LTC1555LEGN-1.8#TR Linear Technology, LTC1555LEGN-1.8#TR Datasheet - Page 4

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LTC1555LEGN-1.8#TR

Manufacturer Part Number
LTC1555LEGN-1.8#TR
Description
IC LEVEL XLATOR/SIM PS 16SSOP
Manufacturer
Linear Technology
Datasheet

Specifications of LTC1555LEGN-1.8#TR

Logic Function
Level Shifter
Number Of Bits
1
Input Type
Voltage
Output Type
Voltage
Number Of Channels
1
Number Of Outputs/channel
1
Differential - Input:output
No/No
Propagation Delay (max)
18ns
Voltage - Supply
1.8 V ~ 5.5 V
Operating Temperature
-40°C ~ 85°C
Package / Case
16-SSOP
Supply Voltage
1.8 V ~ 5.5 V
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Data Rate
-
Other names
LTC1555LEGN-1.8TR

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PIN
LTC1555L
CIN (Pin 1): Clock Input Pin from Controller.
RIN (Pin 2): Reset Input Pin from Controller.
DATA (Pin 3): Controller Side Data Input/Output Pin. Can
be used for single pin bidirectional data transfer between
the controller and the SIM card as long as the controller
data pin is open drain. The controller output must be able
to sink 1mA max when driving the DATA pin low due to the
internal pull-up resistors on the DATA and I/O pins. If the
controller data output is not open drain, then the DDRV pin
should be used for sending data to the SIM card and the
DATA pin used for receiving data from the SIM card.
TYPICAL PERFOR A CE CHARACTERISTICS
4
U
30
20
10
50
40
2
I
I
T
VIN
VCC
FUNCTIONS
A
= 25 C
= 0mA
vs V
U
3
IN
V
CC
6.0
5.5
5.0
4.5
4.0
= 5V
V
2
IN
V
V
I
4
CC
VCC
(V)
U
CC
V
CC
vs V
= 5V
= 10mA
= 3V
IN
3
W
5
T
1555L • G01
A
= 25 C
V
T
IN
U
A
4
(V)
= 85 C
6
T
5
A
= –40 C
50
30
20
10
40
1555L • G04
–40
I
VIN
V
I
VCC
IN
6
= 3.6V
vs Temperature
= 0mA
0
TEMPERATURE ( C)
40
DDRV (Pin 4): Optional Data Input Pin for Sending Data to
the SIM Card. When not needed, the DDRV pin should
either be left floating or tied to DV
current source will pull the DDRV pin up to DV
floating).
DV
Input/Output Pins (typically 3V). May be between 1.425V
and 4.4V. The DV
shutdown for further reduction in battery current. When
DV
the LTC1555L goes into shutdown mode regardless of the
signals on the M0-M1 pins.
CC
CC
drops below 1.2V, the charge pump is disabled and
(Pin 5): Supply Voltage for Controller Side Digital
3.0
2.7
2.4
3.6
3.3
80
V
V
CC
CC
2
V
1555L • G02
CC
V
I
= 5V
= 3V
VCC
CC
vs V
= 3V
= 10mA
120
3
IN
CC
V
supply may be powered-down in
T
IN
A
20
15
10
4
5
0
= 25 C
(V)
T
1
A
I
DVCC
F
= 85 C
CLK
= 1MHz
vs V
T
5
A
= –40 C
2
DVCC
1555L • G05
CC
V
T
DVCC
A
6
= 85 C
(an internal 1 A
3
T
(V)
A
= 25 C
T
A
= –40 C
4
CC
1555L • G03
if left
5

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