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UAA2016 データシートの表示(PDF) - Motorola => Freescale

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UAA2016
Motorola
Motorola => Freescale Motorola
UAA2016 Datasheet PDF : 8 Pages
1 2 3 4 5 6 7 8
UAA2016
MAXIMUM RATINGS (Voltages referenced to Pin 7)
Rating
Symbol
Value
Unit
Supply Current (IPin 5)
Non–Repetitive Supply Current
(Pulse Width = 1.0 µs)
ICC
ICCP
15
mA
200
mA
AC Synchronization Current
Pin Voltages
Vref Current Sink
Output Current (Pin 6)
(Pulse Width < 400 µs)
Isync
VPin 2
VPin 3
VPin 4
VPin 6
IPin 1
IO
3.0
mA
0; Vref
V
0; Vref
0; Vref
0; VEE
1.0
mA
150
mA
Power Dissipation
Thermal Resistance, Junction–to–Air
Operating Temperature Range
PD
RθJA
TA
625
100
– 20 to + 85
mW
°C/W
°C
ELECTRICAL CHARACTERISTICS (TA = 25°C, VEE = –7.0 V, voltages referred to Pin 7, unless otherwise noted.)
Characteristic
Symbol
Min
Typ
Max
Unit
Supply Current (Pins 6, 8 not connected)
(TA = – 20° to + 85°C)
Stabilized Supply Voltage (Pin 5) (ICC = 2.0 mA)
Reference Voltage (Pin 1)
Output Pulse Current (TA = – 20° to + 85°C)
(Rout = 60 W, VEE = – 8.0 V)
Output Leakage Current (Vout = 0 V)
Output Pulse Width (TA = – 20° to + 85°C) (Note 1)
(Mains = 220 Vrms, Rsync = 220 k)
Comparator Offset (Note 5)
Sensor Input Bias Current
Sawtooth Period (Note 2)
Sawtooth Amplitude (Note 6)
Temperature Reduction Voltage (Note 3)
(Pin 4 Connected to VCC)
Internal Hysteresis Voltage
(Pin 2 Not Connected)
ICC
mA
0.9
1.5
VEE
–10
– 9.0
– 8.0
V
Vref
– 6.5
– 5.5
– 4.5
V
IO
mA
90
100
130
IOL
TP
50
10
µA
µs
100
Voff
–10
+10
mV
IIB
0.1
µA
TS
40.96
sec
AS
50
70
90
mV
VTR
mV
280
350
420
VIH
mV
10
Additional Hysteresis (Note 4)
(Pin 2 Connected to VCC)
VH
mV
280
350
420
Failsafe Threshold (TA = – 20° to + 85°C) (Note 7)
VFSth
180
300
mV
NOTES: 1. Output pulses are centered with respect to zero crossing point. Pulse width is adjusted by the value of Rsync. Refer to application curves.
2. The actual sawtooth period depends on the AC power line frequency. It is exactly 2048 times the corresponding period. For the 50 Hz case it is 40.96
sec. For the 60 Hz case it is 34.13 sec. This is to comply with the European standard, namely that 2.0 kW loads cannot be connected or removed
from the line more than once every 30 sec.
3. 350 mV corresponds to 5°C temperature reduction. This is tested at probe using internal test pad. Smaller temperature reduction can be obtained by
adding an external resistor between Pin 4 and VCC. Refer to application curves.
4. 350 mV corresponds to a hysteresis of 5°C. This is tested at probe using internal test pad. Smaller additional hysteresis can be obtained by adding
an external resistor between Pin 2 and VCC. Refer to application curves.
5. Parameter guaranteed but not tested. Worst case 10 mV corresponds to 0.15°C shift on set point.
6. Measured at probe by internal test pad. 70 mV corresponds to 1°C. Note that the proportional band is independent of the NTC value.
7. At very low temperature the NTC resistor increases quickly. This can cause the sensor input voltage to reach the failsafe threshold, thus inhibiting
output pulses; refer to application schematics. The corresponding temperature is the limit at which the circuit works in the typical application. By
setting this threshold at 0.05 Vref, the NTC value can increase up to 20 times its nominal value, thus the application works below – 20°C.
2
MOTOROLA ANALOG IC DEVICE DATA

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