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  Datasheet File OCR Text:
 January 2001
KM4210
Product Brief
SOIC shown (not actual size)
Dual, 0.5mA, Low Cost, +2.7V and +5V, 75MHz Rail-to-Rail Amplifier
Preliminary
Outperforms the competition in single-supply applications at a
lower cost!
Advertised KM4210 Specifications G = 1 BW 75 Noise 12 Slew rate 50 Supply current/amp 0.5 Competitor A 80 15 30 0.8
Features
I I I I I I I I I I I
505A supply current per amplifier 75MHz bandwidth Fully specified at +2.7V and +5V supplies Output voltage range: 0.07V to 4.86V; Vs = +5 Input voltage range: -0.3V to +3.8V; Vs = +5 50V/s slew rate 15mA linear output current 30mA output short circuit current 12nV/Hz input voltage noise Directly replaces AD8032 Package option (MSOP-8)
Typical Performance Plot
TBD
Applications
I I I I I
Portable/battery-powered applications A/D buffer Active filters Signal conditioning Portable test instruments
General Description
The KM4210 is a dual, low power, low cost, voltage feedback amplifier. The KM4210 uses only 505A of supply current per amplifer, and is designed to operate on +2.7V, +5V, or 2.5V supplies. The input voltage range extends 300mV below the negative rail and 1.2V below the positive rail.
The KM4210 offers high bipolar performance at a low CMOS price. The KM4210 offers superior dynamic performance with a 75MHz small signal bandwidth and 50V/s slew rate. The combination of low power, high bandwidth, and rail-to-rail performance make the KM4210 well suited for battery-powered communication/computing systems. The KM4110 (single) and KM4120 (single with disable) are also available.
(c) 2001 Fairchild Semiconductor International Patents Pending
P
e r
m i l
i
a n
Container Rail Reel
y r
Units MHz nV/Hz V/s A Eval Bd* KEB010 KEB010
Ordering Information
Part No. Package KM4210IM8 MSOP-8 KM4210IM8TR3 MSOP-8 Pack Qty 50 4000
Temperature range for all parts: -40C to +85C. * Evaluation boards are available to aid in the evaluation of these products. See the full data sheet or website for complete information.
www.fairchildsemi.com
KM4210
Typical Specifications
Preliminary Available Packages
TYP
Vs = +2.7V
Electrical Characteristics
(G = +2, Rf = 1k, RL = 1k to Vs/2, Ta = +25C, unless noted) PARAMETERS Frequency Domain Response -3dB bandwidth full power bandwidth gain bandwidth product Time Domain Response rise and fall time settling time to 0.1% overshoot slew rate CONDITIONS TYP
Vs = +5V
UNITS
Out1 -In1 1 2 3 4
+
MSOP
8 7
+
+Vs Out2 -In2 +In2
G = +1, Vo = 0.05Vpp G = +2, Vo < 0.2Vpp G = +2, Vo = 2Vpp
x x x x y x y x y y x x x x x x y x x x x x x x x
75 35 x x y x y 50 y y x 12 x -1 10 1.2 3.5 30 65 80 505
MHz MHz MHz MHz ns ns % V/s dBc dBc dB nV/Hz pA/Hz mV V/C A nA/C nA dB dB A M pF V dB V V mA mA V
+In1 -Vs
6 5
Distortion and Noise Response 2nd harmonic distortion 3rd harmonic distortion THD input voltage noise input current noise
DC Performance input offset voltage average drift input bias current average drift input offset current power supply rejection ratio open loop gain quiescent current per amplifier
Pr
0.2V step 2V step 0.2V step 5V step
Typical Circuit Configuration
+Vs 6.8F
+
el
DC
2Vpp, 1MHz 2Vpp, 1MHz 2Vpp, 1MHz >1MHz >1MHz
Input Characteristics input resistance input capacitance input common mode voltage range common mode rejection ratio DC Output Characteristics output voltage swing linear output current short circuit output current power supply operating range
*x and y = TBD
im
In1
+
1/2 KM4210
0.01F Out1 Rf
Rg
x x -0.3 to 3.8 92
RL = 10k to Vs/2 RL = 1k to Vs/2
x x x 0.07 to 4.86 x 15 x 30 2.5 to 5.5
in
Absolute Maximum Ratings
supply voltage maximum junction temperature storage temperature range lead temperature (10 sec) operating temperature range input voltage range internal power disapation ja for 8 lead MSOP 0 to +6V +175C -65C to +150C +300C -40 to +85C +Vs + 0.5V, -Vs - 0.5V see power derating curves in the full data sheet 206C/W
ar
y
LIFE SUPPORT POLICY FAIRCHILD'S PRODUCTS ARE NOT AUTHORIZED FOR USE AS CRITICAL COMPONENTS IN LIFE SUPPORT DEVICES OR SYSTEMS WITHOUT THE EXPRESS WRITTEN APPROVAL OF THE PRESIDENT OF FAIRCHILD SEMICONDUCTOR CORPORATION. As used herein: 1. Life support devices or systems are devices or systems which, (a) are intended for surgical implant into the body, or (b) support or sustain life, and (c) whose failure to perform when properly used in accordance with instructions for use provided in the labeling, can be reasonably expected to result in a significant injury of the user. 2. A critical component in any component of a life support device or system whose failure to perform can be reasonably expected to cause the failure of the life support device or system, or to affect its safety or effectiveness. Lit No. XXXXXX-XXX


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