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Smart. Card Direct Serial Interface - Code. Project. Introduction.
This article describes a way of implementing a Smart. Card control based application upon a Serial interface. The hardware interface used is widely known as . Otherwise, the target of this article is to show how to directly interact with the smartcard toward the hardware interface told before. Each Smart. Card vendor implements its own command set named APDU (Append Protocol Data Unit) based on ISO- 7. In this way, we can explode each Smart.
Card type with the correct APDU commands set; in this way, we can use Mifare, TIBC or any other type of Smartcard as an RFID Tag for identity purposes by this VB interface. To get it working, it's only necessary to feed the circuit with 5. V continuous current and an RS- 2.
PC serial interface. Interface Phoenix interface is a serial interface with a 9 pin serial jack, and a 1. Smart. Card connector (pins 4, 6 and 8 unplugged).
This interface is just developed and it's the base of this project. It's composed of a 1. Smart. Card module, a MAX2. IC used to convert RS- 2. TTL voltages, a 3. Mhz quartz crystal used as pulse generator, a voltage regulator and several capacitors, resistors and leds used as pull- up/pull- down resistors, or voltage generators basically. The serial port pin connections are shown in phoenix electronic schema: The idea is to connect the Tx and Rx serial pins with the Smart.
Card interface I/O pin managed by a bidirectional logic. Otherwise, Smart.
Card reset pin is connected via MAX2. RTS serial line, so reading the ATR is so easy as driving this line to inverse voltage levels during a few clock cycles. Smart. Card connector pinout is shown in this table: Smartcard Module Pin. Out. Pin # Pin Name Pin Description 1 VCC +5v or 3.
DC 2 Reset Card Reset 3 CLOCK Card Clock 5 GND Ground 7 I/O In/Out . Getting finite states machine ready to accept commands, here is the sequence: Once the serial port is initialized, getting the interface ready for reading/writing is composed of only 4 steps: Feeding the Smart. Card; this is got by connecting RS- 2. Vcc Smart. Card pin will be directly fed by Vcc Serial pin.
Initializing serial communications; this interface needs to be initialized to 9. Reseting the Smart.
Card; you can do it by putting tension on serial 4 pin and then putting it off. After about 4. 00. ATR at serial buffer register; so, 1. Here's an APDU example : Obj. Serial. RTSEnable = False. For i = 1. To (Len(txt.
Cmd. Text) / 2). Obj. Serial. Output = Chr(Comanda(Mid$(txt. Cmd. Text, i, 2))). Next ibuffer$ = Obj.
Serial. Input. txt. Response. Text = Interpretar. Hex(buffer$)This is a picture of the working project: Points of Interest This software/hardware interface could be used to integrate Smart. Card login in any application you could think about, or you can use it for Smart. Card investigation projects. History 1st November, 2.
Initial version Use Ctrl+Left/Right to switch messages, Ctrl+Up/Down to switch threads, Ctrl+Shift+Left/Right to switch pages.