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TS652IDTSTN/a5293avaiDIFFERENTIAL VARIABLE GAIN AMPLIFIER
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TS652IDT ,DIFFERENTIAL VARIABLE GAIN AMPLIFIERELECTRICAL CHARACTERISTICS. V = ±6Volts, T = 25°C (unless otherwise specified). CC ambSymbol P ..
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TS652IDT ,DIFFERENTIAL VARIABLE GAIN AMPLIFIERABSOLUTE MAXIMUM RATINGS Symbol Parameter Value Unit1)V14 VCC Supply voltage 2)V 0 to 14 Vi Inp ..
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TS652ID-TS652IDT
DIFFERENTIAL VARIABLE GAIN AMPLIFIER
LOW NOISE : 4.6nV/√Hz LOW DISTORTION HIGH SLEW RATE : 90V/μs WIDE BANDWIDTH : 52MHz @ -3dB &18dB gain GAIN PROGRAMMABLE from -9dB to +30dB
with 3dB STEPS POWER DOWN FUNCTION
DESCRIPTION

The TS652 is a differential digitally controled vari-
able gain amplifier featuring a high slew rate of
90V/μs, a large bandwidth, a very low distortion
and a very low current and voltage noise.
The gain can be set from -9dB to +30dB through a
4bit digital word, with 3dB steps.
The gain monotonicity is guaranteed by design.
This device is particularly intended for applications
such as preamplification in telecommunication
systems using multiple carriers.
APPLICATION
Preamplifier and automatic gain control for
Assymetric Digital Subscriber Line (ADSL).
ORDER CODE
D = Small Outline Package (SO) - also available in Tape & Reel (DT)


PIN CONNECTIONS (top view)
TS652

DIFFERENTIAL VARIABLE GAIN AMPLIFIER
TS652
ABSOLUTE MAXIMUM RATINGS
OPERATING CONDITIONS
All voltages values are with respect to network terminal. The magnitude of input and output voltages must never exceed VCC +0.3V.
TS652
ELECTRICAL CHARACTERISTICS. VCC = ±6Volts, Tamb = 25°C (unless otherwise specified).
TS652
DIGITAL INPUTS
SIMPLIFIED SCHEMATIC

The TS652 consists of two independent channels.
Each channel has two stages. The first is a very low noise digitally controlled variable gain amplifier (range
0 to 18dB).
The TS652 features a high input impedance and a low noise current. To minimize the overall noise figure,
the source impedance must be less than 3kΩ.
This value gives an equal contribution of voltage and current noises.
The second stage is a gain/attenuation stage (+12dB to -9dB) featuring a low output impedance.
This output stage can drive loads as low as 500Ω.
POWER DOWN MODE POSITION
TS652
BANDWIDTH

The small signal bandwidth is almost constant for gains between +18dB to 0dB and is in the order of
52MHz to 70MHz respectively. For 30dB gain the bandwidth is around 18MHz.
The power bandwidth is typically equal to 30MHz for 2V peak to peak signals.
MAXIMUM INPUT LEVEL

The input level must not exceed the following values :
negative peak value: must be greater than -VCC + 1.5V
positive peak value: must be less than +VCC - 1.5V
For example, if a ±6V power supply is used, the input signal can swing between -4.5V and +4.5V.
These values are due to common mode input range limitations of the input stage of the first amplifier.
Some other limitations may occur, due to the slew rate of the first operational amplifier (typically in the or-
der of 300V/μs). This means that the maximum input signal decreases at high frequency.
SINGLE SUPPLY OPERATION

The incoming signal is AC coupled to the inputs.
The TS652 can be used either with a dual or a single supply. If a single supply is used, the inputs are bi-
ased to the mid supply voltage (+VCC/2). This bias network must be carefully designed, in order to reject
any noise present on the supply rail.
The AGND pin (9) must be connected to +VCC/2. The bias current of the second stage (inverting structure)
is 8μA for both amplifiers. A resistor divider structure can be used. Two resistances should be chosen by
considering 8μA as the 1% of the total current through these resistances. For a single +12V supply volt-
age, two resistances of 7.5kΩ can be used. The differential input consists of a high pass circuit, formed by
the 1μF capacitor and a 1kΩ resistance and gives a break frequency of 160Hz.
SINGLE +12V SUPPLY OF THE TS652
TS652
GAIN CONTROL

The gain and the power down mode is programmed with a 4 bit digital word :
The gain is the same for both channels. The digital inputs are CMOS compatible. The supply voltage of the logic decoder used to transcode the digital word can be either 3.3V or 5V or VCC.
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