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Part: EL2166CS

Category:
 Analog & Mixed-Signal Processing
   -> Amplifiers
     -> Operational Amplifiers
       -> Current Mode/Feedback

Description: 110 MHZ Current Mode Feedback Amplifier With Disable

Company: Elantec Semiconductor, Inc. (acquired by Intersil)

Datasheet: Download EL2166CS datasheet     File size : 7 kB

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Datasheet text preview:
EL2166C

EL2166C
110 MHz Current Feedback Amplifier with Disable

Features
110 MHz 3 dB bandwidth (AV e a 2) 115 MHz 3 dB bandwidth (AV e a 1) R01% differential gain 0 L e 500X R01 differential phase 0 L e 500X Low supply current 7 5 mA Fast disable k 75 ns Low cost 1500 V ms slew rate

General Description
The EL2166C is a current feedback operational amplifier with b 3 dB bandwidth of 110 MHz at a gain of a 2 Built using the t Elantec proprietary monolithic complementary bipolar process his amplifer uses current mode feedback to achieve more bandwidth at a given gain than a conventional voltage feedback opT erational amplifier he EL2166C is designed to drive a double terminated 75X coax cable to video levels Differential gain and phase are excellent when driving both loads of 500X ( k 0 01% k 0 01 ) and double terminated 75X cables (0 025% 0 05 0 VS e g 15V 0 04% T 02 VS e g 5V) he EL2166C has a superior output disable function Time to enable or disable is k 75 ns The DISABLE pin is TTL CMOS compatible In disable mode the amplifier can withstand over 1500 V ms signals at their outputs The amplifier can operate on any supply voltage from 10V ( g 5V) to 33V ( g 16 5V) yet consume only 7 5 mA at any supply voltage The EL2166C is availC le in 8-pin P-DIP and 8-pin SO packages ab

Applications
Video amplifiers Cable drivers RGB amplifiers Test equipment amplifiers Current to voltage converters Broadcast equipment High speed communications Video multiplexing

onnection Diagram
EL2166C SO P-DIP Packages

Ordering Information
E art No P

Temp Range

Package

Outline

L2166CN b 40 C to a 85 C 8-Pin P-DIP MDP0031 EL2166CS
b 40

C to a 85 C 8-Pin SOIC

MDP0027

2166 ­ 1

Top View

December 1995 Rev C

Manufactured under U S Patent No 5 420 542 4 893 091
Note All information contained in this data sheet has been carefully checked and is believed to be accurate as of the date of publication however this data sheet cannot be a ``controlled document'' Current revisions if any to these spe1ifications are maintained at the factory and are available upon your request We recommend checking the revision level before finalization of your design documentation c

994 Elantec Inc

EL2166C
110 MHz Current Feedback Amplifier with Disable
Absolute Maximum Ratings (TA e 25 C)
Voltage between VS a and VSb Voltage between a IN and bIN Current into a IN or bIN Output Current Current into DISABLE Pin Voltage between DISABLE Pin and GND Pin
a 33V
g 6V

10 mA
g 50 mA g 5 mA g 7V

D Voltage at IN a INb VOUT (VSb) b 0 5V to (VS a ) a 0 5V ISABLE GND Pins Internal Power Dissipation See Curves b 40 C to a 85 C Operating Ambient Temperature Range Operating Junction Temperature Plastic Packages 150 C b 65 C to a 150 C Storage Temperature Range

A Important Note ll parameters having Min Max specifications are guaranteed The Test Level column indicates the specific device testing actually performed during production and Quality inspection Elantec performs most electrical tests using modern high-speed automatic test equipment specifically the LTX77 Series system Unless otherwise noted all tests are pulsed tests therefore TJ e TC e TA T est Level I I I I III V V O Test Procedure 100% production tested and QA sample tested per QA test plan QCX0002 100% production tested at TA e 25 C and QA sample tested at TA e 25 C T MAX and TMIN per QA test plan QCX0002 QA sample tested per QA test plan QCX0002 Parameter is guaranteed (but not tested) by Design and Characterization Data Parameter is typical value at TA e 25 C for information purposes only

pen Loop DC Electrical Characteristics
VS e g 15V RL e 150X TA e 25 C unless otherwise specified Parameter VOS TC VOS
a IIN b IIN

Description Input Offset Voltage Average Offset Voltage Drift (Note 1)
a Input Current b Input Current

Conditions VS e g 5V g15V

Temp Min 25 C Full

Limits Typ 2 10 05 5 55 62 01 65 72 01 2 2 5 20 Max 10

Test Level EL2166C I V I I II I II I

Units mV mV C mA mA dB mA V dB mA V

VS e g 5V g15V VS e g 5V g15V VS e g 5V g15V VS e g 5V g15V

25 C 25 C 25 C 25 C 25 C 25 C

CMRR
b ICMR

Common Mode Rejection Ratio (Note 2)
b Input Current Common Mode Rejection (Note 2)

PSRR
b IPSR

b Input Current Power Supply Rejection (Note 3)

2

TD is 2 5in

Power Supply Rejection Ratio (Note 3)

EL2166C
110 MHz Current Feedback Amplifier with Disable
Open Loop DC Electrical Characteristics
VS e g 15V RL e 150X TA e 25 C unless otherwise specified Parameter ROL Description Transimpedance (Note 4) Conditions VS e g 15V RL e 400X VS e g 5V RL e 150X
a RIN a CIN a Input Resistance a Input Capacitance

Contd
Limits Min 25 C 25 C 25 C 25 C 500 500 20 Typ 2000 1200 50 25
g 12 6 g2 6 g 12 g 13 2 g3 2 g 13 5

Temp

Test Level Max EL2166C I I I V I I I V I 130 10 0 10 0 50 0 I I I I I 08 I I I

Units

kX kX MX pF V V V V V mA mA mA mA V TD is 4 6in V mA mA

CMIR

Common Mode Input Range

VS e g 15V VS e g 5V

25 C 25 C 2 2 2 5C 5C 5C 5C

VO

Output Voltage Swing

RL e 400X VS e g 15V RL e 150X VS e g 15V RL e 150X VS e g 5V

g 11 4

g3 0

g3 7

ISC IS IS OFF IOUT OFF VIH VIL IDIS ON IDIS OFF

Output Short Circuit Current (Note 5) Supply Current Supply Current Disabled Pin 8 e 0V Output Current Disabled Pin 8 e 0V DISABLE Pin Voltage for Output Enabled (Note 9) DISABLE Pin Threshold for Output Disabled DISABLE Pin Input Current Pin 8 e a 5V DISABLE Pin Input Current Pin 8 e 0V

VS e g 5V VS e g 15V VS e g 15V VS e g 5V

2

50

80 75 73 20

25 C 25 C

AV e a 1

25 C 25 C 25 C 25 C 25 C
b 150

20

70
b 60

150

3

EL2166C
110 MHz Current Feedback Amplifier with Disable
Closed Loop AC Electrical Characteristics
VS e g 15V AV e a 2 RF e 560X RL e 150X TA e 25 C unless otherwise noted Parameter BW Description
b 3 dB Bandwidth (Note 8)

Conditions Min VS e g 15V AV e a 2 VS e g 15V AV e a 1 VS e g 5V AV e a 2 VS e g 5V AV e a 1

Limits Typ 110 115 95 100 1000 1500 32 43 Max

Test Level EL2166C V V V V IV V V V V V V V V V V V V V

Units MHz MHz MHz MHz V ms ns ns % ns % % % % deg ( ) deg ( ) deg ( ) deg ( ) ns TD is 4 4in

SR tr tf tpd OS ts dG

Slew Rate (Notes 6 8) Rise Time Fall Time (Note 8) Propagation Delay (Note 8) Overshoot (Note 8) 0 1% Settling Time (Note 8) Differential Gain (Notes 7 8)

RL e 400X VOUT e g 500mV

VOUT e g 500 mV VOUT e g 10V AV e g 1 RL e 1K RL e 150X VS e g 15V RL e 150X VS e g 5V RL e 500X VS e g 15V RL e 500X VS e 5V

7 35 0 025 0 05 0 01 0 01 0 04 0 02 0 01 0 01 75

dP

Differential Phase (Notes 7 8)

RL e 150X VS e g 15V RL e 150X VS e g 5V RL e 500X VS e g 15V RL e 500X VS e 5V

tDIS

Disable Enable Time (Note 10)

Note 1 Measured from TMIN to TMAX ote 2 VCM e g 12 6V for VS e g 15V and TA e 25 C VCM e g 2 6V for VS e g 5V and TA e 25 C Note 3 The supplies are moved from g 5V to g 15V Note 4 VOUT e g 7V for VS e g 15V and VOUT e g 2V for VS e g 5V Note 5 A heat sink is required to keep junction temperature below absolute maximum when an output is shorted Note 6 Slew Rate is with VOUT from a 10V to b10V and measured at the 25% and 75% points Note 7 DC offset from b0 714V through a 0 714V AC amplitude 286 mVp-p f e 3 58 MHz Note 8 All AC tests are performed on a ``warmed up'' part except for Slew Rate which is pulse tested Note 9 The EL2166C will remain ENABLED if pin 8 is either left unconnected or VIH is applied to pin 8 ote 10 Disable Enable time is defined as the time from when the logic signal is applied to the DISABLE pin to when the output voltage has gone 50% of the way from its initial to its f4 al value in

EL2166C
110 MHz Current Feedback Amplifier with Disable
Typical Performance Curves
Non-Inverting Frequency Response (Gain) Non-Inverting Frequency Response (Phase) Frequency Response for Various RL

Inverting Frequency Response (Gain)

Inverting Frequency Response (Phase)

Frequency Response for Various RF and RG

3 dB Bandwidth vs Supply Voltage for AV e b 1

Peaking vs Supply Voltage for AV e b 1

3 dB Bandwidth vs Temperature for AV e b 1

2166 ­ 2

5




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