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Home > products > Display Driver ICs > High Speed Integrated Circuit Chip 5 V, 0.1 F CMOS RS-232 Drivers / Receivers ADM242ARZ

High Speed Integrated Circuit Chip 5 V, 0.1 F CMOS RS-232 Drivers / Receivers ADM242ARZ

manufacturer:
Analog Devices
Description:
2/2 Transceiver Full RS232 18-SOIC
Category:
Display Driver ICs
Price:
Negotiate
Payment Method:
T/T, Western Union, Paypal
Specifications
Vcc:
6 V
V+:
(Vcc – 0.3 V) To +13 V
V–:
+0.3 V To –13 V
Power Dissipation N-16:
400 MW
Storage Temperature Range:
–65°C To +150°C
Lead Temperature (Soldering, 10 Sec):
300°C
Vapor Phase (60 Sec):
215°C
Infrared (15 Sec):
220°C
Highlight:

electronics ic chip

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integrated circuit ic

Introduction

 

High-Speed, 5 V, 0.1 F CMOS RS-232 Drivers/Receivers 

ADM222/ADM232A/ADM242

 

FEATURES                                                               FUNCTIONAL BLOCK DIAGRAM

200 kB/s Transmission Rate

Small (0.1 F) Charge Pump Capacitors

Single 5 V Power Supply

Meets All EIA-232-E and V.28 Specifications

Two Drivers and Two Receivers

On-Board DC-DC Converters

±9 V Output Swing with 5 V Supply

±30 V Receiver Input Levels

Pin Compatible with MAX222/MAX232A/MAX242

 

APPLICATIONS

Computers

Peripherals

Modems

Printers

Instruments

 

GENERAL DESCRIPTION

The ADM222, ADM232A, ADM242 are a family of high-speed RS-232 line drivers/receivers offering transmission rates up to 200 kB/s. Operating from a single 5 V power supply, a highly efficient on-chip charge pump using small (0.1 µF) external capacitors allows RS-232 bipolar levels to be developed. Two RS-232

drivers and two RS-232 receivers are provided on each device.

 

The devices are fabricated on BiCMOS, an advanced mixed technology process that combines low power CMOS with highspeed bipolar circuitry. This allows for transmission rates up to 200 kB/s, yet minimizes the quiescent power supply current to under 5 mA.

 

The ADM232A is a pin-compatible, high-speed upgrade for the AD232 and for the ADM232L. It is available in 16-lead DIP and in both narrow and wide surface-mount (SOIC) packages.

 

The ADM222 contains an additional shutdown (SHDN) function that may be used to disable the device, thereby reducing the supply current to 0.1 µA. During shutdown, all transmit/receive functions are disabled. The ADM222 is available in 18-lead DIP and in a wide surface-mount (SOIC) package.

 

The ADM242 combines both shutdown (SHDN) and enable (EN) functions. The shutdown function reduces the supply current to 0.1 mA. During shutdown, the transmitters are disabled but the receivers continue to operate normally. The enable function allows the receiver outputs to be disabled thereby facilitating sharing a common bus. The ADM242 is available in 18-lead DIP and in a wide surface-mount (SOIC) package.

 

 

ADM222/ADM232A/ADM242–SPECIFICATIONS

(VCC = 5 V 10%. C1–C4 = 0.1 F; all specifications TMIN to TMAX unless otherwise noted.)

      Parameter                                    Min       Typ       Max        Unit            Test Conditions/Comments

 RS-232 TRANSMITTERS

   Output Voltage Swing                      ±5        ±9                         V              All Transmitter Outputs Loaded with

                                                                                                                     3 kΩ to Ground

   Input Logic Threshold Low, VINL                 1.7        0.8            V             TIN

   Input Logic Threshold High, VINH     2.4      1.7                         V             TIN

   Logic Pull-Up Current                                  12         40            µA            TIN = 0 V

   Data Rate                                         200                                  kB/s

   Output Resistance                           300                                   Ω             VCC = V+ = V– = 0 V, VOUT = ±2 V

  Output Short Circuit Current

          (Instantaneous)                                     ±10                       mA

 RS-232 RECEIVERS

   RS-232 Input Voltage Range            –30                  +30           V            

   RS-232 Input Threshold Low            0.8       1.2                        V

   RS-232 Input Threshold High                        1.6        2.4           V

   RS-232 Input Hysteresis                   0.2        0.4       1.0           V             VCC = 5 V

   RS-232 Input Resistance                   3          5           7             kΩ          TA = 0°C to 85°C

   TTL/CMOS Output Voltage Low,

              VOL                                                      0.05      0.4           V             IOUT = 3.2 mA

   TTL/CMOS Output Voltage High,

             VOH                                          3.5                                     V             IOUT = –1.0 mA

   TTL/CMOS Output Short-Circuit

            Current                                       –2        –85                       mA          Source Current (VOUT = GND)*

   TTL/CMOS Output Short-Circuit

            Current                                       10          35                       mA           Sink Current (VOUT = VCC)*

   TTL/CMOS Output Leakage

            Current                                                   ±0.05      ±10         µA            SHDN = GND/EN = VCC

                                                                                                                           0 V ≤ VOUT ≤ VCC

   EN Input Threshold Low, VINL                          1.4         0.8          V

   EN Input Threshold High, VINH             2.0       1.4                        V

 POWER SUPPLY

   Power Supply Current                                        4            8          mA             No Load

                                                                             13                        mA             3 kΩ Load on Both Outputs

   Shutdown Power Supply Current                     0.1          10          µA              

   SHDN Input Leakage Current                                           ±1         µA

   SHDN Input Threshold Low, VINL                     1.4          0.8          V

   SHDN Input Threshold High, VINH        2.0       1.4                         V

 AC CHARACTERISTICS

   Transition Region Slew Rate                 3           8             30         V/µs          CL = 50 pF to 1000 pF,

                                                                                                                             RL = 3 kΩ to 7 kΩ

                                                                                                                             Measured from +3 V to –3 V

                                                                                                                              or –3 V to +3 V

   Transmitter Propagation Delay

          TTL to RS-232                                            0.85        3.5          µs            tPHLT

                                                                               1.0         3.5          µs            tPLHT

   Receiver Propagation Delay RS-232

          to TTL                                                           0.1         0.5          µs            tPHLR

                                                                               0.3          0.5         µs             tPLHR

   Receiver Output Enable Time                            125         500        ns             tER

   Receiver Output Disable Time                           160         500        ns             tDR

   Transmitter Output Enable Time                        250                       µs             SHDN Goes High

   Transmitter Output Disable Time                       3.5                        µs             SHDN Goes Low

   Transmitter + to – Propagation Delay

           Difference                                                    150                       ns

   Receiver + to – Propagation Delay

           Difference                                                     200                      ns

*Guaranteed by design, not production tested.

Specifications subject to change without notice.

 

 

Test Circuits

 

 

 

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