IP103H Interpion semiconductor Inc., IP103H Datasheet

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IP103H

Manufacturer Part Number
IP103H
Description
Manufacturer
Interpion semiconductor Inc.
Datasheet
Dec. 2002
Operational Amplifiers
- Low Supply Current : 200uA/amp
- Medium Speed : 1.5MHz
- Low Level Output Voltage Close to V
-Wide Power Supply Range; 3.6~28V
Adjustable Shunt Regulator
- Fixed Output Voltage Reference 2.5V
- Sink Current Capability : 0.5 to 150mA
- 1% Voltage Precision
- Latch-up Immunity
* The Main Differences of IP103 and IP103H are Vicm(Input Common Mode Voltage Range) and Vop(Operating Voltage)
chargers with a constant voltage and a constant cur-
rent control.
dependent op-amp and other op-amp for which the
non inverting input is wired to a 2.5V fixed Voltage
reference.
lution for low cost charging applications.
FEATURES
BLOCK DIAGRAM
Integrating the reference and op-amps creates a so-
DESCRIPTION
This device is a monolithic IC that includes one i n -
The IP103H is designed to be used in battery
VIN1+
OUT1
VIN1-
VEE
1
2
3
4
EE
WWW.INTERPIONSEMI.COM
: 0.1V Typ.
Voltage and Current Controller
Vref
OP1
ORDERING INFORMATION
OP2
Device
IP103H
I103H
IP103H
8
7
6
5
Package
VCC
OUT2
VIN2-
8SOP
8DIP
VIN2+
8DIP
8SOP
Operating Temp
-40
O
C ~ +105
- 1 -
O
C

Related parts for IP103H

IP103H Summary of contents

Page 1

... The Main Differences of IP103 and IP103H are Vicm(Input Common Mode Voltage Range) and Vop(Operating Voltage) DESCRIPTION The IP103H is designed to be used in battery chargers with a constant voltage and a constant cur- rent control. This device is a monolithic IC that includes one dependent op-amp and other op-amp for which the non inverting input is wired ...

Page 2

... VEE 5 VIN2+ 6 VIN2- 7 OUT2 8 VCC Dec. 2002 IP103H Voltage and Current Controller VCC OUT2 VIN2- VIN2 IP103H IP103 OUT1 VIN1+ VEE VIN1- I/O DESCRIPTION O OP-Amp 1 Output I OP-Amp 1 Inverting Input I OP-Amp 1 Non-Inverting Input - Negative Supply Voltage I OP-Amp 2 Non-Inverting Input ...

Page 3

... Common Mode Rejection Ratio Output Source Current Output Sink Current Phase Margin Output Voltage High Output Voltage Low Slew Rate Gain Bandwidth Total Harmonic Distortion Dec. 2002 IP103H Voltage and Current Controller SYMBOL Vccmax Topr Tstg CONDITIONS Icc Vee = 0V, No Load Vio Iib ...

Page 4

... CC EE Adjustable Shunt Regulator CHARACTERISTICS SYMBOL Recommended Cathode Current Reference Input Voltage Reference Input Voltage Deviation Load Regulation Minimum Cathode Current for Regulation Dec. 2002 IP103H Voltage and Current Controller CONDITIONS Ik Vref Vka=Vref, Ik=10mA dVref -40 C < Ta <105 Ik=1mA~10mA Rload Imin WWW ...

Page 5

... TYPICAL APPLICATION Dec. 2002 IP103H Voltage and Current Controller WWW.INTERPIONSEMI.COM - 5 - ...

Page 6

... Fig.1 : Toatal Supply Current vs. Supply Voltage 2.510 2.505 2.500 2.495 2.490 2.485 2.480 -50 Fig.2 : Reference Voltage vs. Temperature Dec. 2002 IP103H Voltage and Current Controller Total Supply Current vs. Supply Voltage Supply Voltage (V) Reference Voltage vs. Temperature - Temperature ( WWW.INTERPIONSEMI.COM ...

Page 7

... Minimum Cathode Current vs. Reference Voltage 3.0 2.5 2.0 1.5 1.0 0.5 0.0 0 Fig.3 : Minimum Cathode Current vs. Reference Voltage Cathode Current vs. Reference Voltage 2.60 2.55 2.50 2.45 2.40 0 Fig.4 : Cathode Current VS. Reference Voltage Dec. 2002 IP103H Voltage and Current Controller 100 200 300 Cathode Current (uA Cathode Current (mA) WWW.INTERPIONSEMI.COM 400 500 80 100 - 7 - ...

Page 8

... OP AMP Source Current vs. Output Voltage Fig AMP Source Current vs. Output Voltage OP AMP Sink Current vs. Output Voltage 2.5 2.0 1.5 1.0 0.5 0.0 0 Fig AMP Sink Current vs. Output Voltage Dec. 2002 IP103H Voltage and Current Controller VCC=15V, VEE= Source Current (mA Sink Current (mA) WWW.INTERPIONSEMI.COM ...

Page 9

... Total Supply Current vs. Temperature 1.0 0.8 0.6 0.4 0.2 0.0 -50 -25 Fig.7 : Total Supply Current vs. Temperature OP AMP Input Offset Voltage vs. Temperature 0.6 0.4 0.2 0.0 -0.2 -0.4 -0.6 -25 Fig AMP Input Offset Voltage vs. Temperature Dec. 2002 IP103H Voltage and Current Controller VCC= Temperature ( C) VCC= Temperature ( C) WWW.INTERPIONSEMI.COM 100 125 75 100 - 9 - ...

Page 10

... PACKAGE DIMENSION Dec. 2002 IP103H Voltage and Current Controller WWW.INTERPIONSEMI.COM - 10 - ...

Page 11

... PACKAGE DIMENSION Dec. 2002 IP103H Voltage and Current Controller WWW.INTERPIONSEMI.COM - 11 - ...

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