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AT83C23OK203-SIRIM

Description
Microprocessor Circuit, CMOS, PLASTIC, LCC-28
CategoryThe embedded processor and controller    Microcontrollers and processors   
File Size365KB,17 Pages
ManufacturerINSIDE Secure
Download Datasheet Parametric Compare View All

AT83C23OK203-SIRIM Overview

Microprocessor Circuit, CMOS, PLASTIC, LCC-28

AT83C23OK203-SIRIM Parametric

Parameter NameAttribute value
MakerINSIDE Secure
Parts packaging codeQLCC
package instructionQCCN,
Contacts28
Reach Compliance Codeunknown
JESD-30 codeS-XQCC-N28
Number of terminals28
Maximum operating temperature85 °C
Minimum operating temperature-40 °C
Package body materialUNSPECIFIED
encapsulated codeQCCN
Package shapeSQUARE
Package formCHIP CARRIER
Certification statusNot Qualified
Maximum supply voltage5.5 V
Minimum supply voltage3 V
surface mountYES
technologyCMOS
Temperature levelINDUSTRIAL
Terminal formNO LEAD
Terminal locationQUAD
uPs/uCs/peripheral integrated circuit typeMICROPROCESSOR CIRCUIT

AT83C23OK203-SIRIM Preview

Features
Host Interface
– USB (Compliant with USB 1.1 and 2.0, CCID Supported)
– Transmission Speed: USB: 12 MBit/sec
– Customer Specific USB-descriptors
– Serial
Smart Card Interface
– Smart Card Interface Compliant with ISO 7816 and EMV 2000
– Support of T=0, T=1, TWI (S=8), 2-wire: SLE 4432/42 (S=10), 3-wire: SLE4418/28
(S=9), others on request
– High Performance Smart Card Interface
– Supports 5V, 3V and 1.8V Smart Cards
– Supply Current 60 mA to Power the Smart Card
– Smart Card Movement Detection with Auto Power-off
– Automatic Detection of Smart Card Type
– Short Circuit and Thermal Protection
– 8-pin Handling (C4/C8 Supported)
Compliance
– WHQL (Microsoft) Certified
– EMV 2000 (Europay, Mastercard, Visa) Certified
– USB 1.1 and 2.0
– USB CCID
– ISO 7816
– HBCI
Other Features
– Fast and Easy Certification Process
– Supports LED Status Indicator (Green: ready; Red: busy)
– Secure Pin Entry (SPE)
PC/SC Driver support
– Windows 98/ME®
– Windows 2000®
– Windows XP®
– Windows CE 3.0®/CE.NET (Depending on Hardware)
– Windows NT® 4.0 (On Request)
– Linux®
– MacOS X®
Operating Voltage
– 3.0V - 5.5V
Temperature
– -40°C to +85°C
Packages
– 32-pin VQFP or 32-pin QFN
CardMan
®
Smart@Link
AT83C23OK
Summary
4307CS–SCR–03/07
This is a summary Document. A complete document can be
found on the Omnikey Web site.http://omnikey.aaitg.com
AT83C23OK
Description
Smart Cards are increasingly being used for Payments, Home-Banking, Access Control,
Internet Security, PKItokens, Health Care, Loyalty, etc.
The CardMan Smart@Link chip set is a ready to use precertified smart card reader inter-
face, that can be implemented into USB hosts. It facilitates hardware integrators by
reducing time-to-market and offers a unique opportunity to quickly and easily include
smart card reader functionality in systems like PCs, Notebooks, Keyboards, Smart Card
based Dongles, Monitors, Mice, PDAs, Thin Clients, Biometric devices etc. The already
existing certifications and compliances guarantee a fast and easy certification process.
With its high performance Smart Card Interface CardMan Smart@Link supports smart-
card technology of the future.
The integration in any USB system can be easily done without any firmware or software
(driver) development, simply by embedding the CardMan Smart@Link design and
chipset into the target system. The USB CCID support makes this process the easiest
ever by connecting host and Smart Card Reader systems without the need of additional
drivers.
CardMan Smart@Link combines Atmel’s AT83C5123 microcontroller and Omnikey
firmware.
For detailed information on the Omnikey firmware, please refer to the Omnikey web site:
http://omnikey.aaitg.com.
In addition to the summary information contained in this document, please refer to the
AT83C5123 datasheet for complete product information. This document is available on
the Atmel web site www.atmel.com.
2
4307CS–SCR–03/07
Pin Configurations
Figure 1.
VQFP32 Package Pinout
CIO
P1.7/CCLK1
D-
AVCC
PLLF
VREF
32 31 30 29 28 27 26 25
DVCC
P1.2/CPRES
CC8
CRST
CC4
CCLK
P5.0
VSS
AVSS
D+
1
2
3
4
5
6
7
8
CVCC
VQFP32
24
23
22
21
20
19
18
17
P3.1/TxD
P1.6
P3.0/RxD
P3.5/T1/CRST1
P3.2/INT0/LED0/CIO1
P3.3/INT1
P3.4/T0/LED1
P3.6/LED2
9 10 11 12 13 14 15 16
P3.7/LED3
XTAL1
XTAL2
RST
D-
AVCC
PLLF
AVSS
LI
CVSS
VREF
VCC
D+
Figure 2.
QFN32 Package Pinout
CIO
P1.7/CCLK1
32 31 30 29 28 27 26 25
DVCC
P1.2/CPRES
CC8
CRST
CC4
CCLK
P5.0
VSS
1
2
3
4
5
6
7
8
CVCC
QFN32
24
23
22
21
20
19
18
17
P3.1/TxD
P1.6
P3.0/RxD
P3.5/T1/CRST1
P3.2/INT0/LED0/CIO1
P3.3/INT1
P3.4/T0/LED1
P3.6/LED2
9 10 11 12 13 14 15 16
P3.7/LED3
XTAL1
XTAL2
RST
LI
CVSS
VCC
3
AT83C23OK
4307CS–SCR–03/07
AT83C23OK
Pin Description
Table 1.
Pin Description
VQFP32
QFN32
Internal
Power
Supply
ESD
I/O
Reset
Level
Card interface-I/O pin
CIO
32
32
CVCC
6KV
I/O
0
CVcc inactive at reset . ESD tested with 10µF on CVcc. An external pull-up of
4.7K
Ω
is recommended to support ICC’s with too high internal pull-ups.
Card interface-C8 pin
CVcc inactive at reset. ESD tested with 10µF on CVcc.
Card Presence signal
CPRES
2
2
VCC
2KV
I/O
1
If P3.4 pin is connected to GND, the card inserted information generates a high
level on CPRES pin.
Else, a low level on this pin indicates that a card is inserted.
CC4
5
5
CVCC
6KV
I/O
0
Card interface-C4 pin
CVcc inactive at reset. ESD tested with 10µF on CVcc.
Card interface-CLK pin
CVcc inactive at reset. ESD tested with 10µF on CVcc.
Card interface-RST pin
CVcc inactive at reset. ESD tested with 10µF on CVcc.
For Serial reader:
Connect this to GND.
For USB reader:
Leave this pin unconnected.
Leave this pin unonnected
For Serial reader:
RxD:
Connect this pin to the host TxD signal.
For USB reader:
Connect this pin to GND.
For Serial reader:
TxD:
Connect this pin to the host RxD signal.
For USB reader:
Leave this pin unconnected.
For Serial reader:
INT0:
Connect this pin to host RTS signal.
For USB reader:
Connect this pin to GND.
For Serial reader:
Leave this pin unconnected.
For USB reader:
Connect this pin to GND.
Eject Signal
P3.4
18
18
VCC
2KV
I/O
1
To support the eject of the smart card under control of the application. Please refer
to Design-In Manual for additionnal information.
This pin indicates also the polarity of Card Insertion Signal.
P3.5
21
21
VCC
2KV
I/O
1
For Serial reader:
Connect this to GND.
For USB reader:
Leave this pin unconnected.
TWI Expansion
(I²C compliant)
May be used for memory extension, parallel port expanders and more.
SDA
13
13
VCC
2KV
I/O
1
Please refer to the Design-IN Manual.
Alt
Port
CC8
3
3
CVCC
6KV
I/O
0
CCLK
6
6
CVCC
6KV
O
0
CRST
4
4
CVCC
6KV
O
0
P1.6
23
23
VCC
2KV
I/O
1
P1.7
31
31
VCC
2KV
I/O
1
P3.0
22
22
VCC
2KV
I/O
1
P3.1
24
24
VCC
2KV
I/O
1
P3.2
20
20
VCC
2KV
I/O
1
P3.3
19
19
VCC
2KV
I/O
1
SCL
17
17
VCC
2KV
I/O
1
4
4307CS–SCR–03/07
Table 1.
Pin Description (Continued)
VQFP32
QFN32
Internal
Power
Supply
ESD
I/O
Reset
Level
Reset Input
The Port pins are driven to their reset conditions when a voltage lower than V
IL
is
applied, whether or not the oscillator is running.
RST
16
16
VCC
I/0
This pin has an internal 10K pull-up resistor which allows the device to be reset by
connecting a capacitor between this pin and VSS.
Asserting RST when the chip is in Idle mode or Power-Down mode returns the chip
to normal operation.
The output is active for at least 12 oscillator periods when an internal reset occurs.
For Serial reader:
Connect this pin to GND.
For USB reader:
D+
29
29
DVCC
I/O
USB Positive Data Upstream Port
This pin requires an external serial resistor of 27Ω (AT8xC122) or 33Ω
(AT83C5123) and a 1.5 K
Ω
pull-up to
V
REF for full speed configuration.
For Serial reader:
Connect this pin to GND.
For USB reader:
D-
28
28
DVCC
I/O
USB Negative Data Upstream Port
This pin requires an external serial resistor of 27Ω (AT8xC122) or 33Ω
(AT83C5123)
For Serial reader:
Leave this pin unconnected.
For USB reader:
Alt
Port
V
REF
30
30
AVCC
O
USB Voltage Reference:
3.0 <
V
REF < 3.6 V
V
REF
can be connected to D+ through a 1.5 K
Ω
resistor. The
V
REF
voltage is
controlled by software.
Input to the on-chip inverting oscillator amplifier
To use the internal oscillator, a crystal or an external oscillator must be connected to
this pin.
Output of the on-chip inverting oscillator amplifier
To use the internal oscillator, a crystal circuit must be connected to this pin. If an
external oscillator is used, leave XTAL2 unconnected.
PLL Low Pass Filter input
Receives the RC network of the PLL low pass filter.
Analog Supply Voltage
XTAL1
14
14
VCC
I
XTAL2
15
15
VCC
O
PLLF
26
26
AVCC
O
AVCC
27
27
PWR
AVCC is used to supply the internal 3.3V analog regulator which supplies the
internal USB driver
Supply Voltage
VCC
12
12
PWR
VCC is used to supply the internal 3.3V digital regulator which supplies the PLL,
CPU core and internal I/O’s
DC/DC Input
LI supplies the current for the charge pump of the DC/DC converter.
LI
10
10
PWR
- LI tied directly to VCC : the DC/DC converter must be configured in regulator
mode.
- LI tied to VCC through an external 10µH coil : the DC/DC converter can be
configured either in regulator or in pump mode.
Card Supply Voltage
CVCC
9
9
PWR
CVCC is the ouput of internal DC/DC converter which supplies the Smart Card
Interface. It must be connected to an external decoupling capacitor of 10 µF with
the lowest ESR as this parameter influences on the CVCC noise
5
AT83C23OK
4307CS–SCR–03/07

AT83C23OK203-SIRIM Related Products

AT83C23OK203-SIRIM AT83C23OK203-RATUM AT83C23OK203-RARUM AT83C23OK203-PUTUM AT83C23OK203-PURUM AT83C23OK203-RARIM AT83C23OK203-SISIM
Description Microprocessor Circuit, CMOS, PLASTIC, LCC-28 Microprocessor Circuit, CMOS, PQFP32, GREEN, VQFP-32 Microprocessor Circuit, CMOS, PQFP32, GREEN, VQFP-32 Microprocessor Circuit, CMOS, GREEN, QFN-32 Microprocessor Circuit, CMOS, GREEN, QFN-32 Microprocessor Circuit, CMOS, PQFP32, VQFP-32 Microprocessor Circuit, CMOS, PLASTIC, LCC-28
Maker INSIDE Secure INSIDE Secure INSIDE Secure INSIDE Secure INSIDE Secure INSIDE Secure INSIDE Secure
Parts packaging code QLCC QFP QFP QFN QFN QFP QLCC
package instruction QCCN, LQFP, LQFP, HVQCCN, HVQCCN, LQFP, QCCN,
Contacts 28 32 32 32 32 32 28
Reach Compliance Code unknown unknown unknown unknown unknown unknown unknown
JESD-30 code S-XQCC-N28 S-PQFP-G32 S-PQFP-G32 S-XQCC-N32 S-XQCC-N32 S-PQFP-G32 S-XQCC-N28
Number of terminals 28 32 32 32 32 32 28
Maximum operating temperature 85 °C 85 °C 85 °C 85 °C 85 °C 85 °C 85 °C
Minimum operating temperature -40 °C -40 °C -40 °C -40 °C -40 °C -40 °C -40 °C
Package body material UNSPECIFIED PLASTIC/EPOXY PLASTIC/EPOXY UNSPECIFIED UNSPECIFIED PLASTIC/EPOXY UNSPECIFIED
encapsulated code QCCN LQFP LQFP HVQCCN HVQCCN LQFP QCCN
Package shape SQUARE SQUARE SQUARE SQUARE SQUARE SQUARE SQUARE
Package form CHIP CARRIER FLATPACK, LOW PROFILE FLATPACK, LOW PROFILE CHIP CARRIER, HEAT SINK/SLUG, VERY THIN PROFILE CHIP CARRIER, HEAT SINK/SLUG, VERY THIN PROFILE FLATPACK, LOW PROFILE CHIP CARRIER
Certification status Not Qualified Not Qualified Not Qualified Not Qualified Not Qualified Not Qualified Not Qualified
Maximum supply voltage 5.5 V 5.5 V 5.5 V 5.5 V 5.5 V 5.5 V 5.5 V
Minimum supply voltage 3 V 3 V 3 V 3 V 3 V 3 V 3 V
surface mount YES YES YES YES YES YES YES
technology CMOS CMOS CMOS CMOS CMOS CMOS CMOS
Temperature level INDUSTRIAL INDUSTRIAL INDUSTRIAL INDUSTRIAL INDUSTRIAL INDUSTRIAL INDUSTRIAL
Terminal form NO LEAD GULL WING GULL WING NO LEAD NO LEAD GULL WING NO LEAD
Terminal location QUAD QUAD QUAD QUAD QUAD QUAD QUAD
uPs/uCs/peripheral integrated circuit type MICROPROCESSOR CIRCUIT MICROPROCESSOR CIRCUIT MICROPROCESSOR CIRCUIT MICROPROCESSOR CIRCUIT MICROPROCESSOR CIRCUIT MICROPROCESSOR CIRCUIT MICROPROCESSOR CIRCUIT
length - 7 mm 7 mm 7 mm 7 mm 7 mm -
Maximum seat height - 1.6 mm 1.6 mm 0.9 mm 0.9 mm 1.6 mm -
Terminal pitch - 0.8 mm 0.8 mm 0.65 mm 0.65 mm 0.8 mm -
width - 7 mm 7 mm 7 mm 7 mm 7 mm -

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Datasheet   0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
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