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JM38510/07006BDA Datasheet

VCE=2V le = 20 mA
j iVIC > +M G
j
IS21el2


JM38510/07006BDA Price
D3199, AUGUST 1988-REVISED MARCH 1990-T10125 description (continued) These counters feature a fully independent clock circuit. Changes at control inputs (ENP, ENT, or LOAD) that modify the operating mode have no effect on the contents of the counter until clocking occurs. The function of the counter (whether enabled, disabled, loading, or counting) is dictated solely by the conditions meeting the setup and hold times. The 54AC11160 is characterized for operation over the full military temperature range of -550C t0 1250C. The 74AC11160 is characterized for operation from - 40'C t0 85'C.
JM38510/07006BDA on stock

Characteristic Symbol RB200 RB201 RB202 RB204 RB206 RB208 RB2010 Unit
Peak Repetitive Reverse Voltage Working Peak Reverse Voltage DC Blocking Voltage VRRM VRWM VR 50 100 200 400 600 800 1000 V
RMS Reverse Voltage VR(RMS) 35 70 140 280 420 560 700 V
Average Rectified Output Current (Note l) @TA = 500c 10 2 0 A
Non-Repetitive Peak Forward Surge Current 8.3ms Single half sine-wave superimposed on rated load (JEDEC Method) IFSM 50 A
Forward Voltage (per element) @IF = 2.OA VFM 1 0 V
Peak Reverse Current @TA = 25aC At Rated DC Blocking Voltage @TA = 1000c IRM 10 500 pA
Operating Temperature Range Tj -55 to +125 ac
Storage Temperature Range TSTG -55 to +150 ac


Information is transmitted on the serial bus in messages. Each MESSAGE is preceded by a Start Condition and ends with a Stop Condition. The message consists of an inte- ger number of bytes, each byte consisting of 8 bits of data, followed by a ninth Acknowledge Bit. This Acknowledge Bit is provided by the recipient of the transmitted byte. This is possible because devices may only drive the cSDA line Low. The system must provide a small pull-up current (1 kl equivalent) for the cSDA line.

Pin unction Description Interface Schematic
1 DCSIN RF input to the DCS band. This is a 50 input.
2 BAND SELECT Allows external control to select the GSM or DCS band with a logic high or low. A logic low enables the GSM band whereas a logic high enables the DCS band.
3 TX ENABLE This signal enables the PA module for operation with a logic high. Once TX Enable is asserted the RF output level will increase to OdBm.
4 VBATT Power supply for the module. This should be connected to the battery.
5 VREG Regulated voltage input for power control function. (2.8V nom)
6 VRAMP Ramping signal from DAC. A simple RC filter may need to be con- nected between the DAC output and the VRAMP input depending on the baseband selected. The ramping profiles shown later in the data sheet are recommended profiles for meeting the GSM specification for burst timing and transient spectrum.
7 GSMIN RF input to the GSM band. This is a 50 input.
8 VCC2 Controlled voltage input to driver stage for GSM bands. This voltage is part of the power control function for the module. This node must be connected to Vcc out.
9 GSM OUT RF output for the GSM band. This is a 50 I output. The output load line matching is contained internal to the package.
10 VCC OUT Controlled voltage output to feed VCC2. This voltage is part of the power control function for the module. It can not be connected to any- thing other than VCC2, nor can any component be placed on this node (i.e. decoupling capacitor).
11 DCS OUT RF output for the DCS band. This is a 50 I output. The output load line matching is contained internal to the package.
12 VCC2 Controlled voltage input to DCS driver stage. This voltage is part of the power control function for the module. This node must be connected to Vcc out
Pkg Base GND