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USB2227 데이터시트(PDF) 2 Page - SMSC Corporation

부품명 USB2227
상세설명  Flash Card Reader Media Power Considerations
PDF  5 Pages
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제조업체  SMSC [SMSC Corporation]
홈페이지  http://www.smsc.com
Logo SMSC - SMSC Corporation

USB2227 데이터시트(HTML) 2 Page - SMSC Corporation

  USB2227 Datasheet HTML 1Page - SMSC Corporation USB2227 Datasheet HTML 2Page - SMSC Corporation USB2227 Datasheet HTML 3Page - SMSC Corporation USB2227 Datasheet HTML 4Page - SMSC Corporation USB2227 Datasheet HTML 5Page - SMSC Corporation  
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USB2227 and USB2228 USB2.0 Flash Card Reader Media Power Considerations
Revision 1.1 (03-31-05)
2
SMSC WP 1.5
WHITE PAPER
DC Voltage Drop and Current
One consideration in selecting M1 is the DC voltage drop across it, Vm1, and current
requirements,Im1. With the exception of compact Flash format interface which can support CF form
factor hard drives that can consume over 300mA, most card formats require under 100mA maximum.
The FET, M1, needs to be selected such that the minimum card voltage specs at the maximum rated
current are met. In general, a drop of less than 150mv is acceptable.
Inrush Transient
When M1 is turned on, the card supply filter capacitor, Ccard, is charged. The inrush current can drop
the voltage provided by the 3.3V regulator, VDD, until it can recover. The amount of drop is determined
by the turn on rate of M1 and the sizes of Cout, Ccard, and the response time of the regulator. If VDD
drops below 3.0V erroneous operation of the card reader can occur. The case of multiple simultaneous
card insertions must also be considered.
Short Circuits
Precautions must be taken to tolerate potential short circuits to the card power supply. This can occur
during manufacturing test or if a defective card is inserted.
External Implementations
If discrete FETs are used, they are selected to provide the required DC voltage drop at the maximum
rated card currents. Usually, this is 100mA for non-CF interfaces and 300mA+ for CF/Microdrive
interfaces. Turn-on surge currents are managed by using the intrinsic FET gate capacitance, Cg, and
a series resistor, Rg, to provide turn on delay. A value of 15 uS is usually acceptable, but may have
to be adjusted to assure that the VDD never drops below 3.0V.
Implementation using integrated FETs
SMSC’s USB2227 and USB2228 provides the power FETs for the non-CF interfaces internally and can
directly drive the other card interfaces without external components as long as the current to the card
does not exceed 100ma. This is illustrated in Figure 2, "Implementation Using Integrated FETs". The
internal FETs have fold-back current limiting and can sustain any load, including a direct short to
ground, indefinitely (See Figure 3, "Output Voltage vs. Load Current for VDDIO = 3.3V"). Since external
FETs must be sized to tolerate a short circuit, often, they must be oversized and add cost. In addition,
the integrated internal FETs have their turn on times controlled to limit supply voltage drops with
commonly available 3.3V voltage regulators and filter capacitor sizes, eliminating the need for external
components to control turn on time to eliminate supply droops.



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