Philips Semiconductors Preliminary data
P87LPC760
Low power, low price, low pin count (14 pin)
microcontroller with 1 kbyte OTP
2002 Mar 07
46
DC ELECTRICAL CHARACTERISTICS
V
DD
= 2.7 V to 6.0 V unless otherwise specified; T
amb
= 0 °C to +70 °C, unless otherwise specified.
SYMBOL
PARAMETER
TEST CONDITIONS
LIMITS
UNIT
SYMBOL
PARAMETER
TEST
CONDITIONS
MIN TYP
1,2
MAX
UNIT
I
DD
Power su
pp
ly current o
p
erating
5.0 V, 20 MHz
11
15 25 mA
I
DD
Power
su ly
current
,
o erating
3.0 V, 10 MHz
11
4 7 mA
I
RC
Power su
pp
ly current o
p
erating RC Osc
5.0 V, 6 MHz
11
4 mA
I
RC
Power
su ly
current
,
o erating
RC
Osc
.
3.0 V, 6 MHz
11
2 mA
I
ID
Power su
pp
ly current Idle mode
5.0 V, 20 MHz
11
6 10 mA
I
ID
Power
su ly
current
,
Idle
mode
3.0 V, 10 MHz
11
2 4 mA
I
PD
Power su
pp
ly current Power Down mode
5.0 V
11
1 10 µA
I
PD
Power
su ly
current
,
Power
Down
mode
3.0 V
11
1 5 µA
V
RAM
RAM keep-alive voltage 1.5 V
V
IL
In
p
ut low voltage (TTL in
p
ut)
4.0 V < V
DD
< 6.0 V –0.5 0.2 V
DD
–0.1 V
V
IL
In ut
low
voltage
(TTL
in ut)
2.7 V < V
DD
< 4.0 V –0.5 0.7 V
V
IL1
Negative going threshold (Schmitt input) –0.5 0.3 V
DD
V
V
IH
Input high voltage (TTL input) 0.2 V
DD
+0.9 V
DD
+0.5 V
V
IH1
Positive going threshold (Schmitt input) 0.7V
DD
V
DD
+0.5 V
HYS Hysteresis voltage 0.2 V
DD
V
V
OL
Output low voltage all ports
5,
9
I
OL
= 3.2 mA, V
DD
= 2.7 V 0.4 V
V
OL1
Output low voltage all ports
5,
9
I
OL
= 20 mA, V
DD
= 2.7 V 1.0 V
V
OH
Out
p
ut high voltage all
p
orts
3
I
OH
= –20 µA, V
DD
= 2.7 V V
DD
–0.7 V
V
OH
Out ut
high
voltage
,
all
orts
3
I
OH
= –30 µA, V
DD
= 4.5 V V
DD
–0.7 V
V
OH1
Output high voltage, all ports
4
I
OH
= –1.0 mA, V
DD
= 2.7 V V
DD
–0.7 V
C
IO
Input/Output pin capacitance
10
15 pF
I
IL
Logical 0 input current, all ports
8
V
IN
= 0.4 V –50 µA
I
LI
Input leakage current, all ports
7
V
IN
= V
IL
or V
IH
±2 µA
I
TL
Logical 1 to 0 transition current all
p
orts
3, 6
V
IN
= 1.5 V at V
DD
= 3.0 V –30 –250 µA
I
TL
Logical
1
to
0
transition
current
,
all
orts
3
,
6
V
IN
= 2.0 V at V
DD
= 5.5 V –150 –650 µA
R
RST
Internal reset pull-up resistor 40 225 k
V
BOLOW
Brownout trip voltage with BOV = 1
12
2.35 2.69 V
V
BOHI
Brownout trip voltage with BOV = 0 3.45 3.99 V
V
REF
Reference voltage 1.11 1.26 1.41 V
NOTES:
1. Typical ratings are not guaranteed. The values listed are at room temperature, 5 V.
2. See other Figures for details.
3. Ports in quasi-bidirectional mode with weak pull-up (applies to all port pins with pull-ups). Does not apply to open drain pins.
4. Ports in PUSH-PULL mode. Does not apply to open drain pins.
5. In all output modes except high impedance mode.
6. Port pins source a transition current when used in quasi-bidirectional mode and externally driven from 1 to 0. This current is highest when
V
IN
is approximately 2 V.
7. Measured with port in high impedance mode. Parameter is guaranteed but not tested at cold temperature.
8. Measured with port in quasi-bidirectional mode.
9. Under steady state (non-transient) conditions, I
OL
must be externally limited as follows:
Maximum I
OL
per port pin: 20 mA
Maximum total I
OL
for all outputs: 80 mA
Maximum total I
OH
for all outputs: 5 mA
If I
OL
exceeds the test condition, V
OL
may exceed the related specification. Pins are not guaranteed to sink current greater than the listed
test conditions.
10.Pin capacitance is characterized but not tested.
11. The I
DD
, I
ID
, and I
PD
specifications are measured using an external clock with the following functions disabled: comparators, brownout
detect, and watchdog timer. For V
DD
= 3 V, LPEP = 1. Refer to the appropriate figures on the following pages for additional current drawn by
each of these functions and detailed graphs for other frequency and voltage combinations.
12.Devices initially operating at V
DD
= 2.7 V or above, and at f
OSC
= 10 MHz or less, are guaranteed to continue to execute instructions
correctly at the brownout trip point. Initial power-on operation below V
DD
= 2.7 V is not guaranteed.
13.Devices initially operating at V
DD
= 4.0 V or above and at f
OSC
= 20 MHz or less are guaranteed to continue to execute instructions correctly
at the brownout trip point. Initial power-on operation below V
DD
= 4.0 V and f
OSC
> 10 MHz is not guaranteed.
Philips Semiconductors Preliminary data
P87LPC760
Low power, low price, low pin count (14 pin)
microcontroller with 1 kbyte OTP
2002 Mar 07
47
COMPARATOR ELECTRICAL CHARACTERISTICS
V
DD
= 3.0 V to 6.0 V unless otherwise specified; T
amb
= 0 °C to +70 °C, unless otherwise specified.
SYMBOL
PARAMETER
TEST CONDITIONS
LIMITS
UNIT
SYMBOL
PARAMETER
TEST
CONDITIONS
MIN TYP MAX
UNIT
V
IO
Offset voltage comparator inputs
1
±10 mV
V
CR
Common mode range comparator inputs 0 V
DD
–0.3 V
CMRR Common mode rejection ratio
1
–50 dB
Response time 250 500 ns
Comparator enable to output valid 10 µs
I
IL
Input leakage current, comparator 0 < V
IN
< V
DD
±10 µA
NOTE:
1. This parameter is guaranteed by characterization, but not tested in production.
AC ELECTRICAL CHARACTERISTICS
T
amb
= 0 °C to +70 °C, V
DD
= 2.7 V to 6.0 V unless otherwise specified; V
SS
= 0 V
1,
2,
3
SYMBOL
FIGURE
PARAMETER
LIMITS
UNIT
SYMBOL
FIGURE
PARAMETER
MIN MAX
UNIT
External Clock
f
C
42 Oscillator frequency (V
DD
= 4.0 V to 6.0 V) 0 20 MHz
f
C
42 Oscillator frequency (V
DD
= 2.7 V to 6.0 V) 0 10 MHz
t
C
42 Clock period and CPU timing cycle 1/f
C
ns
f
CLCX
42 Clock low-time
1
f
OSC
= 20 MHz 20 ns
f
CLCX
42 f
OSC
= 10 MHz 40 ns
f
CHCX
42 Clock high-time
1
f
OSC
= 20 MHz 20 ns
f
CHCX
42 f
OSC
= 10 MHz 40 ns
Internal RC Oscillator
f
CCAL
On-chip RC oscillator calibration
2
f
RCOSC
= 6 MHz –1 +1 %
f
CTOL
On-chip RC oscillator, 0 °C to +50 °C
3,4
tol. f
RCOSC
= 6 MHz –2.5 +2.5 %
f
CTOL
On-chip RC oscillator, 0 °C to +70 °C
3
tol. f
RCOSC
= 6 MHz –5
5
+2.5 %
Shift Register
t
XLXL
41 Serial port clock cycle time 6t
C
ns
t
QVXH
41 Output data setup to clock rising edge 5t
C
– 133 ns
t
XHQX
41 Output data hold after clock rising edge 1t
C
– 80 ns
t
XHDV
41 Input data setup to clock rising edge 5t
C
– 133 ns
t
XHDX
41 Input data hold after clock rising edge 0 ns
NOTES:
1. Applies only to an external clock source, not when a crystal is connected to the X1 and X2 pins.
2. Tested at V
DD
= 5.0 V and room temperature.
3. These parameters are characterized but not tested.
4. +/– 2.5% accuracy enables serial communication over the UART with the internal Oscillator.
5. Min frequency at hot temperature.
Philips Semiconductors Preliminary data
P87LPC760
Low power, low price, low pin count (14 pin)
microcontroller with 1 kbyte OTP
2002 Mar 07
48
CLEAR RI
t
XLXL
CLOCK
t
XHQX
t
QVXH
OUTPUT DATA
WRITE TO SBUF
INPUT DATA
t
XHDV
t
XHDX
SET TI
SET RI
SU01187
71234560
VALID VALID VALID VALID VALID VALID VALID VALID
Figure 41. Shift Register Mode Timing
SU01188
V
DD
– 0.5
0.45V
0.2V
DD
+ 0.9
0.2 V
DD
– 0.1
t
CHCL
t
CLCH
t
CHCX
t
CLCX
t
C
Figure 42. External Clock Timing
SU01202
100
10
1
10 100
Idd (uA)
Frequency (kHz)
6.0 V
5.0 V
4.0 V
3.3 V
2.7 V
Figure 43. Typical Idd versus frequency (low frequency
oscillator, 25 °C)
SU01203
1000
100
10
100 10,000
Idd (uA)
Frequency (kHz)
1,000
6.0 V
5.0 V
2.7 V
6.0 V
5.0 V
4.0 V
3.3 V
2.7 V
Figure 44. Typical Idd versus frequency (medium frequency
oscillator, 25 °C)

P87LPC760BN,112

Mfr. #:
Manufacturer:
NXP Semiconductors
Description:
IC MCU 8BIT 1KB OTP 14DIP
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
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