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TEA5101B View Datasheet(PDF) - STMicroelectronics

Part Name
Description
Manufacturer
TEA5101B
ST-Microelectronics
STMicroelectronics ST-Microelectronics
TEA5101B Datasheet PDF : 6 Pages
1 2 3 4 5 6
TEA5101B
ABSOLUTE MAXIMUM RATINGS
Symbol
VDD
VCC
IO
IO
IF
IF
Ij
Tj
Toper
Tstg
Parameter
Supply High Voltage
Supply Low Voltage
Output Current
to VDD
to Ground
Output Current
to VDD
to Ground
Input Current
Junction Temperature
Operating Ambient Temperature
Storage Temperature
Pin 5
Pin 2
Pins 7 - 10 - 13
Pins 9 - 12 - 15
Pins 1 - 3 - 4
Value
Unit
250
V
20
V
Protected
8
mA
45
mA
45
mA
60
mA
150
°C
0 to 70
°C
– 55 to + 150
°C
THERMAL DATA
Symbol
Rth(j-c)
Rth(j-a)
Parameter
Maximum Junction Case Thermal Resistance
Typical Junction Ambient Thermal Resistance
Max.
Typ.
Value
3
35
Unit
°C/W
°C/W
ELECTRICAL CHARACTERISTICS
Tamb = 25oC ; VCC = 12V ; VDD = 220V ; AV = 55 (unless otherwise specified)
Symbol
VDD
VCC
IDD
ICC
Vsath
RON
BW
TR - TF
GO
P
VREF
IIB
RI
Parameter
High Supply Voltage
Pin 5
Low Supply Voltage
Pin 2
High Voltage Supply Internal DC Current (Vout 100V)
(without the current due to the feedback network )
Pin 5
Low Voltage Supply Internal DC Current
Output Saturation Voltage (High level)
IO = – 10 µA
Pins 7-10-13
Output Mos Transistor (Low level)
RON @ IO = 3 mA
Pins 7-10-13
Bandwidth (– 3db) (measured on CRT cathodes)
(CLOAD : 10pF – R Protect = 1k– Vout = 100V)
Vout : 50 VPP
Vout : 100 VPP
Rise Time and Fall Time : measured between 10% and 90% of output
pulse (CLOAD : 10 pF – R Protect = 1 k– Vout = 100 V)
Vout : 100 VPP
Open Loop Gain
Open Loop Gain Difference between 2 channels
Open Loop Gain Temperature Coefficient
Internal Power Dissipation (see calculation below)
Internal Voltage Reference
Pins 1-3-4
Internal Reference Voltage Difference Between 2 Channels
Voltage Reference Temperature Coefficient
Input Bias Current (Vout : 100 V)
Pins 1-3-4
Input Resistance
Min.
10
47
-1.5
3.55
Typ.
200
12
9.5
38
3
1.7
10
8
50
53
0
0
3.5
3.85
0
15
14
Max.
220
15
15
55
10
+1.5
4.15
250
Unit
V
V
mA
mA
V
k
MHz
MHz
ns
dB
dB
dB/oC
W
V
mV
mV/°C
µA
k
3/6

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