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TS824ILT-1.2 データシートの表示(PDF) - STMicroelectronics

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TS824ILT-1.2
ST-Microelectronics
STMicroelectronics ST-Microelectronics
TS824ILT-1.2 Datasheet PDF : 5 Pages
1 2 3 4 5
TS824-1.2
ABSOLUTE MAXIMUM RATINGS
Symbol
Parameter
IK
IF
PD
TStd
TJ
TLead
ESD
Reverse Breakdown Current
Forward Current
Power Dissipation (note 1) SOT23-3
Storage Temperature
Junction Temperature
Lead Temperature (soldering, 10 seconds)
Human Body Model (HBM) (note 2)
Machine Model (MM) (note 2)
Value
Unit
20
mA
10
mA
360
mW
-65 to +150
°C
+150
°C
+260
°C
2
kV
200
V
Note 1: The maximum power dissipation must be derated at high temperature. It can be calculated using TJMAX (maximum junction tem-
perature), RTHJA (Thermal resistance junction to ambient) and TA (Ambient temperature). The maximum power dissipation formula at any
temperature is PDMAX= (TJMAX - TA) / RTHJA. RTHJA is 340°C/W for the SOT23-3 package.
Note 2: The Human Body Model (HBM) is defined as a 100pF capacitor discharge through a 1.5kresistor into each pin.
The Machine Mode (MM) is defined as a 200pF capacitor discharge directly into each pins.
OPERATING CONDITIONS
Symbol
Parameter
Imin
Imax
Toper
Minimum Operating Current
Maximum Operating Current
Operating Free Air Temperature Range
ELECTRICAL CHARACTERISTICS (note 3)
Tamb = 25°C (unless otherwise specified)
Symbol
Parameter
Test Condition
Reverse Breakdown Voltage
VK Reverse Breakdown Voltage Tolerance
IKMIN Minimum Operating Current
VK /T
Average Temperature Coefficient
(note 4)
VK /IK
Reverse Breakdown Voltage Change
with Operating Current Range
RKA Static Impedance
KVH Long Term Stability
EN Wide Band Noise
IK = 100µA
IK = 100µA
-40°C < Tamb < +85°C
Tamb = 25°C
-40°C < Tamb < +85°C
IK = 100µA
IKMIN < IK < 1mA
-40°C < Tamb < +85°C
1mA < IK < 12mA
-40°C < Tamb < +85°C
IK = IKMIN to 1mA
-40°C < Tamb < +85°C
IK = 1mA to 12mA
-40°C < Tamb < +85°C
IK = 100µA, t = 1000hrs
IK = 100µA
100Hz < f < 10kHz
Value
Unit
40
µA
12
mA
-40 to +85
°C
Min. Typ. Max. Unit
1.213 1.225 1.237 V
-12
-16
+12
+16
mV
40
45
µA
50
50 ppm/°C
0.3
1
1.5
mV
2.5
8
10
0.3
1
1.5
0.25 0.7
0.9
120
ppm
200
nV/Hz
Note 3: Limits are 100% production tested at 25°C. Limits over temperature are guaranteed through correlation and by design.
Note 4: The total tolerance within the industrial range, where the maximum T versus 25°C is 65°C, is explained hereafter:
± 1 % + (± 50 ppm/°C x 65°C) = ± 1.325 %
2/5

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