MCB1114 Keil, MCB1114 Datasheet - Page 32

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MCB1114

Manufacturer Part Number
MCB1114
Description
BOARD EVALUATION FOR NXP LPC1114
Manufacturer
Keil
Datasheet

Specifications of MCB1114

Lead Free Status / RoHS Status
Lead free / RoHS Compliant
NXP Semiconductors
Table 7.
T
[1]
[2]
[3]
[4]
[5]
[6]
[7]
Table 8.
T
[1]
[2]
[3]
[4]
[5]
[6]
[7]
[8]
LPC1111_12_13_14_0
Objective data sheet
Symbol
I
Oscillator pins
V
V
Symbol
V
C
E
E
E
E
E
LI
amb
amb
i(xtal)
o(xtal)
IA
ia
D
L(adj)
O
G
T
Typical ratings are not guaranteed. The values listed are at room temperature (25 °C), nominal supply voltages.
Including voltage on outputs in 3-state mode.
V
3-state outputs go into 3-state mode when V
Accounts for 100 mV voltage drop in all supply lines.
Allowed as long as the current limit does not exceed the maximum current allowed by the device.
To V
Typical ratings are not guaranteed. The values listed are at room temperature (25 °C), nominal supply voltages.
Conditions: V
The ADC is monotonic, there are no missing codes.
The differential linearity error (E
The integral non-linearity (E
appropriate adjustment of gain and offset errors. See
The offset error (E
ideal curve. See
The gain error (E
error, and the straight line which fits the ideal transfer curve. See
The absolute error (E
ADC and the ideal transfer curve. See
=
=
DD(3V3)
40
SS
40
.
°
°
Static characteristics
ADC static characteristics
and V
C to +85
C to +85
Parameter
analog input voltage
analog input capacitance
differential linearity error
integral non-linearity
offset error
gain error
absolute error
SS
DD(IO)
Parameter
input leakage current
crystal input voltage
crystal output voltage
= 0 V, V
Figure
G
O
) is the relative difference in percent between the straight line fitting the actual transfer curve after removing offset
°
°
) is the absolute difference between the straight line which fits the actual curve and the straight line which fits the
C, unless otherwise specified.
C unless otherwise specified; ADC frequency 4.5 MHz, V
supply voltages must be present.
T
) is the maximum difference between the center of the steps of the actual transfer curve of the non-calibrated
7.
DD
(3V3)
L(adj)
D
= 3.3 V.
) is the peak difference between the center of the steps of the actual and the ideal transfer curve after
) is the difference between the actual step width and the ideal step width. See
…continued
Figure
Conditions
Conditions
V
V
DD(IO)
I
I
7.
= V
= 5 V
Rev. 00.11 — 13 November 2009
is grounded.
DD(IO)
Figure
7.
Figure
7.
[2][3][4]
[2][5]
[2][6]
[2][7]
[2][8]
[7]
Min
0
-
-
-
-
-
-
Min
-
-
0
0
DD(3V3)
LPC1111/12/13/14
= 2.5 V to 3.6 V.
Typ
-
-
± 1
± 1.5
± 2.5
0.5
± 3
Typ
2
10
1.8
1.8
[1]
[1]
Max
V
1
-
-
-
-
-
Figure
© NXP B.V. 2009. All rights reserved.
DD(3V3)
Max
4
22
1.95
1.95
7.
Unit
V
pF
LSB
LSB
LSB
%
LSB
32 of 53
Unit
μA
μA
V
V

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