disabled  
1µA supply current, Figure 4a  
0.3  
0.4  
INVALID Output Low Voltage  
INVALID Output High Voltage  
I
I
= 1.0mA, -0.3V < R_IN < 0.3V  
= -0.4mA, R_IN > 2.8V  
V
V
OUT  
V
- 0.25  
CC  
|
|
OUT  
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Maxim Integrated | 2  
1μA Supply Current, 1.8V to 4.25V-Powered  
RS-232 Transceiver with AutoShutdown  
MAX3218  
Electrical Characteristics (continued)  
(Circuit of Figure 1, V = 1.8V to 4.25V, C1 = 0.47µF, C2 = C3 = C4 = 1µF, L1 = 15µH, T = T  
to T  
, unless otherwise noted.  
MAX  
CC  
A
MIN  
Typical values are at V = 3.0V, T = +25°C.)  
CC  
A
PARAMETER  
CONDITIONS  
MIN  
TYP  
MAX  
UNITS  
EIA/TIA-232E RECEIVER INPUTS  
Input Voltage Range  
-25  
0.4  
0.3  
+25  
V
V
V
= 2.0V to 4.25V  
CC  
CC  
CC  
CC  
Input Threshold Low  
Input Threshold High  
V
V
V
= 1.8V to 4.25V  
= 1.8V to 4.25V  
= 1.8V to 3.6V  
3.0  
2.8  
V
Input Hysteresis  
Input Resistance  
0.7  
5
V
-15V < R_IN < 15V  
3
7
kΩ  
EIA/TIA-232E TRANSMITTER OUTPUTS  
Output Voltage Swing  
Output Resistance  
All transmitter outputs loaded with 3kΩ to ground  
= 0V, -2V < T_OUT < 2V  
5
6
V
Ω
V
CC  
300  
Output Short-Circuit Current  
24  
100  
mA  
Timing Characteristics  
(Circuit of Figure 1, V = 1.8V to 4.25V, C1 = 0.47µF, C2 = C3 = C4 = 1µF, L1 = 15µH, T = T  
to T  
, unless otherwise noted.  
MAX  
CC  
A
MIN  
Typical values are at V = 3.0V, T = +25°C.)  
A
CC  
PARAMETER  
Data Rate  
SYMBOL  
CONDITIONS  
MIN  
120  
TYP  
MAX  
UNITS  
2500pF || 3kΩ load each transmitter, one trans-  
mitter switching, 150pF load each receiver  
235  
kbps  
Receiver Output Enable Time  
Receiver Output Disable Time  
Transmitter Output Enable Time  
Transmitter Output Disable Time  
t
90  
300  
500  
450  
ns  
ns  
µs  
ns  
ER  
t
200  
250  
500  
290  
260  
1.9  
DR  
t
ET  
t
DT  
t
t
150pF load  
1000  
1000  
2.7  
PHLR  
Receiver Propagation Delay  
Transmitter Propagation Delay  
ns  
µs  
150pF load  
PLHR  
t
2500pF || 3kΩ load  
2500pF || 3kΩ load  
PHLT  
PLHT  
t
1.8  
2.7  
T
= +25°C, V  
= 3.0V, R = 3kΩ to 7kΩ,  
L
CC  
A
L
Transition Region Slew Rate  
C = 50pF to 2500pF, measured from  
3.0  
30  
V/µs  
+3V to -3V or -3V to +3V  
AUTOSHUTDOWN TIMING  
Receiver Threshold to  
Transmitters Enabled  
t
Figure 4b  
Figure 4b  
Figure 4b  
250  
1
µs  
µs  
µs  
WU  
Receiver Positive or Negative  
Threshold to INVALID High  
t
INVH  
Receiver Positive or Negative  
Threshold to INVALID Low  
t
30  
INVL  
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Maxim Integrated | 3  
1μA Supply Current, 1.8V to 4.25V-Powered  
RS-232 Transceiver with AutoShutdown  
MAX3218  
Typical Operating Characteristics  
(Circuit of Figure 1, V = 1.8V, all transmitter outputs loaded with 3kΩ, T = +25°C, unless otherwise noted.)  
CC  
A
TRANSMITTING SUPPLY CURRENT  
vs. LOAD CAPACITANCE  
SUPPLY CURRENT vs.  
SUPPLY VOLTAGE  
100  
90  
140  
120  
100  
80  
1 TRANSMITTER FULL DATA RATE  
1 TRANSMITTER 1/8 DATA RATE  
L
V
= 2.4V  
CC  
R
= 3kΩ + 2500pF  
80  
70  
60  
235kbps  
120kbps  
TRANSMITTER 1 OPERATING  
AT SPECIFIED BIT RATE,  
TRANSMITTER 2 OPERATING  
AT 1/16 THAT RATE.  
240kbps  
60  
120kbps  
50  
40  
20kbps  
0kbps  
40  
20  
20kbps  
1000  
30  
20  
0
0
2000  
3000  
4000 5000  
1.8  
2.4  
3.0  
3.6  
4.2  
LOAD CAPACITANCE (pF)  
SUPPLY VOLTAGE (V)  
TIME TO EXIT SHUTDOWN  
(ONE TRANSMITTER HIGH,  
ONE TRANSMITTER LOW)  
FORCEON, FORCEOFF  
V
OH  
2V/div  
T_OUT  
V
R
1.8V  
= 3kΩ || 2500pF  
CC =  
L
V
OL  
100μs/div  
TRANSMITTER OUTPUT VOLTAGE vs.  
LOAD CAPACITANCE AT 120kbps  
SLEW RATE vs.  
TRANSMITTER CAPACITANCE  
8
6
12  
10  
8
V
OUT+  
4
2
0
+SLEW  
-SLEW  
6
-2  
-4  
4
DATA RATE 120kbps,  
TRANSMITTERS LOADED WITH  
3kΩ PLUS INDICATED CAPACITANCE  
V
OUT-  
2
0
-6  
-8  
1000  
LOAD CAPACITANCE (pF)  
0
2000  
3000  
4000 5000  
1000  
LOAD CAPACITANCE (pF)  
0
2000  
3000  
4000 5000  
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Maxim Integrated | 4  
1μA Supply Current, 1.8V to 4.25V-Powered  
RS-232 Transceiver with AutoShutdown  
MAX3218  
Pin Description  
PIN  
NAME  
FUNCTION  
LX  
Inductor/Diode Connection Point  
1
Output of Invalid Signal Detector. Low if invalid RS-232 levels are present on all receiver inputs,  
otherwise high.  
2
3
4
INVALID  
FORCEON  
FORCEOFF  
GND  
Drive high when FORCEOFF = high to override automatic circuitry, keeping transmitters on.  
Drive low to shut down transmitters and on-board power supply, overriding all automatic  
circuitry and FORCEON.  
5, 17, 20  
6
Ground  
V
CC  
Supply Voltage Input, 1.8V to 4.25V. Bypass to GND with at least 1µF.  
Transmitter Inputs  
7, 8  
T1IN, T2IN  
R1OUT, R2OUT  
R2IN, R1IN  
T2OUT, T1OUT  
V-  
9, 10  
11, 12  
13, 14  
15  
Receiver Outputs  
Receiver Inputs  
Transmitter Outputs, swing between V+ and V-  
Negative Supply generated on-board  
Terminal for Charge-Pump Capacitor  
Positive Supply generated on-board  
16, 18  
19  
C1-, C1+  
V+  
The MAX3218 is equipped with Maxim’s new propri-  
etary AutoShutdown circuitry. This achieves a 1µA sup-  
Detailed Description  
The MAX3218 line driver/receiver is intended for bat-  
tery-powered EIA/TIA-232 and V.28/V.24 communica-  
tions interfaces that require two drivers and two  
receivers. The operating voltage extends from 1.8V to  
4.25V, yet the device maintains true RS-232 and  
EIA/TIA-562 transmitter output voltage levels. This wide  
supply voltage range permits direct operation from a  
variety of batteries without the need for a voltage regu-  
lator. For example, the MAX3218 can be run directly  
from a single lithium cell or a pair of alkaline cells. It  
can also be run directly from two NiCd or NiMH cells  
from full-charge voltage down to the normal 0.9V/cell  
end-of-life point. The 4.25V maximum supply voltage  
allows the two rechargeable cells to be trickle- or fast-  
charged while driving the MAX3218.  
ply current by shutting down the device when the  
RS-232 cable is disconnected or when the connected  
peripheral transmitters are turned off. While shut down,  
both receivers can remain active or can be disabled  
under logic control. With this feature, the MAX3218 can  
be in low-power shutdown mode and still monitor activi-  
ty on external devices. Three-state drivers are provid-  
ed on both receiver outputs.  
Three-state drivers on both receiver outputs are provid-  
ed so that multiple receivers, generally of different inter-  
face standards, can be wire-ORed at the UART.  
Switch-Mode Power Supply  
The switch-mode power supply uses a single inductor  
with one diode and three small capacitors to generate  
6.5V from an input voltage in the 1.8V to 4.25V range.  
The circuit comprises three sections: power supply,  
transmitters, and receivers. The power-supply section  
converts the supplied input voltage to 6.5V, providing the  
voltages necessary for the drivers to meet true RS-232  
levels. External components are small and inexpensive.  
Inductor Selection  
Use a 15µH inductor with a saturation current rating of at  
least 350mA and less than 1Ω resistance. Table 1 lists  
suppliers of inductors that meet the 15µH/350mA/1Ω  
specifications.  
The transmitters and receivers are guaranteed to oper-  
ate at 120kbps data rates, providing compatibility with  
LapLink™ and other high-speed communications soft-  
ware.  
™ LapLink is a trademark of Traveling Software, Inc.  
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Maxim Integrated | 5  
1μA Supply Current, 1.8V to 4.25V-Powered  
RS-232 Transceiver with AutoShutdown  
MAX3218  
Table 1. Suggested Component Suppliers  
MANUFACTURER  
Inductors  
PART NUMBER  
PHONE  
FAX  
Murata-Erie  
LQH4N150K-TA  
USA (814) 237-1431  
USA (814) 238-0490  
USA (708) 956-0666  
Japan (03) 3607-5111  
USA (708) 956-0702  
Japan (03) 3607-5428  
Sumida  
CD43150  
USA (708) 803-6100  
Japan (03) 3278-5111  
USA (708) 803-6296  
Japan (03) 3278-5358  
TDK  
NLC453232T-150K  
Diodes—Surface-Mount  
Allegro  
TMPD6050LT  
USA (508) 853-5000  
USA (516) 435-1110  
USA (408) 749-0510  
USA (401) 762-3800  
USA (508) 853-7556  
USA (516) 435-1824  
USA (408) 991-7420  
USA (401) 767-4493  
Central Semiconductor  
Motorola  
CMPSH-3 (Schottky)  
MMBD6050LT1 (silicon)  
PMBD6050 (silicon)  
Philips  
Diodes—Through-Hole  
1N6050 (silicon),  
1N5817 (Schottky)  
USA (408) 749-0510  
USA (408) 991-7420  
Motorola  
Diode Selection  
Key diode specifications are fast recovery time (<10ns),  
average current rating (>100mA), and peak current rat-  
ing (>350mA). Inexpensive fast silicon diodes, such as  
the 1N6050, are generally recommended. More expen-  
sive Schottky diodes improve efficiency and give slightly  
better performance at very low VCC voltages. Table 1  
lists suppliers of both surface-mount and through-hole  
diodes. 1N914s are usually satisfactory, but specifica-  
tions and performance vary widely with different manu-  
facturers.  
15μH  
1N6050  
1.8V to  
4.25V  
C2  
1μF  
C4  
1μF  
6
V
1
LX  
19  
V+  
CC  
15  
V-  
C3  
1μF  
3
FORCEON MAX3218  
FORCEOFF  
18  
16  
4
2
C1+  
C1-  
C1  
0.47μF  
INVALID  
T1IN  
T1  
T1OUT 14  
Capacitor Selection  
Use capacitors with values at least as indicated in  
Figure 1. Capacitor C2 determines the ripple on V+, but  
not the absolute voltage. Capacitors C1 and C3 deter-  
mine both the ripple and the absolute voltage of V-.  
Bypass VCC to GND with at least 1µF (C4) placed close  
to pins 5 and 6. If the VCC line is not bypassed else-  
where (e.g., at the power supply), increase C4 to 4.7µF.  
7
8
9
T2IN  
T2  
T2OUT 13  
R1IN 12  
R1OUT  
R1  
5kΩ  
R2OUT  
R2  
10  
R2IN 11  
5kΩ  
You may use ceramic or polarized capacitors in all  
locations. If you use polarized capacitors, tantalum  
types are preferred because of the high operating fre-  
quency of the power supplies (about 250kHz). If alu-  
minum electrolytics are used, higher capacitance  
values may be required.  
GND  
5, 17, 20  
Figure 1. Typical Operating Circuit  
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Maxim Integrated | 6  
1μA Supply Current, 1.8V to 4.25V-Powered  
RS-232 Transceiver with AutoShutdown  
MAX3218  
Table 2. Receiver Status  
FORCEOFF  
FORCEON  
FORCEON  
FORCEOFF  
RECEIVER STATUS  
POWER  
MANAGEMENT  
UNIT OR  
KEYBOARD  
CONTROLLER  
INVALID  
X
H
L
H
X
L
Receiver Enabled  
Receiver Disabled  
MAX3218  
Shutdown  
When FORCEOFF is low, power supplies are disabled  
and the transmitters are placed in a high-impedance  
state. Receiver operation is not affected by taking  
FORCEOFF low. Power consumption is dramatically  
reduced in shutdown mode. Supply current is minimized  
when the receiver inputs are static in any one of three  
I/O  
CHIP  
WITH  
UART  
CPU  
RS-232  
states: floating (ground), GND, or V  
.
CC  
AutoShutdown  
A 1µA supply current is achieved with Maxim’s new  
AutoShutdown feature, which operates when FORCEON  
is low and FORCEOFF is high. When the MAX3218  
senses no valid signal level on either receiver input for  
typically 30µs, the on-board power supply and drivers  
shut down, reducing supply current to 1µA. Internal 5kΩ  
resistors pull undriven receiver inputs to ground. This  
occurs if the RS-232 cable is disconnected or if the con-  
nected peripheral transmitters are turned off. The sys-  
tem turns on again when a valid level is applied to either  
RS-232 receiver input. As a result, the system saves  
power without changes to the existing BIOS or operating  
system. When using the AutoShutdown feature, INVALID  
is high when the device is on and low when the device is  
shut down. The INVALID output indicates the condition  
of the receiver inputs.  
Figure 2. Interface Under Control of PMU  
RS-232 Drivers  
The two drivers are identical, and deliver EIA/TIA-232E  
and EIA/TIA-562 output voltage levels when VCC is  
between 1.8V and 4.25V. One transmitter can drive up  
to 3kΩ in parallel with 2500pF at up to 120kbps.  
Connect unused drivers to either GND or VCC. When  
FORCEOFF is driven low, or when AutoShutdown circuit-  
ry senses invalid voltage levels at all receiver inputs, the  
drivers are disabled and their outputs are forced into a  
high-impedance state. Driver inputs do not have internal  
pull-up resistors.  
Table 3 summarizes the MAX3218 operating modes.  
FORCEON and FORCEOFF override the automatic cir-  
cuitry and force the transceiver into its normal operating  
state or into its low-power standby state. When neither  
control is asserted, the IC selects between these states  
automatically based on receiver input levels. Figure 4  
depicts valid and invalid RS-232 receiver levels. The  
RS-232 Receivers  
The two receivers are identical, and accept both  
EIA/TIA-232E and EIA/TIA-562 input signals. The  
CMOS receiver outputs are inverting and swing rail-to-  
rail. Receivers are disabled only when FORCEON and  
FORCEOFF inputs are low. (See Table 2.)  
Table 3. AutoShutdown Logic  
RS-232 SIGNAL  
PRESENT AT  
RECEIVER INPUT  
FORCEOFF INPUT  
FORCEON INPUT  
INVALID OUTPUT  
TRANSCEIVER STATUS  
Normal Operation  
Yes  
No  
H
H
H
L
X
H
L
H
L
Normal Operation (Forced On)  
Shutdown (AutoShutdown)  
Shutdown (Forced Off)  
No  
L
Yes  
No  
X
X
H
L
L
Shutdown (Forced Off)  
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Maxim Integrated | 7  
1μA Supply Current, 1.8V to 4.25V-Powered  
RS-232 Transceiver with AutoShutdown  
MAX3218  
MAX3218 shuts down after sensing invalid RS-232 levels  
for greater than 30µs, ensuring that the AutoShutdown  
mode is not enabled for slow-moving signals (>1V/µs).  
drawn directly from the battery, without suffering the  
efficiency losses of the DC-DC converter. This pro-  
longs battery life.  
Another system with AutoShutdown may need a period  
of time to wake up. Figure 5 shows a circuit that forces  
the transmitters on for 100ms after start-up, allowing  
enough time for the other system to realize that the  
MAX3218 system is awake. If the other system outputs  
valid RS-232 signals within that time, the RS-232 ports on  
both systems remain enabled.  
Bypass the input supplies with 0.1µF at VCC (C4) and at  
least 1µF at the inductor (C5). Increase C5 to 4.7µF if  
the power supply has no other bypass capacitor con-  
nected to it.  
Low-Power Operation  
The following suggestions will help you get maximum  
life out of your batteries.  
Applications Information  
Transmit at the highest practical data rate. Although  
this raises the supply current while transmission is in  
progress, the transmission will be over sooner. If the  
MAX3218 is shut down (using FORCEOFF) as soon as  
each transmission ends, this practice will save energy.  
Operation from Regulated/Unregulated  
Dual System Power Supplies  
The MAX3218 is intended for use with three different  
power-supply sources: it can be powered directly from  
a battery, from a 3.0V or 3.3V power supply, or simulta-  
neously from both. Figure 1 shows the single-supply  
configuration. Figure 6 shows the circuit for operation  
from both a 3V supply and a raw battery supply—an  
ideal configuration where a regulated 3V supply is  
being derived from two cells. In this application, the  
MAX3218’s logic levels remain appropriate for interface  
with 3V logic, yet most of the power for the MAX3218 is  
Operate your whole system from the raw battery volt-  
age rather than suffer the losses of a regulator or DC-  
DC converter. If this is not possible, but your system is  
powered from two cells and employs a 3V DC-DC con-  
verter to generate the main logic supply, use the circuit  
of Figure 6. This circuit draws most of the MAX3218’s  
power straight from the battery, but still provides logic-  
level compatibility with the 3V logic.  
+0.3V to +2.8V  
-0.3V to -2.8V  
+
-
FORCEOFF  
FORCEON  
POWER DOWN  
+
-
R_IN  
Rx  
R_OUT  
30µs  
DELAY  
FORCEON  
FORCEOFF  
INVALID  
FORCEOFF  
FORCEON INVALID POWER DOWN  
0
0
0
0
1
1
1
1
0
0
1
1
0
0
1
1
0
1
0
1
0
1
0
1
0
0
0
0
0
1
1
1
INVALID IS AN INTERNALLY GENERATED SIGNAL  
THAT IS USED BY THE AUTOSHUTDOWN LOGIC  
AND APPEARS AS AN OUTPUT OF THE DEVICE.  
POWER DOWN IS ONLY AN INTERNAL SIGNAL.  
IT CONTROLS THE OPERATIONAL STATUS OF  
THE TRANSMITTERS AND THE POWER SUPPLIES.  
Figure 3. AutoShutdown Logic  
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Maxim Integrated | 8  
1μA Supply Current, 1.8V to 4.25V-Powered  
RS-232 Transceiver with AutoShutdown  
MAX3218  
Keep communications cables short to minimize capaci-  
tive loading. Lowering the capacitive loading on the  
transmitter outputs reduces the MAX3218’s power con-  
sumption. Using short, low-capacitance cable also  
helps transmission at the highest data rates.  
TRANSMITTERS ENABLED, INVALID HIGH  
EIA/TIA-232E and  
IA/TIA-562 Standards  
+2.8V  
INDETERMINATE  
RS-232 circuits consume much of their power because  
the EIA/TIA-232E standard demands that the transmit-  
ters deliver at least 5V to receivers with impedances  
that can be as low as 3kΩ. For applications where  
power consumption is critical, the EIA/TIA-562 standard  
provides an alternative.  
+0.3V  
0V  
AUTOSHUTDOWN, TRANSMITTERS DISABLED,  
1μA SUPPLY CURRENT, INVALID LOW  
-0.3V  
INDETERMINATE  
-2.8V  
EIA/TIA-562 transmitter output voltage levels need only  
reach 3.7V, and because they have to drive the same  
3kΩ receiver loads, the total power consumption is con-  
siderably reduced. Since the EIA/TIA-232E and  
EIA/TIA-562 receiver input voltage thresholds are the  
same, interoperability between EIA/TIA-232E and  
EIA/TIA-562 devices is guaranteed. Maxim’s MAX560  
and MAX561 are EIA/TIA-562 transceivers that operate  
on a single supply from 3.0V to 3.6V, and the MAX562  
TRANSMITTERS ENABLED, INVALID HIGH  
(a)  
RECEIVER  
INPUT  
VOLTAGE  
(V)  
transceiver operates from 2.7V to 5.25V while produc-  
INVALID  
REGION  
ing EIA/TIA-562 levels.  
V
CC  
0
POWER  
MANAGEMENT  
UNIT  
MASTER SHDN LINE  
INVALID  
OUTPUT  
(V)  
0.1µF  
1M  
t
t
INVH  
INVL  
V+  
V
CC  
0V  
FORCEOFF FORCEON  
V-  
MAX3218  
t
WU  
(b)  
Figure 4. AutoShutdown Trip Levels  
Figure 5. AutoShutdown with Initial Turn-On to Wake Up a  
System  
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Maxim Integrated | 9  
1μA Supply Current, 1.8V to 4.25V-Powered  
RS-232 Transceiver with AutoShutdown  
MAX3218  
15μH  
1N6050  
1μF  
C5  
3V  
C2  
1μF  
DC-DC  
CONVERTER  
MAX878  
OR  
MAX756  
OR  
1
LX  
19  
V+  
6
V
15  
18  
16  
CC  
V-  
C4  
0.1μF  
C3  
1μF  
3
FORCEON  
MAX856  
4
2
C1+  
C1-  
FORCEOFF  
C1  
0.47μF  
MAX3218  
INVALID  
T1IN  
T1OUT 14  
7
T1  
8
9
T2IN  
T2OUT 13  
R1IN 12  
T2  
R1  
R1OUT  
5kΩ  
R2IN 11  
5kΩ  
R2OUT  
10  
R2  
GND  
5, 17, 20  
Figure 6. Operating from Unregulated and Regulated Supplies  
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Maxim Integrated | 10  
1μA Supply Current, 1.8V to 4.25V-Powered  
RS-232 Transceiver with AutoShutdown  
MAX3218  
+3V-Powered EIA/TIA-232 and EIA/TIA-562 Transceivers from Maxim  
GUAR-  
ANTEED  
DATA  
RATE  
(kbps)  
No. OF  
RECEIVERS  
ACTIVE IN  
SUPPLY  
VOLTAGE  
(V)  
No. OF  
TRANSMITTERS/  
RECEIVERS  
EIA/TIA-  
232  
OR 562  
PART  
FEATURES  
SHUTDOWN  
MAX212  
3.0 to 3.6  
2.7 to 3.6  
3/5  
3/5  
5
5
120  
232  
232  
Drives mice  
AutoShutdown, complementary  
receiver, drives mice, transient  
detection  
MAX3212  
120  
Operates directly from a battery  
without a voltage regulator  
MAX218  
1.8 to 4.25  
1.8 to 4.25  
2/2  
2/2  
2
2
120  
120  
232  
232  
Same as MAX218 but with  
AutoShutdown  
MAX3218  
MAX560  
MAX561  
MAX562  
MAX563  
MAX3222  
MAX3223  
MAX3232  
3.0 to 3.6  
3.0 to 3.6  
2.7 to 5.25  
3.0 to 3.6  
3.0 to 5.5  
3.0 to 5.5  
3.0 to 5.5  
4/5  
4/5  
3/5  
2/2  
2/2  
2/2  
2/2  
2
0
5
2
2
2
2
120  
120  
230  
120  
120  
120  
120  
562  
562  
562  
562  
232  
232  
232  
Pin-compatible with MAX213  
Pin-compatible with MAX214  
Wide supply range  
0.1µF capacitors  
0.1µF capacitors  
AutoShutdown, 0.1µF capacitors  
Pin-compatible with MAX232  
0.1µF capacitors, 2 complemen-  
tary receivers, drives mice  
MAX3241  
MAX3243  
3.0 to 5.5  
3.0 to 5.5  
3/5  
3/5  
5
1
120  
120  
232  
232  
0.1µF capacitors, AutoShutdown,  
complementary receiver,  
drives mice  
www.maximintegrated.com  
Maxim Integrated | 11  
1μA Supply Current, 1.8V to 4.25V-Powered  
RS-232 Transceiver with AutoShutdown  
MAX3218  
Chip Topography  
INVALID LX GND  
V+  
FORCEON  
C1+  
FORCEOFF  
GND  
C1-  
V-  
0.101"  
(2.565mm)  
GND  
T1OUT  
T2OUT  
V
CC  
T1IN  
T2IN  
R1IN  
R2OUT  
0.122"  
R2IN  
R1OUT  
(3.099mm)  
TRANSISTOR COUNT: 571  
SUBSTRATE CONNECTED TO GND  
Package Information  
INCHES  
MILLIMETERS  
DIM  
MIN  
0.068  
A1 0.002  
MAX  
0.078  
0.008  
0.015  
0.008  
MIN  
1.73  
0.05  
0.25  
0.09  
MAX  
1.99  
0.21  
0.38  
0.20  
A
B
C
D
E
e
0.010  
0.004  
SEE VARIATIONS  
α
0.205  
0.209  
5.20  
5.38  
E
H
0.0256 BSC  
0.65 BSC  
H
L
α
0.301  
0.025  
0˚  
0.311  
0.037  
8˚  
7.65  
0.63  
0˚  
7.90  
0.95  
8˚  
C
L
INCHES  
MILLIMETERS  
DIM PINS  
MAX  
6.33  
6.33  
7.33  
8.33  
10.33  
21-0056A  
MIN MAX MIN  
0.239 0.249 6.07  
0.239 0.249 6.07  
0.278 0.289 7.07  
0.317 0.328 8.07  
0.397 0.407 10.07  
e
D
D
D
D
D
14  
16  
20  
24  
28  
SSOP  
SHRINK  
SMALL OUTLINE  
PACKAGE  
A
B
A1  
D
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Maxim Integrated | 12  
1μA Supply Current, 1.8V to 4.25V-Powered  
RS-232 Transceiver with AutoShutdown  
MAX3218  
Revision History  
REVISION REVISION  
PAGES  
DESCRIPTION  
CHANGED  
NUMBER  
DATE  
0
1
2
3/95  
Initial release  
4/18  
5/18  
Added lead-free designation to part numbers in Ordering Information  
Removed MAX3218C/D and MAX3218EPP+ from Ordering Information  
1
1
For pricing, delivery, and ordering information, please contact Maxim Direct at 1-888-629-4642, or visit Maxim Integrated’s website at www.maximintegrated.com.  
Maxim Integrated cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim Integrated product. No circuit patent  
licenses are implied. Maxim Integrated reserves the right to change the circuitry and specifications without notice at any time. The parametric values (min and  
max limits) shown in the Electrical Characteristics table are guaranteed. Other parametric values quoted in this data sheet are provided for guidance.  
Maxim Integrated and the Maxim Integrated logo are trademarks of Maxim Integrated Products, Inc.  
© 2018 Maxim Integrated Products, Inc. | 13  

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