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TDB2022 ^lif WIDEBAND SINGLE OPERATIONAL AMPLIFIER TDB2


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T-79-07-10
TDB2022
^lif
WIDEBAND SINGLE OPERATIONAL AMPLIFIER
TDB2022-CM wideband monolithic operational amplifier. outstanding characteristics such gain-bandwidth product V/jiS slew rate make particularly suitable video frequency amplifier signal processing applications.
performances integrated video frequency amplifiers have been enhanced.
Operation from supplies. noise figure.
Closed loop gain phase irregularities with large input signals minimized. This circuit been developed co-operation with Diffusion France".
Input offset voltage max.
Input bias current max.
Input offset current max.
Gain-bandwidth product minimum.
Slew rate V/fis mln.
Output short circuit current limited Indefinite duration.
ORDERING INFORMATION
PART NUMBER TEMPERATURE RANGE PACKAGE
Example TOB2CG2CM
THOMSON SEMICONDUCTORS
hfitfqutrttfi
78140 VELIZY FRANCE 204780
WIDEBAND SINGLE OPERATIONAL AMPLIFIER
CASE CB-11
SUFFIX METAL
ASSIGNMENT flop view)
Non-iwertirifl Input
Inverting Input
Frequency compensation
Output Output
4\THOMSON
ELECTRICAL CHARACTERISTICS
V&-+12V
Vcc=-12V
(Unless otherwise specified)
Characteristic Symbol Value Unit
Input offset voltage Rl^IOO
input offset current (Rs=2 0.18
Input bias current (Rs=1
Differential mode voltage gain R(_= kHz) Fig. 1500 V/mV
Supply voltage rejection ratio (Rs=2
Supply voltage rejection ratio Rj_= SVR~
Supply currents kfl, Rl=100 'cc-
Temperature coefficient input offset voltage (Rg=2 kfl, aV,0
Common-moda rejection ratio (Rs=2 kfl, Rl=100
Slew rate Av=+2 (Figs. (Figs. V/fts
Output(5) current Sourcing current Sinking current ksiMuroi
Output voltage swing f=4.43 MHz, Rj_= Note Fig. vOPP
Output voltege swing Output 100kfl Output V0PP(5) V0PP(6) -8.6 -1.7
Output impedance kHz) Output zO(5)
Differential input impedance kfl, Rl=100 kfl) 3d(1) ^id(2)
Input capacitance
Transition frequency RS=100 kfl, f=10 MHz, Inverting amplifier Figs.
Noise figure (Center frequency kHz)
Equivalent input noise voltage (Bandwidth nVA/Hz
Equivalent input noise current (Figs. pA/VHz
Output voltBge swing Vqpp maximum allowable output amplitude peak peak. harmonic ratio less than
T-79-07-10
TYPICAL APPLICATIONS T-79-0'7-10
FIGURE NON-INVERTING AMPLIFIER (Ay-
With bandwidth irregularity compensation Application diagram
supplied Diffusion France
Input signal: -0.7 +0.7 Differential phase shift: degree
Differential gain 0,25% (0.02 Stew rate V/fis
Adjustable capacitor (2.5
FIGURE VOLTAGE GAIN VERSUS FREQUENCY NON-INVERTING AMPLIFIER <Ay=
with resistance
FREQUENCY (MHx)
TYPICAL APPLICATIONS (continued) FIGURE SLEW RATE
Input signal
(see Figure
Slew rate V/^s
TIME (na>
With bandwidth Irregularity compensation
FIGURE INVERTING AMPLIFIER (Ay-
Application diagram supplied Diffusion France
Adjustable capacitar {2.5
Output
1220
Input signal -0.7 +0.7 Differential gain 0,2S% (0.02
Differential phase shift degree Slew rate V/fis
TYPICAL APPLICATIONS (continued)
T-79-07-
FIGURE NON-INVERTING AMPLIFIER (AV=
Without bandwidth compensation
Input
Output
FIGURE MEASUREMENT SLEW RATE
(see Figuro
/ill \2\-U
mjjui swynai Output signal connected Output signal connected
TIME (ns)
TYPICAL APPLICATIONS (continuati) !-/y-U/-IU
FIGURE INVERTING AMPLIFIER (AV- -10}
1000
FIGURE GAIN VERSUS FREQUENCY OPEN LOOP
FREQUENCY (MHz}
TYPICAL APPLICATIONS (contlnufld)
T-79-07-11
FIGURE NOISE FIGURE TEST CIRCUIT
FIGURE NOISE FIGURE
10kKz iquivale
(be-
INPUT SERIES RESISTANCE (il)
(TO-99J
SUFRX
METAL
C-23
TO-99
data.
Jtotc
CB-11 IHQMSON
SEUlCOtfOUCTORS

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