TLC393 双路微功耗 LinCMOS(TM) 比较器
The TLC193 and TLC393 consist of dual independent micropower voltage comparators designed to operate from a single supply. They are functionally similar to the LM393 but uses one-twentieth the power for similar response times. The open-drain MOS output stage interfaces to a variety of loads and supplies. For a similar device with a push-pull output configuration (see the TLC3702 data sheet).
Texas Instruments LinCMOS™ process offers superior analog performance to standard CMOS processes. Along with the standard CMOS advantages of low power without sacrificing speed, high input impedance, and low bias currents, the LinCMOS™ process offers ex-tremely stable input offset voltages, even with differential input stresses of several volts
|
TLC393 |
Number of Channels |
2 |
Iq per channel (Max) (mA) |
0.02 |
Output Current (Min) (mA) |
6 |
tRESP Low - to - High (us) |
1.1 |
Output Type |
Open Collector, Open Drain |
VIO (25 deg C) (Max) (mV) |
5 |
Pin/Package |
8PDIP, 8SO, 8SOIC, 8TSSOP |
VICR (Min) (V) |
-0.2 |
VICR (Max) (V) |
14.5 |
Vs (Min) (V) |
3 |
Vs (Max) (V) |
16 |
Operating Temperature Range (C) |
-40 to 125,-40 to 85,0 to 70 |
Rating |
Military |
TLC393 特性
- Very Low Power...110 µW Typ at 5 V
- Fast Response Time...tPLH = 2.5 µs Typ With 5-mV Overdrive
- Single Supply Operation:
TLC393C...3 V to 16 V
TLC393I...3 V to 16 V
TLC393Q...4 V to 16 V
TLC393M...4 V to 16 V
TLC193M...4 V to 16 V
- On-Chip ESD Protection
TLC393 芯片订购指南
器件 |
状态 |
温度 |
价格 |
封装 | 引脚 |
封装数量 | 封装载体 |
丝印标记 |
TLC393CD |
ACTIVE |
0 to 70 |
0.48 | 1ku |
SOIC (D) | 8 |
75 | TUBE |
|
TLC393CDG4 |
ACTIVE |
0 to 70 |
0.48 | 1ku |
SOIC (D) | 8 |
75 | TUBE |
|
TLC393CDR |
ACTIVE |
0 to 70 |
0.40 | 1ku |
SOIC (D) | 8 |
2500 | LARGE T&R |
|
TLC393CDRG4 |
ACTIVE |
0 to 70 |
0.40 | 1ku |
SOIC (D) | 8 |
2500 | LARGE T&R |
|
TLC393CP |
ACTIVE |
0 to 70 |
0.40 | 1ku |
PDIP (P) | 8 |
50 | TUBE |
|
TLC393CPE4 |
ACTIVE |
0 to 70 |
0.40 | 1ku |
PDIP (P) | 8 |
50 | TUBE |
|
TLC393CPSR |
ACTIVE |
0 to 70 |
0.40 | 1ku |
SO (PS) | 8 |
2000 | LARGE T&R |
|
TLC393CPSRG4 |
ACTIVE |
0 to 70 |
0.40 | 1ku |
SO (PS) | 8 |
2000 | LARGE T&R |
|
TLC393CPW |
ACTIVE |
0 to 70 |
0.48 | 1ku |
TSSOP (PW) | 8 |
150 | TUBE |
|
TLC393CPWG4 |
ACTIVE |
0 to 70 |
0.48 | 1ku |
TSSOP (PW) | 8 |
150 | TUBE |
|
TLC393CPWR |
ACTIVE |
0 to 70 |
0.40 | 1ku |
TSSOP (PW) | 8 |
2000 | LARGE T&R |
|
TLC393CPWRG4 |
ACTIVE |
0 to 70 |
0.40 | 1ku |
TSSOP (PW) | 8 |
2000 | LARGE T&R |
|
TLC393ID |
ACTIVE |
-40 to 85 |
0.55 | 1ku |
SOIC (D) | 8 |
75 | TUBE |
|
TLC393IDG4 |
ACTIVE |
-40 to 85 |
0.55 | 1ku |
SOIC (D) | 8 |
75 | TUBE |
|
TLC393IDR |
ACTIVE |
-40 to 85 |
0.44 | 1ku |
SOIC (D) | 8 |
2500 | LARGE T&R |
|
TLC393IDRG4 |
ACTIVE |
-40 to 85 |
0.44 | 1ku |
SOIC (D) | 8 |
2500 | LARGE T&R |
|
TLC393IP |
ACTIVE |
-40 to 85 |
0.44 | 1ku |
PDIP (P) | 8 |
50 | TUBE |
|
TLC393IPE4 |
ACTIVE |
-40 to 85 |
0.44 | 1ku |
PDIP (P) | 8 |
50 | TUBE |
|
TLC393IPW |
ACTIVE |
-40 to 85 |
0.55 | 1ku |
TSSOP (PW) | 8 |
150 | TUBE |
|
TLC393IPWG4 |
ACTIVE |
-40 to 85 |
0.55 | 1ku |
TSSOP (PW) | 8 |
150 | TUBE |
|
TLC393IPWR |
ACTIVE |
-40 to 85 |
0.44 | 1ku |
TSSOP (PW) | 8 |
2000 | LARGE T&R |
|
TLC393IPWRG4 |
ACTIVE |
-40 to 85 |
0.44 | 1ku |
TSSOP (PW) | 8 |
2000 | LARGE T&R |
|
TLC393QDR |
ACTIVE |
-40 to 125 |
0.46 | 1ku |
SOIC (D) | 8 |
2500 | LARGE T&R |
|
TLC393QDRG4 |
ACTIVE |
|
0.46 | 1ku |
SOIC (D) | 8 |
2500 |
|
TLC393 质量与无铅数据
器件 |
环保计划* |
铅/焊球涂层 |
MSL 等级/回流焊峰 |
环保信息与无铅 (Pb-free) |
DPPM / MTBF / FIT 率 |
TLC393CD |
Green (RoHS & no Sb/Br) |
CU NIPDAU |
Level-1-260C-UNLIM |
TLC393CD |
TLC393CD |
TLC393CDG4 |
Green (RoHS & no Sb/Br) |
CU NIPDAU |
Level-1-260C-UNLIM |
TLC393CDG4 |
TLC393CDG4 |
TLC393CDR |
Green (RoHS & no Sb/Br) |
CU NIPDAU |
Level-1-260C-UNLIM |
TLC393CDR |
TLC393CDR |
TLC393CDRG4 |
Green (RoHS & no Sb/Br) |
CU NIPDAU |
Level-1-260C-UNLIM |
TLC393CDRG4 |
TLC393CDRG4 |
TLC393CP |
Pb-Free (RoHS) |
CU NIPDAU |
N/A for Pkg Type |
TLC393CP |
TLC393CP |
TLC393CPE4 |
Pb-Free (RoHS) |
CU NIPDAU |
N/A for Pkg Type |
TLC393CPE4 |
TLC393CPE4 |
TLC393CPSR |
Green (RoHS & no Sb/Br) |
CU NIPDAU |
Level-1-260C-UNLIM |
TLC393CPSR |
TLC393CPSR |
TLC393CPSRG4 |
Green (RoHS & no Sb/Br) |
CU NIPDAU |
Level-1-260C-UNLIM |
TLC393CPSRG4 |
TLC393CPSRG4 |
TLC393CPW |
Green (RoHS & no Sb/Br) |
CU NIPDAU |
Level-1-260C-UNLIM |
TLC393CPW |
TLC393CPW |
TLC393CPWG4 |
Green (RoHS & no Sb/Br) |
CU NIPDAU |
Level-1-260C-UNLIM |
TLC393CPWG4 |
TLC393CPWG4 |
TLC393CPWR |
Green (RoHS & no Sb/Br) |
CU NIPDAU |
Level-1-260C-UNLIM |
TLC393CPWR |
TLC393CPWR |
TLC393CPWRG4 |
Green (RoHS & no Sb/Br) |
CU NIPDAU |
Level-1-260C-UNLIM |
TLC393CPWRG4 |
TLC393CPWRG4 |
TLC393ID |
Green (RoHS & no Sb/Br) |
CU NIPDAU |
Level-1-260C-UNLIM |
TLC393ID |
TLC393ID |
TLC393IDG4 |
Green (RoHS & no Sb/Br) |
CU NIPDAU |
Level-1-260C-UNLIM |
TLC393IDG4 |
TLC393IDG4 |
TLC393IDR |
Green (RoHS & no Sb/Br) |
CU NIPDAU |
Level-1-260C-UNLIM |
TLC393IDR |
TLC393IDR |
TLC393IDRG4 |
Green (RoHS & no Sb/Br) |
CU NIPDAU |
Level-1-260C-UNLIM |
TLC393IDRG4 |
TLC393IDRG4 |
TLC393IP |
Pb-Free (RoHS) |
CU NIPDAU |
N/A for Pkg Type |
TLC393IP |
TLC393IP |
TLC393IPE4 |
Pb-Free (RoHS) |
CU NIPDAU |
N/A for Pkg Type |
TLC393IPE4 |
TLC393IPE4 |
TLC393IPW |
Green (RoHS & no Sb/Br) |
CU NIPDAU |
Level-1-260C-UNLIM |
TLC393IPW |
TLC393IPW |
TLC393IPWG4 |
Green (RoHS & no Sb/Br) |
CU NIPDAU |
Level-1-260C-UNLIM |
TLC393IPWG4 |
TLC393IPWG4 |
TLC393IPWR |
Green (RoHS & no Sb/Br) |
CU NIPDAU |
Level-1-260C-UNLIM |
TLC393IPWR |
TLC393IPWR |
TLC393IPWRG4 |
Green (RoHS & no Sb/Br) |
CU NIPDAU |
Level-1-260C-UNLIM |
TLC393IPWRG4 |
TLC393IPWRG4 |
TLC393QDR |
Green (RoHS & no Sb/Br) |
CU NIPDAU |
Level-1-260C-UNLIM |
TLC393QDR |
TLC393QDR |
TLC393QDRG4 |
Green (RoHS & no Sb/Br) |
CU NIPDAU |
Level-1-260C-UNLIM |
TLC393QDRG4 |
TLC393QDRG4 |
TLC393 应用技术支持与电子电路设计开发资源下载
- TLC393 数据资料 dataSheet 下载.PDF
- TI 德州仪器仪Comparator 比较器产品选型与价格 . xls
- 所选封装材料的热学和电学性质 (PDF 645 KB)
- 高速数据转换 (PDF 1967 KB)
- 在 PSPICE 中使用德州仪器 (TI) SPICE 模型 (zhca088.HTM, 8 KB)
- PowerPAD™ Thermally Enhanced Package (slma002g.HTM, 8 KB)
- 运算放大器的单电源操作 (PDF 2174 KB)
- Tuning in Amplifiers (PDF 44 KB)
- Op Amp Performance Analysis (PDF 76 KB)
- An Error Analysis of the ISO102 in a Small Signal Measuring Application (PDF 29 KB)
- Level Shifting Signals with Differential Amplifiers (PDF 23 KB)
- Operational Amplifier Macromodels: A Comparison (PDF 59 KB)