SLOS154C December   1995  – July 2025 TLC27L1 , TLC27L1A , TLC27L1B

PRODUCTION DATA  

  1.   1
  2. 1 Features
  3. 2 Applications
  4. 3 Description
  5. 4 Pin Configuration and Functions
  6. 5 Specifications
    1. 5.1  Absolute Maximum Ratings
    2. 5.2  Dissipation Ratings
    3. 5.3  Recommended Operating Conditions
    4. 5.4  Electrical Characteristics, C Suffix
    5. 5.5  Operating Characteristics, VDD = 5V, C Suffix
    6. 5.6  Operating Characteristics, VDD = 10V, C Suffix
    7. 5.7  Electrical Characteristics, I Suffix
    8. 5.8  Operating Characteristics, VDD = 5V, I Suffix
    9. 5.9  Operating Characteristics, VDD = 10V, I Suffix
    10. 5.10 Typical Characteristics
  7. 6 Parameter Measurement Information
    1. 6.1 Single-Supply Versus Split-Supply Test Circuits
    2. 6.2 Input Bias Current
    3. 6.3 Low-Level Output Voltage
    4. 6.4 Input Offset Voltage Temperature Coefficient
    5. 6.5 Full-Power Response
    6. 6.6 Test Time
  8. 7 Application and Implementation
    1. 7.1 Application Information
      1. 7.1.1 Single-Supply Operation
      2. 7.1.2 Input Characteristics
      3. 7.1.3 Noise Performance
      4. 7.1.4 Feedback
      5. 7.1.5 Electrostatic Discharge Protection
      6. 7.1.6 Latch-Up
      7. 7.1.7 Output Characteristics
      8. 7.1.8 Typical Applications
  9. 8 Device and Documentation Support
    1. 8.1 Receiving Notification of Documentation Updates
    2. 8.2 Support Resources
    3. 8.3 Trademarks
    4. 8.4 Electrostatic Discharge Caution
    5. 8.5 Glossary
  10. 9 Revision History
  11. 10Mechanical, Packaging, and Orderable Information

Electrical Characteristics, C Suffix

at specified free-air temperature (unless otherwise noted)
PARAMETER TEST CONDITIONS TA TLC27L1C, TLC27L1AC UNIT
VDD = 5V VDD = 10V
MIN TYP MAX MIN TYP MAX
VIOVIO Input offset voltage TLC27L1C,
VO = 1.4V, VIC = 0V,
RS = 50Ω, RI = 1MΩ
25°C 1.1 10 1.1 10 mV
0°C to 70°C 12 12 mV
TLC27L1AC,
VO = 1.4V, VIC = 0V,
RS = 50Ω, RI = 1MΩ
25°C 0.9 5 0.9 5 mV
0°C to 70°C 6.5 6.5 mV
αVIO Average temperature coefficient of input offset voltage 25°C to 70°C 1.1 1 µV/°C
IIO Input offset current(1)(2) VO = VDD/2, VIC = VDD/2 25°C 0.5 60 0.5 60 pA
70°C 7 300 8 300 pA
IIB Input bias current(1)(2) VO = VDD/2, VIC = VDD/2 25°C 0.6 60 0.7 60 pA
70°C 40 600 50 600 pA
VICR Common-mode input voltage range(3) 25°C –0.2 to +4 –0.2 to +4.2 –0.2 to +9 –0.2 to +9.2 V
0°C to 70°C –0.2 to +3.5 –0.2 to +8.5 V
VOH High-level output voltage VID = 100mV, RL = 1MΩ 25°C 3.2 4.1 8 8.9 V
0°C 3 4.1 7.8 8.9 V
70°C 3 4.2 7.8 8.9 V
VOL Low-level output voltage VID = −100mV, IOL = 0mA 25°C 1 50 5 50 mV
0°C 1 50 5 50 mV
70°C 1 50 5 50 mV
AVD Large-signal differential voltage amplification RL = 1MΩ(4) 25°C 50 520 50 870 V/mV
0°C 50 700 50 1030 V/mV
70°C 50 380 50 660 V/mV
CMRR Common-mode rejection ratio VIC = VICRmin 25°C 65 87 65 94 dB
0°C 60 85 60 93 dB
70°C 60 85 60 93 dB
kSVR Supply voltage rejection ratio (ΔVDD/ΔVIO) VDD = 5V to 10V,
VO = 1.4V
25°C 70 97 70 97 dB
0°C 60 97 60 97 dB
70°C 60 98 60 98 dB
II(SEL) Offset adjustment pin input current
(BIAS SELECT)
VI(SEL) = VDD, legacy silicon 25°C 65 95 nA
IDD Supply current VO = VDD/2, VIC = VDD/2, no load 25°C 10 17 14 23 µA
0°C 12 21 18 33 µA
70°C 8 14 11 20 µA
Typical values of input bias current and input offset current less than 5pA determined mathematically.
Values specified by characterization.
This range also applies to each input individually.
At VDD = 5V, VO = 0.25V to 2V; at VDD = 10V, VO = 1V to 6V.