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TS612IDSTN/a4800avaiDUAL WIDEBAND OP-AMP WITH HIGH OUTPUT CURRENT
TS612IDTSTMicroelectronicsN/a1940avaiDUAL WIDEBAND OP-AMP WITH HIGH OUTPUT CURRENT


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TS612ID-TS612IDT
DUAL WIDEBAND OP-AMP WITH HIGH OUTPUT CURRENT
� LOW NOISE : 3nV/√Hz, 1.2pA/√Hz HIGH OUTPUT CURRENT : 200mA VERY LOW HARMONIC AND INTERMODU-
LATION DISTORTION HIGH SLEW RATE : 40V/μs SPECIFIED FOR 25Ω LOAD
DESCRIPTION

The TS612 is a dual operational amplifier featur-
ing a high output current (200mA min.), large
gain-bandwidth product (130MHz) and capable of
driving a 25Ω load with a 160mA output current at
±6V power supply.
This device is particularly intended for applications
where multiple carriers must be amplified simulta-
neously with very low intermodulation products.
The TS612 is housed in SO20 batwing plastic
package for a very low thermal resistance.
The TS612 is fitted out with Power Down function
in order to decrease the consumption.
APPLICATION
UPSTREAM line driver for Asymmetric Digital
Subscriber Line (ADSL) (NT).

ORDER CODE
D=Small Outline Package (SO) - also available in Tape & Reel (DT)
PIN CONNECTIONS (top view)
TS612

DUAL WIDE BAND OPERATIONAL AMPLIFIER
WITH HIGH OUTPUT CURRENT
TS612
ABSOLUTE MAXIMUM RATINGS
OPERATING CONDITIONS
All voltages values, except differential voltage are with respect to network terminal. Differential voltages are non-inverting input terminal with respect to the inverting input terminal. The magnitude of input and output voltages must never exceed VCC +0.3V. An output current limitation protects the circuit from transient currents. Short-circuits can cause excessive heating.
Destructive dissipation can result from short circuit on amplifiers.
TS612ELECTRICAL CHARACTERISTICS
VCC = ±6Volts, Tamb = 25°C (unless otherwise specified)
TS612
TS612POWER DOWN MODE VCC = ±6Volts, Tamb = 25°C
POWER DOWN EQUIVALENT SHEMATIC
OUPUT IMPEDANCE IN POWER DOWN MODE

In Power Down Mode the output of the driver is in
"high impedance" state. It is really the case for the
static mode. Regarding the dynamic mode, the im-
pedance decreases due to a capacitive effect of
the collector-substrat and base collector junction.
The impedance behaviour comes capacitive, typi-
cally: 1.4MΩ // 33pF.
INTERMODULATION DISTORTION

The curves shown below are the measurements
results of a single operator wired as an adder with
a gain of 15dB.
The operational amplifier is supplied by a symmet-
ric ±6V and is loaded with 25Ω.
Two synthesizers (Rhode & Schwartz SME) gen-
erate two frequencies (tones) (70 & 80kHz or 180
& 280kHz).
An HP3585 spectrum analyzer measures the spu-
rious level at different frequencies.
The curves are traced for different output levels
(the value in the X ax is the value of each tone).
The output levels of the two tones are the same.
The generators and spectrum analyzer are phase
3rd ORDER INTERMODULATION

(2 tones : 70kHz and 80kHz)
2nd ORDER INTERMODULATION

Spurious measurement @ 100kHz
(2 tones : 180kHz and 280kHz)
3rd ORDER INTERMODULATION

(2 tones : 180kHz and 280kHz)
TS612
Closed Loop Gain and Phase vs. Frequency

Gain=+2, Vcc=±6V, RL=25Ω
Closed Loop Gain and Phase vs. Frequency

Gain=+11, Vcc=±6V, RL=25Ω
Maximum Output Swing

Vcc=±6V, RL=25Ω
Closed Loop Gain and Phase vs. Frequency

Gain=+6, Vcc=±6V, RL=25Ω
Equivalent Input Voltage Noise

Gain=+100, Vcc=±6V, no load
Channel Separation (Xtalk) vs. Frequency

XTalk=20Log(V2/V1), Vcc=±6V, RL=25Ω
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