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NE56610 Просмотр технического описания (PDF) - Philips Electronics

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производитель
NE56610
Philips
Philips Electronics Philips
NE56610 Datasheet PDF : 14 Pages
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Philips Semiconductors
System reset
Product data
NE56610/11/12-XX
ELECTRICAL CHARACTERISTICS
Characteristics noted with M/R pin connected to ground. Typical values reflect appropriate average value at Tamb = 25 °C.
SYMBOL
PARAMETER
CONDITIONS
TEST
CIRCUIT
PART #
MIN.
TYP.
MAX. UNIT
VS
Threshold detection
VCC falling; RL = 470 ; VOL 0.4 V
–45
4.3 4.5 4.7
V
–42
4.0 4.2 4.4
V
–39
3.7 3.9 4.1
V
–29 2.75 2.90 3.05 V
–27 2.55 2.70 2.85 V
VS
TC/VS
VOL
ILO
ICCL
ICCH
tDLH
Hysteresis
Threshold temperature
coefficient
LOW-level output voltage
Output leakage current
Circuit current (output LOW)
Circuit current (output HIGH)
Reset delay time HIGH
(Note 1)
VS = VSH (rising VCC) – VSL (falling VCC);
RL = 470
RL = 470 ;
–20 °C Tamb +75 °C
VCC = VS(min) – 0.05 V; RL = 470
VCC = 10 V
VCC = VS(min) – 0.05 V; RL =
VCC = VS(typ) / 0.85 V; RL =
RL = 4.7 k; CL = 100 pF
tDHL
Reset delay time LOW
(Note 2)
RL = 4.7 k; CL = 100 pF
1
Fig. 20
2
Fig. 21
–25
All
All
All
All
All
All
NE56610
NE56611
NE56612
All
2.35
30
30
60
120
2.50
50
±0.01
0.01
300
15
50
100
200
20
2.65
100
0.4
±0.1
500
25
75
150
300
V
mV
%/°C
V
µA
µA
µA
ms
ms
ms
µs
VOPL
IOL1
IOL2
VM/RH
Operating supply voltage
Output sink current 1
Output sink current 2
HIGH-level M/R threshold
voltage (Note 3)
RL = 4.7 k; VOL 0.4 V
VCC = VS(min) – 0.05 V; RL = 0
VCC = VS(min) – 0.05 V; RL = 0;
–20 °C Tamb +75 °C
All
0.65 0.85 V
1
All
–8.0
Fig. 20
All
–6.0
mA
mA
All
2.0
V
IM/RH
HIGH-level M/R threshold
current
VM/RH = 2.0 V
All
10
60 µA
VM/RL
LOW-level M/R threshold
voltage
All
–0.3
0.8
V
tM/R
M/R pulse width (Note 4)
All
15
µs
NOTES:
1. tDLH measured with VCC = (VS(typ) – 0.4 V) and abruptly transitioning to (VS(typ) + 0.4 V). tDLH is the duration from VCC transition HIGH to
output transition HIGH.
2. tDHL measured with VCC = (VS(typ) + 0.4 V) and abruptly transitioning to (VS(typ) – 0.4 V). tDHL is the duration from VCC transition LOW to
output transition LOW.
3. Ramp M/R voltage until output RESET goes LOW.
4. Minimum M/R pulse width for detection.
2003 Oct 31
4

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