参数资料
型号: 73S8009CN-DB
厂商: Maxim Integrated Products
文件页数: 18/30页
文件大小: 0K
描述: BOARD DEMO FOR 73S8009CN
产品培训模块: Lead (SnPb) Finish for COTS
Obsolescence Mitigation Program
标准包装: 1
系列: *
73S8009CN Data Sheet
DS_8009CN_026
3.4
System Controller Interface
Five separate digital inputs and two outputs allow direct control of the card interface from the host:
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Pin CS: Chip select control.
Pin CMDVCC# and/or CMDVCC% : When low, starts an activation sequence.
Pin RSTIN: controls the card RST signal.
Pin SC/ USB : Routes AUXx signals to AUXxUC or USB Dx pins and provides proper tri-stating
functionality.
Pin RDY: Indicates when smart card power supply is stable and ready.
Pin OFF : Indicator of card presence and any card fault conditions.
Interrupt output to the host: When the card is not activated, the OFF pin informs the host about the card
presence only (Low = No card in the reader, high = card inserted). When CMDVCC ( #/% signals) is/are
set low (card activation sequence requested from the host), low level on OFF means a fault has been
detected (e.g. card removal during card session, or voltage fault, or thermal / over-current fault) that
automatically initiates a deactivation sequence. The smart card pass through signals are enabled when
the RDY conditions are met.
3.5
Card Power Supply and Voltage Supervision
The 73S8009CN smart card interface IC incorporates an LDO voltage regulator for the card power
supply, V CC (V P to V CC conversion uses an internal LDO). The voltage output is controlled by the digital
input sequence of CMDVCC# and CMDVCC% . This regulator is able to provide either 1.8V, 3V or 5V
card voltage sourced from the V P power supply. Internal digital circuitry is also powered by the V P power
supply (except for the ON/OFF circuitry which is powered from V PC ). A voltage supervisor checks the
value of the voltage V CC . A card deactivation sequence is forced upon fault detected by voltage
supervisor, overcurrent condition, or card removal event. The voltage regulator can provide a card
current of 65mA in compliance with EMV 4.1 for 3-V and 5-V cards. The signals CMDVCC# and
CMDVCC% control the turn-on, output voltage value, and turn-off of V CC . When either signal is asserted
low, V CC will ramp to the selected value or if both signals are asserted low (within 400ns of each other),
V CC will ramp to 1.8V. These signals are edge triggered. If CMDVCC% is asserted low (to command V CC
to be 5V) and at a much later time (greater than 2 μ s, typically), CMDVCC# is asserted low, it will be
ignored (and vice versa.)
At the assertion (low) of either or both CMDVCC ( #/% signals), V CC will rise to the requested value. When
V CC rises to an acceptable value, and stays above that value for approximately 20 μ s, RDY will be set
high. Approximately 510 μ s after the fall of CMDVCC ( #/% ), the circuit will check the see if V CC is at or
above the required minimum value (indicated by RDY=1) and if not, will begin an emergency deactivation
sequence. During the 510 μ s time, card removal, or de-assertion of CMDVCC ( #/% ) shall also initiate an
emergency deactivation sequence. The circuit provides over-current protection and limits Icc to 150mA,
maximum for self-protection. When an over-current condition is sensed, the circuit will invoke a de-
activation sequence.
18
Rev. 1.4
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