LPC2420_60 All information provided in this document is subject to legal disclaimers. © NXP B.V. 2013. All rights reserved.
Product data sheet Rev. 6.2 — 16 October 2013 64 of 87
NXP Semiconductors
LPC2420/2460
Flashless 16-bit/32-bit microcontroller
Fig 16. Differential data-to-EOP transition skew and EOP width
002aab561
T
PERIOD
differential
data lines
crossover point
source EOP width: t
FEOPT
receiver EOP width: t
EOPR1
, t
EOPR2
crossover point
extended
differential data to
SE0/EOP skew
n × T
PERIOD
+ t
FDEOP
Fig 17. MISO line set-up time in SSP Master mode
t
su(SPI_MISO)
SCK
shifting edges
MOSI
MISO
002aad326
sampling edges
Fig 18. Signal timing
002aad636
reference
clock
output signal (O)
input signal (I)
t
d(XXX)
t
h(XXX)
t
h(D)
t
su(D)
LPC2420_60 All information provided in this document is subject to legal disclaimers. © NXP B.V. 2013. All rights reserved.
Product data sheet Rev. 6.2 — 16 October 2013 65 of 87
NXP Semiconductors
LPC2420/2460
Flashless 16-bit/32-bit microcontroller
12. ADC electrical characteristics
[1] Conditions: V
SSA
=0V, V
DDA
=3.3V.
[2] The ADC is monotonic, there are no missing codes.
[3] The differential linearity error (E
D
) is the difference between the actual step width and the ideal step width. See Figure 19.
[4] The integral non-linearity (E
L(adj)
) is the peak difference between the center of the steps of the actual and the ideal transfer curve after
appropriate adjustment of gain and offset errors. See Figure 19
.
[5] The offset error (E
O
) is the absolute difference between the straight line which fits the actual curve and the straight line which fits the
ideal curve. See Figure 19
.
[6] The gain error (E
G
) is the relative difference in percent between the straight line fitting the actual transfer curve after removing offset
error, and the straight line which fits the ideal transfer curve. See Figure 19
.
[7] The absolute error (E
T
) is the maximum difference between the center of the steps of the actual transfer curve of the non-calibrated
ADC and the ideal transfer curve. See Figure 19
.
[8] See Figure 20
.
Table 17. ADC characteristics
V
DDA
= 2.5 V to 3.6 V; T
amb
=
40
C to +85
C unless otherwise specified; ADC frequency 4.5 MHz.
Symbol Parameter Conditions Min Typ Max Unit
V
IA
analog input voltage 0 - V
DDA
V
C
ia
analog input capacitance - - 1 pF
E
D
differential linearity error
[1][2][3]
--1LSB
E
L(adj)
integral non-linearity
[1][4]
--2LSB
E
O
offset error
[1][5]
--3LSB
E
G
gain error
[1][6]
--0.5 %
E
T
absolute error
[1][7]
--4LSB
R
vsi
voltage source interface
resistance
[8]
--40k
LPC2420_60 All information provided in this document is subject to legal disclaimers. © NXP B.V. 2013. All rights reserved.
Product data sheet Rev. 6.2 — 16 October 2013 66 of 87
NXP Semiconductors
LPC2420/2460
Flashless 16-bit/32-bit microcontroller
(1) Example of an actual transfer curve.
(2) The ideal transfer curve.
(3) Differential linearity error (E
D
).
(4) Integral non-linearity (E
L(adj)
).
(5) Center of a step of the actual transfer curve.
Fig 19. ADC characteristics
1023
1022
1021
1020
1019
(2)
(1)
10241018 1019 1020 1021 1022 1023
7123456
7
6
5
4
3
2
1
0
1018
(5)
(4)
(3)
1 LSB
(ideal)
code
out
offset
error
E
O
gain
error
E
G
offset error
E
O
V
IA
(LSB
ideal
)
002aae604
V
i(VREF)
V
SSA
1024
1 LSB =

LPC2460FET208,551

Mfr. #:
Manufacturer:
NXP Semiconductors
Description:
ARM Microcontrollers - MCU ARM7 USBHOST/ENET ROMLESS
Lifecycle:
New from this manufacturer.
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