UM3222EEUE [UNIONSEMI]

Fail-Safe, Single Supply RS-232 Transceivers;
UM3222EEUE
型号: UM3222EEUE
厂家: Union Semiconductor, Inc.    Union Semiconductor, Inc.
描述:

Fail-Safe, Single Supply RS-232 Transceivers

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UM3221E/UM3222E/UM3232E  
Fail-Safe, Single Supply RS-232 Transceivers  
UM3221E/UM3222E/UM3232E  
General Description  
The UM3221E/UM3222E/UM3232E series are 3.3V powered RS-232 transceivers intended for  
portable or hand-held applications. The UM3221E has one driver/one receiver while the  
UM3222E/UM3232E has two drivers/two receivers. The device features low power consumption,  
high data-rate capability and enhanced ESD protection. The ESD rating of all transmitter outputs  
and receiver inputs is ±15kV for both human body mode and IEC61000-4-2 air discharge methods,  
and over ±8kV for IEC61000-4-2 contact discharge methods. The logic I/O pins are protected to  
±2kV for human body mode.  
Small footprint, low profile package and the use of small 0.1μF capacitors ensure board space  
savings as well. Data rates greater than 250kbps are guaranteed at worst case load conditions. This  
family is fully compatible with 3.3V-only systems, mixed 1.8V and 3.3V systems, mixed 3.3V and  
5.0V systems and 5.0V-only systems.  
The UM3221E/UM3222E has a low-power shutdown mode where the devicesdriver outputs and  
charge pumps are disabled. During shutdown, the supply current falls to less than 1μA that  
reduces power consumption in battery-powered portable systems or other low power consumption  
systems. The UM3221E/UM3222E receivers remain active in shutdown mode, allowing  
monitoring of external signals.  
The UM3221E/UM3222E and UM3232E are pin, package, and functionally compatible with the  
industry standard MAX242 and MAX 232, respectively.  
Applications  
Features  
Industrial Automation Equipments  
Meets True EIA/TIA-232-F Standards from a  
Battery-Powered Equipments  
Hand-Held Equipments  
POS Terminals  
+3.0V to +5.5V Power Supply  
Meets EIA/TIA-562 Levels of ±3.7V with  
Supply Voltages as Low as 2.7V  
Enhanced ESD Specifications:  
±15kV Human Body Mode  
±15kV IEC61000-4-2 Air Discharge Mode  
±8kV IEC61000-4-2 Contact Discharge Mode  
1μA Low Power Shutdown  
(UM3221E/UM3222E)  
250kbps Minimum Transmission Rate  
Guaranteed 30V/μs Max Slew Rate  
Latch-Up Performance Exceeds 200mA  
Hot Swap and Fail-Safe  
I/O Logic Compatible with 1.8V Logic @  
VCC=3.3V  
________________________________________________________________________  
http://www.union-ic.com Rev.09 Mar.2016 1/16  
UM3221E/UM3222E/UM3232E  
Ordering Information  
Shipping Qty  
2000pcs/13 Inch  
Tape & Reel  
Part Number  
Temp. Range  
Package Type  
UM3221EEAE  
-40°C to +85°C  
SSOP16  
3000pcs/13 Inch  
Tape & Reel  
3000pcs/13 Inch  
Tape & Reel  
UM3221EEUE  
UM3222EEUE  
-40°C to +85°C  
-40°C to +85°C  
TSSOP16  
TSSOP20  
2500pcs/13 Inch  
Tape & Reel  
UM3232EESE  
UM3232EEPE  
UM3232EEUE  
-40°C to +85°C  
-40°C to +85°C  
-40°C to +85°C  
SOP16  
DIP16  
25pcs/Tube  
3000pcs/13 Inch  
Tape & Reel  
TSSOP16  
2000pcs/13 Inch  
Tape & Reel  
UM3232EEAE  
-40°C to +85°C  
SSOP16  
Absolute Maximum Ratings (Note 1)  
Symbol  
VCC  
Parameter  
Supply Voltage on VCC  
Voltage on V+  
Value  
Unit  
-0.3 to +6  
(VCC-0.3) to +7.5  
-7.5 to +0.3  
-0.3 to (VCC+0.3)  
±30  
V
V
V
V
V
V
V
V+  
V-  
Voltage on V-  
T_IN  
R_IN  
T_OUT  
R_OUT  
Voltage on T_IN  
Voltage on R_IN  
Voltage on T_OUT  
Voltage on R_OUT  
Short-Circuit Duration, T_OUT  
(V--0.3) to (V++0.3)  
-0.3 to (VCC+0.3)  
Continuous  
775  
SSOP16  
TSSOP20  
SOP16  
879  
Continuous Power Dissipation at  
TA=70°C  
PD  
mW  
696  
DIP16  
842  
TSSOP16  
754  
TA  
Operating Temperature Range  
Storage Temperature Range  
-40 to +85  
-65 to +165  
°C  
°C  
TSTG  
Maximum Lead Temperature for Soldering  
10 Seconds  
TL  
+300  
°C  
Note 1: 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.  
________________________________________________________________________  
http://www.union-ic.com Rev.09 Mar.2016  
2/16  
UM3221E/UM3222E/UM3232E  
Electrical Characteristics  
(VCC=+3.0V to +5.5V, C1- C4=0.1μF, TA=TMIN to TMAX, unless otherwise noted. Typical values  
are at TA=25°C)  
Parameter  
Symbol  
Conditions  
Min  
Typ  
Max Unit  
DC CHARACTERISTICS ( VCC=+3.3V or +5V, TA=25°C)  
VCC Supply Current  
Shutdown Supply  
Current  
ICC  
SHDN=VCC, No Load  
____________  
0.3  
1
1
mA  
ISHDN  
SHDN=GND  
μA  
LOGIC INPUTS  
Input Leakage  
Current  
____________ ______  
T_IN, SHDN, EN  
±1  
μA  
VCC=3.3V  
VCC=5.0V  
VCC=3.3V  
VCC=5.0V  
0.8  
0.8  
T_IN,  
SHDN, EN  
____________ ______  
Input Threshold Low  
Input Threshold High  
VIL  
VIH  
V
1.6  
2.2  
T_IN,  
____________ ______  
V
V
SHDN, EN  
VCC=3.3V  
0.2  
Transmitter  
Input Hysteresis  
VCC=5.0V  
0.15  
RECEIVER OUTPUTS  
VCC=3.3V, IOUT=10mA  
VCC=5.0V, IOUT=10mA  
VCC=3.3V, IOUT=-3.0mA  
VCC=5.0V, IOUT=-3.0mA  
0.8  
0.8  
Output Voltage Low  
VOL  
VOH  
V
V
2.8  
4.4  
Output Voltage High  
RECEIVER INPUTS  
Input Voltage Range  
-30  
0.8  
0.8  
30  
V
V
VCC=3.3V  
TA=+25°C  
1.15  
1.55  
1.35  
1.75  
0.2  
Input Threshold Low  
Input Threshold High  
VCC=5.0V  
VCC=3.3V  
TA=+25°C  
2
2
V
VCC=5.0V  
Input Hysteresis  
Input Resistance  
V
TA=+25°C  
3
5
7
kΩ  
TRANSMITTER OUTPUTS  
Output Voltage  
Swing  
All Drivers Loaded with  
±5.0  
±6.0  
±30  
V
3kΩ to Ground  
Short to  
VCC , GND  
or Other  
VCC=3.3V  
VCC=5.0V  
±60  
±60  
mA  
Output Short-Circuit  
Current  
±40  
mA  
TXD Pin  
________________________________________________________________________  
http://www.union-ic.com Rev.09 Mar.2016 3/16  
UM3221E/UM3222E/UM3232E  
Electrical Characteristics (Continued)  
(VCC=+3.0V to +5.5V, C1- C4=0.1μF, TA=TMIN to TMAX, unless otherwise noted. Typical values  
are at TA=25°C)  
Parameter  
Symbol  
Conditions  
Min  
Typ  
Max Unit  
TIMING CHARACTERISTICS  
RL=3kΩ to 7kΩ,  
CL=50pF to 1000pF,  
One Transmitter Switching  
Maximum Data Rate  
250  
kbps  
All Parts,  
Receiver Propagation  
tPLH, tPHL  
CL=150pF  
Figure 1  
Normal  
0.15  
μs  
Delay  
Operation  
Receiver Skew  
|tPHL-tPLH  
|
0.1  
μs  
μs  
μs  
RL=3kΩ,  
CL=2500pF,  
All Transmitters Loaded  
Figure 1  
Transmitter  
Propagation Delay  
tPLH, tPHL  
0.9  
15  
Transmitter Skew  
|tPHL-tPLH  
|
0.1  
30  
TA=+25°C, VCC=3.3V,  
RL=3kΩ to 7kΩ,  
Transition-Region  
Slew Rate  
CL=50pF to 1000pF,  
Measured from -3V to +3V  
or +3V to -3V,  
3
V/μs  
Figure 1  
ESD AND LATCH UP PERFORMANCE  
Human Body Model  
±15  
±8  
R_IN, T_OUT  
ESD-Protection  
Voltage  
IEC61000-4-2,  
Contact Discharge  
IEC61000-4-2,  
kV  
±15  
±2  
Air-Gap Discharge  
Logic Pin  
ESD-Protection  
Voltage  
Human Body Model  
kV  
Latch Up  
Performance  
JEDEC Standard No.78D  
±200  
mA  
________________________________________________________________________  
http://www.union-ic.com Rev.09 Mar.2016 4/16  
UM3221E/UM3222E/UM3232E  
Pin Configurations  
1
2
3
4
5
6
7
8
9
EN  
SHDN  
20  
19 VCC  
18  
C1+  
1
1
2
3
4
5
6
7
8
EN  
C1+  
V+  
VCC  
16  
15  
14  
13  
12  
11  
10  
9
16  
15 GND  
14  
SHDN  
VCC  
2
3
4
5
6
7
8
C1+  
V+  
C1-  
GND  
17 T1OUT  
16 R1IN  
V+  
C1-  
C2+  
C2-  
V-  
C1-  
C2+  
T1OUT  
GND  
T1OUT  
NC  
C2+  
13 R1IN  
12 R1OUT  
11 T1IN  
UM3222E  
UM3221E  
UM3232E  
C2-  
15 R1OUT  
C2-  
V-  
14  
V-  
NC  
T1IN  
NC  
T2OUT  
R2IN  
13 T1IN  
12 T2IN  
11 NC  
T2OUT  
R2IN  
10  
9
T2IN  
R1IN  
R2OUT  
R1OUT  
R2OUT 10  
SSOP16/TSSOP16  
Pin Description  
TSSOP20  
Pin Name  
SOP16/DIP16/TSSOP16/SSOP16  
Pin No.  
UM3221E UM3222E UM3232E  
Function  
______  
1
1
-
Receiver Enable. Active low.  
EN  
Positive Terminals of Voltage-Doubler  
Charge Pump Capacitor  
Positive Voltage Generated by the  
Charge Pump  
Negative Terminals of Voltage-Doubler  
Charge Pump Capacitor  
Positive Terminals of Inverting Charge  
Pump Capacitor  
Negative Terminals of Inverting Charge  
Pump Capacitor  
Negative Voltage Generated by the  
Charge Pump  
2
2
1
C1+  
V+  
3
4
5
6
7
3
4
5
6
7
2
3
4
5
6
C1-  
C2+  
C2-  
V-  
13  
8
8, 17  
9, 16  
10, 15  
12, 13  
18  
7, 14  
8, 13  
9, 12  
10, 11  
15  
T_OUT  
R_IN  
RS-232 Driver Outputs  
RS-232 Receiver Inputs  
RS-232 Receiver Outputs  
RS-232 Driver Inputs  
Ground  
9
R_OUT  
T_IN  
11  
14  
15  
GND  
19  
16  
VCC  
____________  
+3.0V to +5.5V Supply Voltage Input  
Shut off Pump Power and Transmitters.  
Active low.  
16  
20  
-
SHDN  
________________________________________________________________________  
http://www.union-ic.com Rev.09 Mar.2016 5/16  
UM3221E/UM3222E/UM3232E  
Detailed Description  
Dual Charge-Pump Voltage Converter  
The UM3221E/UM3222E/UM3232Es’ internal power supply consists of a regulated dual charge  
pump and provides output the maxim voltages of +7V (doubling charge pump) and -7V (inverting  
charge pump) over the +3.0V to +5.5V VCC range. The charge pump operates in discontinuous  
mode; if the output voltages are less than 7V, the charge pump is enabled, and if the output  
voltages exceed 7V, the charge pump is disabled. The charge pumps require only four small,  
external 0.1μF capacitors for the voltage doubler and inverter functions (see Figure 2).  
RS-232 Transmitters  
The transmitters are inverting level translators that translate TTL/CMOS inputs to EIA/TIA-232  
output levels. All UM3221E/UM3222E/UM3232E transmitters guarantee a 250kbps data rate for  
full load conditions (3kΩ and 1000pF). Transmitters can be paralleled to drive multiple receivers.  
RS-232 Receivers  
The receivers convert RS-232 signals to CMOS output levels and accept inputs up to ±30V while  
presenting the required 3kΩ to 7kΩ__i_n__p_ ut impedance. The UM3221E/UM3222E receivers have  
inverting three-state outputs. Drive EN high to place the receivers into a high impedance state.  
______  
Receivers can be either active or inactive in shutdown state depending on EN status.  
UM3221E/UM3222E  
____________  
Supply current falls to less than 1μA in shutdown mode (SHDN = GND). When shutdown, the  
device’s charge pumps are shut off, V+ is pulled down to VCC, V- is pulled to ground, and the  
transmitter outputs are disabled (high impedance). The time required to recover from shutdown is  
____________  
____________  
typically 100μs. Connect SHDN to VCC if shutdown mode is not used. SHDN has no effect on  
R_OUT.  
±15kV ESD Protection  
All pins on UM3221E/UM3222E/UM3232E devices include ESD protection structures, but the  
family incorporates advanced structures which allow the RS-232 pins (transmitter outputs and  
receiver inputs) to survive ESD events up to ±15kV. The RS-232 pins are particularly vulnerable  
to ESD damage because they are typically connected to an exposed port on the exterior of the  
finished product. The ESD structures withstand high ESD in all states: normal operation,  
shutdown and powered down. After an ESD event, circuits keep working without latch up. ESD  
protection can be tested in various ways; the transmitter outputs and receiver inputs are  
characterized for protection to the following limits: ±15kV using the Human Body Model, ±8kV  
using the Contact Discharge method specified in IEC61000-4-2, ±15kV using the Air-Gap  
Discharge method specified in IEC61000-4-2. The logic pins are characterized for protection to  
the following limit: ±2kV using the Human Body Model.  
Hot Swap and Fail-Safe  
The UM3221E/UM3222E/UM3232E guarantees a logic-high receiver output when the receiver  
inputs are shorted to GND or open, or when they are connected to a line with no driver enabled.  
Because of the latch-up characteristics and all sort protection, UM3221E/UM3222E/UM3232E  
support hot swap.  
________________________________________________________________________  
http://www.union-ic.com Rev.09 Mar.2016  
6/16  
UM3221E/UM3222E/UM3232E  
Test Circuits  
+3V  
+3V  
or +5V  
or +5V  
+
+
0.1μF  
0.1μF  
VCC  
VCC  
C1  
0.1μF  
C1  
0.1μF  
V+  
V-  
V+  
V-  
C1+  
C1+  
+
+
+
+
+
+
0.1μF  
C3  
0.1μF  
C3  
C1-  
0.1μF  
+
C1-  
0.1μF  
+
UM3232E  
UM3232E  
C2  
0.1μF  
C2  
0.1μF  
C2+  
C2+  
C4  
C4  
VCC  
VCC  
C2-  
C2-  
400k  
T_  
400k  
T_  
T_OUT  
T_OUT  
T_IN  
T_IN  
Pulse  
Generator  
R_  
R_  
CL  
R_IN  
5k  
R_IN  
5k  
R_OUT  
R_OUT  
RL  
Pulse  
Generator  
CL  
Receiver Test Circuit  
Transmitter Test Circuit  
10ns  
10ns  
3V  
0V  
90%  
50%  
90%  
50%  
10%  
10%  
Input  
4μs  
tPHL  
tPLH  
Output  
VOH  
VOL  
1.5V  
1.5V  
Receiver Waveforms  
10ns  
10ns  
3V  
0V  
90%  
50%  
90%  
50%  
10%  
10%  
Input  
4μs  
tPHL  
tPLH  
Output  
VOH  
VOL  
90%  
10%  
90%  
tTLH  
10%  
tTHL  
Transmitter Waveforms  
Figure 1  
________________________________________________________________________  
http://www.union-ic.com Rev.09 Mar.2016 7/16  
UM3221E/UM3222E/UM3232E  
Typical Operating Circuits  
+3.3V  
+3.3V  
+
+
C5  
C5  
19  
15  
3
7
2
VCC  
3
7
2
VCC  
V+  
V-  
C1+  
V+  
V-  
C1+  
+
+
+
+
+
+
C3  
C1  
C2  
C3  
C1  
C2  
4
5
4
5
C1-  
C4  
+
C1-  
C4  
+
UM3222E  
UM3221E  
C2+  
C2+  
6
6
C2-  
C2-  
+3.3V  
400k  
+3.3V  
400k  
T1OUT 17  
13  
T1IN  
T1OUT 13  
11  
9
T1IN  
TTL/CMOS  
INPUT  
RS-232  
OUTPUT  
+3.3V  
400k  
RS-232  
OUTPUTS  
TTL/CMOS  
INPUTS  
R1IN  
8
R1OUT  
RS-232  
INPUT  
TTL/CMOS  
OUTPUT  
T2OUT  
8
T2IN  
12  
15  
5k  
R1IN  
5k  
R1OUT  
16  
TTL/CMOS  
OUTPUTS  
RS-232  
INPUTS  
16  
1
EN  
SHDN  
R2IN  
R2OUT  
EN  
9
10  
1
GND  
14  
5k  
20  
SHDN  
GND  
18  
+3.3V  
+
C5  
16  
VCC  
2
1
V+  
C1+  
+
+
+
C3  
C1  
C2  
3
4
C1-  
C4  
+
UM3232E  
6
V-  
C2+  
5
C2-  
+3.3V  
400k  
T1OUT 14  
11  
T1IN  
+3.3V  
400k  
RS-232  
OUTPUTS  
TTL/CMOS  
INPUTS  
T2OUT  
7
T2IN  
10  
12  
R1IN  
5k  
R1OUT  
13  
TTL/CMOS  
OUTPUTS  
RS-232  
INPUTS  
R2IN  
5k  
R2OUT  
8
9
GND  
15  
Figure 2  
________________________________________________________________________  
http://www.union-ic.com Rev.09 Mar.2016 8/16  
UM3221E/UM3222E/UM3232E  
Typical Operating Characteristics  
(VCC=+3.3V, 250kbps data rate, 0.1μF capacitors, all transmitters loaded with 3kΩ and CL,  
TA=25°C, unless otherwise noted.)  
Transmitter Output Voltage vs. Supply Voltage  
V+,V- vs. Supply Voltage  
8
6
8
6
4
4
2
2
VOUT+  
V+  
V-  
Transmitting at 250kbps  
CL=1000pF  
Transmitting at 250kbps  
CL=1000pF  
VOUT-  
0
0
-2  
-4  
-6  
-8  
-2  
-4  
-6  
-8  
2.4  
2.8  
3.2  
3.6  
4
4.4  
4.8  
5.2  
5.6  
6
2
2.5  
3
3.5  
4
4.5  
5
Supply Voltage (V)  
Supply Voltage(V)  
Transmitter Output Voltage vs. Load Capacitance  
Supply Current vs.Supply Voltage  
35  
30  
25  
20  
15  
8
6
4
2
VOUT+  
VOUT-  
0
Transmitting at 250kbps  
CL=1000pF  
Transmitting at 20kbps  
-2  
-4  
-6  
-8  
2
2.5  
3
3.5  
4
4.5  
5
5.5  
6
0
500  
1000  
1500  
2000  
2500  
3000  
Supply Voltage(V)  
Load Capacitance (pF)  
Supply Current vs. Load Capacitance  
Slew Rate vs. Load Capacitance  
30  
25  
20  
15  
10  
5
25  
23  
21  
19  
17  
15  
+Slew  
-Slew  
Transmitting at 20kbps  
Transmitting at 20kbps  
0
0
500  
1000  
1500  
2000  
2500  
3000  
0
500  
1000  
1500  
2000  
2500  
3000  
Load Capacitance (pF)  
Load Capacitance (pF)  
________________________________________________________________________  
http://www.union-ic.com Rev.09 Mar.2016 9/16  
UM3221E/UM3222E/UM3232E  
Applications Information  
Capacitor Selection  
The capacitor type used for C1C4 is not critical for proper operation; polarized or non-polarized  
capacitors can be used. The charge pump requires 0.1μF capacitors for 3.3V operation. Increasing  
the capacitor values (e.g. by a factor of 2) reduces ripples on the transmitter outputs and slightly  
reduces power consumption. C2, C3 and C4 can be increased without changing C1’s value. When  
using the minimum required capacitor values, make sure the capacitor value does not degrade  
excessively with temperature. If in doubt, use capacitors with a larger nominal value. The  
capacitor’s equivalent series resistance (ESR), which usually rises at low temperatures, influences  
the amount of ripples on V+ and V- output voltages.  
The following table shows some recommended minimum required pump capacitor values for  
different input voltage ranges.  
Minimum Required Pump Capacitor Value  
Input Voltage VCC  
2.7V to 3.6V  
Charge Pump Capacitor Value for UM32XX  
C1C4=0.1μF  
3.6V to 5.5V  
C1C4=0.47μF  
2.7V to 5.5V  
C1C4=0.47μF  
Power Supply Decoupling  
In most circumstances, a 0.1μF VCC bypass capacitor is adequate. In applications sensitive to  
power-supply noise, use a capacitor of the same value as charge pump capacitor C1. Connect  
bypass capacitors to the IC as close as possible.  
Operation down to 2.7V  
Transmitter outputs meet EIA/TIA-562 levels of ±3.7V with supply voltages as low as 2.7V.  
Interconnection with 3V and 5V Logic  
The UM3221E/UM3222E/UM3232E can directly interface with various 3V and 5V logic families,  
including ACT and HCT CMOS.  
________________________________________________________________________  
http://www.union-ic.com Rev.09 Mar.2016  
10/16  
UM3221E/UM3222E/UM3232E  
Package Information  
UM3232EESE SOP16  
Outline Drawing  
DIMENSIONS  
MILLIMETERS  
INCHES  
Typ Max  
D
θ
Symbol  
Min Typ  
Max Min  
A
A1  
A2  
b
1.35 1.60  
1.75 0.053 0.063 0.069  
0.25 0.004 0.010  
1.65 0.049 0.057 0.065  
0.10  
-
-
1.25 1.45  
0.33  
0.17  
-
-
0.51 0.013  
0.25 0.007  
-
-
0.020  
0.010  
Pin #1 ID  
c
e
b
c
D
E
9.80 10.00 10.20 0.386 0.394 0.402  
Top View  
Side View  
End View  
3.80 3.90  
5.80 6.00  
4.00 0.150 0.154 0.157  
6.20 0.228 0.236 0.244  
0.050BSC  
E1  
e
1.27BSC  
L
0.40  
0°  
-
1.27 0.016  
8° 0°  
-
-
0.050  
8°  
θ
-
Land Pattern  
NOTES:  
1. Compound dimension: 10.00×3.90.  
2. Unit: mm.  
3. General tolerance ±0.05mm unless otherwise  
specified.  
1.27  
0.60  
4. The layout is just for reference.  
Tape and Reel Orientation  
________________________________________________________________________  
http://www.union-ic.com Rev.09 Mar.2016 11/16  
UM3221E/UM3222E/UM3232E  
UM3232EEPE DIP16  
Outline Drawing  
DIMENSIONS  
MILLIMETERS  
INCHES  
Typ Max  
Symbol  
Min  
Typ  
4.01  
Max Min  
D
E1  
A
A1  
A2  
b
3.71  
0.51  
3.20  
0.38  
4.31 0.146 0.158 0.170  
0.020  
-
-
-
-
3.40  
3.60 0.126 0.134 0.142  
0.57 0.015 0.019 0.022  
0.060BSC  
E2  
Pin #1 ID  
0.48  
Top View  
End View  
b1  
c
1.52BSC  
0.28  
e
0.20  
0.36 0.008 0.011 0.014  
D
18.80 19.00 19.20 0.740 0.748 0.756  
E
6.20  
7.32  
8.40  
6.40  
7.62  
6.60 0.244 0.252 0.260  
7.92 0.288 0.300 0.312  
9.00 0.331 0.343 0.354  
0.100BSC  
b1  
b
E1  
E2  
e
Side View  
8.70  
2.54BSC  
3.30  
L
3.00  
3.60 0.118 0.130 0.142  
________________________________________________________________________  
http://www.union-ic.com Rev.09 Mar.2016 12/16  
UM3221E/UM3222E/UM3232E  
UM3221EEUE/UM3232EEUE TSSOP16  
Outline Drawing  
DIMENSIONS  
MILLIMETERS  
INCHES  
Symbol  
Min Typ Max Min  
Typ  
Max  
0.047  
0.006  
0.041  
D
A
A1  
A2  
A3  
b
-
-
-
-
1.20  
-
-
-
-
0.05  
0.80  
0.15 0.002  
1.05 0.031  
0.34 0.44 0.54 0.013 0.017 0.021  
0.19  
0.09  
-
-
0.30 0.007  
0.20 0.004  
-
-
0.012  
0.008  
c
D
4.86 4.96 5.10 0.191 0.195 0.201  
4.30 4.40 4.50 0.169 0.173 0.177  
6.20 6.40 6.60 0.244 0.252 0.260  
Pin #1 ID  
e
E
b
c
Top View  
End View  
E1  
e
0.65BSC  
0.026BSC  
θ2  
L
0.45 0.60 0.75 0.018 0.024 0.030  
L1  
L2  
θ1  
θ2  
θ3  
1.00REF  
0.25BSC  
-
0.039REF  
θ1  
L
L1  
0.010BSC  
Side View  
θ3  
0°  
8°  
0°  
-
8°  
10°  
10°  
12°  
14°  
14°  
10°  
10°  
12°  
12°  
14°  
14°  
12°  
Land Pattern  
NOTES:  
1. Compound dimension: 4.96×4.40.  
2. Unit: mm.  
3. General tolerance ±0.05mm unless otherwise  
specified.  
4. The layout is just for reference.  
0.65  
0.35  
Tape and Reel Orientation  
________________________________________________________________________  
http://www.union-ic.com Rev.09 Mar.2016 13/16  
UM3221E/UM3222E/UM3232E  
UM3222EEUE TSSOP20  
Outline Drawing  
DIMENSIONS  
MILLIMETERS  
INCHES  
Symbol  
Min Typ Max Min  
Typ  
Max  
0.047  
0.006  
0.041  
D
A
A1  
A2  
A3  
b
-
-
-
-
1.20  
-
-
-
-
0.05  
0.80  
0.15 0.002  
1.05 0.031  
0.34 0.44 0.54 0.013 0.017 0.021  
0.19  
0.09  
-
-
0.30 0.007  
0.20 0.004  
-
-
0.012  
0.008  
c
Pin #1 ID  
D
6.40 6.50 6.60 0.252 0.256 0.260  
4.30 4.40 4.50 0.169 0.173 0.177  
6.20 6.40 6.60 0.244 0.252 0.260  
e
c
b
E
Top View  
End View  
E1  
e
θ2  
0.65BSC  
0.026BSC  
L
0.45 0.60 0.75 0.018 0.024 0.030  
L
θ1  
L1  
L1  
L2  
θ1  
θ2  
θ3  
1.00REF  
0.25BSC  
-
0.039REF  
Side View  
0.010BSC  
θ3  
0°  
8°  
0°  
-
8°  
10° 12°  
10° 12°  
14°  
14°  
10°  
10°  
12°  
12°  
14°  
14°  
Land Pattern  
NOTES:  
1. Compound dimension: 6.50×4.40.  
2. Unit: mm.  
3. General tolerance ±0.05mm unless otherwise  
specified.  
0.65  
0.35  
4. The layout is just for reference.  
Tape and Reel Orientation  
________________________________________________________________________  
http://www.union-ic.com Rev.09 Mar.2016 14/16  
UM3221E/UM3222E/UM3232E  
UM3221EEAE/UM3232EEAE SSOP16  
Outline Drawing  
θ
D
DIMENSIONS  
MILLIMETERS  
INCHES  
Symbol  
Min Typ Max Min  
Typ  
Max  
0.079  
-
A
A1  
A2  
b
-
-
-
2.00  
-
-
-
-
0.05  
0.002  
1.65 1.75 1.85 0.065 0.069 0.073  
0.22 0.30 0.38 0.009 0.012 0.015  
0.09 0.17 0.25 0.004 0.007 0.010  
5.90 6.20 6.50 0.232 0.244 0.256  
5.00 5.30 5.60 0.197 0.209 0.220  
7.40 7.80 8.20 0.291 0.307 0.323  
c
Pin #1 ID  
e
D
E
b
c
Top View  
End View  
E1  
e
0.65BSC  
0.55 0.75 0.95 0.022 0.030 0.037  
0° 8° 0° 8°  
0.026BSC  
L
Side View  
θ
-
-
Land Pattern  
NOTES:  
1. Compound dimension: 6.20×5.30.  
2. Unit: mm.  
3. General tolerance ±0.05mm unless otherwise  
specified.  
0.65  
0.35  
4. The layout is just for reference.  
Tape and Reel Orientation  
________________________________________________________________________  
http://www.union-ic.com Rev.09 Mar.2016 15/16  
UM3221E/UM3222E/UM3232E  
GREEN COMPLIANCE  
Union Semiconductor is committed to environmental excellence in all aspects of its  
operations including meeting or exceeding regulatory requirements with respect to the use  
of hazardous substances. Numerous successful programs have been implemented to  
reduce the use of hazardous substances and/or emissions.  
All Union components are compliant with the RoHS directive, which helps to support  
customers in their compliance with environmental directives. For more green compliance  
information, please visit:  
http://www.union-ic.com/index.aspx?cat_code=RoHSDeclaration  
IMPORTANT NOTICE  
The information in this document has been carefully reviewed and is believed to be  
accurate. Nonetheless, this document is subject to change without notice. Union assumes  
no responsibility for any inaccuracies that may be contained in this document, and makes  
no commitment to update or to keep current the contained information, or to notify a  
person or organization of any update. Union reserves the right to make changes, at any  
time, in order to improve reliability, function or design and to attempt to supply the best  
product possible.  
Union Semiconductor, Inc  
Add: Unit 606, No.570 Shengxia Road, Shanghai 201210  
Tel: 021-51093966  
Fax: 021-51026018  
Website: www.union-ic.com  
________________________________________________________________________  
http://www.union-ic.com Rev.09 Mar.2016  
16/16  

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