LPC11C12FBD48 NXP Semiconductors, LPC11C12FBD48 Datasheet - Page 34

The LPC11C12FBD48 is an ARM Cortex-M0 microcontroller designed for 8/16-bit microcontroller applications, offering performance, low power, simple instruction set and memory addressing together with reduced code size compared to existing 8/16-bit arch

LPC11C12FBD48

Manufacturer Part Number
LPC11C12FBD48
Description
The LPC11C12FBD48 is an ARM Cortex-M0 microcontroller designed for 8/16-bit microcontroller applications, offering performance, low power, simple instruction set and memory addressing together with reduced code size compared to existing 8/16-bit arch
Manufacturer
NXP Semiconductors
Datasheet

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
LPC11C12FBD48
Manufacturer:
VISHAY
Quantity:
2 462
Part Number:
LPC11C12FBD48/301
Manufacturer:
NXP
Quantity:
5 000
Part Number:
LPC11C12FBD48/301,
Manufacturer:
NXP Semiconductors
Quantity:
10 000
NXP Semiconductors
Table 8.
T
ground; positive currents flow into the IC. Also see
LPC11CX2_CX4
Product data sheet
Symbol
Supply; pin VCC
V
I
V
I/O level adapter supply; pin VDD_CAN
V
I
V
Mode control input; pin STB
V
V
I
I
Bus lines; pins CANH and CANL
V
V
V
V
V
V
I
CC
DD
IH
IL
O(dom)
amb
CC
uvd(VCC)
DD
uvd(VDD_CAN)
IH
IL
O(dom)
dom(TX)sym
O(dif)bus
O(rec)
th(RX)dif
hys(RX)dif
= 40 C to +85 C; V
Static characteristics
Parameter
supply voltage
supply current
undervoltage detection
voltage on pin V
supply voltage
supply current
undervoltage detection
voltage on pin VDD_CAN
HIGH-level input voltage
LOW-level input voltage
HIGH-level input current
LOW-level input current
dominant output voltage
transmitter dominant voltage
symmetry
bus differential output
voltage
recessive output voltage
differential receiver
threshold voltage
differential receiver
hysteresis voltage
dominant output current
9.2 C_CAN on-chip, high-speed transceiver characteristics
CC
= 4.5 V to 5.5 V; R
CC
All information provided in this document is subject to legal disclaimers.
Conditions
Silent mode
Normal mode
on pin VDD_CAN
on pin VDD_CAN; Normal and Silent
modes
Voltage on pin STB = 0 V
V
CAN_TXD = LOW; t < t
CAN_TXD = HIGH; recessive;
no load
Normal and Silent modes;
CAN_TXD = HIGH; no load
Normal and Silent modes
V
Normal and Silent modes
V
CAN_TXD = LOW; t < t
V
CAN_TXD = LOW; t < t
dom(TX)sym
cm(CAN)
cm(CAN)
CC
recessive
dominant; CAN_TXD = LOW
recessive; CAN_TXD = HIGH
dominant; CAN_TXD = LOW
pin CANH
pin CANL
pin CANH; V
pin CANL; V
L
= 60 ; unless otherwise specified; all voltages are defined with respect to
= 5 V
Figure
Rev. 3 — 27 June 2011
[1]
= 12 V to +12 V
= 12 V to +12 V
= V
28.
CANL
CANH
CC
 V
= 5 V/40 V
= 0 V
CANH
to(dom)TXD
to(dom)TXD
to(dom)TXD
 V
CANL
;
32-bit ARM Cortex-M0 microcontroller
Min
4.5
0.1
2.5
20
3.5
2.8
10
50
1.3
0.7V
0.3
1
1
2.75
0.5
400
1.5
50
2
0.5
50
120
40
LPC11Cx2/Cx4
CC
Typ
-
1
5
50
-
-
80
350
-
-
-
4
0
1.5
0
-
-
0.5V
0.7
120
70
70
3.5
CC
© NXP B.V. 2011. All rights reserved.
Max
5.5
2.5
10
70
4.5
5.5
250
500
2.7
V
0.3V
10
+1
4.5
2.25
+400
3
+50
3
0.9
400
40
120
CC
+ 0.3 V
CC
34 of 62
Unit
V
mA
mA
mA
V
V
A
A
V
V
A
A
V
V
mV
V
mV
V
V
mV
mA
mA

Related parts for LPC11C12FBD48