ICL7664CPA ,500mW; V(in): -18V; programmable negative voltage regulatorApplications
Designed specifically for battery powered systems, the
ICL7664 negative voltage re ..
ICL7664CPA ,500mW; V(in): -18V; programmable negative voltage regulator19-3956; Rev 2; 4195
60ml "-trtptton
The ICL7664 is a high efficiency negative voltage
regul ..
ICL7664CPA ,500mW; V(in): -18V; programmable negative voltage regulator19-3956; Rev 2; 4195
60ml "-trtptton
The ICL7664 is a high efficiency negative voltage
regul ..
ICL7665 ,µP Voltage Monitor with Dual Over/Undervoltage DetectionFeaturesµP Over/Undervoltage WarningThe ICL7665 warns microprocessors (µPs) of overvolt-age and und ..
ICL7665ACPA ,Microprocessor Voltage Monitor withICL766519-0001; Rev 2; 8/97Microprocessor Voltage Monitor withDual Over/Undervoltage Detection_____ ..
ICL7665ACSA ,Microprocessor Voltage Monitor withGeneral Description ________
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IDT72V3670L75PF , 3.3 VOLT HIGH-DENSITY SUPERSYNC™ II 36-BIT FIFO
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ICL7664ACPA-ICL7664CPA
500mW; V(in): -18V; programmable negative voltage regulator
19-3956; Rev 2; Al95
2AIAL4l] 2C l] 2flyl]
Programmable Negatlve
Voltage Regulator
— Gonoral Doccrlptlon Fett turoo a
The lICL766|4h is a tle efficiency legatlv: vaiéag . 1% Output Voltage Accuracy (ICL7684A) F
regu ator wt a qu ascent current 0 es t an .
The output voltage is set by tag) external 'ttei',','', to . -2y to "ttlf Opomtirtg Range IM
an voltage In the -1.3V to -1 ' range, wit an nput . 25mA.Outpm Cumn wlth Cumnl Lltttiti
vo tage range of-iN to -16V. Tho! ICL7664 is well suited t, nu
for battery powered supplies, 1"itt a 202pA 'i1rw'r,1t . Adm Output VOIMO
current, an output current cape ty 0 5m ,Iow IN -
to Vour differential, current limiting, and a logic input . Low Input to-Output MW Drop
level shutdown control. . Low Power CMOS: 4pA Quiesceni Gummt
The Maxim ICL7664 is compatible with existing
ICL7664 designs when used with an output filter
capacitor ot 10PF or greater. Ordering Information
The ICL7664A is an f,1tgr,g, version at tige :Flimfd' PART TEMP. RANGE PACKAGE
wltha1%atttturatBgo tage re erance, w ie e m na " . . .
the need for trimming the output voltage in most ICL7664C/D 0 C to +70 0 Dice
applications. ICL7664CJA tPC to mm a Lead Cerdlp
©L7664CPA tPC to m70''C a Lead Plttstlty Dlp
----_ Jtpplhxtthtntt ICLTSMCSA tPC to +70°C 8 Lead Small Outline
Designed specifically for tt1,t,t,tg,'ttrer,t1 ly/e/ll,',',' the KX7684CT1/ 0°C to +7tPt9 a Lead 10.99 Can
ICL7664 negative voltage regu ator exce s w erever ,, . .
low quiescent power, wide voltage range operation, 'CL7664AC/D o Cto r70 c Dict;
medium output current ieyels, gurrent limiting, and ICL7664ACJA tPC to -rtpt. 8 Lead Cardip
logic-controlled shutdown '3 desured. ICL1664ACPA tPC to r70'C a Lead Plastic Dip
Handheld Instruments ICL7664ACSA tPC to +70°c a Lead Small Outline
bgggg'smay Modules and Systems ICL7664ACTV tPC to +70%; 8 Lead TO-99 Can
Remote Data Loggers
Typical Opera ting Glrcult Pin Gonffgura tlon
Top View
=1- VOUT 2 E q GND
" I . W: SENSE Ca; tttr/a' Z] VOUT 1
P, v SHDN iS El VSET
Cr, = 753537 -5V VIN ii 5] SHDN
Negative Regulator with Current Limit
(Detailed am: Diagram-Figs' 3)
lVl/lXI/Vl
Mulm lrmamod Product: 1
Call to" free 1-800-998-8800 for free samples or literature.
ICE. 7664
Programmable Negative
Bbltage Regula tor
ABSOLUTE MAXIMUM RATINGS
Input Supply Voltae ...........................
In ut or Output Vo 'iii (Note 1) ..... (GND + 0.3V) 8to
ermlnals (1, 3, 5, 6,7 Na- 03V)
Sense Pin ........................... (GND + 0.3V) to
(Pln 2 (VOUT1 - 0.3V)
Out ut ink Current
erminals 1, 7) ............................. -25mA
Power Dlsslpatlon (Note 2)
Operating Temperature Range
/D .......................... tPC to +70°C
ICL7664CPA ................. . . ....... tPC to +70°C
ICL76641JA ......................... -20°C to +85°C
ICL7664|TV ......................... -20° C to +85° C
Storage Tern perature ................. -65'' C to +150° G
Lead Temperature (Soldering, 10 seconds) . +300°C
CERDIP '.''..y.y..C.'.y.y.'/.'y..C.y.y..'.'y.r. '.iiiiiiiiih)
Stresses beyond those listed under "Absolute Maximum Ratings" may cause permanent damage to the device These are stress ratings only, and functional
operators of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not Implied. Exposure to
absolute maximum rating conditions for extended periods may affect device rehability.
ELECTRICAL CHARACTERISTICS
(VIN = -9V, VOUT = -5V, TA = +25°C, test circuit unless noted.)
PARAMETER SYMBOL CONDITIONS MIN TYP MAX UNITS
Input Voltage VIN V
RL = oc, -1.4V s VOUT 3 -8.5V
Quiescent Current lo V-IN = -16V, 0°C LC TA 3 +70°C 4.0 12 pA
V-lN = AW, 0°C f TA f +70°C 3.5 10
ICL7664A -1.275 -1.29 -1.305
IOUT = 100PA,
l - . _ _ -1.
Reference Voltage VSET VOUT = VSET CL664B 1 26 1 29 I 32 V
ICL7664 -1.235 ~13 -1.365
Temperature Ctxyfticient -'-1-vsF. 1100 ppml°C
. _ th_)/si.T. - _
Line Regulation VSETAVIN 2V S VIN S 15V 003 J35 %/V
VSET Input Current ISET 0°C I TA Lt +70°C $0.01 :10 nA
Shutdown Input Current ISHDN GND LC VSHDN s VIN 20.01 :10 nA
VSHDNHI: Both VOUT Enabled -O.7
_ I t v It Vc-r-ir-rn _
Shutdown npu 0 age SHDN VSHDNLO: Both VOUT Disabled -1.7 V
Sense Pin Input Current [SENSE VSENSE = VOUT1 $0.01 t10 nA
Sense Pin Input Threshold VCL VCL = VOUTZ - VSENSE ' Ayn V
(Current-Limit Threshold)
VOUT1 Connected to VOUT2
Input-Output Saturation R V-IN = -2V 150 500
Resistance (Note 3) OUT V-IN = -91/ 40 80 n
V-IN = 15V 30 60
. AVouT
L d R l t N = 100 A 2.0 .
oa egu a Ion AIOUT OUT " 5 O n
Output Current, lo T V-IN = -3V VOUT = ngr 1. .2 mA
Voun connected to Voum U v-.N = AN VOUT = -5v -20
Minimum Load Current
0 < < o
1 (Includes VSET Divider) lt/MIN) O C) - TA - +70 C 1.0 pA
Note1: Connecting any terminal to voltages greater than (GND + 0.3V) or less than (V-IN - 0.3V) may cause destructive device latch-up.
ll is recommended that no inputs Korn sources operating on external power supplies be applied prior to lCL7864 power-up,
Note 2: Derate linearly above 50°C at 5mW/°C for minidip and 7.5mW/“C for TO-99 can,
Note 3: This parameter refers to the saturation resistance of the MOS pass tranSIstor. The minimum input-output voltage differential
can be determined by multiplying the load curront(including set resistor current, but not quiescent current) by this resistance.
lVl/J X I [VI