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OPA835IDBVR Datasheet(PDF) 1 Page - National Semiconductor (TI)

[Old version datasheet] Texas Instruments acquired National semiconductor. Click here to check the latest version.
Part # OPA835IDBVR
Description  Ultra Low-Power, Rail-to-Rail Out, Negative Rail In, VFB Op Amp
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Manufacturer  NSC [National Semiconductor (TI)]
Direct Link  http://www.national.com
Logo NSC - National Semiconductor (TI)

OPA835IDBVR Datasheet(HTML) 1 Page - National Semiconductor (TI)

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background image
-140
-120
-100
-80
-60
-40
-20
0
0
20,000
40,000
60,000
80,000
100,000
120,000
Frequency (Hz)
2.7V
ADS8326
+In
-In
100
2.2nF
2k
2k
V
IN
OPA835
V
S-
2k
4.02k
4.02k
2.5V
5V
V
S+
V
DD
REF
2.7V
0V
V
SIG
1.35V
V
SIG
OPA835
OPA2835
www.ti.com
SLOS713E – JANUARY 2011 – REVISED JULY 2013
Ultra Low-Power, Rail-to-Rail Out, Negative Rail In, VFB Op Amp
Check for Samples: OPA835, OPA2835
1
FEATURES
DESCRIPTION
Fabricated
using
the
industry-leading
BiCom-3x
Ultra Low Power
(SiGe complimentary bipolar) process, the OPA835
Supply Voltage: 2.5 V to 5.5 V
and OPA2835 are single and dual ultra low-power,
Quiescent Current: 250 µA (typ)
rail-to-rail output, negative rail input, voltage-feedback
operational amplifiers designed to operate over a
Power Down Mode: 0.5 µA (typ)
power supply range of 2.5 V to 5.5 V Single Supply
Bandwidth: 56 MHz
and ±1.25 V to ±2.75 V dual supply. Consuming only
Slew Rate: 160 V/µs
250 µA per channel and a unity gain bandwidth of 56
MHz, these amplifiers set an industry leading power-
Rise Time: 10 ns (2 VSTEP)
to-performance ratio for rail-to-rail amplifiers.
Settling Time: 45 ns (2VSTEP)
For battery powered portable applications where
Overdrive Recovery Time: 195 ns
power is of key importance, the OPA835's and
SNR: 0.00015% (–116.4dBc) at 1 kHz (1 VRMS)
OPA2835's
low
power
consumption
and
high
THD: 0.00003% (–130 dBc) at 1 kHz (1 VRMS)
frequency performance offers designers performance
versus power not attainable in other devices. Coupled
HD2/HD3: –70 dBc/–73 dBc at 1 MHz (2 VPP)
with a power savings mode to reduce current to <1.5
Input Voltage Noise: 9.3 nV/
√Hz (f = 100 kHz)
μA, the device offers an attractive solution for high
Input Offset Voltage: 100 µV (500 µV max)
frequency amplifiers in battery powered applications.
CMRR: 113 dB
The OPA835 and OPA2835 are offered in following
Output Current Drive: 40 mA
package options:
RRO – Rail-to-Rail Output
OPA835 Single: SOT23-6 (DBV), and 10 pin
WQFN (RUN) with integrated gain resistors.
Input Voltage Range: –0.2 V to 3.9 V
OPA2835 Dual: SOIC-8 (D), VSSOP (MSOP) -10
(5 V supply)
(DGS), 10 pin WQFN (RUN), and 10 pin UQFN
Operating Temperature Range:
(RMC).
–40°C–125°C
The
OPA835
RUN
package
option
includes
integrated gain setting resistors for smallest possible
APPLICATIONS
footprint on a printed circuit board (
≈ 2mm x 2mm).
Low Power Signal Conditioning
By adding circuit traces on the PCB, gains of +1, -1, -
Audio ADC Input Buffer
1.33, +2, +2.33, -3, +4, -4, +5, -5.33, +6.33, -7, +8
and inverting attenuations of -0.1429, -0.1875, -0.25,
Low Power SAR and
ΔΣ ADC Driver
-0.33, -0.75 can be achieved. See Application
Portable Systems
Information section for details.
Low Power Systems
The devices are characterized for operation over the
High Density Systems
extended industrial temperature range –40°C to
Ultrasonic Flow Meter
125°C.
OPA835 Related Products
DESCRIPTION
SINGLES
DUALS
TRIPLES
QUADS
Rail-to-Rail
OPA2830
OPA4830
Rail-to-Rail, Low
OPA836
OPA2836
Power
Rail-to-Rail, Fixed
OPA832
OPA2832
OPA3832
Gain
General-Purpose, High
OPA690
OPA2690
OPA3690
Slew Rate
Low-Noise, DC
OPA820
OPA2822
OPA4820
Precision
1
Please be aware that an important notice concerning availability, standard warranty, and use in critical applications of
Texas Instruments semiconductor products and disclaimers thereto appears at the end of this data sheet.
PRODUCTION DATA information is current as of publication date.
Copyright © 2011–2013, Texas Instruments Incorporated
Products conform to specifications per the terms of the Texas
Instruments standard warranty. Production processing does not
necessarily include testing of all parameters.


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