NCN6010DTBR2 ON Semiconductor, NCN6010DTBR2 Datasheet - Page 11

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NCN6010DTBR2

Manufacturer Part Number
NCN6010DTBR2
Description
IC LEVEL SHIFTER SIMCARD 14TSSOP
Manufacturer
ON Semiconductor
Datasheet

Specifications of NCN6010DTBR2

Logic Function
Level Shifter
Input Type
Logic
Output Type
Logic
Differential - Input:output
No/No
Propagation Delay (max)
50ns
Voltage - Supply
2.7 V ~ 3.6 V
Operating Temperature
-25°C ~ 85°C
Package / Case
14-TSSOP
Supply Voltage
2.7 V ~ 3.6 V
Lead Free Status / RoHS Status
Contains lead / RoHS non-compliant
Number Of Channels
-
Data Rate
-
Other names
NCN6010DTBR2OSTR

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Part Number:
NCN6010DTBR2(NCN6010)
Manufacturer:
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Quantity:
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Part Number:
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Manufacturer:
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voltage, the clocks are activated, switch S5 is disconnected
and the output voltage is the result of the C1 charge transfer
into the output load. The current is limited by three mains
parameters:
structure and size of the NMOS/PMOS devices used to
When the NCN6010 is programmed in the 5.0 V output
The first parameters are depending upon the internal
- the Ron of the switching MOS (S1 through S4)
- the operating frequency
- the C1/C2 ratio and their ESR
Manufacturers
MURATA
VISHAY
VISHAY
MOD_V
Tantalum/594C/593C
CERAMIC/GRM225
Electrolytic/94SV
CC
S1
S2
S3
S4
S5
Type/Serie
Table 2. Comparison of Capacitor Types
Figure 10. Basic Charge Pump Operating Timings
SIM_V
CC
http://onsemi.com
Format
= 5.0 V
0805
1206
1206
NCN6010
11
design the chip. The third parameter is adjustable by the user
and, beside the micro farad values, the type of capacitors
plays a significant role. As a matter of fact, using a low cost
electrolytic model will ruin the efficiency due to the high
ESR of such a capacitor. It is highly recommended to use
ceramic types, preferably from the X5R or X7R series, to
achieve the efficiency and the SIM_VCC output voltage
ripple. Table 2 summarizes the characteristics of the most
common type of capacitors.
10 mF/6.3 V
Max Value
10 mF/16 V
10 mF/10 V
SIM_V
+80%/-20%
-20%/+20%
Tolerance
CC
-
= 3.0 V
Typ. Z @ 500 kHz
450 mW
400 mW
30 mW

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