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ADM211EARSZ-REEL

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ADM211EARSZ-REEL

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Part Number ADM211EARSZ-REEL
Manufacturer Analog Devices Inc.
Description IC TXRX RS-232 5V 0.1UF 28SSOP
Datasheet ADM211EARSZ-REEL Datasheet
Package 28-SSOP (0.209", 5.30mm Width)
In Stock 46,638 piece(s)
Unit Price $ 1.9089 *
Lead Time Can Ship Immediately
Estimated Delivery Time Oct 29 - Nov 3 (Choose Expedited Shipping)
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Part Number # ADM211EARSZ-REEL (Interface - Drivers, Receivers, Transceivers) is manufactured by Analog Devices Inc. and distributed by Heisener. Being one of the leading electronics distributors, we carry many kinds of electronic components from some of the world’s top class manufacturers. Their quality is guaranteed by its stringent quality control to meet all required standards.

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ADM211EARSZ-REEL Specifications

ManufacturerAnalog Devices Inc.
CategoryIntegrated Circuits (ICs) - Interface - Drivers, Receivers, Transceivers
Datasheet ADM211EARSZ-REELDatasheet
Package28-SSOP (0.209", 5.30mm Width)
Series-
TypeTransceiver
ProtocolRS232
Number of Drivers/Receivers4/5
DuplexFull
Receiver Hysteresis650mV
Data Rate120Kbps
Voltage - Supply4.5 V ~ 5.5 V
Operating Temperature-40°C ~ 85°C
Mounting TypeSurface Mount
Package / Case28-SSOP (0.209", 5.30mm Width)
Supplier Device Package28-SSOP

ADM211EARSZ-REEL Datasheet

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EMI/EMC-Compliant, ±15 kV ESD­Protected, RS-232 Line Drivers/Receivers ADM206E/ADM207E/ADM208E/ADM211E/ADM213E Rev. E Information furnished by Analog Devices is believed to be accurate and reliable. However, no responsibility is assumed by Analog Devices for its use, nor for any infringements of patents or other rights of third parties that may result from its use. Specifications subject to change without notice. No license is granted by implication or otherwise under any patent or patent rights of Analog Devices. Trademarks and registered trademarks are the property of their respective owners. One Technology Way, P.O. Box 9106, Norwood, MA 02062-9106, U.S.A. Tel: 781.329.4700 www.analog.com Fax: 781.461.3113 ©2006 Analog Devices, Inc. All rights reserved. FEATURES Complies with 89/336/EEC EMC directive ESD protection to IEC 1000-4-2 (801-2) Contact discharge: ±8 kV Air-gap discharge: ±15 kV Human body model: ±15 kV EFT/burst immunity (IEC 1000-4-4) Low EMI emissions (EN 55022) Eliminates need for TransZorb® suppressors 230 kbps data rate guaranteed Single 5 V power supply Shutdown mode 1 μW Plug-in upgrade for MAX2xxE Space saving TSSOP package available APPLICATIONS Laptop computers Notebook computers Printers Peripherals Modems GENERAL DESCRIPTION The ADM2xxE is a family of robust RS-232 and V.28 interface devices that operate from a single 5 V power supply. These pro- ducts are suitable for operation in harsh electrical environments and are compliant with the EU directive on electromagnetic compatibility (EMC) (89/336/EEC). The level of emissions and immunity are both in compliance. EM immunity includes ESD protection in excess of ±15 kV on all I/O lines (IEC 1000-4-2), fast transient burst protection (IEC 1000­4­4), and radiated immunity (IEC 1000-4-3). EM emissions include radiated and conducted emissions as required by Information Technology Equipment EN 55022, CISPR 22. All devices fully conform to the EIA-232-E and CCITT V.28 specifications and operate at data rates up to 230 kbps. Shut- down and enable control pins are provided on some of the products (see Table 1). The shutdown function on the ADM211E disables the charge pump and all transmitters and receivers. On the ADM213E the CONNECTION DIAGRAM 0.1µF 6.3V+ + 0.1µF 5V INPUT + 0.1µF 10V 0.1µF 10V + 0.1µF 10V + T1 T2 T3 T4 R1 R2 R3 R4 R5 GND ADM211E/ ADM213E T1IN T2IN T3IN T4IN R1OUT R2OUT R3OUT R4OUT R5OUT T1OUT T2OUT T3OUT T4OUT R1IN R2IN R3IN R4IN R5IN SHDN (ADM211E) SHDN (ADM213E) TTL/CMOS INPUTS1 TTL/CMOS OUTPUTS RS-232 OUTPUTS RS-232 INPUTS2 1 INTERNAL 400kΩ PULL-UP RESISTOR ON EACH TTL/CMOS INPUT. 2 INTERNAL 5kΩ PULL-DOWN RESISTOR ON EACH RS-232 INPUT. C1+ C1– C2+ C2– VCC V+ V– EN (ADM211E) EN (ADM213E) 12 14 15 16 11 13 17 2 3 1 28 9 4 27 23 18 25 7 6 20 21 8 5 26 22 19 24 10 0 0 0 6 8 -0 0 1 +5V TO+10V VOLTAGE DOUBLER +10V TO –10V VOLTAGE INVERTER Figure 1. charge pump, all transmitters, and three of the five receivers are disabled. The remaining two receivers remain active, thereby allowing monitoring of peripheral devices. This feature allows the device to be shut down until a peripheral device begins communication. The active receivers can alert the processor, which can then take the ADM213E out of the shutdown mode. Operating from a single 5 V supply, four external 0.1 μF capacitors are required. The ADM207E and ADM208E are available in 24-lead PDIP, SSOP, available in 28-lead SSOP, TSSOP, and SOIC_W packages. All products are backward compatible with earlier ADM2xx products, facilitating easy upgrading of older designs. Table 1. Selection Table Model Supply Voltage Drivers Receivers ESD Protection Shutdown Enable Packages ADM206E 5 V 4 3 ±15 kV Yes Yes RW-24 ADM207E 5 V 5 3 ±15 kV No No N-24-1, RW-24, RS-24, RU-24 ADM208E 5 V 4 4 ±15 kV No No N-24-1, RW-24, RS-24, RU-24 ADM211E 5 V 4 5 ±15 kV Yes Yes RW-28, RS-28, RU-28 ADM213E 5 V 4 5 ±15 kV Yes (SHDN)1 Yes (EN) RW-28, RS-28, RU-28 1 Two receivers active.

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ADM206E/ADM207E/ADM208E/ADM211E/ADM213E Rev. E | Page 2 of 20 TABLE OF CONTENTS Features .............................................................................................. 1 Applications....................................................................................... 1 General Description ......................................................................... 1 Connection Diagram ....................................................................... 1 Revision History ............................................................................... 2 Specifications..................................................................................... 3 Absolute Maximum Ratings............................................................ 4 ESD Caution.................................................................................. 4 Pin Configurations and Function Descriptions ........................... 5 Typical Performance Characteristics ............................................. 8 Theory of Operation ...................................................................... 10 Circuit Description..................................................................... 10 Enable and Shutdown ................................................................ 10 High Baud Rate........................................................................... 11 ESD/EFT Transient Protection Scheme .................................. 11 ESD Testing (IEC 1000­4­2) ..................................................... 11 EFT/Burst Testing (IEC 1000­4­4)........................................... 12 IEC 1000-4-3 Radiated Immunity ........................................... 13 Emissions/Interference .............................................................. 14 Conducted Emissions ................................................................ 14 Radiated Emissions .................................................................... 14 Outline Dimensions ....................................................................... 16 Ordering Guide .......................................................................... 19 REVISION HISTORY 9/06—Rev. D to Rev. E Updated Format..................................................................Universal Changes to Figure 1 and Table 1..................................................... 1 Changes to Table 2............................................................................ 3 Changes to Figure 2, Figure 3, and Figure 5.................................. 5 Changes to Figure 7 and Figure 9................................................... 6 Changes to Figure 11........................................................................ 7 Changes to Figure 17........................................................................ 8 Updated Outline Dimensions ....................................................... 16 Changes to Ordering Guide .......................................................... 19 4/05—Rev. C to Rev. D Changes to Specifications Section.................................................. 2 Changes to Ordering Guide ............................................................ 4 Updated Outline Dimensions ......................................................... 6 3/01—Rev. B to Rev. C Changes to Features Section ............................................................1 Changes to Specifications Table ......................................................2 Changes to Absolute Maximum Ratings........................................3 Changes to Figure 6 ..........................................................................5 Changes to Typical Performance Characteristics Section ...... 7, 8 Changes to Table V......................................................................... 11

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ADM206E/ADM207E/ADM208E/ADM211E/ADM213E Rev. E | Page 3 of 20 SPECIFICATIONS VCC = 5.0 V ± 10%, C1 to C4 = 0.1 μF. All specifications TMIN to TMAX, unless otherwise noted. Table 2. Parameter Min Typ Max Unit Test Conditions/Comments DC CHARACTERISTICS Operating Voltage Range 4.5 5.0 5.5 V VCC Power Supply Current 3.5 13 mA No load SHUTDOWN SUPPLY CURRENT 0.2 10 μA LOGIC Input Pull-Up Current 10 25 μA TIN = GND Input Logic Threshold Low, VINL 0.8 V TIN, EN, EN, SHDN, SHDN Input Logic Threshold High, VINH 2.0 V TIN Input Logic Threshold High, VINH 2.0 V EN, EN, SHDN, SHDN TTL/CMOS Output Voltage Low, VOL 0.4 V IOUT = 1.6 mA TTL/CMOS Output Voltage High, VOH 3.5 V IOUT = −40 μA TTL/CMOS Output Leakage Current +0.05 ±10 μA EN = VCC, EN = GND, 0 V ≤ ROUT ≤ VCC RS-232 RECEIVER Input Voltage Range1 −30 +30 V Input Threshold Low 0.8 1.3 V Input Threshold High 2.0 2.4 V Input Hysteresis 0.65 V Input Resistance 3 5 7 kΩ TA = 0°C to 85°C RS-232 TRANSMITTER Output Voltage Swing ±5.0 ±9.0 V All transmitter outputs loaded with 3 kΩ to ground Output Resistance 300 Ω VCC = 0 V, VOUT = ±2 V Output Short-Circuit Current ±6 ±20 ±60 mA TIMING CHARACTERISTICS Maximum Data Rate 230 kbps RL = 3 kΩ to 7 kΩ, CL = 50 pF to 2500 pF Receiver Propagation Delay, TPHL, TPLH 0.4 2 μs CL = 150 pF Receiver Output Enable Time, tER 120 ns Receiver Output Disable Time, tDR 120 ns Transmitter Propagation Delay, TPHL, TPLH 1 μs RL = 3 kΩ, CL = 2500 pF Transition Region Slew Rate 8 V/μs RL = 3 kΩ, CL = 50 pF to 2500 pF, measured from +3 V to −3 V or −3 V to +3 V EM IMMUNITY ESD Protection (I/O Pins) ±15 kV Human body model ±15 kV IEC 1000-4-2 air-gap discharge ±8 kV IEC 1000-4-2 contact discharge Radiated Immunity 10 V/m IEC 1000-4-3 1 Guaranteed by design. Table 3. ADM211E Truth Table SHDN EN Status TOUT 1:4 ROUT 1:5 0 0 Normal operation Enabled Enabled 0 1 Normal operation Enabled Disabled 1 X1 Shutdown Disabled Disabled 1 X = don’t care. Table 4. ADM213E Truth Table SHDN EN Status TOUT 1:4 ROUT 1:3 ROUT 4:5 0 0 Shutdown Disabled Disabled Disabled 0 1 Shutdown Disabled Disabled Enabled 1 0 Normal operation Enabled Disabled Disabled 1 1 Normal operation Enabled Enabled Enabled

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ADM206E/ADM207E/ADM208E/ADM211E/ADM213E Rev. E | Page 4 of 20 ABSOLUTE MAXIMUM RATINGS TA = 25°C, unless otherwise noted. Table 5. Parameter Rating VCC −0.3 V to +6 V V+ (VCC – 0.3 V) to +14 V V– +0.3 V to −14 V Input Voltages TIN −0.3 V to (V+ + 0.3 V) RIN ±30 V Output Voltages TOUT ±15 V ROUT −0.3 V to (VCC + 0.3 V) Short-Circuit Duration TOUT Continuous Power Dissipation N-24-1 PDIP (Derate 13.5 mW/°C above 70°C) 1000 mW RW-24 SOIC_W (Derate 12 mW/°C above 70°C) 900 mW RS-24 SSOP (Derate 12 mW/°C above 70°C) 850 mW RU-24 TSSOP (Derate 12 mW/°C above 70°C) 900 mW RW-28 SOIC_W (Derate 12 mW/°C above 70°C) 900 mW RS-28 SSOP (Derate 10 mW/°C above 70°C) 900 mW RU-28 TSSOP (Derate 12 mW/°C above 70°C) 900 mW Operating Temperature Range −40°C to +85°C Storage Temperature Range −65°C to +150°C Lead Temperature, Soldering (10 sec) 300°C ESD Rating MIL-STD-883B (I/O Pins) ±15 kV IEC 1000-4-2 Air-Gap (I/O Pins) ±15 kV IEC 1000-4-2 Contact (I/O Pins) ±8 kV Stresses above those listed under Absolute Maximum Ratings may cause permanent damage to the device. This is a stress rating only; functional operation of the device at these or any other conditions above those indicated in the operational section of this specification is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability. ESD CAUTION

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ADM206E/ADM207E/ADM208E/ADM211E/ADM213E Rev. E | Page 5 of 20 PIN CONFIGURATIONS AND FUNCTION DESCRIPTIONS TOP VIEW (Not to Scale) 24 23 22 21 20 19 18 17 16 15 14 13 1 2 3 4 5 6 7 8 9 10 11 12 ADM206E C1– V+ C1+ VCC GND T3OUT T1OUT T2OUT R1IN T1IN T2IN R1OUT C2+ C2– V– R3IN R3OUT T4OUT R2IN R2OUT SHDN T3IN T4IN EN 00 06 8- 00 2 Figure 2. ADM206E Pin Configuration +5V TO +10V VOLTAGE DOUBLER 0.1µF 6.3V+ + 0.1µF 5V INPUT + 0.1µF 16V 0.1µF 6.3V + 0.1µF 16V + T1 T2 T3 T4 R1 R2 R3 GND ADM206E T1IN T2IN T3IN T4IN R1OUT R2OUT R3OUT T1OUT T2OUT T3OUT T4OUT R1IN R2IN R3IN SHDN TTL/CMOS INPUTS1 TTL/CMOS OUTPUTS RS-232 OUTPUTS RS-232 INPUTS2 C1+ C1– C2+ C2– V+ V– EN 1INTERNAL 400kΩ PULL-UP RESISTOR ON EACH TTL/CMOS INPUT. 2 INTERNAL 5kΩ PULL-DOWN RESISTOR ON EACH RS-232 INPUT. 24 2322 2120 19 18 17 16 15 14 13 1 2 3 45 6 7 8 910 1112 0 0 0 6 8 -0 0 3 +10V TO –10V VOLTAGE INVERTER VCC Figure 3. ADM206E Typical Operating Circuit TOP VIEW (Not to Scale) 24 23 22 21 20 19 18 17 16 15 14 13 1 2 3 4 5 6 7 8 9 10 11 12 ADM207E C1– V+ C1+ VCC GND T3OUT T1OUT T2OUT R1IN T1IN T2IN R1OUT C2+ C2– V– R3IN R3OUT T4OUT R2IN R2OUT T5IN T3IN T4IN T5OUT 00 06 8 -0 0 4 Figure 4. ADM207E Pin Configuration +10V TO –10V VOLTAGE INVERTER +5V TO +10V VOLTAGE DOUBLER 0.1µF 6.3V+ + 0.1µF 5V INPUT + 0.1µF 10V 0.1µF 10V + 0.1µF 10V + T1 T2 T3 T4 R1 R2 R3 GND ADM207E T1IN T2IN T3IN T4IN R1OUT R2OUT R3OUT T1OUT T2OUT T3OUT T4OUT R1IN R2IN R3IN TTL/CMOS INPUTS1 TTL/CMOS OUTPUTS RS-232 OUTPUTS RS-232 INPUTS2 1INTERNAL 400kΩ PULL-UP RESISTOR ON EACH TTL/CMOS INPUT. 2 INTERNAL 5kΩ PULL-DOWN RESISTOR ON EACH RS-232 INPUT. C1+ C1– C2+ C2– VCC V+ V– T5T5IN T5OUT 24 23 20 16 15 4 8 9 11 19 18 14 13 21 6 7 10 12 1 3 2 0 0 0 6 8 -0 0 5 5 17 22 Figure 5. ADM207E Typical Operating Circuit

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ADM206E/ADM207E/ADM208E/ADM211E/ADM213E Rev. E | Page 6 of 20 TOP VIEW (Not to Scale) 24 23 22 21 20 19 18 17 16 15 14 13 1 2 3 4 5 6 7 8 9 10 11 12 ADM208E C1– V+ C1+ VCC GND T2OUT T1OUT R2IN R2OUT R1IN R1OUT T1IN C2+ C2– V– R4IN R4OUT T3OUT R3IN R3OUT T4IN T2IN T3IN T4OUT 00 06 8- 00 6 Figure 6. ADM208E Pin Configuration +5V TO+10V VOLTAGE DOUBLER +10V TO –10V VOLTAGE INVERTER 0.1µF 6.3V+ + 0.1µF 5V INPUT + 0.1µF 10V 0.1µF 10V + 0.1µF 10V + T1 T2 T3 T4 R1 R2 R3 R4 GND ADM208E T1IN T2IN T3IN T4IN R1OUT R2OUT R3OUT R4OUT T1OUT T2OUT T3OUT T4OUT R1IN R2IN R3IN R4IN TTL/CMOS INPUTS1 TTL/CMOS OUTPUTS RS-232 OUTPUTS RS-232 INPUTS2 C1+ C1– C2+ C2– VCC V+ V– 1INTERNAL 400kΩ PULL-UP RESISTOR ON EACH TTL/CMOS INPUT. 2 INTERNAL 5kΩ PULL-DOWN RESISTOR ON EACH RS-232 INPUT. 20 23 7 16 15 3 9 11 4 17 21 19 22 14 13 6 18 5 10 12 24 1 2 8 0 0 0 6 8 -0 0 7 Figure 7. ADM208E Typical Operating Circuit TOP VIEW (Not to Scale) 28 27 26 25 24 23 22 21 20 19 18 17 16 15 1 2 3 4 5 6 7 8 9 10 11 12 13 14 ADM211E T3OUT T1OUT T4OUT R3IN T2OUT R2IN R3OUT SHDN R2OUT T2IN R4IN T1IN R1OUT R4OUT T4IN R1IN GND T3IN R5OUT VCC C1+ R5IN V– V+ C1– C2– C2+ EN 00 0 68 -0 0 8 Figure 8. ADM211E Pin Configuration 0.1µF 10V 0.1µF 10V 0.1µF 10V TTL/CMOS INPUTS1 TTL/CMOS OUTPUTS RS-232 OUTPUTS RS-232 INPUTS2 0.1µF 6.3V+ + 0.1µF 5V INPUT + + + T1 T2 T3 T4 R1 R2 R3 R4 R5 GND ADM211E T1IN T2IN T3IN T4IN R1OUT R2OUT R3OUT R4OUT R5OUT T1OUT T2OUT T3OUT T4OUT R1IN R2IN R3IN R4IN R5IN SHDN C1+ C1– C2+ C2– VCC V+ V– EN 1INTERNAL 400kΩ PULL-UP RESISTOR ON EACH TTL/CMOS INPUT. 2 INTERNAL 5kΩ PULL-DOWN RESISTOR ON EACH RS-232 INPUT. 23 25 4 9 18 3 2 27 28 1 17 11 13 22 24 5 8 19 6 7 26 21 20 15 16 12 14 10 0 0 0 6 8 -0 0 9 +5V TO +10V VOLTAGE DOUBLER +10V TO –10V VOLTAGE INVERTER Figure 9. ADM211E Typical Operating Circuit

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ADM206E/ADM207E/ADM208E/ADM211E/ADM213E Rev. E | Page 7 of 20 TOP VIEW (Not to Scale) 28 27 26 25 24 23 22 21 20 19 18 17 16 15 1 2 3 4 5 6 7 8 9 10 11 12 13 14 ADM213E T3OUT T1OUT T4OUT R3IN T2OUT R2IN R3OUT R2OUT T2IN EN R4IN1 T1IN R1OUT R4OUT1 T4IN R1IN GND T3IN R5OUT1 VCC C1+ R5IN1 V– V+ C1– C2– C2+ 1ACTIVE IN SHUTDOWN. SHDN 00 06 8- 0 10 Figure 10. ADM213E Pin Configuration 0.1µF 16V 0.1µF 16V +5V TO+10V VOLTAGE DOUBLER +10V TO –10V VOLTAGE INVERTER TTL/CMOS INPUTS1 TTL/CMOS OUTPUTS RS-232 OUTPUTS RS-232 INPUTS2 + + 0.1µF 5V INPUT + + + T1 T2 T3 T4 R1 R2 R3 R4 R5 GND ADM213E T1IN T2IN T3IN T4IN R1OUT R2OUT R3OUT R4OUT3 R5OUT3 EN T1OUT T2OUT T3OUT T4OUT R1IN R2IN R3IN R4IN3 R5IN3 C1+ C1– C2+ C2– VCC V+ V– SHDN 1INTERNAL 400kΩ PULL-UP RESISTOR ON EACH TTL/CMOS INPUT. 2 INTERNAL 5kΩ PULL-DOWN RESISTOR ON EACH RS-232 INPUT. 3ACTIVE IN SHUTDOWN. 23 25 4 9 18 3 2 27 28 1 17 11 13 22 24 5 8 19 6 7 26 21 20 15 16 12 14 10 0 00 68 -0 11 0.1µF 6.3V 0.1µF 16V Figure 11. ADM213E Typical Operating Circuit Table 6. Pin Function Descriptions Mnemonic Function VCC Power Supply Input (5 V ± 10%). V+ Internally Generated Positive Supply (+9 V nominal). V– Internally Generated Negative Supply (−9 V nominal). GND Ground Pin. Must be connected to 0 V. C1+, C1– External Capacitor 1 is connected between these pins. A 0.1 μF capacitor is recommended, but larger capacitors (up to 47 μF) can be used. C2+, C2– External Capacitor 2 is connected between these pins. A 0.1 μF capacitor is recommended, but larger capacitors (up to 47 μF) can be used. TIN Transmitter (Driver) Inputs. These inputs accept TTL/CMOS levels. An internal 400 kΩ pull-up resistor to VCC is connected on each input. TOUT Transmitter (Driver) Outputs. These are RS-232 signal levels (typically ±9 V). RIN Receiver Inputs. These inputs accept RS-232 signal levels. An internal 5 kΩ pull-down resistor to GND is connected on each input. ROUT Receiver Outputs. These are TTL/CMOS output logic levels. EN/EN Receiver Enable (active high on ADM213E, active low on ADM211E). This input is used to enable/disable the receiver outputs. With EN = low for the ADM211E (EN = high for the ADM213E), the receiver outputs are enabled. With EN = high for the ADM211E (EN = low for the ADM213E), the receiver outputs are placed in a high impedance state. (See Table 3 and Table 4.) SHDN/SHDN Shutdown Control (active low on ADM213E, active high on ADM211E). When the ADM211E is in shutdown, the charge pump is disabled, the transmitter outputs are turned off, and all receiver outputs are placed in a high impedance state. When the ADM213E is in shutdown, the charge pump is disabled, the transmitter outputs are turned off, and Receiver R1 to Receiver R3 are placed in a high impedance state; Receiver R4 and Receiver R5 on the ADM213E continue to operate normally during shutdown. (See Table 3 and Table 4.) Power consumption for all parts reduces to 5 μW in shutdown.

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ADM206E/ADM207E/ADM208E/ADM211E/ADM213E Rev. E | Page 8 of 20 TYPICAL PERFORMANCE CHARACTERISTICS LOG FREQUENCY (MHz) 80 70 0 0.33 300.6 60 50 10 40 30 20 631 18 LIMIT (d B µ V ) 00 06 8 -0 1 2 Figure 12. EMC Conducted Emissions LOAD CAPACITANCE (pF) 9 7 5 3 1 3000 –7 –5 –3 –1 0 500 1000 1500 2000 2500 T x O /P ( V ) 0 00 68 -0 13 Tx O/P LO Tx O/P HI Figure 13. Transmitter Output Voltage High/Low vs. Load Capacitance (230 kbps) Tx O/P HI Tx O/P LO LOAD CURRENT (mA) 15 2 4 6 8 10 5 –5 –10 –15 0 T x O /P ( V ) 10 0 0 00 68 -0 14 Figure 14. Transmitter Output Voltage vs. Load Current START 30.0MHz STOP 200.0MHz LIMIT (d B µ V ) 80 70 60 50 40 30 20 10 0 0 00 6 8- 0 15 Figure 15. EMC Radiated Emissions Tx O/P HI LOADED VCC (V) 9 7 6.0 5 3 –1 –5 –7 –3 –9 4.0 4.5 5.0 5.5 T x O /P ( V ) 1 00 0 68 -0 16 Tx O/P LO LOADED Figure 16. Transmitter Output Voltage vs. Power Supply Voltage SHDN V+ V– 1 CH3 CH2 CH1CH1 5.00V 5.00V M 50.0µs 3.1V 5.00V V+, V– EXITING SHDN T T T 2 3 0 00 68 -0 17 Figure 17. Charge Pump V+, V− Exiting Shutdown

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ADM206E/ADM207E/ADM208E/ADM211E/ADM213E Rev. E | Page 9 of 20 VCC (V) 350 300 5.55.35.14.94.7 250 200 100 50 0 4.5 IM P E D A N C E ( Ω ) 150 V+ V– 00 0 68 -0 18 Figure 18. Charge Pump Impedance vs. Power Supply Voltage LOAD CURRENT (mA) 15 5 10 15 10 5 –5 –10 –15 0 V + /V – (V ) 20 0 V+ V– 0 00 68 -0 19 Figure 19. Charge Pump V+, V− vs. Load Current

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