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PDF TC1030 Data sheet ( Hoja de datos )

Número de pieza TC1030
Descripción Quad Low Power Op Amp
Fabricantes Microchip Technology 
Logotipo Microchip Technology Logotipo



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TC1030
Linear Building Block – Quad Low Power Op Amp
with Shutdown Modes
Features
• Optimized for Single Supply Operation
• Small Package: 16-Pin QSOP
• Ultra Low Input Bias Current: Less than 100pA
• Low Quiescent Current, Operating: 20µA (Typ.),
Shutdown Mode: 6µA (Typ.)
• Rail-to-Rail Inputs and Outputs
• Operates Down to 1.8V
• Can Shut Down One, Two or Three Op Amps
Applications
• Power Management Circuits
• Battery Operated Equipment
• Consumer Products
Device Selection Table
Part Number
TC1030EQR
Package
16-Pin QSOP
Temperature
Range
-40°C to +85°C
Package Type
16-Pin QSOP
OUTA
INA-
INA+
VDD
INB+
INB-
OUTB
SHDNB
1 16 OUTD
2 15 IND-
3 14 IND+
4 TC1030EQR 13 VSS
5 12 INC+
6 11 INC-
7 10 OUTC
8 9 SHDNC/D
General Description
The TC1030 is a quad CMOS operational amplifier
designed for low power applications. It has a typical
operating supply current of 20µA which is constant over
the supply voltage range of 1.8V to 5.5V.
Each op amp has rail-to-rail inputs and output which
allow operation at low supply voltages with large input
and output signal swings. Two active low shutdown
pins are provided. One pin disables op amp B while the
other disables op amps C and D. Op amp A is always
active. When disabled, the outputs of op amps B, C and
D are in a high impedance state.
Packaged in a 16-Pin QSOP, the TC1030 is ideal for
battery operated applications.
The TC1030 is packaged in a 16-Pin QSOP, making it
ideal for battery operated applications.
Functional Block Diagram
OUTA
INA-
1
2
3
INA+
VDD
4
INB+ 5
6
INB-
OUTB
SHDNB
7
8
TC1030
AD
+
+
BC
16
OUTD
15
IND-
14
IND+
13
VSS
12
INC+
11 INC-
10
OUTC
9 SHDNC/D
© 2002 Microchip Technology Inc.
DS21341B-page 1

1 page




TC1030 pdf
TC1030
3.0 DETAILED DESCRIPTION
The TC1030 is one of a series of very low power, linear
building block products targeted at low voltage, single
supply applications. The TC1030 minimum operating
voltage is 1.8V, and maximum supply current is only
32µA (fully enabled). It combines four op amps in a
single package.
Microchip’s op amps are internally compensated to be
unity-gain stable and have a typical gain bandwidth
product of 90kHz with typical slew rates of 35V/msec.
The amplifier's input range extends beyond both
supplies by 200mV and the outputs will swing to within
several millivolts of the supplies depending on the load
current being driven.
Two shutdown mode pins are incorporated for easy
adaptation to system power management schemes. In
this state, the shutdown pins allow the user to power on
one, two, three, or all four op amps (see Table 4-1). Pin
SHDNB can be used to disable op amp B and pin
SHDNC/D to disable op amps C and D. Op amp A is
always powered on regardless of the states of the
shutdown pins. When both shutdown pins are low, the
total quiescent current of the TC1030 is only 6µA,
typical.
Input offset voltage is 500µV max at 25°C with an input
bias current of less than 100pA. This makes the
TC1030 extremely suitable for precision, low power
applications.
4.0 TYPICAL APPLICATIONS
The TC1030 lends itself to a wide variety of
applications, particularly in battery-powered systems. It
typically finds application in power management,
process supervisory and interface circuitry.
4.1 Voice Band Receive Filter
The majority of spectral energy for human voices is
found to be in a 2.7kHz frequency band from 300Hz to
3kHz. To properly recover a voice signal in applications
such as radios, cellular phones and voice pagers a low-
power bandpass filter that is matched to the human
voice spectrum can be implemented using Microchip’s
CMOS op amps. Figure 4-1 shows a unity gain multi-
pole Butterworth filter with ripple less than 0.15dB in
the human voice band. The lower 3dB cut-off frequency
is 70Hz (single order response) while the upper cut-off
frequency is 3.5kHz (fourth order response).
4.2 Supervisory Audio Tone (SAT)
Filter for Cellular
Supervisory Audio Tones (SAT) provide a reliable
transmission path between cellular subscriber units
and base stations. The SAT tone functions much like
the current/voltage used in land line telephone systems
to indicate that a phone is off the hook. The SAT tone
may be one of three frequencies: 5970, 6000 or
6030Hz. A loss of SAT implies that channel conditions
are impaired and if SAT is interrupted for more than 5
seconds a cellular call is terminated.
Figure 4-2 shows a high Q (30) second order SAT
detection bandpass filter using Microchip’s CMOS op
amp architecture. This circuit nulls all frequencies
except the three SAT tones of interest.
TABLE 4-1: TC1030 SHUTDOWN POWER CONTROL LOGIC
SHDNC/D
VIL
VIL
VIH
VIH
SHDNB
VIL
VIH
VIL
VIH
OP AMPS ENABLED
A
A,B
A,C,D
A,B,C,D
OP AMPS DISABLED
B,C,D
C,D
B
None
MAX. DEVICE
SUPPLY CURRENT
10µA
16µA
24µA
32µA
© 2002 Microchip Technology Inc.
DS21341B-page 5

5 Page





TC1030 arduino
TC1030
Sales and Support
Data Sheets
Products supported by a preliminary Data Sheet may have an errata sheet describing minor operational differences and recom-
mended workarounds. To determine if an errata sheet exists for a particular device, please contact one of the following:
1. Your local Microchip sales office
2. The Microchip Corporate Literature Center U.S. FAX: (480) 792-7277
3. The Microchip Worldwide Site (www.microchip.com)
Please specify which device, revision of silicon and Data Sheet (include Literature #) you are using.
New Customer Notification System
Register on our web site (www.microchip.com/cn) to receive the most current information on our products.
2002 Microchip Technology Inc.
DS21341B-page 11

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