LMS202E 15KV ESD Rated, 5V Single Supply TIA/EIA-232 Dual Transceivers
March 2003
LMS202E 15KV ESD Rated, 5V Single Supply TIA/EIA-232 Dual Transceivers
General Description
The LMS202E features two transmitters and two receivers for RS-232 communication. It has a DC-to-DC converter that permits the device to operate with only a single +5V power supply. The on-chip DC-to-DC converter which utilizes four external 0.1µF capacitors to generate dual internal power supplies for RS-232 compatible output levels. The device meet EIA/TIA-232E and CCITT V.28 specifications up to 230kbits/sec. The LMS202E is available in a 16 pin narrow and wide SOIC package. The transmitter outputs and receiver inputs have ± 15kV electrostatic discharge (ESD) protection. The LMS202E survives a ± 15kV ESD event to the RS-232 input and output pins when subjected according to Human Body Model or IEC 1000-4-2 (EN61000-4-2),air-gap specification. It survives a ± 8kV discharge when subjected to IEC 1000-4-2 (EN610004-2), contact specification. This device is designed for use in harsh environments where ESD is a concern.
Features
n ESD protection for RS-232 I/O pins — ± 15kV-IEC1000 4-2 (EN61000-4-2) Contact Discharge — ± 8kV-IEC1000 4-2 (EN61000-4-2) Air-Gap Discharge — ± 15kV Human Body Model n Single +5V power supply n 230 kbps data rate n On-board DC-to-DC converter n 0.1µF charge pump capacitors n Drop-in replacement to Maxim’s MAX202E
Applications
n POS equipment (Bar code reader) n Hand-held equipment n General purpose RS-232 communication
Connection Diagram and Typical Circuit
20048001
© 2003 National Semiconductor Corporation
DS200480
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LMS202E
Pin Descriptions
Pin Number 1, 3 2 4, 5 6 7, 14 Pin Name C1+, C1− V+ C2+, C2− V− T1out, T2out Pin Function External capacitor connection pins. Recommended external capacitor C1 = 0.1µF (6.3V) Positive supply for TIA/EIA-232E drivers. Recommended external capacitor C4 = 0.1µF (6.3V) External capacitor connection pins. Recommended external capacitor C2 = 0.1µF (16V) Negative supply for TIA/EIA-232E drivers. Recommended external capacitor C3 = 0.1µF (16V) Transmitter output pins conform to TIA/EIA-232E levels. The typical transmitter output swing is ± 8V when loaded 3kΩ load to ground. The open-circuit output voltage swings from (V+ − 0.6V) to V− Receiver inputs accept TIA/EIA-232 Transmitter input pins are TTL/CMOS compatible. Inputs of transmitter do not have pull-up resistors. Connect all unused transmitter inputs to ground Ground pin Power supply pin for the device, +5V ( ± 10%)
8,13 9, 12 10, 11 15 16
R1in, R2in Tin1, Tin2 GND VS
R1out and R2out Receiver output pins are TTL/CMOS compatible
Ordering Information
Package Part Number LMS202ECM 16-Pin SOIC LMS202ECMX LMS202EIM LMS202EIMX LMS202ECMW 16-Pin Wide SOIC LMS202ECMWX LMS202EIMW LMS202EIMWX Package Marking LMS202ECM LMS202EIM LMS202ECMW LMS202EIMW Transport Media 48 Units/Rail 2.5k Units Tape and Reel 48 Units/Rail 2.5k Units Tape and Reel 45 Units/Rail 1.0k Units Tape and Reel 45 Units/Rail 1.0k Units Tape and Reel M16B M16A NSC Drawing
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LMS202E
Absolute Maximum Ratings
(Note 1)
(Note 9) ESD Rating (MM) Soldering Information Infrared or Convection (20sec.) Junction Temperature Storage Temperature Range
2kV 200V (Note 6) (Note 9) 235˚C 150˚C −65˚C to +150˚C
If Military/Aerospace specified devices are required, please contact the National Semiconductor Sales Office/ Distributors for availability and specifications. VS V+ V− Driver Input Voltage, TIN Receiver Input Voltage, RIN Driver Output Voltage TO Receiver Output Voltage RO Short Circuit Duration, TO ESD Rating IEC 1000-4-2) (Note 7) (Note 8) Air-Gap Discharge Contact Discharge Human Body Model (Note 2) (Note 8) 15kV 15kV 8kV −0.3V to 6V (VS − 0.3V) to + 14V +0.3V to −14V −0.3V to (V+ +0.3V)
± 30V
(V− −0.3V to (V+ + 0.3V) −0.3 to (VS + 0.3) Continuous
Operating Ratings
Supply Voltage VS Ambient Temperature Range, TA Commercial (C) Industrial (I) Package Thermal Resistance (Note 3) SO WSO 71˚C/W 55˚C/W 0˚C to +70˚C −40˚C to +85˚C 4.5V to 5.5V
Electrical Characteristics
Over recommended operating supply and temperature ranges unless otherwise specified C1 = C2 = C3 = C4 = Cbp = 0.1µF Symbol DC Characteristics IS Logic IINPUT VTHL VTHH VOL VOH Input Leakage Current Input Logic Theshold Low Input Logic Theshold High TTL/CMOS Output Voltage Low TTL/CMOS Output Voltage High Receiver Input Voltage Range Receiver Input Theshold Low Receiver Input Theshold High Receiver Input Hysteresis Receiver Input Resistance Transmitter Output Voltage Swing Output Resistance Output Short Circuit Current Maximum Data Rate CL = 50pF to 1000pF, RL = 3kΩ to 7kΩ 230 VS = 5V, TA = 25˚C VS = 5V, TA = 25˚C VS = 5V VS = 5V, TA = 25˚C All transmitters loaded with 3kΩ to GND VS = V+ = V− = 0V, VO = ± 2V 0.2 3 TIN = 0V to VS TIN TIN ROUT, IOUT = 3.2mA ROUT, IOUT = −1.0mA 3.5 VS −0.1 2.0 0.4 Supply Current No Load, TA = 25˚C 1 7 mA µA V V V V Parameter Conditions Min (Note 5) Typ Max (Note 5) Units
± 10
0.8
RS-232 Receiver Inputs VRI VRTHL VRTHH VHYST RI VO RO IOS DR −30 0.8 1.4 2 0.6 5 2.4 1.0 7 +30 V V V V kΩ V Ω
RS-232 Transmitter Outputs
±5
300
±8
± 11
± 60
mA kbps
Timing Characteristics
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LMS202E
Electrical Characteristics
Symbol TRPLH TRPHL TDPLH TDPHL VSLEW Parameter
(Continued) Over recommended operating supply and temperature ranges unless otherwise specified C1 = C2 = C3 = C4 = Cbp = 0.1µF Conditions Min (Note 5) Typ 0.08 2.4 3 6 30 Max (Note 5) 1 Units µs µs V/µs
Receiver Propagation Delay CL = 150pF Transmitter Propagation Delay RL = 3kΩ, CL = 2500pF All transmitters loaded
Transition Region Slew Rate TA = 25˚C, VS = 5V CL = 50pF to 1000pF, RL = 3kΩ to 7kΩ Measured from +3V to −3V or vice versa Human Body Model IEC 1000-4-2, Contact IEC 1000-4-2, Air-gap
ESD Performance: Transmitter Outputs and Receiver Inputs ESD Rating
± 15 ±8 ± 15
kV
Note 1: Absolute Maximum Ratings indicate limits beyond which damage to the device may occur. Operating Ratings indicate conditions for which the device is intended to be functional, but specific performance is not guaranteed. For guaranteed specifications and the test conditions, see the Electrical Characteristics. Note 2: Human Body Model, 1.5kΩ in series with 100pF Note 3: The maximum power dissipation is a function of TJ(MAX), θJA, and TA. The maximum allowable power dissipation at any ambient temperature is PD = (TJ(MAX) − TA)/ θJA. All numbers apply for packages soldered directly onto a PC board. Note 4: Typical Values represent the most likely parametric norm. Note 5: All limits are guaranteed by testing or statistical analysis Note 6: Machine model, 0Ω in series with 200pF Note 7: IEC 1000-4-2, 330Ω in series with 150pF Note 8: ESD rating applies to pins 7,8 13 and 14 Note 9: ESD rating applies to pins 1, 2, 3, 4, 5, 6, 9, 10, 11, 12, 15 and 16
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LMS202E
Typical Characteristics
Transmitter Output High Voltage vs. Load Capacitance Transmitter Slew Rate vs. Load Capacitance
20048002
20048003
Application Information
CAPACITOR SELECTION The recommended capacitors are 0.1µF. However, larger capacitors for the charge pump may be used to minimized ripples on V+ and V− pins. POWER SUPPLY DECOUPLING In some applications that are sensitive to power supply noise from the charge pump, place a decoupling capacitor, Cbp, from VS to GND. Use at least a 0.1µF capacitor or the same size as the charge pump capacitors (C1 − C4). CHARGED PUMP The dual internal charged-pump provides the ± 10V to the to transmitters. Using capacitor C1, the charge pump converts +5V to +10V then stores the +10V in capacitor C3. The charge pump uses capacitor C2 to invert the +10V to −10V. The −10V is then stored in capacitor C4. ELECTROSTATIC DISCHARGE PROTECTION ESD protection has been placed at all pins to protect the device from ESD. All pins except for the transmitter output pins (pins 7 and 14) and receiver input pins (pins 8 and 13) have a ESD rating of 2kV Human Body Model (HBM) and 200V Machine Model (MM). The RS-232 bus pins (pins 7, 8, 13 and 14) have a more robust ESD protection. The RS-232 bus pins have a ESD rating of 15kV HBM and IEC 1000-4-2, air-gap. In addition the bus pins meet an ESD rating of 8kV with IEC 1000-4-2, contact. The ESD structures can withstand a high ESD event under the following conditions: powered-on, powered-off, and Input connected to high and low with outputs unloaded. HUMAN BODY MODEL The Human Body Model is an ESD testing standard, defined in Mil-STD-883C method 3015.7. It simulates a human discharging an ESD charge to the IC device. The rise time is approximately 10 ns and decay time is approximately 150 ns. The waveform is obtained by discharging 2kV volts ca-
pacitor through a resistor, R2 = 1.5 kΩ. The peak current is approximately 1.33A.
20048004
FIGURE 1. HBM ESD Test Model
20048005
FIGURE 2. HBM Waveform
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LMS202E
Application Information
MACHINE MODEL
(Continued)
The Machine Model is the standard ESD test method in Japan and the automotive industry. It simulates a charge on large object discharging through the IC device. This takes place in automated test and handling systems. The equipment can accumulate static charge due to improper grounding, which is transmitted through the IC when it is picked and placed. The waveform is obtained by discharging 400V volts capacitor to the device. Resistor, R2 = 0Ω. The parasitic inductance, L, from the PCB affects the peak current and period of the waveform. For L = 0.5µF, the peak current is approximately 7A with a period of 60 ns. For L = 2.5µH, the peak current is reduced to 4A with a period of 140 ns.
IEC 1000-4-2 (EN61000-4-2) The European Union requires ESD immunity testing for all electronic products as a condition for EMC Mark before shipping to any member countries. This is not a IC requirement but an overall system requirement. IEC 1000-4-2 specifies ESD testing both by contact and air-gap discharge. ESD testing by contact are generally more repeatable than air-gap but is less realistic to actual ESD event. However, air-gap discharge is more realistic but ESD results may vary widely dependent on environmental conditions (temperature, humidity,....) The waveform is obtained by discharging 150pF capacitor through a resistor, R2 = 330Ω. A typical peak current may be high as 37A with 10kV.
20048004
FIGURE 5. IEC ESD Model
20048004
FIGURE 3. MM ESD Model
20048009
FIGURE 6. IEC Waveform
20048007
FIGURE 4. MM Waveform
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LMS202E
Physical Dimensions
inches (millimeters) unless otherwise noted
16-Pin SOIC NS Package Number M16A
16-Pin Wide SOIC NS Package Number M16B
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LMS202E 15KV ESD Rated, 5V Single Supply TIA/EIA-232 Dual Transceivers
Notes
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