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Número de pieza TDA6101Q
Descripción Video output amplifier
Fabricantes NXP Semiconductors 
Logotipo NXP Semiconductors Logotipo



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No Preview Available ! TDA6101Q Hoja de datos, Descripción, Manual

INTEGRATED CIRCUITS
DATA SHEET
TDA6101Q
Video output amplifier
Preliminary specification
Supersedes data of November 1991
File under Integrated Circuits, IC02
Philips Semiconductors
1995 Feb 07

1 page




TDA6101Q pdf
Philips Semiconductors
Video output amplifier
Preliminary specification
TDA6101Q
LIMITING VALUES
In accordance with the Absolute Maximum Rating System (IEC 134). Voltages measured with respect to GND (pin 4);
currents as specified in Fig.1; unless otherwise specified.
SYMBOL
VDDH
VDDL
VI
VIdm
Vom
Voc
Vfb
Iin,Iip
IocsmL
IocsmH
Ptot
Tstg
Tj
Ves
PARAMETER
high level supply voltage
low level supply voltage
input voltage
differential mode input voltage
measurement output voltage
cathode output voltage
feedback output voltage
input current
low non-repetitive peak cathode
output current
high non-repetitive peak cathode
output current
total power dissipation
storage temperature
junction temperature
electrostatic handling
human body model (HBM)
machine model (MM)
CONDITIONS
flashover discharge = 100 µC
MIN.
0
0
0
6
0
VDDL
VDDL
0
0
MAX.
250
14
VDDL
+6
VDDL
VDDH
VDDH
1
5
UNIT
V
V
V
V
V
V
mA
A
flashover discharge = 100 nC 0
10 A
0 1.9 W
55 +150 °C
20 +150 °C
> 1500 V
> 400 V
HANDLING
Inputs and outputs are protected against electrostatic discharge in normal handling. However, to be totally safe, it is
desirable to take normal precautions appropriate to handling MOS devices (see “Handling MOS Devices” ).
QUALITY SPECIFICATION
Quality specification “SNW-FQ-611 part E” is applicable, except for ESD Human body model see Chapter “Limiting
values”, and can be found in the “Quality reference handbook” (ordering number 9398 510 63011).
THERMAL CHARACTERISTICS
SYMBOL
PARAMETER(1)
Rth j-a
Rth j-c
thermal resistance from junction to ambient in free air
thermal resistance from junction to case
Note
1. External heatsink not required.
VALUE
56
12
UNIT
K/W
K/W
1995 Feb 07
5

5 Page





TDA6101Q arduino
Philips Semiconductors
Video output amplifier
Preliminary specification
TDA6101Q
TEST AND APPLICATION INFORMATION
Dissipation
Regarding dissipation, distinction must first be made
between static dissipation (independent of frequency) and
dynamic dissipation (proportional to frequency).
The static dissipation of the TDA6101Q is due to high and
low voltage supply currents and load currents in the
feedback network and CRT.
The static dissipation equals:
Pstat = VDDL × IDDL + VDDH × IDDH
+
Voc
×
Ioc
Vfb
×
R-V----ff--bb-
Rfb = value of feedback resistor.
Ioc = DC value of cathode current.
The dynamic dissipation equals:
Pdyn = VDDH × (CL + Cfb + Cint) × fi × Vo(p-p) × δ
CL = load capacitance.
Cfb = feedback capacitance (150 fF).
Cint = internal load capacitance (4 pF).
fi = input frequency.
Vo(p-p) = output voltage (peak-to-peak value).
δ = non-blanking duty-cycle (0.8).
The IC must be mounted on the picture tube base print to
minimize the load capacitance (CL).
1995 Feb 07
11

11 Page







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