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PDF TS1001 Data sheet ( Hoja de datos )

Número de pieza TS1001
Descripción RAIL-TO-RAIL OP AMP
Fabricantes Silicon Laboratories 
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No Preview Available ! TS1001 Hoja de datos, Descripción, Manual

TS1001
THE ONLY 0.8V/0.6µA RAIL-TO-RAIL OP AMP
FEATURES
Single 0.65V to 2.5V Operation
Supply current: 0.6μA (typ)
Offset voltage: 0.5mV (typ)
Low TCVOS: 20µV/°C (typ)
AVOL Driving 100kΩ Load: 90dB (min)
Unity Gain Stable
Rail-to-rail Input and Output
No Output Phase Reversal
5-pin SC70 Package
APPLICATIONS
Battery/Solar-Powered Instrumentation
Portable Gas Monitors
Low-voltage Signal Processing
Nanopower Active Filters
Wireless Remote Sensors
Battery-powered Industrial Sensors
Active RFID Readers
Powerline or Battery Current Sensing
Handheld/Portable POS Terminals
DESCRIPTION
The TS1001 is the industry’s first sub-1µA supply
current, precision CMOS operational amplifier rated to
operate at a nominal supply voltage of 0.8V. Optimized
for ultra-long-life battery-powered applications, the
TS1001 is an operational amplifier in the “NanoWatt
Analog™” high-performance analog integrated circuits
portfolio. The TS1001 exhibits a typical input offset
voltage of 0.5mV, a typical input bias current of 25pA,
and rail-to-rail input and output stages. The TS1001
can operate from single-supply voltages from 0.65V to
2.5V.
The TS1001’s combined features make it an excellent
choice in applications where very low supply current
and low operating supply voltage translate into very
long equipment operating time. Applications include:
nanopower active filters, wireless remote sensors,
battery and powerline current sensors, portable gas
monitors, and handheld/portable POS terminals.
The TS1001 is fully specified at VDD = 0.8V and over
the industrial temperature range (−40°C to +85°C) and
is available in a PCB-space saving 5-lead SC70
surface-mount package.
TYPICAL APPLICATION CIRCUIT
A NanoWatt 2-Pole Sallen Key Low Pass Filter
30%
Supply Current Distribution
VDD = 0.8V
25%
20%
15%
10%
5%
0%
0.53
0.58 0.63
0.68
0.73
Supply Current - µA
Page 1
© 2014 Silicon Laboratories, Inc. All rights reserved.

1 page




TS1001 pdf
TS1001
TYPICAL PERFORMANCE CHARACTERISTICS
Input Bias Current (IIN+, IIN-) vs Input Common-Mode Voltage
100
VDD =0.8V
75 TA = +25°C
Input Bias Current (IIN+, IIN-) vs Input Common-Mode Voltage
250
VDD = 2.5V
200 TA = +25°C
50
25
0
-25
-50
0
0.2 0.4 0.6 0.8
INPUT COMMON-MODE VOLTAGE - Volt
150
100
50
0
-50
0 0.5 1 1.5 2 2.5
INPUT COMMON-MODE VOLTAGE - Volt
Output Voltage High (VOH) vs Temperature, RLOAD =100kΩ
4.5
4 RL = 100kΩ
3.5 VDD = 2.5V
3
2.5
2
1.5 VDD = 0.8V
1
0.5
0
-40
+25
TEMPERATURE - °C
+85
Output Voltage Low (VOL) vs Temperature, RLOAD =100kΩ
1.8
1.6
1.4 VDD = 2.5V
1.2
1
0.8
0.6
0.4 VDD = 0.8V
0.2 RL = 100kΩ
0
-40
+25
TEMPERATURE - °C
+85
Output Voltage High (VOH) vs Temperature, RLOAD =10kΩ
35
30 RL = 10kΩ
25 VDD = 2.5V
20
15
VDD = 0.8V
10
5
0
-40
+25
TEMPERATURE - °C
+85
TS1001 Rev. 1.0
Output Voltage Low (VOL) vs Temperature, RLOAD =10kΩ
20
16 VDD = 2.5V
12
8
VDD = 0.8V
4
RL = 10kΩ
0
-40
+25
TEMPERATURE - °C
+85
Page 5

5 Page





TS1001 arduino
PACKAGE OUTLINE DRAWING
5-Pin SC70 Package Outline Drawing
(N.B., Drawings are not to scale)
0.65 TYP.
0.15 - 0.30 2
TS1001
54
123
1.80 - 2.40
1.00
MAX
NOTES:
1.30 TYP.
1.80 - 2.20 1
0.800 – 0.925
0.40 – 0.55
0.00 - 0.10
0.10 MAX
LEAD FRAME THICKNESS
0.10 - 0.18
8º - 12º ALL
SIDE
0.15
TYP.
GAUGE PLANE
1.15 - 1.35
0º - 8º
0.26 - 0.46
0.275 - 0.575
1 DOES NOT INCLUDE MOLD FLASH, PROTRUSIONS OR GATE BURRS.
2 DOES NOT INCLUDE INTER-LEAD FLASH OR PROTRUSIONS.
3. DIE IS FACING UP FOR MOLDING. DIE IS FACING DOWN FOR TRIM/FORM.
4 ALL SPECIFICATION COMPLY TO JEDEC SPEC MO-203 AA
5. CONTROLLING DIMENSIONS IN MILIMITERS.
6. ALL SPECIFICATIONS REFER TO JEDEC MO-203 AA
7. LEAD SPAN/STAND OFF HEIGHT/COPLANARITY ARE CONSIDERED AS SPECIAL CHARACTERISTIC
Patent Notice
Silicon Labs invests in research and development to help our customers differentiate in the market with innovative low-power, small size,
analog-intensive mixed-signal solutions. Silicon Labs' extensive patent portfolio is a testament to our unique approach and world-class
engineering team.
The information in this document is believed to be accurate in all respects at the time of publication but is subject to change without notice.
Silicon Laboratories assumes no responsibility for errors and omissions, and disclaims responsibility for any consequences resulting from the
use of information included herein. Additionally, Silicon Laboratories assumes no responsibility for the functioning of undescribed features or
parameters. Silicon Laboratories reserves the right to make changes without further notice. Silicon Laboratories makes no warranty,
representation or guarantee regarding the suitability of its products for any particular purpose, nor does Silicon Laboratories assume any
liability arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including without limitation
consequential or incidental damages. Silicon Laboratories products are not designed, intended, or authorized for use in applications intended
to support or sustain life, or for any other application in which the failure of the Silicon Laboratories product could create a situation where
personal injury or death may occur. Should Buyer purchase or use Silicon Laboratories products for any such unintended or unauthorized
application, Buyer shall indemnify and hold Silicon Laboratories harmless against all claims and damages.
Silicon Laboratories and Silicon Labs are trademarks of Silicon Laboratories Inc.
Other products or brandnames mentioned herein are trademarks or registered trademarks of their respective holders.
Silicon Laboratories, Inc.
400 West Cesar Chavez, Austin, TX 78701
+1 (512) 416-8500 ▪ www.silabs.com
Page 11
TS1001 Rev. 1.0

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