TDA1072ATD-T NXP Semiconductors, TDA1072ATD-T Datasheet - Page 5

RF Receiver AM RECEIVER CIRCUIT

TDA1072ATD-T

Manufacturer Part Number
TDA1072ATD-T
Description
RF Receiver AM RECEIVER CIRCUIT
Manufacturer
NXP Semiconductors
Type
Receiverr
Datasheets

Specifications of TDA1072ATD-T

Package / Case
SOT-109
Operating Supply Voltage
8.5 V
Maximum Operating Temperature
+ 80 C
Minimum Operating Temperature
- 40 C
Mounting Style
SMD/SMT
Operating Temperature (min)
-40C
Operating Temperature Classification
Commercial
Product Depth (mm)
4mm
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Other names
TDA1072AT/V4,118
Philips Semiconductors
RATINGS
Limiting values in accordance with the Absolute Maximum Rating System (IEC 134)
Supply voltage
Total power dissipation
Input voltage
Input current
Operating ambient temperature range
Storage temperature range
Junction temperature
THERMAL RESISTANCE
From junction to ambient
DEVICE CHARACTERISTICS
V
unless otherwise specified
May 1984
Supplies
Supply voltage
Supply current
R.F. stage and mixer
Input voltage (d.c. value)
R.F. input impedance at V
R.F. input impedance at V
I.F. output impedance
Conversion transconductance
Maximum i.f. output voltage, inductive
D.C. value of output current (pin 1)
A.G.C. range of input stage
R.F. signal handling capability:
P
AM receiver circuit
before start of a.g.c.
coupling to pin 1
at V
input voltage for THD = 3% at m = 80%
= V
13-16
i
= 0 V
= 8,5 V; T
amb
PARAMETER
= 25 C; f
i
i
300 V
10 mV
i
= 1 MHz; f
m
= 400 Hz; m = 30%; f
5
V
I
V
R
C
R
C
R
C
I
V
I
V
P
1
1
P
14-16
/V
1-13(p-p)
i(rms)
14-16
14-16
14-16
14-16
1-16
1-16
= I
= V
i
SYMBOL
13
, V
if
, R
, C
, R
, C
V
P
V
T
T
T
R
13-16
V
I
V
= 460 kHz; measured in test circuit of Fig.1;
amb
stg
j
P
tot
14-16
14
th j-a
15-16
14-15
15-16
15-16
15-16
15-16
14-16
= V
, I
, V
13-16
, V
15
15-16
15-16
MIN.
500
7,5
15
TYP.
V
500
8,5
5,5
6,5
1,2
23
25
22
30
max.
max.
max.
max.
max.
max.
max.
=
P
8
6
5
40 to
55 to
/2
Product specification
TDA1072A
MAX.
18
30
80
875 mW
200 mA
150 C
125 C
0,6 V
V
20 V
12 V
80 C
P
V
K/W
mA/V
UNIT
mA
mA
mV
k
pF
k
pF
k
pF
dB
V
V
V

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